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SZCR241000381008-FCC 234G TRP

Sonim Technologies, Inc. S1003 WYPS1003 WYPS1003 s1003

Sonim Technologies, Inc. S1003 smartphone WYPS1003 WYPS1003 s1003

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SGS-CSTC Standards Technical Services Co., Ltd. Shenzhen Branch

SZEMC-TRF-01 Rev. A/1

Report No.: SZCR241000381008

Page:

1 of 58

TEST REPORT

Application No.:

SZCR2410003810WM

Applicant:

Sonim Technologies, Inc.

Address of Applicant:

4445 Eastgate Mall, Suite 200, San Diego, CA 92121, USA

Manufacturer:

Sonim Technologies, Inc.

Address of Manufacturer: 4445 Eastgate Mall, Suite 200, San Diego, CA 92121, USA

EUT Description:

smartphone

Model No.:

X800

Type No.:

S1003/S1001/S1004/S1005/S1006/S1010

Trade Mark:

Sonim

FCC ID:

WYPS1003

Standards: Date of Receipt:

47 CFR Part 2 47 CFR Part 22 47 CFR Part 24 47 CFR Part 27 47 CFR Part 90 47 CFR Part 96
2024-10-15

Date of Test:

2024-10-16 to 2024-12-06

Date of Issue:

2024-12-23

Test Result :

PASS *

*

In the configuration tested, the EUT detailed in this report complied with the standards specified

above.

Keny Xu EMC Laboratory Manager

SGS-CSTC Standards Technical Services Co., Ltd. Shenzhen Branch

SZEMC-TRF-01 Rev. A/1

Report No.: SZCR241000381008

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1 Version

Version 01

Chapter

Revision Record
Date
2024-12-23

Modifier

Authorized for issue by:

Remark Original

Calvin Weng/Project Engineer

Eric Fu/Reviewer

SGS-CSTC Standards Technical Services Co., Ltd. Shenzhen Branch

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Report No.: SZCR241000381008

Page:

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Contents

1 Version ..........................................................................................................................2 2 Test Summary ...............................................................................................................5
2.1 GSM850/UMTS Band 5/LTE Band 5/26(824~849 MHz) ...................................5 2.2 GSM 1900/UMTS Band 2 /LTE Band 2 /25.......................................................6 2.3 UMTS Band 4/LTE Band 4/LTE Band 66/CA_66B/CA_66C .............................7 2.4 LTE Band 7/38/41 .............................................................................................8 2.5 LTE Band 12 .....................................................................................................9 2.6 LTE Band 13 ...................................................................................................10 2.7 LTE Band 14 ...................................................................................................11 2.8 LTE Band 26(814~824 MHz) ..........................................................................13 2.9 LTE Band 30 ...................................................................................................14 2.10 LTE Band 42 ...................................................................................................16 2.11 LTE Band 71 ...................................................................................................18 2.12 LTE Band 48/ LTE CA_48C ............................................................................19 3 General Information.....................................................................................................21 3.1 Details of Client ...............................................................................................21 3.2 Test Location ..................................................................................................21 3.3 Test Facility.....................................................................................................21 3.4 General Description of EUT ............................................................................22 3.5 Test Mode .......................................................................................................24 3.6 Test Environment ............................................................................................24 3.7 Description of Support Units ...........................................................................24 3.8 Technical Specification ...................................................................................25 3.9 Test Frequencies ............................................................................................28 4 Description of Tests.....................................................................................................42 4.1 Conducted Output Power................................................................................42 4.2 Effective (Isotropic) Radiated Power of Transmitter........................................43 4.3 EIRP Power Density........................................................................................44 4.4 Occupied Bandwidth .......................................................................................45 4.5 Band Edge at Antenna Terminals ...................................................................46

SGS-CSTC Standards Technical Services Co., Ltd. Shenzhen Branch

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4.6 Spurious And Harmonic Emissions at Antenna Terminal................................47 4.7 Peak-Average Ratio ........................................................................................48 4.8 Field Strength of Spurious Radiation...............................................................49 4.9 Frequency Stability / Temperature Variation ...................................................50 4.10 Test Setups.....................................................................................................51
4.10.1 Test Setup 1 .......................................................................................51 4.10.2 Test Setup 2 .......................................................................................51 4.10.3 Test Setup 3 .......................................................................................52 4.11 Test Conditions ...............................................................................................53 5 Main Test Instruments .................................................................................................55 6 Measurement Uncertainty............................................................................................57 7 Appendixes..................................................................................................................58

SGS-CSTC Standards Technical Services Co., Ltd. Shenzhen Branch

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Report No.: SZCR241000381008

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2 Test Summary

2.1 GSM850/UMTS Band 5/LTE Band 5/26(824~849 MHz)

Test Item Effective (Isotropic) Radiated Power Output Data Peak-Average
Ratio
Bandwidth
Band Edges Compliance
Spurious Emission at
Antenna Terminals Field Strength of Spurious Radiation
Frequency Stability

FCC Rule No.
§2.1046, §22.913(a)(5)
§22.913(d)
§2.1049
§2.1051, §22.917(a)
§2.1051, §22.917(a)
§2.1053, §22.917(a) §2.1055(a)(1)(b) §2.1055(d)(2)
§22.355

Requirements ERP  7 W

Test Result

Limit13 dB
OBW: No limit. EBW: No limit.  -13 dBm/1%*EBW, in 1 MHz bands immediately outside and adjacent to the frequency block. FCC:  -13 dBm/100 kHz, from 9 kHz to 10th harmonics but outside authorized operating frequency ranges.

Appendix B.1&B.5&B.8 &B.15&B.16
&C.1

FCC:  -13 dBm/100 kHz.

±2.5ppm.

Verdict Pass Pass Pass Pass
Pass
Pass Pass

SGS-CSTC Standards Technical Services Co., Ltd. Shenzhen Branch

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2.2 GSM 1900/UMTS Band 2/LTE Band 2 /25

Test Item Effective (Isotropic) Radiated Power Output Data Peak-Average
Ratio
Bandwidth
Band Edges Compliance
Spurious Emission at
Antenna Terminals Field Strength of Spurious Radiation
Frequency Stability

FCC Rule No.
§2.1046, §24.232(c)
§24.232(d)
§2.1049
§2.1051, §24.238(a)
§2.1051, §24.238(a)
§2.1053, §24.238(a) §2.1055(a)(1)(b) §2.1055(d)(2)
§24.235

Requirements
EIRP  2 W
Limit13 dB OBW: No limit. EBW: No limit.  -13 dBm/1%*EBW, in 1 MHz bands immediately outside and adjacent to the frequency block.  -13 dBm/1 MHz, from 9 kHz to 10th harmonics but outside authorized operating frequency
ranges.
 -13 dBm/1 MHz.
Within authorized bands of operation/frequency block.

Test Result Verdict Pass

Pass Pass

Appendix B.2&B.3&B.6 &B.13&C.1

Pass Pass

Pass Pass

SGS-CSTC Standards Technical Services Co., Ltd. Shenzhen Branch

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2.3 UMTS Band 4/LTE Band 4/LTE Band 66/CA_66B/CA_66C

Test Item Effective (Isotropic) Radiated Power Output Data Peak-Average
Ratio
Bandwidth
Band Edges Compliance
Spurious Emission at
Antenna Terminals Field Strength of Spurious Radiation
Frequency Stability

FCC Rule No.
§2.1046, §27.50(d)(4)
§27.50(d)(5)
§2.1049
§2.1051, §27.53(h)
§2.1051, §27.53(h)
§2.1053, §27.53(h) §2.1055(a)(1)(b) §2.1055(d)(2)
§27.54

Requirements EIRP  1 W

Test Result

Limit13 dB
OBW: No limit. EBW: No limit.  -13 dBm/1%*EBW, in 1 MHz bands immediately outside and adjacent to the frequency block.  -13 dBm/1 MHz, from 9 kHz to 10th harmonics but outside authorized operating frequency
ranges.

Appendix B.4&B.7&B.27 &B.28&B.29
&C.1

 -13 dBm/1 MHz.

Within authorized bands of operation/frequency block.

Verdict Pass Pass Pass Pass
Pass
Pass Pass

SGS-CSTC Standards Technical Services Co., Ltd. Shenzhen Branch

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Report No.: SZCR241000381008

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2.4 LTE Band 7/38/41/CA_41C

Test Item Effective (Isotropic) Radiated Power Output Data Peak-Average
Ratio

FCC Rule No. §2.1046,
§27.50(h)(2)
---

Requirements EIRP  2W 13 dB

Test Result Verdict Pass Pass

Bandwidth

§2.1049

OBW: No limit. EBW: No limit.

Pass

Band Edges Compliance

§2.1051, §27.53(m)(4)

For mobile digital stations, the attenuation

factor shall be not less than 40 + 10 log

(P) dB on all frequencies between the

channel edge and 5 megahertz from the

channel edge, 43 + 10 log (P) dB on all

frequencies between 5 megahertz and X

megahertz from the channel edge, and

55 + 10 log (P) dB on all frequencies

more than X megahertz from the channel

edge, where X is the greater of 6

megahertz or the actual emission

bandwidth as defined in paragraph (m)(6)

of this section. In addition, the attenuation

factor shall not be less that 43 + 10 log

Appendix

(P) dB on all frequencies between 2490.5 B.9&B.18&B.19

MHz and 2496 MHz and 55 + 10 log (P) &B.20&C.1

dB at or below 2490.5 MHz.

Pass

Spurious Emission at
Antenna Terminals

§2.1051, §27.53(m)

Pass

Field Strength of Spurious Radiation

§2.1053, §27.53(m)

Frequency Stability

§2.1055(a)(1)(b) §2.1055(d)(2) §27.54

Within authorized bands of operation/frequency block.

