
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Troubleshooting * www.lutron.com/support SymptomSolution Sensor does not respond to motion.Athena Wireless Node is not associated with an Athena system. Please follow programming instructions to associate device to an Athena system. Lights do not dim or turn ON as expected. Ensure that control lines are wired properly. Verify that the driver with self-powered DALI link has the supply activated OR auxiliary DC supply is in use. Contact driver manufacturer for details. Lights are unstable at low-end.Adjust low-end trim. Refer to Athena documentation on www.lutron.com. The “Raise” button on the associated control does not increase the light level. The lights cannot be raised above the Daylighting light level using a control. If it is critical to override the daylight level, disable daylighting from the Athena application. End-of-Line test does not affect color temperature of fixture.Color temperature control is not supported in 0-10 V control applications. If using DALI, confirm that driver supports color temperature control via IEC62386-209. Lutron Electronics Co., Inc. 7200 Suter Road Coopersburg, PA 18036-1299 USA Customer Assistance | 1.844.LUTRON1 USA, Canada, and the Caribbean | +1.888.235.2910 Mexico | +1.610.282.3800 Others | www.lutron.com Part of the Athena System Athena Wireless Node Required Components For each fixture, you will need: Athena Wireless Node with Sensor (A-WN-D01-OCC) Athena Wireless Node (RF only) (A-WN-D01-RF) Note: Neither Daylighting functionality nor occupancy sensing is available in the A-WN-D01-RF Start Here English Important Notes: • Install in accordance with all local and national electrical codes. • Use copper conductors only. • Check to see that the device type and rating is suitable for the application. • DO NOT install if product has any visible damage. • If moisture or condensation is evident, allow the product to dry completely before installation. • Operate between 32 °F and 131 °F (0 °C and 55 °C), ambient. • 0% to 90% humidity, non-condensing. • For indoor use only. • Athena Wireless Node with Sensor should be mounted to fixture in orienta- tion that makes it parallel to the floor when fixture is installed in ceiling. • Clean only with soft, damp cloth; no chemical cleaners. • DO NOT paint. • Disconnect power at the breaker before servicing. A-WN-D01-OCC Athena Wireless Node with Sensor A-WN-D01-RF Athena Wireless Node (RF only) 2. Install Athena Wireless Node • Ensure knockout / cutout and adjacent surfaces are free from burrs, oil, chemicals, debris, etc. • Insert Athena Wireless Node perpendicularly into knockout / cutout. If pre-wired, angle device into knockout to allow wires to pass through, then hook remaining length of device into knockout. • Push firmly on the Athena Wireless Node around the entire perimeter until it sits flush against the intended fixture mounting surface. Do not push on the PIR lens to install the Athena Wireless Node. • Apply power. • Do not fully enclose within the metal fixture. • Athena Wireless Node supports solid and stranded conductors of 26-18 AWG (0.2-0.75 mm 2 ). 3. Removing Athena Wireless Node The Athena Wireless Node mounts in the fixture by way of two pairs of snaps on the device body. To remove the device, a pry tool must be used to deflect the snaps inward and allow removal of the unit. Tools required: Small flathead screwdriver, stiff putty knife or equivalent prying tool. Removal instructions: Begin by identifying the preferred prying areas (indicated by arrows below) on the device: For A-WN-D01-OCC: For A-WN-D01-RF: If you have access to one or both preferred prying areas: 1. Using a small flathead screwdriver or other prying tool, place the prying edge of the tool at one of the preferred pry points between the fixture surface and the lip of the device flange. 2. Keeping the edge of the pry tool under the flange lip, push directly inward toward the center of the device. 3. As you push inward, slowly pry upwards and outward with the pry tool. As the snap disengages, the edge of the unit will pop up out of the fixture hole. 4. Repeat steps 1-3 at the opposite pry point to disengage the other snaps. 