EMC2001239

Test Report of Base Station Controller(ZTE)

dongyuan

Report 13

Ericsson AB AKRC161472-3 Remote Radio Unit TA8AKRC161472-3 TA8AKRC1614723 akrc161472 3

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No.I18Z60287-WMD01 Page239of259
Port C, Channel Position M, LTE 10.0 MHz
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Port C, Channel Position T, LTE 10.0 MHz
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Port C, Channel Position B, LTE 15.0 MHz
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Port C, Channel Position M, LTE 15.0 MHz
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Port C, Channel Position T, LTE 15.0 MHz
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Port C, Channel Position B, LTE 20.0 MHz
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Port C, Channel Position M, LTE 20.0 MHz
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Port C, Channel Position T, LTE 20.0 MHz
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A.5 Radiated Spurious Emission
A.5.1 Reference FCC CFR 47 Part 2, Clause 2.1046 FCC CFR 47 Part 27, Clause 27.53 (h)
A.5.2 Method of measurement The measurements procedures in TIA-603-E: 2016 are used. This measurement is carried out in semi-anechoic chamber. A preliminary profile of the Spurious Radiated Emissions was obtained by operating the EUT on a remotely controlled turntable within the chamber. Measurements of emissions from the EUT were obtained with the measurement antenna in both horizontal and vertical polarisations. Emissions identified within the range 30MHz to 20GHz were then formally measured using a peak detector as the worst case. The limits for outside a licensee's frequency band(s) of operation the power of the spurious emissions have been calculated, as shown below using the following formula:
Field Strength of Carrier - (43 + 10Log (P)) dB Where:
Field Strength is measured in dBV/m P is measured Transmitter Power in Watts The EUT was measured with the antenna height varied between 1 and 4 m with the turntable rotated between 0 and 360 degrees. The emission of any outside a licensee's frequencies within 20dB of the limit were measured with the substitution method used according to the standard. The measurements were performed at a 3m distance unless otherwise stated.
A.5.3 Measurement limit The field strength of the carrier has been calculated assuming that the power is to be fed to a half-wave tuned dipoles as per 2.1053 (a).
E(v/m)=(30 x Gi x Po )0.5 / d Where
Gi is the antenna gain of ideal half-wave dipoles, Po is the power out of the transceiver in W, d is the measurement distance in meter. Therefore at 3m measurement distance the field strength using the lowest transceiver output power would be: E(v/m)=(30 x 1.64 x 16.56)0.5 / 3 = 9.51V/m = 139.57 dBV/m As per 24.238 (a) the spurious emission must be attenuated by 43 + 10log (Po) dB this gives: 43 + 10log(16.56) = 55.19 dB Therefore the limit at 3m measurement distance is: 139.57 ­ 55.19 = 84.4 dBV/m These limits have been used to determine Pass or Fail for the harmonics measured and detailed in the following results.

A.5.4 Measurement results

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Configuration WCDMA-1C

Maximum Output Power 53.8dBm in total, WCDMA Bandwidth 5.0MHz

Channel Position

Channel Frequencies

Channel Position B

2112.4MHz

Channel Position M

2132.4MHz

Channel Position T

2152.6MHz

Channel Position B ­ QPSK

No emissions were detected within 20dB of the limit.

Channel Position M ­ QPSK

No emissions were detected within 20dB of the limit.

Channel Position T ­ QPSK

No emissions were detected within 20dB of the limit.

Configuration WCDMA-2C

Maximum Output Power 53.8dBm in total, WCDMA Bandwidth 5.0MHz

Channel Position

Channel Frequencies

Channel Position M

2112.4MHz+2152.6MHz

Channel Position M ­QPSK

No emissions were detected within 20dB of the limit.

Configuration WCDMA-6C

Maximum Output Power 53.8dBm in total, WCDMA Bandwidth 5.0MHz

Channel Position

Channel Frequencies

Channel Position M

2112.4MHz+2117.4MHz+2122.4MHz+2142.6MHz+21

47.6MHz+2152.6MHz

Channel Position M ­16QAM

No emissions were detected within 20dB of the limit

Configuration LTE-MIMO-1C

Maximum Output Power 53.8dBm in total, LTE Bandwidth 5.0MHz

Channel Position

Channel Frequencies

Channel Position B

2112.5MHz

Channel Position M

2155.0MHz

Channel Position T

2197.5MHz

Channel Position B­ QPSK

No emissions were detected within 20dB of the limit.

Channel Position M­ QPSK

No emissions were detected within 20dB of the limit.

Channel Position T ­ QPSK

No emissions were detected within 20dB of the limit.

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Configuration LTE-MIMO-2C

Maximum Output Power 53.8dBm in total, LTE Bandwidth5.0MHz

Channel Position

Channel Frequencies

Channel Position BRFBW

2112.5MHz+2177.5 MHz

Channel Position MRFBW

2122.5MHz+2187.5 MHz

Channel Position TRFBW

2132.5MHz+2197.5 MHz

Channel Position B­ 16QAM

No emissions were detected within 20dB of the limit.

