
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
GENERAL This system provides the vehicle owner with compass, temperature, trip computer information, tire pressure information(PSI), and integrated Homelink. The Homelink and tire pressure portions of the circuit are separate from the compass section, except that the compass microprocessor controls the power to the Homelink section and the tire pressure section. The compass microprocessor also serially communicates to the Homelink/PSI microprocessor which switch has been pressed and the Homelink/PSI microprocessor communicates back the tire pressure information to the compass microprocessor for display to the driver. The following information refers to the Homelink part of the system and also to the PSI part of the system. Homelink Operational Description This system gives the vehicle owner the ability to use a garage door opener (GDO) that is integral to the interior trim of the vehicle. The Homelink shall be capable of learning and remembering variables required to emulate three different GDO transmitters. In the learn mode of operation, the user selects one of three channels. The Homelink determines the frequency, data and, where applicable, the Rolling Code manufacturer of the original GDO transmitter (OT). The frequency and data stream or rolling algorithm parameters (created within the OT's Rolling Code guidelines) are then stored in non-volatile memory (NVM) for use in the transmit mode of operation. Once contained in memory, the Homelink shall activate the given receiver by repeating, at the proper frequency, either a fixed data stream or a hopping data stream created with the OT's Rolling Code algorithm. Homelink Transmit Mode of Operation If a selected channel has been previously trained, the HomeLink shall operate in transmit mode. To operate the Homelink in the transmit mode, the user shall activate one of three transmit buttons. The Compass microprocessor shall determine which button has been activated and send the information serially to the Homelink microprocessor, which shall generate appropriate data at the proper frequency. The VFD indicator shall be ON continually during transmit mode. The VFD indicator shall rapidly blink (4Hz ± 10%) for 2 ± 10% seconds followed by continuous illumination during Rolling Code PWM transmissions. The HomeLink will continue in the transmit mode for twenty (20 ± 10%) seconds before proceeding to the learning mode of operation. Homelink Default Mode of Operation If a selected channel has never been previously trained nor previously erased, the Homelink shall operate in default mode. To operate the Homelink in the default mode, the user shall activate one of three transmit buttons. The HomeLink shall determine which button has been activated, and using a pre-determined identification code and frequency (see Appendix B for details) shall transmit such data with the VFD indicator continually on. The HomeLink will continue in the default mode for twenty (20 ± 10%) seconds before proceeding to the learning mode of operation. Homelink Rolling Code Default Mode of Operation The user places the Homelink in rolling code default mode by simultaneously holding down buttons one, two, and three for 30 ± 10% seconds. If buttons one, two and three are released while the VFD is rapidly blinking (< 10 seconds), all three channels will be cleared of data. When one of these channels is subsequently activated, the device shall immediately enter the learn mode of operation. To operate the Homelink unit in the rolling code default mode, the user shall activate one of the three transmit buttons. The Homelink unit shall determine which button has been activated and using a pre-determined code-hopping algorithm, bit period and frequency (see Appendix B for details) shall transmit such data with the VFD indicator rapidly blinking (4Hz ± 10%) for 2 ± 10% seconds followed by continuous illumination. Homelink Learn Mode of Operation The Homelink system can learn up to three (3) separate garage door opener (GDO) systems. To train a GDO transmitter to the Homelink system, the user shall complete the following steps: * select one of three channels by selecting 1 of three transmit buttons. If more than one channel is selected at one time, the Homelink shall give the lowest numbered channel highest priority. For example if channel 2 and 