Pass Pass

SGS-CSTC Standards Technical Services Co., Ltd. Shenzhen Branch

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2.5 LTE Band 12

Test Item Effective (Isotropic) Radiated Power Output Data Peak-Average
Ratio

FCC Rule No. §2.1046
§27.50(c)(10)
---

Bandwidth

§2.1049

Band Edges Compliance
Spurious Emission at
Antenna Terminals Field Strength of Spurious Radiation
Frequency Stability

§2.1051, §27.53(g)
§2.1051, §27.53(g)
§2.1053, §27.53(g) §2.1055(a)(1)(b) §2.1055(d)(2)
§27.54

Requirements
ERP  3 W.
Limit13 dB OBW: No limit. EBW: No limit.  43+10log10(P[Watts])
 43+10log10(P[Watts])

Test Result Verdict Pass

Appendix B.10 &C.1

Pass Pass Pass
Pass

FCC:  -13 dBm/100 kHz.
Within authorized bands of operation/frequency block.

Pass Pass

SGS-CSTC Standards Technical Services Co., Ltd. Shenzhen Branch

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2.6 LTE Band 13

Test Item Effective (Isotropic) Radiated Power Output Data Peak-Average
Ratio

FCC Rule No. §2.1046,
§27.50(b)(10)
---

Bandwidth

§2.1049,

Band Edges Compliance

§2.1051, §27.53(c)

Spurious Emission at
Antenna Terminals

§2.1051, §27.53(c) §27.53(f)

Field Strength of Spurious Radiation

§2.1053, §27.53(c) §27.53(f)

Frequency Stability

§2.1055(a)(1)(b) §2.1055(d)(2) §27.54

Requirements
ERP  3 W.
Limit13 dB
OBW: No limit. EBW: No limit.
 43+10log10(P[Watts])
 -13 dBm/100 kHz, from 9 kHz to 10th harmonics but outside authorized operating
frequency ranges. On all frequencies between 763­775 MHz
and 793­805 MHz, by a factor not less than 65 + 10 log (P) dB in a 6.25 kHz band segment, for mobile and portable stations. For operations in the 746-758 MHz, 775-
788 MHz, and 805-806 MHz bands, emissions in the band 1559-1610 MHz
shall be limited to -70 dBW/MHz equivalent isotropically radiated power (EIRP) for wideband signals, and -80 dBW EIRP for discrete emissions of less than
700 Hz bandwidth. FCC:  -13 dBm/100 kHz. For operations in the 746-758 MHz, 775788 MHz, and 805-806 MHz bands, emissions in the band 1559-1610 MHz shall be limited to -70 dBW/MHz equivalent isotropically radiated power (EIRP) for wideband signals, and -80 dBW EIRP for discrete emissions of less than
700 Hz bandwidth.
Within authorized bands of operation/frequency block.

Test Result
Appendix B.11&C.1

Verdict Pass Pass Pass Pass
Pass
Pass Pass

SGS-CSTC Standards Technical Services Co., Ltd. Shenzhen Branch

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Report No.: SZCR241000381008

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2.7 LTE Band 14

Test Item Effective (Isotropic) Radiated Power Output Data Peak-Average
Ratio

FCC Rule No. §2.1046
§90.542(a)
---

Bandwidth

§2.1049

Emission Mask

§2.1051 §90.210(b)

Band Edges Compliance

§2.1051 §90.543(e)(2)(3)

Requirements ERP  3 W.

Test Result Verdict Pass

Limit13 dB
OBW: No limit. EBW: No limit. Transmitters designed for operation under this part on frequencies other than listed in this section must meet the emission mask requirements of Emission Mask B. Equipment operating under this part on frequencies allocated to but shared with the Federal Government, must meet the applicable Federal Government technical standards (b) Emission Mask B. For transmitters that are equipped with an audio low-pass filter, the power of any emission must be attenuated below the unmodulated carrier power (P) as follows: (1) On any frequency removed from the assigned frequency by more than 50 percent, but not more than 100 percent of the authorized bandwidth: At least 25 dB.(2) On any frequency removed from the assigned frequency by more than 100 percent, but not more than 250 percent of the authorized bandwidth: At least 35 dB..(3) On any frequency removed from the assigned frequency by more than 250 percent of the authorized bandwidth: At least 43 + 10 log (P)
dB. (1) On all frequencies between 769-
775 MHz and 799-805 MHz, by a factor not less than 76 + 10 log (P) dB in a 6.25 kHz band segment, for base and fixed stations.(2) On all frequencies between 769-775 MHz and 799-805 MHz, by a factor not

Appendix B.12&C.1

Pass Pass
Pass
Pass

SGS-CSTC Standards Technical Services Co., Ltd. Shenzhen Branch

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Spurious Emission at
Antenna Terminals
Field Strength of Spurious Radiation
Frequency Stability

§2.1051, §90.543(c) §90.543(f)
§2.1053, §90.543(c) §90.543(f)
§2.1055(a)(1)(b) §2.1055(d)(2) §90.213

less than 65 + 10 log (P) dB in a 6.25 kHz band segment, for mobile
and portable stations.(3) On any frequency between 775-788 MHz, above 805 MHz, and below 758 MHz, by at least 43 + 10 log (P) dB. FCC:  -13 dBm/100 kHz, from 9 kHz to 10th harmonics but outside
authorized operating frequency ranges. For operations in the 758­ 775 MHz and 788­805 MHz bands,
all emissions including harmonics in the band
1559­ 1610 MHz shall be limited to -70 dBW/ MHz equivalent isotropically radiated power (EIRP) for wideband signals, and -80 dBW EIRP for discrete emissions of less than 700
Hz bandwidth. FCC:  -13 dBm/100 kHz. For operations in the 758­775 MHz and 788­805 MHz bands, all emissions including harmonics in the band 1559­1610 MHz shall be limited to -70 dBW/ MHz equivalent isotropically radiated power (EIRP) for wideband signals, and -80 dBW EIRP for discrete emissions of less than 700 Hz bandwidth.
Within authorized bands of operation/frequency block.

Pass
Pass Pass

SGS-CSTC Standards Technical Services Co., Ltd. Shenzhen Branch

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2.8 LTE Band 26(814~824 MHz)

Test Item Transmitter Conducted Power Output Peak-Average
Ratio Bandwidth
Emission Mask
Spurious Emission at
Antenna Terminals Field Strength of Spurious Radiation Frequency Stability

FCC Rule No. §2.1046, §90.635(b) --§2.1049
§2.1051 § 90.691(a)
§2.1051, §90.691 §2.1053, §90.691 §2.1055(a)(1)(b) §2.1055(d)(2) §90.213

Requirements
< 100 W.
Limit13 dB
OBW: No limit. EBW: No limit. For any frequency removed from the EA licensee's frequency block by up to and including 37.5 kHz, the power of any emission shall be attenuated below the transmitter power (P) in watts by at least 116 Log10(f/6.1) decibels or 50+10Log10(P) decibels or 80 decibels, whichever is the lesser attenuation, where f is the frequency removed from the center of the outer channel in the block in kilohertz and where f is greater than 12.5 kHz.
< 43 + 10Log10(P[Watts]) for all out-of-band emissions
< 43 + 10Log10(P[Watts]) for all out-of-band emissions
Within authorized bands of operation/frequency block.

Test Result
Appendix B.14&B.16
&C.1

Verdict Pass Pass Pass
Pass
Pass Pass Pass

SGS-CSTC Standards Technical Services Co., Ltd. Shenzhen Branch

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2.9 LTE Band 30

Test Item Effective (Isotropic) Radiated Power Output Data Peak-Average
Ratio

FCC Rule No. §2.1046,
§27.50(a)(3)
---

Bandwidth

§2.1049,

Band Edges Compliance

§2.1051, §27.53(a)(4)

Spurious Emission at
Antenna Terminals

§2.1051, §27.53(a)(4)

Requirements
EIRP  50mW/1MHz EIRP  250mW/5MHz

Test Result Verdict Pass

FCC: Limit13 dB

OBW: No limit. EBW: No limit.  -13 dBm/1%*EBW, in 1 MHz bands immediately outside and adjacent to the frequency block.

Figure 1: Unwanted Emisssions for Mobile, Portable, and Low Power Fixed Subscriber Equipment
-40

-45

-50

Absolute Power (dBW/ MHz)

-55

-60

-65

-70

-75

2190

2210

2230

2250

2270

2290

2310

2330

2350

2370

2390

Frequency (MHz)

For mobile and portable stations

operating in the 2305-2315 MHz

and 2350-2360 MHz bands:

(i) By a factor of not less than: 43

+ 10 log (P) dB on all frequencies

between 2305 and 2320 MHz and

on all frequencies between 2345

and 2360 MHz that are outside

the licensed band(s) of operation,

not less than 55 + 10 log (P) dB

on all frequencies between 2320

and 2324 MHz and on all

frequencies between 2341 and

2345 MHz, not less than 61 + 10

log (P) dB on all frequencies

between 2324 and 2328 MHz and

on all frequencies between 2337

and 2341 MHz, and not less than

67 + 10 log (P) dB on all

frequencies between 2328 and

2337 MHz;

(ii) By a factor of not less than 43

+ 10 log (P) dB on all frequencies

between 2300 and 2305 MHz, 55

+ 10 log (P) dB on all frequencies

between 2296 and 2300 MHz, 61

+ 10 log (P) dB on all frequencies

Appendix B.17&C.1

Pass Pass Pass
Pass

SGS-CSTC Standards Technical Services Co., Ltd. Shenzhen Branch

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Field Strength of Spurious Radiation
Frequency Stability

§2.1053, §27.53(a)(4)
§2.1055(a)(1)(b) §2.1055(d)(2) §27.54

between 2292 and 2296 MHz, 67 + 10 log (P) dB on all frequencies
between 2288 and 2292 MHz, and 70 + 10 log (P) dB below 2288 MHz;(iii) By a factor of not less than 43 + 10 log (P) dB on all frequencies between 2360 and 2365 MHz, and not less than 70 + 10 log (P) dB above 2365 MHz.
 -40dBm/MHz.
within the range of the operating frequency blocks

Pass Pass

SGS-CSTC Standards Technical Services Co., Ltd. Shenzhen Branch

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2.10 LTE Band 42

3450-3550MHz:
Test Item Effective (Isotropic) Radiated Power Output Data Peak-Average
Ratio
Bandwidth

FCC Rule No. §2.1046,
§27.50(k)(3)
§27.50(k)(4) §2.1049

Band Edges Compliance

§2.1051, §27.53(n)(2)

Spurious Emission at
Antenna Terminals

§2.1051, §27.53(n)(2)

Field Strength of Spurious Radiation
Frequency Stability

§2.1053, §27.53(n)(2)
§2.1055(a)(1)(b) §2.1055(d)(2) §27.54

Requirements EIRP  30dBm

Test Result Verdict Pass

Limit13 dB
OBW: No limit. EBW: No limit. For mobile operations in the 3450-3550 MHz band, the conducted power of any emission outside the licensee's authorized bandwidth shall not exceed -13 dBm/MHz. For mobile operations in the 3450-3550 MHz band, the conducted power of any emission outside the licensee's authorized bandwidth shall not exceed -13 dBm/MHz. For mobile operations in the 3450-3550 MHz band, the conducted power of any emission outside the licensee's authorized bandwidth shall not exceed -13 dBm/MHz.
Within authorized bands of operation/ frequency block.