5. Once all snaps have disengaged, the unit may be pulled straight out by hand. 6. Remove wires from the unit by unscrewing the screw terminals on the connector. If you do not have access to one or both preferred prying areas: 1. Using a small flathead screwdriver, place the tool edge between the fixture surface and lip of the device flange as close to one of the preferred prying areas as possible. 2. Push the prying edge of the screwdriver inward until it is under the flange lip and stopped against the body of the device. 3. Gently twist the screwdriver blade to lift the flange. The nearest snap location should pop out of the fixture hole. 4. Repeat steps 1-3 on the opposite side of the device to disengage the other snaps. 5. Once snaps have disengaged, the unit may be pulled straight out by hand. 6. Remove wires from the unit by unscrewing the screw terminals on the connector. 1. Connect Wires using Diagram Below Please read before installing One Athena Wireless Node At least one driver with self-powered DALI link 9.5 – 28.8 V- 250 mA max 041844 Rev. A 07/2022 For set-up, programming, and troubleshooting with an Athena system, please refer to the installation instructions included with the Athena hub or at www.lutron.com Default Functionality When powering on the Athena Wireless Node, it will perform a startup test sequence and will then stay at 100% intensity. This sequence is performed after every power cycle until the unit has been powered on continuously for 4 hours or is associated to an Athena system. Driver with self-powered DALI link OR FCC / IC information This device complies with part 15 of the FCC Rules and Industry Canada license-exempt RSS standard(s). Operation is subject to the following two conditions: (1) This device may not cause interference, and (2) this device must accept any interfer…
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LUTRON ELECTRONICS CO., INC. December 2022 Model Difference Letter: For product certification FCC ID JPZ0146 and ISED ID 2851A-JPZ0146 the following Product Marketing Names are present: A-WN-D01-RF A-WN-D01-OCC These devices all utilize the same PCB and wireless circuitry hardware. Description of differences: Model A-WN-D01-OCC (tested model) includes an onboard PIR Occupancy Sensor so the device can support native room occupancy scanning. The model number A-WN-D01-RF utilizes the same PCB and wireless circuitry but the PIR circuit is not populated in manufacturing. Testing on the A-WN-D01-OCC device covers the evaluation of the A-WN-D01-RF.
Date: 12/7/2022 Attn: FCC Office of Engineering and Technology / UL Verification Services TCB Subject: Request for Confidentiality FCC ID: JPZ0146 To Whom It May Concern: Pursuant to the provisions of Sections 0.457 and 0.459 of the Commission’s rules (47 CFR §§ 0.457, 0.459), we are requesting the Commission to withhold the following attachments as confidential document from public disclosure indefinitely. • Schematic Diagram • Block Diagram • Theory of Operation • Parts List Above mentioned document contains detailed system and equipment description are considered as proprietary information in operation of the equipment. The public disclosure of above documents might be harmful to our company and would give competitor an unfair advantage in the market. In additional to above mentioned documents, pursuant to Public Notice DA 04-1705 of the Commission’s policy, in order to comply with the marketing regulations in 47 CFR §2.803 and the importation rules in 47 CFR §2.1204, while ensuring that business sensitive information remains confidential until the actual marketing of newly authorized devices. We are requesting the commission to grant short-term confidentiality request on the following attachments until a period of 180 days after the grant date: • External Photos • Internal Photos • Test Setup Photos • User Manual It is our understanding that all measurement test reports, FCC ID label format and correspondent during certification review process cannot be granted as confidential documents and those information will be available for public review once the grant of equipment authorization is issued. Best Regards, Daniel J. Schlegel Standards Compliance Supervisor Lutron Electronics Co., Inc.
