74608RAN.002A1

ANT

12-74608RAN.002A1s - Field RF Exposure test report FCC

LID Technologies S.A.S. 21191 T4521191 T4521191 21191

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DEKRA Testing and Certification, S.A.U. Parque Tecnológico de Andalucía, c/ Severo Ochoa nº 2 · 29590 Campanillas · Málaga · España C.I.F. A29 507 456

Test report
IEEE Std C95.3-2021 FCC 47 CFR Part 2.1091. FCC 47 CFR Part 2.1093.
(*) Identification of item tested (*) Trademark (*) Model and /or type reference tested (*) Other identification of the product
(*) Features (*) Manufacturer

Test report No: NIE:74608RAN.002A1
Receiver Control Unit LID Technologies S.A.S. 21191 FCC ID: T4521191 IC: 6450A-21191 HW version: 321-191-0090-C SW version: 1.2 433.92 MHz Receiver, 125 KHz Transceiver LID Technologies S.A.S. 3 rue Giotto, Parc Technologique du Canal, 31520 Ramonville-Saint-Agne, FRANCE

Test method requested, standard Summary

IEEE Std C95.3-2021. FCC 47 CFR Part 2.1091. FCC 47 CFR Part 2.1093.
IN COMPLIANCE

Approved by (name / position & signature) Miguel Lacave Antennas Lab Manager

Date of issue Report template No

2024-05-13
FAN39_02
(*) "Data provided by the client"

2024.05.1 4 18:13:36 +02'00'

Report Nº: (NIE) 74608RAN.002A1 Test marked with "#" are out of the scope of ENAC accreditation

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DEKRA Testing and Certification, S.A.U. Parque Tecnológico de Andalucía, c/ Severo Ochoa nº 2 · 29590 Campanillas · Málaga · España C.I.F. A29 507 456
Index
Competences and guarantees ....................................................................................................3 General conditions ......................................................................................................................3 Uncertainty .................................................................................................................................3 Data provided by the client..........................................................................................................3 Usage of samples .......................................................................................................................4 Test sample description ..............................................................................................................4 Identification of the client.............................................................................................................4 Testing period and place.............................................................................................................4 Document history ........................................................................................................................5 Environmental conditions ............................................................................................................5 Remarks and comments .............................................................................................................5 Testing verdicts...........................................................................................................................5 Summary ....................................................................................................................................5 Appendix A: Test results .............................................................................................................6 125 KHz LF Evaluation ...............................................................................................................7 Appendix B: FCC RF Exposure information ..............................................................................11 FCC RF Exposure evaluation for mobile devices ......................................................................12 FCC RF Exposure evaluation for portable devices....................................................................13 Appendix C: Photographs .........................................................................................................14

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Competences and guarantees
DEKRA Testing and Certification S.A.U. is a testing laboratory accredited by the National Accreditation Body (ENAC -Entidad Nacional de Acreditación), to perform the tests indicated in the Certificate No. 51/LE 147. DEKRA Testing and Certification is a FCC-recognized accredited testing laboratory with appropriate scope of accreditation that include testing performed in this test report. In order to assure the traceability to other national and international laboratories, DEKRA Testing and Certification S.A.U. has a calibration and maintenance program for its measurement equipment. DEKRA Testing and Certification S.A.U. guarantees the reliability of the data presented in this report, which is the result of the measurements and the tests performed to the item under test on the date and under the conditions stated on the report and, it is based on the knowledge and technical facilities available at DEKRA Testing and Certification at the time of performance of the test. DEKRA Testing and Certification S.A.U. is liable to the client for the maintenance of the confidentiality of all information related to the item under test and the results of the test. The results presented in this Test Report apply only to the particular item under test established in this document. IMPORTANT: No parts of this report may be reproduced or quoted out of context, in any form or by any means, except in full, without the previous written permission of DEKRA Testing and Certification S.A.U.
General conditions
1. This report is only referred to the item that has undergone the test. 2. This report does not constitute or imply on its own an approval of the product by the Certification Bodies or
competent Authorities. 3. This document is only valid if complete; no partial reproduction can be made without previous written
permission of DEKRA Testing and Certification S.A.U. 4. This test report cannot be used partially or in full for publicity and/or promotional purposes without previous
written permission of DEKRA Testing and Certification S.A.U. and the Accreditation Bodies.
Uncertainty
Uncertainty (factor k=2) was calculated according to the DEKRA Testing and Certification S.A.U. internal documents PODT000 and FAN040.
Data provided by the client
The following data has been provided by the client:
1. Information relating to the description of the sample ("Identification of the item tested", "Trademark", "Model and/or type reference tested", "Other identification of the product", "Features" and "Test sample description").
2. Normal device use conditions and minimum use distance information.
DEKRA Testing and Certification S.A.U. declines any responsibility with respect to the information provided by the client and that may affect the validity of results.