Appendix B.21 &C.1

Pass Pass Pass
Pass
Pass Pass

SGS-CSTC Standards Technical Services Co., Ltd. Shenzhen Branch

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2.11 LTE Band 43

3700-3800MHz:
Test Item Effective (Isotropic) Radiated Power Output
Data Peak-Average
Ratio
Bandwidth

FCC Rule No.
§2.1046, §27.50(j)(3)
§27.50(j)(4) §2.1049

Band Edges Compliance

§2.1051, §27.53(l)(2)

Spurious Emission at
Antenna Terminals Field Strength of Spurious Radiation
Frequency Stability

§2.1051, §27.53(l)(2)
§2.1053, §27.53(l)(2)
§2.1055(a)(1)(b) §2.1055(d)(1) §27.54

Requirements EIRP  1W

Test Result Verdict Pass

13 dB
OBW: No limit. EBW: No limit. (2) For mobile operations in the 3700-3980 MHz band, the conducted power of any emission outside the licensee's authorized bandwidth shall not exceed -13 dBm/MHz. Compliance with this paragraph (l)(2) is based on the use of measurement instrumentation employing a resolution bandwidth of 1 megahertz or greater. However, in the 1 megahertz bands immediately outside and adjacent to the licensee's frequency block, the minimum resolution bandwidth for the measurement shall be either one percent of the emission bandwidth of the fundamental emission of the transmitter or 350 kHz. In the bands between 1 and 5 MHz removed from the licensee's frequency block, the minimum resolution bandwidth for the measurement shall be 500 kHz.

Appendix B.24 &C.1

Pass Pass
Pass

not exceed -13 dBm/MHz.

Pass

not exceed -13 dBm/MHz
Within authorized bands of operation/frequency block.

Pass Pass

SGS-CSTC Standards Technical Services Co., Ltd. Shenzhen Branch

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2.12 LTE Band 71

Test Item Effective (Isotropic) Radiated Power Output Data Peak-Average
Ratio

FCC Rule No. §2.1046
§27.50(c)(10)
---

Bandwidth

§2.1049

Band Edges Compliance
Spurious Emission at
Antenna Terminals Field Strength of Spurious Radiation
Frequency Stability

§2.1051, §27.53(g)
§2.1051, §27.53(g)
§2.1053, §27.53(g)
§2.1055(a)(1)(b) §2.1055(d)(2) §27.54

Requirements
ERP  3 W
Limit13 dB OBW: No limit. EBW: No limit.  43+10log10(P[Watts])
 43+10log10(P[Watts])

Test Result

Verdict Pass

Appendix B.30 &C.1

Pass Pass Pass
Pass

 -13 dBm/1 MHz.
within the authorized bands of operation.

Pass Pass

SGS-CSTC Standards Technical Services Co., Ltd. Shenzhen Branch

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2.13 LTE Band 42/43/48/ LTE CA_48C

3550-3700MHz:

Test Item

FCC Rule No.

Effective (Isotropic) Radiated Power Output
Data

§2.1046, §96.41

Peak-Average Ratio

§96.41

Bandwidth

§2.1049

Adjacent Channel Leakage Ratio

§96.41

Band Edges Compliance

§2.1051, §96.41

Spurious Emission at
Antenna Terminals

§2.1051, §96.41

Requirements
EIRP  23dBm/10MHz
FCC: Limit13 dB
OBW: No limit. EBW: No limit.
the Adjacent Channel Leakage Ratio for End User Devices shall be at least 30 dB.
for channel and frequency assignments made by a CBSD to End User Devices, the conducted power of any End User Device emission outside the fundamental emission (whether in or outside
of the authorized band) shall not exceed -13 dBm/MHz within 0 to B megahertz (where B is
the bandwidth in megahertz of the assigned channel or multiple contiguous channels of the
End User Device) above the upper CBSDassigned channel edge and within 0 to B megahertz below the lower CBSD-assigned
channel edge. for channel and frequency assignments made by a CBSD to End User Devices, the conducted power of any End User Device emission outside the fundamental emission (whether in or outside of the authorized band) shall not exceed -13 dBm/MHz within 0 to B megahertz (where B is the bandwidth in megahertz of the assigned channel or multiple contiguous channels of the
End User Device) above the upper CBSDassigned channel edge and within 0 to B megahertz below the lower CBSD-assigned channel edge. At all frequencies greater than B megahertz above the upper CBSD assigned channel edge and less than B megahertz below the lower CBSD-assigned channel edge, the conducted power of any End User Device emission shall not exceed -25 dBm/MHz. (2) Additional protection levels. Notwithstanding paragraph (e)(1) of this section, for CBSDs and End User Devices, the conducted power of

Test Result
Appendix B.22&B.23 &B.25&B.26
&C.1

Verdict Pass Pass Pass Pass
Pass
Pass

SGS-CSTC Standards Technical Services Co., Ltd. Shenzhen Branch

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Report No.: SZCR241000381008

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Field Strength of Spurious Radiation
Frequency Stability

§2.1053, §96.41
§2.1055, §96.41

emissions below 3540 MHz or above 3710 MHz shall not exceed -25 dBm/MHz, and the
conducted power of emissions below 3530 MHz or above 3720 MHz shall not exceed -40dBm/MHz.
for channel and frequency assignments made by a CBSD to End User Devices, the conducted power of any End User Device emission outside the fundamental emission (whether in or outside
of the authorized band) shall not exceed -13 dBm/MHz within 0 to B megahertz (where B is
the bandwidth in megahertz of the assigned channel or multiple contiguous channels of the
End User Device) above the upper CBSDassigned channel edge and within 0 to B megahertz below the lower CBSD-assigned channel edge. At all frequencies greater than B megahertz above the upper CBSD assigned channel edge and less than B megahertz below the lower CBSD-assigned channel edge, the conducted power of any End User Device emission shall not exceed -25 dBm/MHz. (2) Additional protection levels. Notwithstanding paragraph (e)(1) of this section, for CBSDs and End User Devices, the conducted power of emissions below 3540 MHz or above 3710 MHz shall not exceed -25 dBm/MHz, and the conducted power of emissions below 3530 MHz
or above 3720 MHz shall not exceed -40dBm/MHz.
Within authorized bands of operation/ frequency block.

Pass Pass

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3 General Information

3.1 Details of Client

Applicant: Address of Applicant: Manufacturer: Address of Manufacturer:

Sonim Technologies, Inc. 4445 Eastgate Mall, Suite 200, San Diego, CA 92121, USA Sonim Technologies, Inc. 4445 Eastgate Mall, Suite 200, San Diego, CA 92121, USA

3.2 Test Location
Company: Address: Post code:

SGS-CSTC Standards Technical Services Co., Ltd. Shenzhen Branch No. 1 Workshop, M-10, Middle section, Science & Technology Park, Nanshan District, Shenzhen, Guangdong, China
518057

3.3 Test Facility
The test facility is recognized, certified, or accredited by the following organizations:
· A2LA (Certificate No. 3816.01) SGS-CSTC Standards Technical Services Co., Ltd., Shenzhen EMC Laboratory is accredited by the American Association for Laboratory Accreditation(A2LA). Certificate No. 3816.01. · VCCI (Member No. 1937) The 3m Fully-anechoic chamber for above 1GHz, 10m Semi-anechoic chamber for below 1GHz, Shielded Room for Mains Port Conducted Interference Measurement and Telecommunication Port Conducted Interference Measurement of SGS-CSTC Standards Technical Services Co., Ltd. Shenzhen EMC laboratory have been registered in accordance with the Regulations for Voluntary Control Measures with Registration No.: G-20026, R-14188, C-12383 and T-11153 respectively. · FCC ­Designation Number: CN1336 SGS-CSTC Standards Technical Services Co., Ltd., Shenzhen EMC Laboratory has been recognized as an accredited testing laboratory. Designation Number: CN1336. Test Firm Registration Number: 787754. · Innovation, Science and Economic Development Canada SGS-CSTC Standards Technical Services Co., Ltd., Shenzhen EMC Laboratory has been recognized by ISED as an accredited testing laboratory. CAB identifier: CN0006. IC#: 4620C.

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3.4 General Description of EUT

EUT Description: Model No.: Trade Mark:

smartphone X800 Sonim

Hardware Version:

V1.0

Software Version: Power Supply:
IMEI: Antenna Type:

X80.0-01-14.0-19.40.01

DC3.87V by Li-ion battery(5000mAh) Recharged by AC/DC power adapter Adapter M/N:1-CHUSQ302-097 Adapter Manufacturer: HUIZHOU PUAN ELEOTRONICS CO.,LTD Adapter output: 5V/3A,9V/2A,12V/1.5A Battery M/N:BAT-05000-21S Battery Manufacturer: Shenzhen Aerospace Electronic Co.,Ltd.