External Photos: Photos in enclosure: Internal Photos: (Antenna Highlighted Internal Photo: (Antenna Highlighted)
Model Number Ratings lutron.com 50020158a Assembled | Ensamblado | Assemblés : Pat. / Brevets: lutron.com/patents IEC SELV/NEC® Class 2 IFT: ############# FCC ID: JPZ0146 HVIN: AWN1 IC: 2851A-JPZ0146 1234 Label Label Placement LABEL LOCATION
External Photos: Photos in enclosure: Internal Photos: (Antenna Highlighted Internal Photo: (Antenna Highlighted)
FCC Part 1 Subpart I FCC Part 2 Subpart J RF EXPOSURE REPORT FOR LOW VOLTAGE LIGHTING CONTROL INTERFACE MODEL NUMBER: A-WN-D01-OCC/A-WN-D01-RF FCC ID: JPZ0146 REPORT NUMBER: R14558600-E4 ISSUE DATE: 2022-12-19 Prepared for LUTRON ELECTRONICS CO. INC. 7200 SUTER ROAD COOPERSBURG, PA 18036-1249, USA Prepared by UL LLC 12 LABORATORY DR. RESEARCH TRIANGLE PARK, NC 27709 USA TEL: (919) 549-1400 REPORT NO: R14558600-E4 DATE: 2022-12-19 FCC ID: JPZ0146 IC: 2851A-JPZ0146 Page 2 of 10 UL LLC FORM NO: 03-EM-F00858 12 Laboratory Dr., RTP, NC 27709 TEL: (919) 549-1400 This report shall not be reproduced except in full, without the written approval of UL LLC. REVISION HISTORY Rev. Issue Date Revisions Revised By V1 2022-12-05 Initial Issue Brian Kiewra V2 2022-12-15 Added additional model on cover page and section 1 Brian Kiewra V3 2022-12-19 Revised MPE calculation to non-simultaneous Tx. Brian Kiewra REPORT NO: R14558600-E4 DATE: 2022-12-19 FCC ID: JPZ0146 IC: 2851A-JPZ0146 Page 3 of 10 UL LLC FORM NO: 03-EM-F00858 12 Laboratory Dr., RTP, NC 27709 TEL: (919) 549-1400 This report shall not be reproduced except in full, without the written approval of UL LLC. TABLE OF CONTENTS REVISION HISTORY ................................................................................................................. 2 TABLE OF CONTENTS ............................................................................................................ 3 1. ATTESTATION OF TEST RESULTS ................................................................................. 4 2. TEST METHODOLOGY ..................................................................................................... 5 3. REFERENCES ................................................................................................................... 5 4. FACILITIES AND ACCREDITATION ................................................................................. 5 5. DECISION RULES AND MEASUREMENT UNCERTAINTY .............................................. 6 5.1. METROLOGICAL TRACEABILITY .............................................................................. 6 5.2. DECISION RULES ....................................................................................................... 6 6. MAXIMUM PERMISSIBLE EXPOSURE (LIMITS AND EQUATIONS) ............................... 7 6.1. FCC RULES ................................................................................................................ 7 6.2. EQUATIONS ................................................................................................................ 8 7. RF EXPOSURE RESULTS ................................................................................................10 END OF TEST REPORT ..........................................................................................................10 REPORT NO: R14558600-E4 DATE: 2022-12-19 FCC ID: JPZ0146 IC: 2851A-JPZ0146 Page 4 of 10 UL LLC FORM NO: 03-EM-F00858 12 Laboratory Dr., RTP, NC 27709 TEL: (919) 549-1400 This report shall not be reproduced except in full, without the written approval of UL LLC. 1. ATTESTATION OF TEST RESULTS COMPANY NAME: Lutron Electronics Co. Inc. 7200 Suter Road Coopersburg, PA 18036-1249, USA EUT DESCRIPTION: Low Voltage Lighting Control Interface MODEL: A-WN-D01-OCC/A-WN-D01-RF SERIAL NUMBER: Non-Serialized SAMPLE RECEIPT DATE: 2022-11-07 DATE TESTED: 2022-11-15 APPLICABLE STANDARDS STANDARD TEST RESULTS FCC PART 1 SUBPART I & PART 2 SUBPART J Complies UL LLC. tested the above equipment in accordance with the requirements set forth in the above standards. The test results show that the equipment tested is capable of demonstrating compliance with the requirements as documented in this report. The results documented in this report apply only to the tested sample, under the conditions and modes of operation as described herein. It is the manufacturer's responsibility to assure that additional production units of this model are manufactured with identical electrical and mechanical components. All samples tested were in good operating condition throughout the entire test program. Measurement Uncertainties are published for informational purposes only and