Channel Position M­16QAM

No emissions were detected within 20dB of the limit.

Channel Position T ­16QAM

No emissions were detected within 20dB of the limit.

Configuration WCDMA+LTE-MIMO-MC-1 Maximum Output Power 53.8dBm in total, WCDMA Bandwidth 5.0MHz,LTE Bandwidth 5.0MHz, Channel Channel Frequencies Position Channel WCDMA 2112.4 MHz+LTE 2177.5MHz Position B Channel WCDMA 2122.4 MHz+LTE 2187.5MHz Position M Channel WCDMA 2132.4 MHz+LTE 2197.5MHz Position T Channel Position B ­WCDMA16QAM/LTE16QAM No emissions were detected within 20dB of the limit. Channel Position M ­WCDMA16QAM/LTE16QAM No emissions were detected within 20dB of the limit. Channel Position T ­WCDMA16QAM/LTE16QAM No emissions were detected within 20dB of the limit.

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Configuration WCDMA+LTE-MIMO-MC-3 Maximum Output Power 53.8dBm in total, WCDMA Bandwidth 5.0MHz, LTE Bandwidth 5.0MHz

Channel Channel Frequencies

Position

Channel Position B Channel Position M

WCDMA:2112.4MHz+2117.4MHz+2122.4MHz+ LTE2167.5MHz+2172.5MHz+2177.5MHz WCDMA:2122.4MHz+2127.4MHz+2132.4MHz+ LTE2177.5MHz+2182.5MHz+2187.5MHz

Channel WCDMA:2132.4MHz+2137.4MHz+2142.4MHz+ Position T LTE2187.5MHz+2192.5MHz+2197.5MHz

Channel Position B ­WCDMA16QAM/LTE16QAM

No emissions were detected within 20dB of the limit. Channel Position M­WCDMA16QAM/LTE16QAM

No emissions were detected within 20dB of the limit. Channel Position T­WCDMA16QAM/LTE16QAM

No emissions were detected within 20dB of the limit.

Configuration NB-IoT+WCDMA-MIMO-MC-1 Maximum Output Power 53.8dBm in total, WCDMA Bandwidth 5MHz, NB-IOT., Channel Channel Frequencies Position Channel WCDMA 2112.4 MHz+NB 2179.8MHz Position B Channel WCDMA 2122.4 MHz+NB 2189.8MHz Position M Channel WCDMA 2132.4 MHz+NB 2199.8MHz Position T Channel Position B ­WCDMA16QAM/NB No emissions were detected within 20dB of the limit. Channel Position M ­WCDMA16QAM/NB No emissions were detected within 20dB of the limit. Channel Position T ­WCDMA16QAM/NB No emissions were detected within 20dB of the limit.

Configuration NB-IoT+LTE-MIMO-MC-1

Maximum Output Power 53.8dBm in total, LTE Bandwidth 20MHz, NB-IOT.,

Channel Channel Frequencies

Position Channel

LTE 2170.0 MHz+NB 2110.3MHz

Position B Channel LTE 2180.0MHz+NB 2120.2MHz

Position M

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Channel LTE 2190.0 MHz+NB 2130.2MHz Position T Channel Position B ­LTE16QAM/NB No emissions were detected within 20dB of the limit. Channel Position M ­LTE16QAM/NB No emissions were detected within 20dB of the limit. Channel Position T ­LTE16QAM/NB No emissions were detected within 20dB of the limit. Configuration NB-IoT+WCDMA+LTE-MIMO-MC-1 Maximum Output Power 53.8dBm in total, WCDMA Bandwidth 5MHz, WCDMA Bandwidth 5MHz, NB-IOT. Channel Channel Frequencies Position Channel WCDMA 2145.0 MHz+LTE 2177.5 MHz+NB 2110.3MHz Position B Channel WCDMA 2152.6 MHz+LTE 2187.5MHz+NB 2120.2MHz Position M Channel WCDMA 2162.6 MHz+LTE 2197.5 MHz+NB 2130.2MHz Position T Channel Position B ­WCDMA16QAM/LTE16QAM/NB No emissions were detected within 20dB of the limit. Channel Position M ­WCDMA16QAM/LTE16QAM/NB No emissions were detected within 20dB of the limit. Channel Position T ­WCDMA16QAM/LTE16QAM/NB No emissions were detected within 20dB of the limit.
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Channel Position T ­16QAM-30MHz-1GHz

No.I18Z60287-WMD01 Page253of259

Le vel i n dB µV /m

90 80 70 60 50 40 30 20 10
0 30 M

50 60

80 100 M

20 0

30 0

40 0 50 0

80 0 1G

Channel Position T ­16QAM-1GHz-18GHz

Le vel i n dB µV /m

10 0 90 80 70 60 50 40 30 20 10
0 1G

2G

3G

4G

5G

6

8

10 G

18 G

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Channel Position T ­16QAM-18GHz-20GHz

No.I18Z60287-WMD01 Page254of259

Level in dBµV/m

F re q ue nc y in G H z
Remarks The EUT does not exceed -13dBm / 84.4dBV/m at the measured frequencies.