RF Conducted

016582000009794 016582000009802

RSE

016582000013234 016582000013242

PIFA Antenna

GSM850:

-3.0dBi(ANT1)

GSM1900:

-0.5dBi(ANT2)

WCDMA Band II: -0.5dBi(ANT2)

WCDMA Band IV: -1.8dBi(ANT2)

Antenna Gain:

WCDMA Band V: LTE Band 2:

-3.0dBi(ANT1)
-0.5dBi(ANT2) 0.6dBi(ANT5)

LTE Band 5:

-3.0dBi(ANT1)

LTE Band 12:

-1.8dBi(ANT1)

LTE Band 14:

-5.0dBi(ANT1)

LTE Band 26: LTE Band 38: LTE Band 42: LTE Band 48: LTE Band 71:

-3.0dBi(ANT1)
-1.1dBi(ANT2) 0dBi(ANT5) -0.7dBi(ANT3) 0.8dBi(ANT7) -0.7dBi(ANT3) 0.8dBi(ANT7)
-4.2dBi(ANT1)

LTE Band 4: LTE Band 7: LTE Band 13: LTE Band 25: LTE Band 30: LTE Band 41: LTE Band 43: LTE Band 66:

-1.8dBi(ANT2) 0dBi(ANT5) -1.3dBi(ANT2) 0dBi(ANT5)
-4.7dBi(ANT1)
-0.5dBi(ANT2) 0.6dBi(ANT5)
-1.9dBi(ANT2)
-1.1dBi(ANT2) 0dBi(ANT5) -0.7dBi(ANT3) 0.8dBi(ANT7) -1.8dBi(ANT2) 0dBi(ANT5)

Note:

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The antenna gain are derived from the gain information report provided by the manufacturer.

Provided by client

RF Cable*:

0.5dB(0.6~1GHz)

0.8dB(1.4~2GHz)

1.0dB(2.1~2.7GHz)

1.5dB(3~4GHz)

1.8dB(4.4~6GHz)

Note:

*Since the above data and/or information is provided by the client relevant results or conclusions of this report are only made for these data and/or information , SGS is not responsible for the authenticity, integrity and results of the data and information and/or the validity of the conclusion.

Remark:

As above information is provided and confirmed by the applicant. SGS is not liable to the accuracy, suitability, reliability or/and integrity of the information.

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3.5 Test Mode

Test Mode GSM/TM1 GSM/TM2 UMTS/TM1

Test Modes Description GSM system, GSM/GPRS, GMSK modulation GSM system, EGPRS, 8PSK modulation UMTS system, WCDMA, QPSK modulation

LTE/TM1

LTE system, QPSK modulation

LTE/TM2

LTE system, 16QAM modulation

LTE/TM3

LTE system, 64QAM modulation

LTE/TM4

LTE system, 256QAM modulation

Remark: The test mode(s) are selected according to relevant radio technology specifications.

3.6 Test Environment

Environment Parameter Relative Humidity Value NTNV LTLV

101.0 kPa Selected Values During Tests

45-56 % RH Ambient

Temperature()

Voltage(V)

22~25

3.87

-30

3.65

LTHV HTLV HTHV Remark: NV: Normal Voltage NT: Normal Temperature

-30 50 50
LV: Low Extreme Test Voltage LT: Low Extreme Test Temperature

4.45 3.65 4.45
HV: High Extreme Test Voltage HT: High Extreme Test Temperature

3.7 Description of Support Units
The EUT has been tested as an independent unit.

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3.8 Technical Specification

Characteristics

Description

Radio System Type

GSM

UMTS

LTE

Band

TX

GSM850

824 to 849 MHz

GSM1900

1850 to 1910 MHz

UMTS Band II

1850 to 1910 MHz

UMTS Band IV

1710 to 1755 MHz

UMTS Band V

824 to 849 MHz

LTE Band 2

1850 to 1910 MHz

LTE Band 4

1710 to 1755 MHz

LTE Band 5

824 to 849 MHz

LTE Band 7

2500 to 2570 MHz

LTE Band 12

699 to 716 MHz

LTE Band 13

777 to 787 MHz

LTE Band 14

788 to 798 MHz

Supported Frequency Range

LTE Band 25 LTE Band 26 (814 to 824 MHz )

1850 to 1915MHz 814 to 824MHz

LTE Band 26 (824 to 849 MHz )

824 to 849 MHz

LTE Band 30

2305 to 2315 MHz

LTE Band 38

2570 to 2620 MHz

LTE Band 41/41C

2496 to 2690MHz

LTE Band 42

3450 to 3550 MHz

LTE Band 42

3550 to 3600 MHz

LTE Band 43

3600 to 3700 MHz

LTE Band 43

3700 to 3800 MHz

LTE Band 48/48C

3550 to 3700 MHz

LTE Band 66/66B/66C

1710 to 1780 MHz

LTE Band 71

663 to 698 MHz

Supported Channel Bandwidth GSM system:

0.2 MHz

RX 869 to 894 MHz 1930 to 1990 MHz 1930 to 1990 MHz 2110 to 2155 MHz 869 to 894 MHz 1930 to 1990 MHz 2110 to 2155 MHz 869 to 894 MHz 2620 to 2690 MHz 729 to 746 MHz 746 to 756 MHz 758 to 768 MHz 1930 to 1995 MHz
859 to 869 MHz
869 to 894 MHz
2350 to 2360 MHz 2570 to 2620 MHz 2496 to 2690MHz 3450 to 3550 MHz 3550 to 3600 MHz 3600 to 3700 MHz 3700 to 3800 MHz 3550 to 3700 MHz 2110 to 2200 MHz 617 to 652 MHz

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UMTS system: LTE Band 2
LTE Band 4 LTE Band 5 LTE Band 7 LTE Band 12 LTE Band 13 LTE Band 14 LTE Band 25 LTE Band 26(814-824) LTE Band 26(824-849) LTE Band30 LTE Band38 LTE Band41 LTE Band42 LTE Band43 LTE Band48 LTE Band66 LTE Band71
LTE Band CA_41C
LTE Band CA_48C

5 MHz

1.4 MHz 3 MHz

15 MHz 20 MHz

1.4 MHz 3 MHz

15 MHz 20 MHz

1.4 MHz 3 MHz

5 MHz

10 MHz

1.4 MHz 3 MHz

5 MHz

10 MHz

5 MHz

10 MHz

1.4 MHz 3 MHz

15 MHz 20 MHz

1.4 MHz 3 MHz

1.4 MHz 3 MHz

15 MHz

5 MHz

10 MHz

5 MHz

10 MHz

5 MHz

10 MHz

5 MHz

10 MHz

5 MHz

10 MHz

5 MHz

10 MHz

1.4 MHz 3 MHz

15MHz 20MHz

5MHz

10MHz

5MHz+20MHz

10MHz+20MHz

15MHz+15MHz

20MHz+5MHz

20MHz+15MHz

5MHz+20MHz

20MHz+20MHz

20MHz+5MHz

20MHz+15MHz

5 MHz

10 MHz

5 MHz

10 MHz

5 MHz 15 MHz 5 MHz

10 MHz 20 MHz 10 MHz

5 MHz

10 MHz

5 MHz 5 MHz

10 MHz 10 MHz

15 MHz 15 MHz 15 MHz 15 MHz 15 MHz 5 MHz

20 MHz 20 MHz 20 MHz 20 MHz 20 MHz 10 MHz

15MHz 20MHz 10MHz+15MHz 15MHz+10MHz 15MHz+20MHz 20MHz+10MHz 20MHz+20MHz 10MHz+20MHz 15MHz+20MHz 20MHz+10MHz

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LTE Band CA_66B LTE Band CA_66C

5MHz+5MHz 5MHz+15MHz 10MHz+10MHz 5MHz+20MHz 10MHz+20MHz 15MHz+15MHz 20MHz+5MHz 20MHz+15MHz

5MHz+10MHz 10MHz+5MHz 15MHz+5MHz 10MHz+15MHz 15MHz+10MHz 15MHz+20MHz 20MHz+10MHz 20MHz+20MHz

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3.9 Test Frequencies

Test Mode

TX / RX

TX GSM850
RX

Test Mode GSM1900

TX / RX TX RX

Test Mode WCDMA Band II

TX / RX TX RX

Test Mode WCDMA Band IV

TX / RX TX RX

Test Mode WCDMA Band V

TX / RX TX RX

Low (L) Channel 128
824.2MHz Channel 128 869.2 MHz
Low (L) Channel 512 1850.2MHz Channel 512 1930.2 MHz
Low (L) Channel 9262 1852.4 MHz Channel 9662 1932.4 MHz
Low (L) Channel 1312
1712.4MHz Channel 1537 2112.4 MHz
Low (L) Channel 4132
826.4MHz Channel 4357
871.4 MHz

RF Channel Middle (M) Channel 190 836.6 MHz Channel 190 881.6 MHz
RF Channel Middle (M) Channel 661 1880.0 MHz Channel 661 1960.0 MHz
RF Channel Middle (M) Channel 9400 1880.0 MHz Channel 9800 1960.0 MHz
RF Channel Middle (M) Channel 1413 1732.6 MHz Channel 1638 2132.6 MHz
RF Channel Middle (M) Channel 4182 836.4 MHz Channel 4407 881.4 MHz

High (H) Channel 251 848.8 MHz Channel 251 893.8 MHz
High (H) Channel 810 1909.8 MHz Channel 810 1989.8 MHz
High (H) Channel 9538 1907.6 MHz Channel 9938 1987.6 MHz
High (H) Channel 1513 1752.6 MHz Channel 1738 2152.6 MHz
High (H) Channel 4233
846.6 MHz Channel 4458
891.6 MHz

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Test Mode

Bandwidth 1.4MHz

3MHz

LTE Band 2

5MHz 10MHz

15MHz

20MHz

TX / RX TX RX TX RX TX RX TX RX TX RX TX RX

Low (L) Channel 18607
1850.7 MHz Channel 607 1930.7 MHz Channel 18615 1851.5 MHz Channel 615 1931.5 MHz Channel 18625 1852.5 MHz Channel 625 1932.5 MHz Channel 18650
1855 MHz Channel 650
1935 MHz Channel 18675
1857.5 MHz Channel 675 1937.5 MHz Channel 18700
1860 MHz Channel 700
1940 MHz

RF Channel Middle (M) Channel 18900 1880 MHz Channel 900 1960 MHz Channel 18900 1880 MHz Channel 900 1960 MHz Channel 18900 1880 MHz Channel 900 1960 MHz Channel 18900 1880 MHz Channel 900 1960 MHz Channel 18900 1880 MHz Channel 900 1960 MHz Channel 18900 1880 MHz Channel 900 1960 MHz