were not taken into account unless noted otherwise. This document may not be altered or revised in any way unless done so by UL LLC. and all revisions are duly noted in the revisions section. Any alteration of this document not carried out by UL LLC. will constitute fraud and shall nullify the document. This report must not be used by the client to claim product certification, approval, or endorsement by a2La, NIST, or any agency of the U.S. government. Approved & Released For UL LLC By: Prepared By: Michael Antola Brian T. Kiewra Staff Engineer Project Engineer Consumer Technology Division Consumer Technology Division UL LLC UL LLC REPORT NO: R14558600-E4 DATE: 2022-12-19 FCC ID: JPZ0146 IC: 2851A-JPZ0146 Page 5 of 10 UL LLC FORM NO: 03-EM-F00858 12 Laboratory Dr., RTP, NC 27709 TEL: (919) 549-1400 This report shall not be reproduced except in full, without the written approval of UL LLC. 2. TEST METHODOLOGY All calculations were made in accordance with FCC Parts 1.1310, 2.1091, 2.1093, KDB 447498 D01 v06, KDB 447498 D03 V01, IEEE Std C95.1-2005, IEEE Std C95.3-2002. 3. REFERENCES Output power and antenna gain data is excerpted from product documentation provided by the applicant. 4. FACILITIES AND ACCREDITATION UL LLC is accredited by A2LA, certification # 0751.06, for all testing performed within the scope of this report. Testing was performed at the locations noted below. Address ISED CABID ISED Company Number FCC Registration ☐ Building: 12 Laboratory Dr RTP, NC 27709, U.S.A US0067 2180C 825374 ☒ Building: 2800 Perimeter Park Dr. Suite B Morrisville, NC 27560, U.S.A 27265 REPORT NO: R14558600-E4 DATE: 2022-12-19 FCC ID: JPZ0146 IC: 2851A-JPZ0146 Page 6 of 10 UL LLC FORM NO: 03-EM-F00858 12 Laboratory Dr., RTP, NC 27709 TEL: (919) 549-1400 Th…
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LUTRON ELECTRONICS CO., INC. 21 December 2022 AWN1 Dipole Antenna Specification Manufacturer: Lutron Electronics Co., Inc. Tested By: Lutron Employee #504822 1. Antenna construction The AWN1 antenna is a dipole constructed of formed metal elements. The antenna connection points are permanently attached to the DUT and cannot be modified or replaced by the user as they are inside the plastic enclosure. 2. Antenna Characteristics No. Item Specification 1 Type Dipole 2 Connection Type Permanently Attached 3 Bandwidth 2402~2480 MHz 4 Peak Gain 1.0 dBi 3. Antenna Picture Figure 1: AWN1 Dipole Antenna LUTRON ELECTRONICS CO., INC. 21 December 2022 4. Peak Gain and Pattern Figure 2: Peak Gain Peak Gain dBi = -1.29dBd + 2.15dB = +0.86dBi 5. Test Site and Procedure The antenna gain is measured at Lutron Electronics, in a 3-meter anechoic chamber and referenced to a certified 2450MHz dipole antenna. Measurements taken 12/14/2022. 6. Equipment List Description Make and Model Calibrated Calibration Due Receiver Keysight N9010B 9/7/2021 9/7/2024 Signal Generator HP 8648C 9/15/2022 9/15/2025 Test Antenna AH Systems SAS-521-7 validated at time of test Reference Dipole ETS Lindgren 3125-2450 validated at time of test LUTRON ELECTRONICS CO., INC. 21 December 2022 7. Test Setup Photograph Figure 3: AWN1 Peak Gain Orientation
TEST REPORT Report Number. : R14558600-E1 Applicant : Lutron Electronics CO INC 7200 Suter Rd Coopersburg, PA, 18036-1249, US Model : A-WN-D01-OCC/A-WN-D01-RF Brand : Lutron FCC ID : JPZ0146 IC : 2851A-JPZ0146 EUT Description : Low voltage lighting control interface Test Standard(s) : FCC 47 CFR PART 15 SUBPART C: 2022 ISED RSS-247 ISSUE 2: 2017 ISED RSS-GEN ISSUE 5 + A2: 2021 Date Of Issue: 2022-12-29 Prepared by: UL LLC 12 Laboratory Dr. Research Triangle Park, NC 27709 U.S.A. TEL: (919) 549-1400 REPORT NO: R14558600-E1 DATE: 2022-12-29 FCC ID: JPZ0146 IC: 2851A-JPZ0146 Page 2 of 58 UL LLC 12 Laboratory Dr. Research Triangle Park, NC 27709 U.S.A. TEL:(919)-549-1400 This report shall not be reproduced except in full, without the written approval of UL LLC REPORT REVISION HISTORY Rev. Issue Date Revisions Revised By V1 2022-11-17 Initial Issue Noah Bennett V2 2022-11-23 Corrected DC equation in Section 9.1. Brian Kiewra V3 2022-12-02 Corrected typos is section 9.1 and firmware version in section 6.4 Brian Kiewra V4 2022-12-15 Added attenuator to antenna port equipment list in section 8. Added additional model on cover page and sections 1 and 6.1. Writeup of model descriptions added to section 6.1 Brian Kiewra V5 2022-12-29 Addressed TCB Feedback. Noah Bennett REPORT NO: R14558600-E1 DATE: 2022-12-29 FCC ID: JPZ0146 IC: 2851A-JPZ0146 Page 3 of 58 UL LLC 12 Laboratory Dr. Research Triangle Park, NC 27709 U.S.A. TEL:(919)-549-1400 This report shall not be reproduced except in full, without the written approval of