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Usage of samples

Samples undergoing test have been selected by: the client Samples are composed of the following elements:

Sample S/01 S/01 S/01 S/01

Control Nº 74608B_1.1 74608B_1.1 74608B_1.1 74608B_1.1

Description Receiver Control Unit Radiated
Key and lock Harness
Device electronic

Model 21191
----

Serial Nº B96CBFFD
----

Date of reception 2023-04-10 2023-04-10 2023-04-10 2023-04-10

1. Sample S/01 has undergone the test(s) specified in subclause "Test method requested".

Test sample description

Description of product ................ :

The RCU is designed to be located on passenger vehicles, and receives data supplied by Wheel Unit Sensors and Key for unlocking and immobilization. It is powered by the 12V vehicle battery.

Software version......................... : 1.2

Hardware version ....................... : 321-191-0090-C

Mounting position ....................... :
Accessories (not part of the test item)............................................ :

Description

Table top equipment

Wall/Ceiling mounted equipment

Equipment used next to the ear

Hand-held equipment

Other: mounted on vehicle

Type

Manufacturer

Harness for Power and

EUT

communication with DUT

LID Technologies

Identification of the client
LID Technologies S.A.S. 3 rue Giotto, Parc Technologique du Canal, 31520 Ramonville-Saint-Agne, FRANCE

Testing period and place

Test Location Date (start) Date (finish)

DEKRA Testing and Certification S.A.U. 2024-02-06 2024-05-09

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Document history

Report number 74608RAN.002
74608RAN.002A1

Date 2024-05-03
2024-05-13

First release

Description

Second release.Measurement at 0cm from the coil in the front position has been performed. Hand exposure has been evaluated.This modification test report cancels and replaces test report 74608RAN.002.

Environmental conditions

Date
From 2024-02-06 to 2024-02-12 2024-05-09

Max. Temp. Min. Temp.

ºC 23.67

ºC 20.12

25.67

22.74

Max. Hum. %
57.81 43.63

Min. Hum.

Limit

% 37.43

18-40 ºC, 20-80%

37.31 18-40 ºC, 20-80%

Remarks and comments

1. The tests have been performed by the technical personnel: Ismael Gamarro.

2. The instrumentation utilized to perform the tests covered in this test report is listed in the following table:

DEKRA Control Number 8453 8454 7546

Equipment WaveControl WP400-3 E and H Field Probe
WaveControl SMP2 E and H Field Meter HW Group HWg-STE PROBE

S/N 20WP120069
20SN1393 60038034574

Testing verdicts

Not applicable :

N/A

Pass :

P

Fail :

F

Not measured :

N/M

Summary

FCC 47CFR Part 2.1091 / FCC 47CFR Part 2.1093 125 KHz LF

VERDICT N/A P F NM
P

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Appendix A: Test results

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125 KHz LF Evaluation
The device under tests is a Key locker, which will be installed in a motorbike. Once installed, only the front position, that is the position where the key is inserted, will be reachable for the user, and in normal use condition the distance between the user and the device will be more than 20 cm.

Measurements of external E and H field strengths using a commercial sample provided by the manufacturer have been performed from all sides of the device with a conservative separation distance of 0 cm measured from the tip probe to the edge of the device.

Additionally, measurements in 2 cm increments starting at 0 cm (1.65 cm from the probe centre) up to 20 cm have been performed for the main loop/coil axis in the front position with the key inserted, which was identified as the worst-case scenario, being the distance from the coil to the user´s fingers while handling the key around 2 cm.