High (H) Channel 19193
1909.3 MHz Channel 1193 1989.3 MHz Channel 19185 1908.5 MHz Channel 1185 1988.5 MHz Channel 19175 1907.5 MHz Channel1175 1987.5 MHz Channel 19150
1905 MHz Channel 1150
1985 MHz Channel 19125
1902.5 MHz Channel 1125 1982.5 MHz Channel 19100
1900 MHz Channel 1100
1980 MHz

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Test Mode

Bandwidth 1.4MHz

3MHz

LTE Band 4

5MHz 10MHz

15MHz

20MHz

TX / RX TX RX TX RX
TX RX TX RX TX RX
TX RX

Low (L) Channel 19957
1710.7 MHz Channel 1975 2112.5 MHz Channel 19965 1711.5 MHz Channel 2000
2115 MHz Channel 19975
1712.5 MHz
Channel 1975 2112.5 MHz Channel 20000 1715 MHz Channel 2000 2115 MHz Channel 20025 1717.5 MHz
Channel 2025
2117.5 MHz Channel 20050
1720 MHz Channel 2050
2120 MHz

RF Channel Middle (M) Channel 20175 1732.5 MHz Channel 2175 2132.5MHz Channel 20175 1732.5 MHz Channel 2175 2132.5MHz Channel 20175
1732.5 MHz
Channel 2175 2132.5MHz
Channel 20175 1732.5 MHz Channel 2175 2132.5MHz
Channel 20175 1732.5 MHz
Channel 2175
2132.5MHz Channel 20175
1732.5 MHz Channel 2175
2132.5MHz

High (H) Channel 20393
1754.3 MHz Channel 2375 2152.5 MHz Channel 20385 1753.5 MHz Channel 2350
2150 MHz Channel 20375
1752.5 MHz
Channel 2375 2152.5 MHz Channel 20350 1750 MHz Channel 2350 2150 MHz Channel 20325 1747.5 MHz
Channel 2325
2147.5 MHz Channel 20300
1745 MHz Channel 2300
2145 MHz

Test Mode

Bandwidth 1.4MHz

LTE Band 5

3MHz 5MHz

10MHz

TX / RX TX RX TX RX
TX RX TX RX

Low (L) Channel 20407
824.7 MHz Channel 2407
869.7 MHz Channel 20415
825.5 MHz Channel 2415
870.5 MHz Channel 20425
826.5 MHz
Channel 2425 871.5 MHz
Channel 20450 829 MHz
Channel 2450 874 MHz

RF Channel Middle (M) Channel 20525 836.5 MHz Channel 2525 881.5 MHz Channel 20525 836.5 MHz Channel 2525 881.5 MHz Channel 20525
836.5 MHz
Channel 2525 881.5 MHz
Channel 20525 836.5 MHz
Channel 2525 881.5 MHz

High (H) Channel 20643
848.3 MHz Channel 2643
893.3 MHz Channel 20635
847.5 MHz Channel 2635
892.5 MHz Channel 20625
846.5 MHz
Channel 2625 891.5 MHz
Channel 20600 844 MHz
Channel 2600 889 MHz

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Test Mode

Bandwidth 5MHz

LTE Band 7

10MHz 15MHz

20MHz

TX / RX TX RX TX RX
TX RX TX RX

Low (L) Channel 20775
2502.5 MHz Channel 2775 2622.5 MHz Channel 20800
2505 MHz Channel 2800
2625 MHz Channel 20825
2507.5 MHz
Channel 2825 2627.5 MHz Channel 20850 2510 MHz Channel 2850 2630 MHz

RF Channel Middle (M) Channel 21100 2535 MHz Channel 3100 2655 MHz Channel 21100 2535 MHz Channel 3100 2655 MHz Channel 21100
2535 MHz
Channel 3100 2655 MHz
Channel 21100 2535 MHz
Channel 3100 2655 MHz

High (H) Channel 21425
2567.5 MHz Channel 5825 2687.5 MHz Channel 21400
2565 MHz Channel 3400
2685 MHz Channel 21375
2562.5 MHz
Channel 3375 2682.5 MHz Channel 21350 2560 MHz Channel 3350 2680 MHz

Test Mode

Bandwidth 1.4MHz

LTE Band 12

3MHz 5MHz

10MHz

TX / RX TX RX TX RX
TX RX TX RX

Low (L) Channel 23017
699.7 MHz Channel 5017
729.7 MHz Channel 23025
700.5 MHz Channel 5025
730.5 MHz Channel 23035
701.5 MHz
Channel 5035 731.5 MHz
Channel 23060 704 MHz
Channel 5060 734 MHz

RF Channel Middle (M) Channel 23095 707.5 MHz Channel 5095 737.5 MHz Channel 23095 707.5 MHz Channel 5095 737.5 MHz Channel 23095
707.5 MHz
Channel 5095 737.5 MHz
Channel 23095 707.5 MHz
Channel 5095 737.5 MHz

High (H) Channel 23173
715.3 MHz Channel 5173
745.3 MHz Channel 23165
714.5 MHz Channel 5165
744.5 MHz Channel 23155
713.5 MHz
Channel 5155 743.5 MHz
Channel 23130 711 MHz
Channel 5130 741 MHz

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Test Mode

Bandwidth

LTE Band 13

5MHz 10MHz

Test Mode

Bandwidth

LTE Band 14

5MHz 10MHz

Test Mode

Bandwidth 1.4MHz

3MHz

LTE Band 25

5MHz 10MHz

15MHz

20MHz

TX / RX TX RX TX RX
TX / RX TX RX TX RX
TX / RX TX RX TX RX TX RX TX RX TX RX
TX RX

Low (L) Channel 23025
779.5 MHz Channel 5205
748.5 MHz Channel 23230
782 MHz Channel 5230
751 MHz

RF Channel Middle (M) Channel 23230 782 MHz Channel 5230 751 MHz Channel 23230 782 MHz Channel 5230 751 MHz

High (H) Channel 23255
784.5 MHz Channel 5255
753.5 MHz Channel 23230
782 MHz Channel 5230
751 MHz

Low (L) Channel 23305
790.5 MHz Channel 5305
760.5 MHz Channel 23330
793MHz Channel 5330
763MHz

RF Channel Middle (M) Channel 23330 793 MHz Channel 5330 763 MHz Channel 23330 793 MHz Channel 5330 763 MHz

High (H) Channel 23355
795.5 MHz Channel 5355
765.5 MHz Channel 23330
793 MHz Channel 5330
763 MHz

Low (L) Channel 26047
1850.7 MHz Channel 8047 1930.7 MHz Channel 26055 1851.5 MHz Channel 8055 1931.5 MHz Channel 26065
1852.5 MHz
Channel 8065 1932.5 MHz Channel 26090 1855 MHz Channel 8090 1935 MHz Channel 26115 1857.5 MHz
Channel 8115
1937.5 MHz Channel 26140
1860 MHz Channel 8140
1940 MHz

RF Channel Middle (M) Channel 26365 1882.5 MHz Channel 8365 1962.5 MHz Channel 26365 1882.5 MHz Channel 8365 1962.5 MHz Channel 26365
1882.5 MHz
Channel 8365 1962.5 MHz Channel 26365 1882.5 MHz Channel 8365 1962.5 MHz Channel 26365 1882.5 MHz
Channel 8365
1962.5 MHz Channel 26365
1882.5 MHz Channel 8365 1962.5 MHz

High (H) Channel 26683
1914.3 MHz Channel 8683 1994.3 MHz Channel 26675 1913.5 MHz Channel 8675 1993.5 MHz Channel 26665
1912.5 MHz
Channel 8665 1992.5 MHz Channel 26640 1910 MHz Channel 8640 1990 MHz Channel 26615 1907.5 MHz
Channel 8615
1987.5 MHz Channel 26590
1905 MHz Channel 8590
1985 MHz

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Test Mode

Bandwidth 1.4MHz

LTE Band 26 (814-824)

3MHz 5MHz

10MHz

TX / RX TX RX TX RX
TX RX TX RX

Low (L) Channel 26697
814.7 MHz Channel 8697
859.7 MHz Channel 26705
815.5 MHz Channel 8705
860.5 MHz Channel 26715
816.5 MHz
Channel 8715 861.5 MHz
Channel 26740 819 MHz
Channel 8740 864MHz

RF Channel Middle (M) Channel 26740 819 MHz Channel 8740
864MHz Channel 26740
819 MHz Channel 8740
864MHz Channel 26740
819 MHz
Channel 8740 864MHz
Channel 26740 819 MHz
Channel 8740 864MHz

High (H) Channel 26783
823.3 MHz Channel 8783
868.3 MHz Channel 26775
822.5 MHz Channel 8775
867.5 MHz Channel 26765
821.5 MHz
Channel 8755 866.5 MHz
Channel 26740 819 MHz
Channel 8740 864MHz

Test Mode

Bandwidth 1.4MHz

LTE Band26 (824-849)

3MHz 5MHz

10MHz

TX / RX TX RX TX RX
TX RX TX RX

Low (L) Channel 26797
824.7 MHz Channel 8697
859.7 MHz Channel 26805
825.5 MHz Channel 8805
860.5 MHz Channel 26815
826.5 MHz
Channel 8815 871.5 MHz
Channel 26840 829 MHz
Channel 8840 874 MHz

RF Channel Middle (M) Channel 26915 836.5 MHz Channel 8915 881.5 MHz Channel 26915 836.5 MHz Channel 8915 881.5 MHz Channel 26915
836.5 MHz
Channel 8915 881.5 MHz
Channel 26915 836.5 MHz
Channel 8915 881.5 MHz

High (H) Channel 27033
848.3 MHz Channel 9033
893.3 MHz Channel 27025
847.5 MHz Channel 9025
892.5 MHz Channel 27015
846.5 MHz
Channel 9015 891.5 MHz
Channel 26990 844 MHz
Channel 8990 889 MHz

Test Mode
LTE Band26 (814-849)