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A.6 Frequency Stability
A.6.1 Reference FCC CFR 47 Part 27, Clause 27.54 A.6.2 Method of measurement Temperature Variation The EUT was tested over the temperature range -30°C to +50°C in 10°C steps with -48 VDC Power Supply. At each temperature step, the Base Station was configured to transmit a [RAT]* at maximum power on the middle channel of the operating band. After achieving thermal balance, the averages of 200 transmission bursts were measured and the result recorded. Voltage Variation The EUT was tested at the supplied voltages varied from 85 to 115 percent of the nominal value of -48 VDC. At +20°C, the Base Station was configured to transmit a [RAT]* at maximum power on the bottom, middle and top channel of the operating band. The average of 200 transmission bursts was measured and the result recorded. [RAT]*: WCDMA - Test Model 1 Single Carrier with QPSK modulation LTE (5.0 MHz OBW) - Test Model E-TM1.1 Single Carrier with QPSK modulation NB-IoT - QPSK modulation A.6.3 Measurement limit FCC: The frequency stability shall be sufficient to ensure that the fundamental emissions stay within the authorized bands of operation.
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A.6.4 Measurement results

Frequency Error ­ Temperature Variation

Configuration WCDMA-1C

Maximum Output Power 47.78dBm per port, Channel Bandwidth 5MHz

Frequency Stability (Hz)

Supply Voltage Temperature Channel Channel

Channel

DC(V)

position B position M

position T

-30

-1.63

-1.21

1.22

-20

1.54

1.25

-1.96

-10

-1.17

-1.22

1.27

0

1.25

1.04

1.43

-48

10

-1.34

-1.09

1.17

20

2.09

1.64

1.27

30

-1.37

1.71

1.51

40

-1.16

-1.04

-1.01

50

-1.23

1.39

1.20

Configuration LTE-MIMO-1C

Maximum Output Power 47.78dBm per port, Channel Bandwidth 5MHz

Frequency Stability (Hz)

Supply Voltage Temperature Channel

Channel

Channel

DC(V)

position B

position M

position T

-30

-1.01

1.58

1.08

-20

1.16

0.87

-0.89

-10

-1.39

1.57

1.03

0

1.25

0.95

1.22

-48

10

-1.03

1.13

1.69

20

1.56

1.02

1.07

30

1.13

0.82

1.46

40

0.89

-1.07

1.63

50

-1.23

-0.99

-1.18

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Configuration NB-IoT-InBand-1C

Maximum Output Power 47.78dBm per port, Channel Bandwidth 5MHz

Frequency Stability (Hz)

Supply Voltage Temperature Channel

Channel

Channel

DC(V)

position B

position M

position T

-30

-6.87

-6.32

-5.76

-20

-6.73

-6.36

-6.23

-10

-6.12

-5.82

-6.15

0

-5.87

-6.02

-5.74

-48

10

-5.93

-5.34

-5.41

20

-6.04

-5.67

5.59

30

-6.29

-5.63

-7.02

40

-6.27

-5.76

-7.08

50

-6.12

-5.58

-6.19

Frequency Error ­ Voltage Variation

Configuration WCDMA-1C

Maximum Output Power 47.78dBm per port, Channel Bandwidth 5MHz

Frequency Stability (Hz)

Supply Voltage Temperature(°C) Channel Channel Channel

DC(V)

position B position M position T

-40.8

20

1.43

-1.17

-1.42

-48

20

-2.37

2.81

-1.89

-55.2

20

1.11

-1.61

-1.13

Configuration LTE-MIMO-1C

Maximum Output Power 47.78dBm per port, Channel Bandwidth 5MHz

Frequency Stability (Hz)

Supply Voltage Temperature(°C) Channel

Channel Channel

DC(V)

position B position M position T

-40.8

20

-1.23

-0.84

-1.06

-48

20

1.18

1.05

1.57

-55.2

20

0.54

0.94

0.97

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No.I18Z60287-WMD01 Page258of259

Configuration NB-IoT-InBand-1C

Maximum Output Power 47.78dBm per port, Channel Bandwidth 5MHz

Frequency Stability (Hz)

Supply Voltage Temperature(°C) Channel

Channel Channel

DC(V)

position B position M position T

-40.8

20

-5.15

-4.78

-4.63

-48

20

-4.85

-4.98

-4.53

-55.2

20

-5.29

5.11

-5.34

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ANNEX B: Accreditation Certificate

No.I18Z60287-WMD01 Page259of259

***END OF REPORT***
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