These measurements assess compliance for the user's hand exposure condition while using the motorbike key and are also valid to assess compliance for the 20 cm exposure condition distance from the user's body.

According to 680106 D01 Wireless Power Transfer v04, emissions between 100 kHz to 300 kHz should be assessed versus the limits at 300 kHz in Table 1 of Section 1.1310: 614 V/m and 1.63 A/m. Measurements were performed using the equipment listed in the "Used Instrumentation" paragraph of this document:

Upper

Back

Left

Right

Front

Main loop/coil axis

E-Field = 0 - 20 mm H-Field = 0 - 20 mm

Figure 1: Measurement Setup

All sides measured values are listed in the following tables:

Technology

Test Side

125 KHz LF

Front (Key inserted)
Back
Left
Right
Top
Bottom

Distance to DUT
(cm)
0.0 0.0 0.0 0.0 0.0 0.0

Testing distance from probe center (Distance to the DUT + distance from tip to probe center) (cm)
1.65 (0.0 + 1.65)
1.65 (0.0 + 1.65)
1.65 (0.0 + 1.65)
1.65 (0.0 + 1.65)
1.65 (0.0 + 1.65)
1.65 (0.0 + 1.65)

Freq. (MHz)
0.125 0.125 0.125 0.125 0.125 0.125

E-Field (V/m)
178.0 41.00 87.15 63.24 72.10 91.61

Limit (V/m)
614.00 614.00 614.00 614.00 614.00 614.00

% E-Limit
28.99 6.68 14.19 10.30 11.74 14.92

Verdict
Pass Pass Pass Pass Pass Pass

Table 1: E-field measurements values

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Technology 125 KHz LF

Test Side
Front (Key inserted)
Back Left Right Top Bottom

Distance to DUT
(cm)

Testing distance from probe center (key length + distance to the DUT + distance from tip to probe center)
(cm)

Freq. (MHz)

H-Field (A/m)

Limit (A/m)

% H-Limit

Verdict

0.0

1.65 (0.0 + 1.65)

0.125 1.25 1.63 76.69 Pass

0.0

1.65 (0.0 + 1.65)

0.125 0.11 1.63 6.81 Pass

0.0

1.65 (0.0 + 1.65)

0.125 0.30 1.63 18.22 Pass

0.0

1.65 (0.0 + 1.65)

0.125 0.41 1.63 25.15 Pass

0.0

1.65 (0.0 + 1.65)

0.125 0.31 1.63 18.77 Pass

0.0

1.65 (0.0 + 1.65)

0.125 0.15 1.63 9.45 Pass

Table 2: H-field measurement values

- Hand exposure condition assessment

Measurements were performed in continuous mode for 30 minutes but this is not a real-case scenario of the exposure time of the user hand while touching the key.

The hand of the user will be near the device at a distance closer to 20 cm only when starting-up the motorbike, so to assess a very conservative worst-case use scenario, for the final calculation it has been supposed that the device will be used to start-up the motorbike 18 times in 30 minutes during 20 seconds. Therefore, in a 30-minute period, the hand of the user will be exposed for a total time of 360 seconds as a conservative worst-case scenario. Applying this exposure time to the measured values, the assessment results are listed in the following table:

Technology 125 KHz LF

Test Side
Front

Distance to DUT
(Key inserted)
(cm) 0.0
0.0
2.0
4.0
6.0
8.0
10.0
12.0
14.0
16.0
18.0
20.0

Testing distance from probe center (key length + distance to the DUT + distance from tip to probe center)
(cm)
1.65 (0.0 + 0.0 + 1.65)
4.65 (3.0 + 0.0 + 1.65)
6.65 (3.0 + 2.0 + 1.65)
8.65 (3.0 + 4.0 + 1.65)
10.65 (3.0 + 6.0 + 1.65)
12.65 (3.0 + 8.0 + 1.65)
14.65 (3.0 + 10.0 + 1.65)
16.65 (3.0 + 12.0 + 1.65)
18.65 (3.0 + 14.0 + 1.65)
20.65 (3.0 + 16.0 + 1.65)
22.65 (3.0 + 18.0 + 1.65)
24.65 (3.0 + 20.0 + 1.65)