Bandwidth 15MHz

TX / RX TX RX

Low (L) Channel 26765
821.5 MHz Channel 8765
866.5 MHz

RF Channel Middle (M) Channel 26865 831.5 MHz Channel 8865 876.5 MHz

High (H) Channel 26965
841.5 MHz Channel 8965
886.5 MHz

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Test Mode

Bandwidth

LTE Band 30

5MHz 10MHz

TX / RX TX RX TX RX

Low (L) Channel 27685
2307.5 MHz Channel 9795
2352.5MHz Channel 27710
2310 MHz Channel 9820
2355 MHz

RF Channel Middle (M) Channel27710 2310MHz Channel 9820 2355 MHz Channel27710 2310MHz Channel 9820 2355 MHz

High (H) Channel 27735
2312.5 MHz Channel 9845
2357.5MHz Channel27710
2310MHz Channel 9820
2355 MHz

Test Mode LTE Band 38

Bandwidth 5MHz 10MHz 15MHz 20MHz

TX / RX TX/RX TX/RX TX/RX TX/RX

Low (L) Channel 37775
2572.5 MHz Channel 37800
2575 MHz Channel 37825
2577.5 MHz Channel 37850
2580 MHz

RF Channel Middle (M) Channel38000 2595 MHz Channel38000 2595 MHz Channel38000 2595 MHz Channel38000 2595 MHz

High (H) Channel 38225
2617.5 MHz Channel 38200
2615 MHz Channel 38175
2612.5 MHz Channel 38150
2610 MHz

Test Mode
LTE Band 41 (2496-2690)

Bandwidth 5MHz 10MHz 15MHz 20MHz

TX / RX TX / RX TX / RX TX / RX TX / RX

Low (L) Channel 39675
2498.5 MHz Channel 39700
2501 MHz Channel 39725
2503.5 MHz
Channel 39750 2506 MHz

RF Channel Middle (M) Channel40620 2593 MHz Channel40620 2593 MHz Channel40620 2593 MHz
Channel40620 2593 MHz

High (H) Channel 41565
2687.5 MHz Channel 41540
2685 MHz Channel 41515
2682.5 MHz
Channel 41490 2680 MHz

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Test Mode

Bandwidth

5MHz

LTE Band 42 (3450-3550)

10MHz 15MHz

20MHz

TX / RX TX RX TX RX
TX RX TX RX

Low (L) Channel 42115
3452.5 MHz Channel 42115
3452.5 MHz Channel 42140
3455 MHz Channel 42140
3455 MHz Channel 42165
3457.5 MHz
Channel 42165 3457.5 MHz
Channel 42190 3460 MHz
Channel 42190 3460 MHz

RF Channel Middle (M) Channel 42590 3500 MHz Channel 42590 3500 MHz Channel 42590 3500 MHz Channel 42590 3500 MHz Channel 42590
3500 MHz
Channel 42590 3500 MHz
Channel 42590 3500 MHz
Channel 42590 3500 MHz

High (H) Channel 43065
3547.5 MHz Channel 43065
3547.5 MHz Channel 43040
3545 MHz Channel 43040
3545 MHz Channel 43015
3542.5 MHz
Channel 43015 3542.5 MHz
Channel 42990 3540 MHz
Channel 42990 3540 MHz

Test Mode

Bandwidth 5MHz

LTE Band 42 (3550-3600)

10MHz 15MHz

20MHz

TX / RX TX RX TX RX
TX RX TX RX

Low (L) Channel 40115
3552.5 MHz Channel 40115
3552.5 MHz Channel 43140
3555 MHz Channel 43140
3555 MHz Channel 43165
3557.5 MHz
Channel 43165 3557.5 MHz
Channel 43190 3560 MHz
Channel 43190 3560 MHz

RF Channel Middle (M) Channel 43340 3575 MHz Channel 43340 3575 MHz Channel 43340 3575 MHz Channel 43340 3575 MHz Channel 43340
3575 MHz
Channel 43340 3575 MHz
Channel 43340 3575 MHz
Channel 43340 3575 MHz

High (H) Channel 43565
3597.5 MHz Channel 43565
3597.5 MHz Channel 43540
3595 MHz Channel 43540
3595 MHz Channel 43515
3592.5 MHz
Channel 43515 3592.5 MHz
Channel 43490 3590 MHz
Channel 43490 3590 MHz

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Test Mode
LTE Band 43 (3600-3700)

Bandwidth 5MHz 10MHz 15MHz 20MHz

TX / RX TX/RX TX/RX TX/RX TX/RX

Low (L) Channel 43615
3602.5 MHz
Channel 43640 3605.0 MHz
Channel 43665 3607.5 MHz
Channel 43690 3610 MHz

RF Channel Middle (M) Channel44090 3650.0 MHz
Channel44090 3650.0 MHz
Channel44090 3650.0 MHz
Channel44090 3650.0 MHz

High (H) Channel 44565
3697.5 MHz
Channel 44540 3695.0 MHz
Channel 44515 3692.5 MHz
Channel 44490 3690.0 MHz

Test Mode
LTE Band 43 (3700-3800)

Bandwidth 5MHz

TX / RX TX/RX

10MHz

TX/RX

15MHz

TX/RX

20MHz

TX/RX

Low (L) Channel 44615
3702.5 MHz
Channel 44640 3705.0 MHz
Channel 44665 3707.5 MHz
Channel 44690 3710 MHz

RF Channel Middle (M) Channel45090 3750.0 MHz
Channel45090 3750.0 MHz
Channel45090 3750.0 MHz
Channel45090 3750.0 MHz

High (H) Channel 45565
3797.5 MHz
Channel 45540 3795.0 MHz
Channel 45515 3792.5 MHz
Channel 45490 3790.0 MHz

Test Mode LTE Band 48

Bandwidth 5MHz 10MHz 15MHz 20MHz

TX / RX TX/RX TX/RX TX/RX TX/RX

Low (L) Channel 55265
3552.5 MHz
Channel 55290 3555.0 MHz
Channel 55315 3557.5 MHz
Channel 55340 3560.0 MHz

RF Channel Middle (M) Channel55990 3625.0 MHz
Channel55990 3625.0 MHz
Channel55990 3625.0 MHz
Channel55990 3625.0 MHz

High (H) Channel 56715
3697.5 MHz
Channel 56690 3695.0 MHz
Channel 56665 3692.5 MHz
Channel 56640 3690.0 MHz

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Test Mode

Bandwidth 1.4MHz

3MHz

LTE Band66

5MHz 10MHz

15MHz

20MHz

TX / RX TX RX TX RX
TX RX TX RX TX RX
TX RX

Low (L) Channel 131979
1710.7 MHz Channel 66443
2110.7 MHz Channel 131987
1711.5 MHz Channel 66451
2111.5 MHz Channel 131997
1712.5 MHz
Channel 66461 2112.5 MHz
Channel 132022 1715 MHz
Channel 66486 2115 MHz
Channel 132047 1717.5 MHz
Channel 66511
2117.5 MHz Channel 132072
1720 MHz Channel 66536
2120 MHz

RF Channel Middle (M)
Channel 132322 1745 MHz
Channel 66786 2145MHz
Channel 132322 1745 MHz
Channel 66786 2145MHz
Channel 132322
1745 MHz
Channel 66786 2145MHz
Channel 132322 1745 MHz
Channel 66786 2145MHz
Channel 132322 1745 MHz
Channel 66786
2145MHz Channel 132322
1745 MHz Channel 66786
2145MHz

High (H) Channel 132665
1779.3 MHz Channel 67329
2199.3 MHz Channel 132657
1778.5MHz Channel 67321
2198.5MHz Channel 132647
1777.5 MHz
Channel 67311 2197.5 MHz
Channel 132622 1775 MHz
Channel 67286 2195 MHz
Channel 132597 1772.5 MHz
Channel 67261
2192.5 MHz Channel 132572
1770 MHz Channel 67236
2190 MHz

Test Mode LTE Band71

Bandwidth 5MHz 10MHz 15MHz 20MHz

TX / RX TX RX TX RX
TX RX TX RX

Low (L) Channel 133147
665.5 MHz Channel 68611
619.5 MHz Channel 133172
668 MHz Channel 68636
622 MHz Channel 133197
670.5 MHz
Channel 68661 624.5 MHz
Channel 133222 673 MHz
Channel 68686 627 MHz

RF Channel Middle (M)
Channel 133297 680.5 MHz
Channel 68761 634.5 MHz
Channel 133297 680.5 MHz
Channel 68761 634.5 MHz
Channel 133297
680.5 MHz
Channel 68761 634.5 MHz
Channel 133297 680.5 MHz
Channel 68761 634.5 MHz

High (H) Channel 133447
695.5 MHz Channel 68911
649.5 MHz Channel 133422
693 MHz Channel 68886
647 MHz Channel 133397
690.5 MHz
Channel 68861 644.5 MHz
Channel 133372 688 MHz
Channel 68836 642 MHz

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LTE CA_41C:

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LTE CA_48C:

Range

CC-Combo / NRB_agg [RB]

BW [RB]

CC1 Note1
NUL/DL

25+100

25 55273 100 55340

50 55295

50+100

Low

100 55340

75+100

75 55318 100 55340

100+100

100 55340

25+100

25 55898 100 55965

50 55896

50+100

Mid

100 55941

75+100

75 55893 100 55916

100+100

100 55891

25+100

25 56523 100 56590

High

50+100

50 56496 100 56541

75+100

75 56469 100 56491

100+100

100 56442

Note 1: Carriers in increasing frequency order.

fUL/DL [MHz] 3553.3 3560 3555.5 3560 3557.8 3560 3560 3615.8 3622.5 3615.6 3620.1 3615.3 3617.6 3615.1 3678.3 3685 3675.6 3680.1 3672.9 3675.1 3670.2

BW [RB] 100 25 100 50 100 75 100 100 25 100 50 100 75 100 100 25 100 50 100 75 100

CC2 Note1
NUL/DL
55390 55457 55439 55484 55489 55511 55538 56015 56082 56040 56085 56064 56087 56089 56640 56707 56640 56685 56640 56662 56640

fUL/DL [MHz] 3565 3571.7 3569.9 3574.4 3574.9 3577.1 3579.8 3627.5 3634.2 3630 3634.5 3632.4 3634.7 3634.9 3690 3696.7 3690 3694.5 3690 3692.2 3690