3 are selected, channel 2 shall have the higher priority. * hold a transmit button for twenty (20 ± 10%) seconds at which time the learn mode shall be indicated. The Homelink shall be in learn mode only if the VFD indicator is blinking at a rate of lHz ±10%. (The Homelink shall immediately enter learn mode if the selected channel is determined to be clear of data. See 1.2.4) * hold the present GDO transmitter near the Homelink. The Homelink shall train when the OT is held within 1 inch, and shall not train if the OT is held more than 3 feet away from the unit. Once in learn mode, the training process will be complete in <= 90 seconds and shall be indicated by rapidly blinking the VFD (4Hz ± l0%) 40 times. After completion the VFD indicator shall be off. * the data containing the frequency of operation and security code information shall be stored in non-volatile memory (NVM). Homelink Clear Mode of Operation The NVM of the Homelink can be completely erased by simultaneously holding down buttons one and three for 20 ± 10% seconds. Successful erasure of the memory shall be indicated by rapidly blinking the VFD indicator (4Hz ± 10%) 40 times. * If buttons one and three are released while the VFD indicator is blinking rapidly (< 10 seconds), all three channels shall be cleared of data. When one of these channels is subsequently activated, the device shall immediately enter learn mode of operation. * If buttons one and three are continually activated for more than 1 0 seconds at;: the rapid blinking starts, the VFD indicator shall be off. When one of these channels is subsequently activated, the device shall immediately enter default mode of oper…
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AHD EMC Lab, 92723 M152, Dowagiac, MI 49047, (616) 424-7014 280324.DOC Cover / Confidentiality Request Letter: Page 1 of 2 NVLAP ACCREDITED NARTE Certified Engineer Professional Engineer ELITE Electronic Engineering TCB Services 1516 Centre Circle Downers Grove, IL 60515-1082 Re: Application for Certification of Johnson Controls Transmitter under 47CFR 15.231. FCC ID: CB2ZH29HL3P Gentlemen: On behalf of the applicant, Johnson Controls Interiors, LLC, please find attached the submittal materials for certification of the JCI Integrated 433.92MHz Receiver, Universal Garage Door Opener, Model ZH29HL3P This model, a part of their Homelink® III series, is capable of learning the current garage door transmit frequencies from 288MHz through 420MHz except in the forbidden frequency regions. This model incorporates a 433.92MHz Pressure System Information (PSI) Receiver which receives the tire pressure status from transmitters located in the vehicle tires and alerts the driver of any underpressure condition. The complete List of the Exhibits in this submittal package appears on Page 2 of this cover letter. Johnson Controls Interiors has invested considerable resources into developing this Homelink® series. Having the listed exhibits available to ‘competition’ would negate the advantage achieved in developing this product. Since their Homelink® series transmitters will be a major product line for Johnson Controls Interiors, not protecting the details of the design will result in a financial hardship for the company. Pursuant to 47CRF 0.459, Johnson Controls Interiors requests that these listed exhibits be held confidential. Circuit Block Diagrams page 2 of Exhibit B Theory/Description of Operation, page 3 of Exhibit B Schematics page 5 of Exhibit B Your prompt consideration of this application for product certification will be greatly appreciated. Should you have any questions regarding the content of this report, kindly contact me. Sincerely, Ted Chaffee, Technical Lab Manager Narte Certified Engineer, #EMC-002025-NE tel/fax: 616. 