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Annex No.5 Page 1 of 7 Functional Description Key: 5WK4 9308 Siemens AG Siemens VDO Automotive SV I IC PE RF Design IC: 267T-5WK49308 FCC ID:KR55WK49308 I:\POSTZULA\Honda\Tx\Technische_Doku_doc\Func_Description_Honda-Tx-Transmitter_v1.doc Page 1 of 6 User Manual of the Siemens VDO Radio Frequency Transmitter Type 5wk4 9308 5wk4 9309 5wk4 9348 5wk4 9349 5wk4 9542 Siemens AG Siemens VDO Automotive SV I IC PE RF Design IC: 267T-5WK49308 FCC ID:KR55WK49308 I:\POSTZULA\Honda\Tx\Technische_Doku_doc\Func_Description_Honda-Tx-Transmitter_v1.doc Page 2 of 6 1. GENERAL DESCRIPTION OF THE RF TRANSMITTER The RF remote control system consists of a RF transmitter and a RF receiver mounted within the control unit. The RF transmitter is mechanically integrated in the head of the key. This transmitter is used to transmit information for locking or unlocking the vehicle by a unidirectional RF transmission line for normal remote operation by pressing a button. In general the following functions are provided: - Lock the car - Unlock the car - Unlock the trunk of the car - Panic Alarm Immobilizer Transponder When the key is operating as an immobilizer transponder, communication is done over a "contact less interface" depending on strong magnetic coupling. The transponder is the passive side of the link and there is no RF transmission from it involved in any aspect. SW1 SW2 SW4 SW3 Siemens AG Siemens VDO Automotive SV I IC PE RF Design IC: 267T-5WK49308 FCC ID:KR55WK49308 I:\POSTZULA\Honda\Tx\Technische_Doku_doc\Func_Description_Honda-Tx-Transmitter_v1.doc Page 3 of 6 2. POWER SUPPLY The transmitter is provided with 1 lithium battery (CR1616) that gives a power supply of +3V. 3. TYPICAL USAGE PATTERN (FOR EUROPE ONLY) 20 lock/unlock operations in 24 hours with complete transmission duration of 10.0 seconds (500ms/operation) 2 power window up/down operations in 24 hours with transmission duration of 10 seconds ( 5.0 seconds for 1 operation; max. value) → total transmission duration of 20 seconds within 24 hours Transmitter ON 0.83 seconds / hour Transmitter OFF 3599.17 seconds / hour Duty Cycle: T ON / T (ON+OFF) x 100% = 0.83/ 3600 x 100 % = 0.023 % Siemens MLFB 5wk49308 5wk49309 5wk49348 5wk49349 5wk49542 Frequency variant 313,85 MHz (USA) 434.92 MHz (EU) 313.85 MHz (USA) 313.85 MHz Low Power (Japan) 434.92 MHz (EU) Number of buttons 4 buttons 3 buttons 3 buttons 3 buttons 4 buttons SW 1 Look Look Look Look Look SW 2 Unlock Unlock Unlock Unlock Unlock SW 3 Trunk Trunk Trunk Trunk Trunk SW 4 Panic Panic Siemens AG Siemens VDO Automotive SV I IC PE RF Design IC: 267T-5WK49308 FCC ID:KR55WK49308 I:\POSTZULA\Honda\Tx\Technische_Doku_doc\Func_Description_Honda-Tx-Transmitter_v1.doc Page 5 of 6 5. TECHNICAL DATA Tx Electrical characteristics Tx Europe (433.92MHz) variants: Variants Siemens MLFB Europe 3-button Lock-Unlock-Trunk 5wk4 9309 Europe 4-button Lock-Unlock-Trunk-Panic 5wk4 9542 Center frequency 433.92MHz Frequency shift +/-30kHz RF-Power (EIRP) < 10 mW Tx US (313.85 MHz) variants: Variants Siemens MLFB US 3-button Lock-Unlock-Trunk 5wk4 9348 US 4-button Lock-Unlock-Trunk-Panic 5wk4 9308 Center frequency 313.85 MHz Frequency shift +/-30kHz RF-Power (EIRP) < 75.6 dBμV/m Tx Japan (313.85 MHz Low Power) variant: Variants Siemens MLFB Japan 3-button Lock-Unlock-Trunk 5wk4 9349 Center frequency 313.85 MHz Frequency shift +/-30kHz RF-Power (EIRP) < 54 dBμV/m NOTE: Changes or modifications not expressly approved by the manufacturer could void the user's authority to operate the equipment. Parameter Unit Min. Typ. Max. Supply voltage V 2.5 3 3.3 Battery lifetime (10 actuations per day) [/years] a 4 Siemens AG Siemens VDO Automotive SV I IC PE RF Design IC: 267T-5WK49308 FCC ID:KR55WK49308 I:\POSTZULA\Honda\Tx\Technische_Doku_doc\Func_Description_Honda-Tx-Transmitter_v1.doc Page 6 of 6 6.1 LABEL DESIGN Europe (433.92 MHz) Siemens VDO 5WK4 9542 6.2 LABEL DESIGN CANADA, MEXICO, USA (314,85 MHz) Siemens VDO 5WK4 9308 IC: 267T-5WK49308 FCC ID:KR55WK49308 Entry Owners Manual, Canada, USA: NOTE This device complies with part 15 of the FCC Rules and RSS-210. Operation is subject to the following two conditions: (1) This device may not cause harmful interference, and (2) this device must accept interference received, including interference that may cause undesired operation. CAUTION Changes or modifications not expressly approved by the manufacturer could avoid the user's authority to operate the equipment.