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LTE CA_66B:

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LTE CA_66C

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4 Description of Tests
4.1 Conducted Output Power
Measurement Procedure: FCC KDB 971168 D01 V03r01 Section 5.2.1 The transmitter output was connected to a calibrated coaxial cable, attenuator and power meter, the
other end of which was connected to a Base Station Simulator. The Base Station Simulator was set to force the EUT to its maximum power setting. The power output at the transmitter antenna port was determined by adding the value of the cable insertion loss to the power reading. The tests were performed at three frequencies (low channel, middle channel and high channel) and on the highest power levels, which can be setup on the transmitters. Remark: Reference test setup 1

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4.2 Effective (Isotropic) Radiated Power of Transmitter
Measurement Procedure: FCC KDB 971168 D01 V03r01 Section 5.8.4 Calculate power in dBm by the following formula: ERP (dBm) = Conducted Power (dBm) + antenna gain (dBd) EIRP(dBm) = Conducted Power (dBm) + antenna gain (dBi) EIRP=ERP+2.15dB

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4.3 EIRP Power Density
Measurement Procedure: FCC KDB 971168 D01 V03r01 Section 5.3
Test Settings
1. Set instrument center frequency to OBW center frequency. 2. Set span to at least 1.5 times the OBW. 3. Set the RBW to the specified reference bandwidth (often 1 MHz). 4. Set VBW  3 × RBW. 5. Detector = RMS (power averaging). 6. Ensure that the number of measurement points in the sweep  2 × span/RBW. 7. Sweep time = auto couple. 8. Employ trace averaging (RMS) mode over a minimum of 100 traces. 9. Use the peak marker function to determine the maximum amplitude level within the reference bandwidth (PSD).

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4.4 Occupied Bandwidth
Measurement Procedure: FCC KDB 971168 D01 V03r01 Section 4.2 & 4.3
The occupied bandwidth, that is the frequency bandwidth such that, below its lower and above its upper frequency limits, the mean powers radiated are each equal to 0.5 percent of the total mean power radiated by a given emission shall be measured. The transmitter output was connected to a calibrated coaxial cable, attenuator and Spectrum analyser, the other end of which was connected to a Base Station Simulator. The Base Station Simulator was set to force the EUT to its maximum power setting. The tests were performed at three frequencies (low channel, middle channel and high channel).The span of the analyzer shall be set to capture all products of the modulation process, including the emission skirts. The resolution bandwidth shall be set to as close to 1 percent of the selected span as is possible without being below 1 percent. The video bandwidth shall be set to 3 times the resolution bandwidth. Video averaging is not permitted. Where practical, a sampling detector shall be used since a peak or, peak hold, may produce a wider bandwidth than actual. The trace data points are recovered and are directly summed in linear terms. The recovered amplitude data points, beginning at the lowest frequency, are placed in a running sum until 0.5 percent of the total is reached and that frequency recorded. The process is repeated for the highest frequency data points. This frequency is recorded. The span between the two recorded frequencies is the occupied bandwidth.
Remark: Reference test setup 1

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4.5 Band Edge at Antenna Terminals
Measurement Procedure: FCC KDB 971168 D01 V03r01 Section 6.0 The transmitter output was connected to a calibrated coaxial cable, attenuator and Spectrum analyser,
the other end of which was connected to a Base Station Simulator. The Base Station Simulator was set to force the EUT to its maximum power setting. The tests were performed at two frequencies (low channel and high channel).in the 1MHz bands immediately outside and adjacent to the frequency block a resolution bandwidth of 100kHz or 1% of the emission bandwidth of the fundamental emission of the transmitter may be employed. The EUT emission bandwidth is measured as the width of the signal between two points, outside of which all emission are attenuated at least 26dB below the transmitter power. The video bandwidth of the spectrum analyzer was set at thrice the resolution bandwidth. Detector Mode was set to rms.
Remark: Reference test setup 1

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4.6 Spurious And Harmonic Emissions at Antenna Terminal
Measurement Procedure: FCC KDB 971168 D01 V03r01 Section 6.0 The transmitter output was connected to a calibrated coaxial cable, attenuator and Spectrum analyzer,
the other end of which was connected to a Base Station Simulator. The Base Station Simulator was set to force the EUT to its maximum power setting. The tests were performed at three frequencies (low channel and high channel).The level of the carrier and the various conducted spurious and harmonic frequencies is measured by means of a calibrated spectrum analyzer. The spectrum is scanned from the lowest frequency generated in the equipment up to a frequency including its 10th harmonic. On any frequency outside a licensee's frequency block, the power of any emission shall be attenuated below the transmitter power (P) by at least 43 + 10 log(P) dB. Compliance with these provisions is based on the use of measurement instrumentation employing a resolution bandwidth of 1 MHz or greater. However, in the 1 MHz bands immediately outside and adjacent to the frequency block a resolution bandwidth of at least one percent of the emission bandwidth of the fundamental emission of the transmitter may be employed. The emission bandwidth is defined as the width of the signal between two points, one below the carrier center frequency and one above the carrier center frequency, outside of which all emission are attenuated at least 26 dB below the transmitter power.
Remark: Reference test setup 1
Test Settings
1. Start frequency was set to 9kHz and stop frequency was set to at least 10* the fundamental
frequency(Separated into at least two plots per channel)
2. Detector = RMS
3. Trace mode = trace average for continuous emissinos, max hold for pulse emissions
4. Sweep time = auto couple
5. The trace was allowed to stabilize
6. Please see test notes below for RBW and VBW settings

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4.7 Peak-Average Ratio
Measurement Procedure: FCC KDB 971168 D01 V03r01 Section 5.7.2 A peak to average ratio measurement is performed at the conducted port of the EUT. For WCDMA
signals, the spectrum analyzers Complementary Cumulative Distribution Function (CCDF) measurement profile is used to determine the largest deviation between the average and the peak power of the EUT in a given bandwidth. The CCDF curve shows how much time the peak waveform spends at or above a given average power level. The percent of time the signal spends at or above the level defines the probability for that particular power level. For GSM signals, an average and a peak trace are used on a spectrum analyzer to determine the largest deviation between the average and the peak power of the EUT in a bandwidth greater than the emission bandwidth. The traces are generated with the spectrum analyzer set to zero span mode.
Remark: Reference test setup 1

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4.8 Field Strength of Spurious Radiation
Measurement Procedure: FCC KDB 971168 D01 V03r01 Section 5.8 Below 1GHz test procedure as below: 1). The EUT was powered ON and placed on a 80cm high table in the chamber. The antenna of the
transmitter was extended to its maximum length. 2). The disturbance of the transmitter was maximized on the test receiver display by raising and lowering
from 1m to 4m (for the test frequency of below 30MHz, the antenna was tuned to heights 1 meter) the receive antenna and by rotating through 360°the turntable. After the fundamental emission was maximized, a field strength measurement was made. 3). Steps 1) and 2) were performed with the EUT and the receive antenna in both vertical and horizontal polarization. 4). Test the EUT in the lowest channel, the middle channel, the Highest channel. 5). The radiation measurements are performed in X, Y, Z axis positioning. And found the X axis positioning which it is worse case, Only the test worst case mode is recorded in the report. 6). Repeat above procedures until all frequencies measured was complete.
E (dBV/m) = Measured amplitude level (dBV) + (Cable Loss (dB) + Antenna Factor (dB/m) ­ AMP(dB)) EIRP (dBm) = E (dBV/m) + 20 log D - 104.8; where D is the measurement distance in meters Above 1GHz test procedure as below: 1) Different between above is the test site, change from Semi- Anechoic Chamber to fully Anechoic Chamber 2) Calculate power in dBm by the following formula: E (dBV/m) = Measured amplitude level (dBV) + (Cable Loss (dB) + Antenna Factor (dB/m) ­ AMP(dB)) EIRP (dBm) = E (dBV/m) + 20 log D - 104.8; where D is the measurement distance in meters 3). Test the EUT in the lowest channel, the middle channel the Highest channel 4). The radiation measurements are performed in X, Y, Z axis positioning. And found the X axis positioning which it is worse case, Only the test worst case mode is recorded in the report. 5). Repeat above procedures until all frequencies measured was complete Remark1: Reference test setup 2 Remark2: The emission below 18G were measured at a 3m test distance, while emissions above 18GHz were measured at a 1m test distance. At a measurement distance of 1 meter the limit line was increased by 20*LOG(3/1) = 9.54 dB.
Remark: Reference test setup 2 Remark: 1) The field strength is calculated by adding the Antenna Factor, Cable Factor & AMP. The basic equation with a sample calculation is as follows: AF = Antenna Factor(dB/m) Factor = Cable Factor(dB) - Preamplifier (dB) Level = Reading Level + AF + Factor -95.26 Margin = Limit ­ Level 2) Scan from 9kHz to 40GHz, The disturbance between 9KHz to 30MHz and 18GHz to 40GHz was very low, and the harmonics were the highest point could be found when testing, so only the harmonics had been displayed. The amplitude of spurious emissions from the radiator which are attenuated more than 20dB below the limit need not be reported. 3) All modes have been tested, but only the worst case data displayed in this report.