Freq. (MHz)
0.125 0.125 0.125 0.125 0.125 0.125 0.125 0.125 0.125 0.125 0.125 0.125

E-Field for 360 seconds hand
exposure (V/m) 35.60 18.32 2.86 2.30 2.08 1.93 1.78 1.42 1.43 1.43 1.65 1.65

Limit (V/m)
614.00 614.00 614.00 614.00 614.00 614.00 614.00 614.00 614.00 614.00 614.00 614.00

Table 3: E-field measurements values up to 20 cm for hand exposure condition

ELimit
%
5.80 2.98 0.47 0.37 0.34 0.31 0.29 0.23 0.23 0.23 0.27 0.27

Verdict
Pass Pass Pass Pass Pass Pass Pass Pass Pass Pass Pass Pass

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Technology 125 KHz LF

Test Side
Front

Distance to DUT
(Key inserted)
(cm) 0.0
0.0
2.0
4.0
6.0
8.0
10.0
12.0
14.0
16.0
18.0
20.0

Testing distance from probe center (key length + distance to the DUT + distance from tip to probe center)
(cm)
1.65 (0.0 + 0.0 + 1.65)
4.65 (3.0 + 0.0 + 1.65)
6.65 (3.0 + 2.0 + 1.65)
8.65 (3.0 + 4.0 + 1.65)
10.65 (3.0 + 6.0 + 1.65)
12.65 (3.0 + 8.0 + 1.65)
14.65 (3.0 + 10.0 + 1.65)
16.65 (3.0 + 12.0 + 1.65)
18.65 (3.0 + 14.0 + 1.65)
20.65 (3.0 + 16.0 + 1.65)
22.65 (3.0 + 18.0 + 1.65)
24.65 (3.0 + 20.0 + 1.65)

Freq. (MHz)
0.125 0.125 0.125 0.125 0.125 0.125 0.125 0.125 0.125 0.125 0.125 0.125

H-Field for 360 seconds hand
exposure (A/m)

Limit (A/m)

% E-Limit ponderate

Verdict

0.25

1.63 15.34

Pass

0.17

1.63 10.67

Pass

0.06

1.63

3.68

Pass

0.04

1.63

2.21

Pass

0.03

1.63

1.60

Pass

0.02

1.63

1.47

Pass

0.02

1.63

1.35

Pass

0.02

1.63

1.35

Pass

0.02

1.63

1.35

Pass

0.02

1.63

1.35

Pass

0.02

1.63

1.35

Pass

0.02

1.63

1.35

Pass

Table 4: H-field measurement values up to 20 cm for hand exposure condition

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- Body exposure condition assessment

Once the motorbike is started, the separation distance from the device to the user will be more than 20 cm. The measurement results to assess this normal use conditions are listed in the following table:

Technology 125 KHz LF

Test Side
Front

Distance to DUT
(Key inserted)
(cm) 14.0
16.0
18.0
20.0

Testing distance from probe center (key length + distance to the DUT + distance from tip to probe center)
(cm)
18.65 (3.0 + 14.0 + 1.65)
20.65 (3.0 + 16.0 + 1.65)
22.65 (3.0 + 18.0 + 1.65)
24.65 (3.0 + 20.0 + 1.65)

Freq. (MHz)
0.125 0.125 0.125 0.125

EField (V/m)
7.16
7.14
8.23
8.23

Limit (V/m)
614.00 614.00 614.00 614.00

Table 5: E-field measurements values for body exposure condition

% E-Limit
1.17 1.16 1.34 1.35

Verdict
Pass Pass Pass Pass

Technology 125 KHz LF

Test Side
Front

Distance to DUT
(Key inserted)
(cm) 14.0
16.0
18.0
20.0

Testing distance from probe center (key length + distance to the DUT + distance from tip to probe center)
(cm)
18.65 (3.0 + 14.0 + 1.65)
20.65 (3.0 + 16.0 + 1.65)
22.65 (3.0 + 18.0 + 1.65)
24.65 (3.0 + 20.0 + 1.65)