Annex No.1 Page 1 of 2 External Photographs of the Equipment Under Test EXTERNAL FRONT VIEW PHOTO Key: 5WK4 9308 Annex No.1 Page 2 of 2 EXTERNAL REAR VIEW PHOTO
Annex No.4 Page 1 of 2 SKETCH OF LABLE LOCATION Key: 5WK4 9308 Annex No.4 Page 2 of 2 LABEL SAMPLE
Annex No.2 Page 1 of 3 Internal Photographs of the Equipment Under Test INTERNAL UPPER SIDE PHOTO Key: 5WK4 9308 Annex No.2 Page 2 of 3 Annex No.2 Page 3 of 3 INTERNAL LOWER SIDE PHOTO
Annex No.3 Page 1 of 1 OCCUPIED BANDWITH PLOT Key: 5WK4 9308 Close buttom Open buttom Tailgate buttom
Test report no. 07003972 Page 1 of 21 EUT : 5WK4 9308 FCC ID: KR55WK49308 Date of issue: 2007-03-01 m. dudde hochfrequenz-technik Rottland 5a Vers. no. 1.06 D-51429 Bergisch Gladbach Tel.: +49 2207-9689-0 Fax: +49 2207 9689-20 e-mail: [email protected] http://www.dudde.com DAT-P-225/96-02 Test Report acc. to the relevant standard 47 CFR Part 15 C – Intentional Radiators Measurement Procedure: ANSI C63.4 - 1992 relating to Siemens AG Siemens VDO Automotive 5WK4 9308 Measurement of Radio- Noise Emissions from Low- Voltage Electrical and Electronic Equipment Technical characteristics and test methods for radio equipment in the frequency range 9 kHz to 40 GHz Test report no. 07003972 Page 2 of 21 EUT : 5WK4 9308 FCC ID: KR55WK49308 Date of issue: 2007-03-01 m. dudde hochfrequenz-technik Rottland 5a Vers. no. 1.06 D-51429 Bergisch Gladbach Tel.: +49 2207-9689-0 Fax: +49 2207 9689-20 e-mail: [email protected] http://www.dudde.com Manufacturer’s details Manufacturer Siemens AG, Siemens VDO Automotive Manufacturer’s grantee code KR5 Siemens AG, Siemens VDO Automotive Siemensstrasse 12 D-93005 Regensburg Germany Phone: +49 0941 790 6699 Manufacturer’s address Fax: +49 0941 790 136699 47 CFR Part 15C - Intentional Radiators Relevant standard used ANSI C63.4-1992 Test report prepared by Ralf Trepper m.dudde hochfrequenz-technik (laboratory) Rottland 5a 51429 Bergisch Gladbach Germany Phone: +49 2207 96890 Fax: +49 2207 968920 Technical engineer E-mail: [email protected] Equipment Under Test (EUT) Equipment category Transmitter Trade name Siemens VDO Type designation 5WK4 9308 Serial no. none none Variants Test report no. 07003972 Page 3 of 21 EUT : 5WK4 9308 FCC ID: KR55WK49308 Date of issue: 2007-03-01 m. dudde hochfrequenz-technik Rottland 5a Vers. no. 1.06 D-51429 Bergisch Gladbach Tel.: +49 2207-9689-0 Fax: +49 2207 9689-20 e-mail: [email protected] http://www.dudde.com 0 Test result CFR Section Report Chapter Requirements Headline Test result OK 15.203 10.1 Antenna requirement pass fail n.a. 15.231(b) 10.2 Field strength limits (fundamental) pass fail n.a. 15.205(b) 15.209 10.2 Radiated spurious emissions pass fail n.a. 15.231(a) 10.3 Periodic operation characteristics pass fail n.a. 15.231 (c) 10.4 20 dB bandwidth pass fail n.a. Test requirements kept yes no Signature (Technical engineer) ........................................ Ralf Trepper Signature (Manager) ....................................... Manfried Dudde Test report no. 07003972 Page 4 of 21 EUT : 5WK4 9308 FCC ID: KR55WK49308 Date of issue: 2007-03-01 m. dudde hochfrequenz-technik Rottland 5a Vers. no. 1.06 D-51429 Bergisch Gladbach Tel.: +49 2207-9689-0 Fax: +49 2207 9689-20 e-mail: [email protected] http://www.dudde.com List of contents Page 0 Test result ............................................................................................................................................... 