424.7014 email: [email protected], or [email protected] Test report #0200555TF FCC 15.231 for ZH29HL3P FCC ID: CB2ZH29HL3P Tested September 20, 2002 AHD EMC Lab, 92723 M152, Dowagiac, MI 49047, (616) 424-7014 280324.DOC Cover / Confidentiality Request Letter: Page 2 of 2 Table of Contents Cover Letter / Table of Contents Total Pages 2 EXHIBIT A: ID Label / Location [2.925,2.926,2.1033(b2,7),15.19(a3)] Total Pages 2 EXHIBIT B: Description of Product [2.1033(b6)] Total Pages 1 Circuit Block Diagram [2.1033(b5)] EXB_Block_diagram.pdf Total Pages 1 Description of Operation [2.1033(b4)] Total Pages 2 Schematics [2.1033(b5)] EXB_Schematic.pdf Total Pages 1 EXHIBIT C: Product photos Total Pages 7 Exterior views [2.1033(b7)] Two photos EXC_EUTbtm.jpg, EXC_EUTtop.jpg : Interior & Printed Circuit Boards [2.1033(b7)] Four photos EXC_EUTin1.jpg EXC_EUTin2.jpg EXC_PCBtop.jpg, EXC_PCBbtm.jpg, , EXHIBIT D: User’s Manual EXD_OEMUserManual1.doc Total Pages 4 EXHIBIT E: Setup photos [2.1033(b8)] Four photos Total Pages 5 EXE_pretest.jpg, EXE_side.jpg, EXE_end.jpg, EXE_flat.jpg Report of Measurements [2.1033(b6)] Total Pages 28 Table of Contents Page 2 Manufacturer/Applicant [2.1033(b1)] Page 4 Measurement/Test Facility & Equipment Page 4 Configuration/Setup [2.1033(b8)] Page 5 Test Standards / Methods Used [2.1033(b6)] Page 7 Test Methodology [2.1033(b6)] Page 7 Test Data [2.1033(b6)] Summary of Results Page 6 Level vs Supply Voltage [15.31(e)] Page 13 Occupied Bandwidth Page 14 Radiated Field Strength [15.231(b)] Page 16 Misc. EXHIBIT: Tuning Information [2.1033(b5] Total Pages 1 RF Exposure Information [2.1093(c)] Total Pages 1
JAPAN PATENTS: GB PATENTS: U.S. PATENTS:
Test report #0200555TF FCC 15.231 for ZH29HL3P FCC ID: CB2ZH29HL3P Tested September 20, 2002 AHD EMC Lab, 92723 M152, Dowagiac, MI 49047, (616) 424-7014 280305.DOC Exhibit F: Page 1 of 2 EXHIBIT A: EQUIPMENT LABEL [2.925, 2.926, 2.1033(B2,7), 15.19(A3)] LABEL EXAMPLE Refer to picture file “EXA_Label.pdf” The FCC Identifier assigned to the EUT is FCC ID: CB2ZH29HL3P. This number will be imprinted on the 1.0”x1.5” high-temperature matte white label. The label will be placed on the exterior of the ZH29HL3P housing using an acrylic adhesive that will permanently affix the label. Because of the small size of the device and because the installation is inside a portion of the automobile, the following statements will appear in the user’s manual. Refer to Exhibit D for the entire text of the user’s manual. “This device complies with FCC rules Part 15. Operation is subject to the following two conditions: (1) This device may not cause harmful interference, and (2) This device must accept any interference that may be received including interference that may cause undesired operation. WARNING: The transmitter has been tested and complies with FCC and IC rules. Changes or modifications not expressly approved by the party responsible for compliance could void the user’s authority to operate the device.” LABEL LOCATION This photo illustrates the label location.
Test report #0200555TF FCC 15.231 for ZH29HL3P FCC ID: CB2ZH29HL3P Tested September 20, 2002 AHD EMC Lab, 92723 M152, Dowagiac, MI 49047, (616) 424-7014 280322.DOC Misc. EXHIBIT: Page 1 of 2 MISC. EXHIBIT: TUNING INFORMATION [2.1033(B5)] Tuning: (Programming) The user programs the ZH29HL3P as outlined in the Users Manual, Exhibit D. A summary is provided here. 1. Pressing the two outside buttons until the indicator LED begins to flash resets the memory. 2. Holding the hand-held transmitter to be copied near the ZH29HL3P and simultaneously activating the hand-held transmitter and one of the user buttons until the indicator LED flashed rapidly trains the unit to duplicate the hand-held transmitter. The information is stored in the non-volatile memory of the ZH29HL3P. During usage, when the “trained” button is pressed, the ZH29HL3P recalls the stored information. 1. The Voltage Controlled Oscillator (VCO) is set on the desired RF carrier frequency. 2. The antenna is coarse tuned by sweeping twice around the expected tuning point. 3. The antenna is fine tuned with 9 pulses of approximately 210 uS with 11 mS off. 4. The VCO is then modulated with the appropriate garage door opener bit code from the non- volatile memory.
Test report #0200555TF FCC 15.231 for ZH29HL3P FCC ID: CB2ZH29HL3P Tested September 20, 2002 AHD EMC Lab, 92723 M152, Dowagiac, MI 49047, (616) 424-7014 280323.DOC Misc. EXHIBIT: Page 2 of 2 MISC. EXHIBIT: RF EXPOSURE INFORMATION [2.1093(C)] The manufacturer and applicant: JOHNSON CONTROLS INTERIORS, LLC. One Prince Center Holland, Michigan 49423 Product: Homelink® Universal Garage Door Opener with PSI Receiver Model: ZH29HL3P Applicable Rules: 47CFR Part 15.231 Pursuant to 47CFR Part 1.1307(b), 47CFR Part 2.1091(c), and 47CFR Part 2.1093(c) this transmitting device, compliant to 47CFR Part 15.231, is categorically excluded from evaluation regarding the Maximum Permissible Exposure of RF energy.