Freq. (MHz)
0.125 0.125 0.125 0.125

HField (A/m)
0.11
0.11
0.11
0.11

Limit (A/m)
1.63 1.63 1.63 1.63

Table 6: H-field measurement values for body exposure condition

% HLimit
6.63
6.69
6.63
6.69

Verdict
Pass Pass Pass Pass

Taking into account KDB 680106 D01 Wireless Power Transfer considerations, the device complies with the criteria of section 5.2:

(1) The power transfer frequency is below 1 MHz. (2) The output power of the transmitting element (e.g., coil) is less than or equal to 15 watts. (3) The key is placed in physical contact with the transmitter. (4) It is used in mobile exposure during its normal use conditions. (5) The E-field and H-field strengths, at and beyond 20 cm surrounding the device, are less than 50% of the applicable MPE limit shown into §1.1310, paragraph (e), "Table 1: limits for Maximum Permissible Exposure (MPE). (6) Only has one radiating structure.

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Appendix B: FCC RF Exposure
information

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FCC RF Exposure evaluation for mobile devices
A mobile device is defined as a transmitting device designed to be used in other than fixed locations and to generally be used in such a way that a separation distance of at least 20 centimeters is normally maintained between the RF source's radiating structure(s) and the body of the user or nearby persons. In this context, the term "fixed location" means that the device is physically secured at one location and is not able to be easily moved to another location while transmitting. Transmitting devices designed to be used by consumers or workers that can be easily re-located, such as wireless devices associated with a personal desktop computer, are considered to be mobile devices if they meet the 20-centimeter separation requirement.
Evaluation of compliance with the exposure limits in § 1.1310, and preparation of an EA if the limits are exceeded, is necessary for mobile devices with single RF sources having either more than an available maximum timeaveraged power of 1 mW or if the available maximum time-averaged power or effective radiated power (ERP), whichever is greater, is not exempt by the formulas and tables stated into § 1.1310, paragraphs (3), (i), (B) and (C).
According to §1.1310 Radiofrequency radiation exposure limits, paragraph (e), the limits for Maximum Permissible Exposure (MPE) to radiofrequency electromagnetic fields are:

According to TCB Workshop "Part 18 and WPT Updates", April 27, 2022: - Emissions between 100 kHz to 300 kHz should be assessed versus the limits at 300 kHz in Table 1 of Section
1.1310: 614 V/m and 1.63 A/m. - For all RF devices operating below 100 kHz, the provision in KDB 680106 apply, i.e. field strengths not to
exceed 83 V/m and 90 A/m, for E and H fields, respectively.

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FCC RF Exposure evaluation for portable devices
A portable device is defined as a transmitting device designed to be used in other than fixed locations and to generally be used in such a way that the RF source's radiating structure(s) is/are within 20 centimeters of the body of the user. Evaluation of compliance with the exposure limits in § 1.1310, and preparation of an EA if the limits are exceeded, is necessary for mobile devices with single RF sources having either more than an available maximum timeaveraged power of 1 mW or if the available maximum time-averaged power or effective radiated power (ERP), whichever is greater, is not exempt by the formulas and tables stated into § 1.1310, paragraphs (3), (i), (B) and (C). According to §1.1310 Radiofrequency radiation exposure limits, paragraph (e), the limits for Maximum Permissible Exposure (MPE) to radiofrequency electromagnetic fields are:
According to TCB Workshop "Part 18 and WPT Updates", April 27, 2022: - Emissions between 100 kHz to 300 kHz should be assessed versus the limits at 300 kHz in Table 1 of Section
1.1310: 614 V/m and 1.63 A/m. - For all RF devices operating below 100 kHz, the provision in KDB 680106 apply, i.e. field strengths not to
exceed 83 V/m and 90 A/m, for E and H fields, respectively.

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Appendix C: Photographs

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Equipment view

E-Field and H-Field worst-case search measurement setup views Distance to fingers

Front (Key distance)

Back

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Left

Right

Top

Bottom

E-Field and H-Field up to 20 cm measurement, Front position setup view

Front 0 cm

Front 2 cm

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Front 4 cm

Front 6 cm

Front 8 cm

Front 10 cm

Front 12 cm

Front 14 cm

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Front 16 cm

Front 18 cm

Front 20 cm

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