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4.9 Frequency Stability / Temperature Variation
Measurement Procedure: Frequency stability testing is performed in accordance with the guidelines of FCC KDB 971168 D01 V03r01; Section 9
. The frequency stability of the transmitter is measured by: a.) Temperature: The temperature is varied from -30°C to +50°C in 10°C increments using an
environmental chamber. b.) Primary Supply Voltage: The primary supply voltage is varied from 85% to 115% of the nominal value
for non hand-carried battery and AC powered equipment. For hand-carried, battery-powered equipment, primary supply voltage is reduced to the battery operating end point which shall be specified by the manufacturer. Specification ­ The frequency stability shall be sufficient to ensure that the fundamental emission stays within the authorized frequency block. The frequency stability of the transmitter shall be maintained within ±0.00025% (±2.5 ppm ) of the center frequency.
Time Period and Procedure: 1. The carrier frequency of the transmitter is measured at room temperature (20°C to provide a reference). 2. The equipment is turned on in a "standby" condition for fifteen minutes before applying power to the transmitter. Measurement of the carrier frequency of the transmitter is made within one minute after applying power to the transmitter.
3. Frequency measurements are made at 10°C intervals ranging from -30°C to +50°C. A period of at least one half-hour is provided to allow stabilization of the equipment at each temperature level.
Remark: Reference test setup 3

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4.10Test Setups
4.10.1 Test Setup 1

4.10.2 Test Setup 2

Figure 1. Below 30MHz

Figure 2. 30MHz to 1GHz

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4.10.3 Test Setup 3

Figure 3. above 1GHz

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4.11Test Conditions

Transmit Output Power Data - Average Power, Spectral Density

Test Case

Test Conditions

Test Environment Ambient Climate & Rated Voltage

Test Setup

Test Setup 1

RF Channels (TX) L, M, H (L= low channel, M= middle channel, H= high channel)

Test Mode

GSM/TM1;GSM/TM2;UMTS/TM1; LTE/TM1;LTE/TM2; LTE/TM3; LTE/TM4

Test Case Test Environment Test Setup RF Channels (TX) Test Mode

Peak-to-Average Ratio Test Conditions
Ambient Climate & Rated Voltage Test Setup 1 L, M, H (L= low channel, M= middle channel, H= high channel) GSM/TM1;GSM/TM2;UMTS/TM1; LTE/TM1;LTE/TM2; LTE/TM3; LTE/TM4

Test Case Test Environment Test Setup RF Channels (TX) Test Mode

Bandwidth - Occupied Bandwidth Test Conditions
Ambient Climate & Rated Voltage Test Setup 1 L, M, H (L= low channel, M= middle channel, H= high channel ) GSM/TM1;GSM/TM2;UMTS/TM1; LTE/TM1;LTE/TM2; LTE/TM3; LTE/TM4

Test Case Test Environment Test Setup RF Channels (TX) Test Mode
Test Case Test Environment Test Setup RF Channels (TX) Test Mode

Bandwidth - Emission Bandwidth Test Conditions
Ambient Climate & Rated Voltage Test Setup 1 L, M, H (L= low channel, M= middle channel, H= high channel ) GSM/TM1;GSM/TM2;UMTS/TM1; LTE/TM1;LTE/TM2; LTE/TM3; LTE/TM4
Adjacent Channel Leakage Ratio Test Conditions
Ambient Climate & Rated Voltage Test Setup 1 L, M, H (L= low channel, M= middle channel, H= high channel ) LTE/TM1

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Test Case Test Environment Test Setup RF Channels (TX) Test Mode

Band Edges Compliance Test Conditions
Ambient Climate & Rated Voltage Test Setup 1 L, H (L= low channel, H= high channel) GSM/TM1; UMTS/TM1; LTE/TM1;

Test Case Test Environment Test Setup RF Channels (TX) Test Mode

Spurious Emission at Antenna Terminals Test Conditions
Ambient Climate & Rated Voltage Test Setup 1 L, M, H (L= low channel, M= middle channel, H= high channel) GSM/TM1; UMTS/TM1; LTE/TM1;

Test Case Test Environment Test Setup RF Channels (TX) Test Mode
Test Case Test Environment Test Setup RF Channels (TX) Test Mode

Field Strength of Spurious Radiation Test Conditions
Ambient Climate & Rated Voltage Test Setup 2 L, M, H (L= low channel, M= middle channel, H= high channel) GSM/TM1; UMTS/TM1; LTE/TM1; Remark: All bandwidth and modulation of GSM/ UMTS/LTE have been pre tested, and only the worst results are reflected in the report.
Frequency Stability Test Conditions
(1) -30 °C to +50 °C with step 10 °C at Rated Voltage (2) VL, VN and VH of Rated Voltage at Ambient Climate. Test Setup 3 L, M, H (L= low channel, M= middle channel, H= high channel) GSM/TM1; UMTS/TM1; LTE/TM1; The report only show the bandwidth with the worst case.

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5 Main Test Instruments
RF conducted test

Test Equipment

Manufacturer

Model No.

DC power supply

HYELEC

HY3005B

MXA Signal Analyzer Measurement Software

KEYSIGHT TST

Attenuator

Huber+Suhner

Universal Radio Communication Tester

Rohde & Schwarz

Universal Radio Communication Tester

Anritsu

Programmable

Votsch Industrietechnik

Temperature &

GmbH

Humidity Chamber

Power Sensor

KEYSIGHT

N9020B TST PASS
V2.0 6620_SMA-
50-1 CMW 500
MT8000A
VT 4002
U2021XA

Inventory No.
SZ-WRG-M024
SEM004-24 N/A
SEM021-09
SEM010-03
SEM010-10
SEM002-15
SEM009-15

Cal. Date Cal. Due date

2024/09/13 2024/03/14
N/A

2025/09/12 2025/03/13
N/A

2024/03/27 2025/03/26

2024/03/27 2025/03/26

2024/03/14 2025/03/13

2024/03/19 2025/03/18 2024/03/20 2025/03/19

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Radiated spurious emissions

Equipment
EMI TEST RECEIVER Signal &Spectrum
Analyzer Low Noise Amplifier
9K-3GHz Low Noise Amplifier
30M-8GHz Low Noise Amplifier
1G-18GHz Low Noise Amplifier
18G-40GHz Active Loop Antenna 9kHz-
30MHz TRILOG Breitband Antenne 30MHz-
1GHz Double Ridge Horn
Antenna 1GHz18GHz
SHF-EHF Horn 15GHz-40GHz
RSE Test Software
RE Test Software
Chamber
Humidity/ Temperature
Indicator Radio
Communication Tester

Manufacturer Rohde & Schwarz Rohde & Schwarz Tonscend Tonscend Tonscend Tonscend
SCHWARZBECK
SCHWARZBECK
SCHWARZBECK
SCHWARZBECK Tonscend Tonscend
CRTSGSSAC966 Deli
Anriesu

Model No ESR FSV
TAP9K3G32 TAP30M8G30 TAP01018050 TAP18040048
FMZB 1519B
VULB 9168
BBHA 9120 D
BBHA 9170 JS32-RSE
V4.0.0 JS32-RE
V4.0.0 N/A 8838
MT8821C

Inventory No SZ-WRG-M-047 SZ-WRG-M-048
SEM005-23 SZ-WRG-M-050 SZ-WRG-M-051 SZ-WRG-M-052 SZ-WRG-M-053
SZ-WRG-M-054
SZ-WRG-M-055 SZ-WRG-M-056 SZ-WRG-S-058 SZ-WRG-S-059 SZ-WRG-C-063
SEM002-46
SZ-WRG-M-014

Cal Date Cal Due Date 2024/01/30 2025/01/29 2024/01/30 2025/01/29 2024/03/05 2025/03/04 2024/01/30 2025/01/29 2024/01/30 2025/01/29 2024/01/30 2025/01/29
2023/12/25 2024/12/24

2023/12/25 2024/12/24

2023/12/21 2024/12/20

2023/12/25 NCR NCR
2022/01/05

2024/12/24 NCR NCR
2025/01/04

2024/07/27 2025/07/26

2024/09/13 2025/09/12

General used equipment

Equipment

Manufacturer

Humidity/ Temperature Indicator

deli

Humidity/ Temperature Indicator

deli

Barometer

Changchun Meteorological Industry Factory

Remark: NCR=No Calibration Requirement

Model No. Inventory No. Cal Date 8838 SEM002-32 2024-07-24 8838 SEM002-33 2024-07-24
DYM3 SEM002-01 2024/03/18

Cal Due Date 2025-07-23 2025-07-23
2025/03/17

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6 Measurement Uncertainty

For a 95% confidence level (k = 2), the measurement expanded uncertainties for defined systems, in

accordance with the recommendations of ISO 17025 as following:

No.

Item

Measurement Uncertainty

1

Radio Frequency

± 5.4 x 10-8

2

Duty cycle

± 0.3%

3

Occupied Bandwidth

± 3%

4

RF conducted power

± 0.8dB

5

RF power density

± 0.4dB

6

Conducted Spurious emissions

± 2.7dB

±4.8dB (30MHz-1GHz)

7

Radiated Spurious emission test(UE)

±4.68dB (1GHz-6GHz) ±4.52dB (6GHz-18GHz)

±5.26dB (18GHz-40GHz)
Remark: The Ulab (lab Uncertainty) is less than Ucispr/ETSI (CISPR/ETSI Uncertainty), so the test results ­ compliance is deemed to occur if no measured disturbance level exceeds the disturbance limit; ­ non-compliance is deemed to occur if any measured disturbance level exceeds the disturbance limit.

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7 Appendixes
Appendix A.4 Appendix B.1 Appendix B.2 Appendix B.3 Appendix B.4 Appendix B.5 Appendix B.6 Appendix B.7 Appendix B.8 Appendix B.9 Appendix B.10 Appendix B.11 Appendix B.12 Appendix B.13 Appendix B.14 Appendix B.15 Appendix B.16 Appendix B.17 Appendix B.18 Appendix B.19 Appendix B.20 Appendix B.21 Appendix B.22 Appendix B.23 Appendix B.24 Appendix B.25 Appendix B.26 Appendix B.27 Appendix B.28 Appendix B.29 Appendix B.30 Appendix C.1

WWAN Setup Photos GSM 850 GSM 1900 WCDMA Band II WCDMA Band IV WCDMA Band V LTE Band 2 LTE Band 4 LTE Band 5 LTE Band 7 LTE Band 12 LTE Band 13 LTE Band 14 LTE Band 25 LTE Band 26(814-824MHz) LTE Band 26(824-849MHz LTE Band 26c(814-849MHz) LTE Band 30 LTE Band 38 LTE Band 41 LTE Band 41C LTE Band 42(3450-3550MHz) LTE Band 42(3550-3600MHz) LTE Band 43(3600-3700MHz) LTE Band 43(3700-3800MHz) LTE Band 48 LTE Band 48C LTE Band 66 LTE Band 66B LTE Band 66C LTE Band 71 WWAN RSE

---End of Report---



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