Test report #0200555TF FCC 15.231 for ZH29HL3P FCC ID: CB2ZH29HL3P Tested September 20, 2002 AHD EMC Lab, 92723 M152, Dowagiac, MI 49047, (616) 424-7014 280321.DOC EXHIBIT E: Page 1 of 28 EXHIBIT E: REPORT OF MEASUREMENTS [2.1033(B6)] Test Report for FCC ID: CB2ZH29HL3P FCC Part 2.1031, Part 15 Subpart C(15.231) Report #0200555TF Issued 10/10/02 TRANSCEIVER MODEL ZH29HL3P Prepared for: Mr. Craig Harder Johnson Controls Interiors, LLC One Prince Center Holland, MI 49423 Test Date(s): August 8,29, September 4,6,9,10,20, 2002 data recorded by witnessed by Gordon Helm, PE Ted Chaffee, NCE This report prepared by: Ted Chaffee, NCE Technical Manager/Test Engineer, AHD Test report #0200555TF FCC 15.231 for ZH29HL3P FCC ID: CB2ZH29HL3P Tested September 20, 2002 AHD EMC Lab, 92723 M152, Dowagiac, MI 49047, (616) 424-7014 280321.DOC EXHIBIT E: Page 2 of 28 TABLE OF CONTENTS EXHIBIT E: Report of Measurements [2.1033(b6)] .....................................................................................1 TABLE OF CONTENTS.........................................................................................................................2 Statements Concerning this Report.......................................................................................................3 Manufacturer/Applicant [2.1033(b1)] ....................................................................................................4 Measurement/Test Site Facility & Equipment........................................................................................4 Test Site [2.948, 2.1033(b6)] ......................................................................................................4 Measurement Equipment Used [2.947(d), 15.31(b)] ....................................................................4 Tested Configuration /Setup: [2.1033(b8)] ............................................................................................5 Support Equipment & Cabling .......................................................................................................5 Setup Diagram ...............................................................................................................................5 Summary of Results: .............................................................................................................................6 Changes made to achieve compliance..........................................................................................7 Standards Applied to Test: [2.1033(b6)]................................................................................................7 Test Methodology: [2.1033(b6)].............................................................................................................7 Deviation from the Standard Test Procedure................................................................................7 FORMULAS AND SAMPLE CALCULATIONS: .............................................................................9 Test Data [2.1033(b6)].........................................................................................................................11 Modulation Characteristics ..........................................................................................................11 Relative Emission Level vs. Supply Voltage [15.31(e)] ...............................................................13 Occupied Bandwidth [15.231(c)]..................................................................................................14 Restricted Bands: [15.205]..........................................................................................................15 Radiated Field Strength Measurements: [15.231(b), 15.205] ....................................................16 Radiated Field Strength Measurements ......................................................................................18 Measurement of Receiver Section L.O. Emissions .....................................................................19 Test report #0200555TF FCC 15.231 for ZH29HL3P FCC ID: CB2ZH29HL3P Tested September 20, 2002 AHD EMC Lab, 92723 M152, Dowagiac, MI 49047, (616) 424-7014 280321.DOC EXHIBIT E: Page 3 of 28 Statements Concerning this Report NVLAP Accreditation: NVLAP Lab Code 200129-0 The scope of AHD accreditation is the conducted emissions, radiated emissions test methods of: IEC/CISPR 22: Limits and methods measurement of radio disturbance characteristics of information technology equipment. FCC Method – 47 CFT Part 15 – Digital Devices. AS/NZS 3548: Electromagnetic Interference – Limits and Methods of Measurement of Information Technology Equipment. IEC61000-4-2 and Amend.1: ElectroStatic Discharge Immunity Test Data: This test report contains data covered by the NVLAP accreditation. Subcontracted Testing: This report does not contain data produced under subcontract. Test Traceability: The calibration of all measuring and test equipment and the measured data using this equipment are traceable to the National Institute for Standards and Technology (NIST). Limitations on results: The test results contained in this report relate only to the Item(s) tested. Any electrical or mechanical modification made to the test item subsequent to the test date shall invalidate the data presented in this report. Any electrical or mechanical modification made to the test item subsequent to this test date shall require an evaluation to verify continued compliance. Limitations on copying: This report shall not be reproduced, except in full, without the written approval of AHD. Limitations of the report: This report shall not be used to claim product endorsement by NVLAP, FCC, or any agency of the US Government. Statement of Test Results Uncertainty: Following the guidelines of NAMAS publication NIS81 and NIST Technical Note 1297, the Measurement Uncertainty at a 95% confidence level is determined to be: ± 1.4 dB Test report #0200555TF FCC 15.231 for ZH29HL3P FCC ID…
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One Prince Center · Holland, Michigan · United States
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 4 | 15.231 | 411 MHz - 420 MHz | - |

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