3 1 Test laboratory........................................................................................................................................ 5 2 Introduction............................................................................................................................................ 5 3 Product................................................................................................................................................... 6 4 Test schedule .......................................................................................................................................... 6 5 Product and measurement documentation................................................................................................ 7 6 Observations and comments.................................................................................................................... 7 7 Summary ................................................................................................................................................ 7 8 Conclusions ........................................................................................................................................... 8 9 Operation description.............................................................................................................................. 9 10.1 Antenna requirement ......................................................................................................................... 10 10.1.1 Regulation ...................................................................................................................................... 10 10.1.2 Result ............................................................................................................................................. 10 10.2 Radiated emissions ........................................................................................................................... 11 10.2.1 Regulation ...................................................................................................................................... 11 10.2.2 Test equipment ............................................................................................................................... 12 10.2.2.1 Test procedures............................................................................................................................ 12 10.2.3 Calculation of field strength limits .................................................................................................. 13 10.2.4 Calculation of average correction factor.......................................................................................... 13 10.2.5 Calculation of the field strengths .................................................................................................... 13 10.2.6 Results............................................................................................................................................ 14 10.3 Pe…
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Annex No.10 Page 1 of 1 Periodic operation characteristics Manually operated transmitter deactivation Key: 5WK4 9308 15.231 (a1) A manually operated transmitter shall employ a switch that will automatically deactivate the transmitter within not more than 5 seconds of being released Close buttom Open buttom Tailgate buttom
Annex No.6 Page 1 of 4 Test Setup Photos : Key: 5WK4 9308 Annex No.6 Page 2 of 4 Annex No.6 Page 3 of 4 Annex No.6 Page 4 of 4
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15.231 | 313.85 MHz - 313.85 MHz | - |
Romete Car Key
Equipment Class
DSC - Part 15 Security/Remote Control TransmitterKAM (Key Authentication Module)
Equipment Class
DCD - Part 15 Low Power Transmitter Below 1705 kHzHand Free Module
Equipment Class
DCD - Part 15 Low Power Transmitter Below 1705 kHzRadio Frequency Transmitter
Equipment Class
DSC - Part 15 Security/Remote Control TransmitterTXPZ5
Equipment Class
DSC - Part 15 Security/Remote Control Transmitter