UL LLC TABLE OF CONTENTS REPORT REVISION HISTORY ..................................................................................................2 TABLE OF CONTENTS .............................................................................................................3 1. ATTESTATION OF TEST RESULTS ..................................................................................5 2. TEST RESULTS SUMMARY ...............................................................................................6 3. TEST METHODOLOGY ......................................................................................................6 4. FACILITIES AND ACCREDITATION ..................................................................................6 5. DECISION RULES AND MEASUREMENT UNCERTAINTY ...............................................7 5.1. METROLOGICAL TRACEABILITY ...............................................................................7 5.2. DECISION RULES ........................................................................................................7 5.3. MEASUREMENT UNCERTAINTY ................................................................................7 5.4. SAMPLE CALCULATION .............................................................................................7 6. EQUIPMENT UNDER TEST ................................................................................................8 6.1. EUT DESCRIPTION .....................................................................................................8 6.2. MAXIMUM OUTPUT POWER .......................................................................................8 6.3. DESCRIPTION OF AVAILABLE ANTENNAS ...............................................................8 6.4. SOFTWARE AND FIRMWARE .....................................................................................8 6.5. WORST-CASE CONFIGURATION AND MODE ...........................................................8 6.6. DESCRIPTION OF TEST SETUP .................................................................................9 7. MEASUREMENT METHOD...............................................................................................10 8. TEST AND MEASUREMENT EQUIPMENT ......................................................................11 9. ANTENNA PORT TEST RESULTS ...................................................................................14 9.1. ON TIME AND DUTY CYCLE .....................................................................................14 9.2. 99% BANDWIDTH ......................................................................................................16 9.2.1. BLE (1Mbps) ........................................................................................................16 9.2.2. BLE (2Mbps) ........................................................................................................17 9.3. 6 dB BANDWIDTH ......................................................................................................18 9.3.1. BLE (1Mbps) ........................................................................................................18 9.3.2. BLE (2Mbps) ........................................................................................................19 9.4. OUTPUT POWER .......................................................................................................20 9.4.1. BLE (1Mbps) ........................................................................................................20 9.4.2. BLE (2Mbps) ........................................................................................................20 9.5. AVERAGE POWER ....................................................................................................21 9.5.1. BLE (1Mbps) ........................................................................................................21 REPORT NO: R14558600-E1 DATE: 2022-12-29 FCC ID: JPZ0146 IC: 2851A-JPZ0146 Page 4 of 58 UL LLC 12 Laboratory Dr. Research Triangle Park, NC 27709 U.S.A. TEL:(919)-549-1400 This report shall not be reproduced except in full, without the written approval of UL LLC 9.5.2. BLE (2Mbps) ........................................................................................................21 9.6. POWER SPECTRAL DENSITY ..................................................................................22 9.6.1. BLE (1Mbps)…
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TEST REPORT Report Number. : R14558600-E2 Applicant : Lutron Electronics CO INC 7200 Suter Rd Coopersburg, PA, 18036-1249, US Model : A-WN-D01-OCC/A-WN-D01-RF Brand : Lutron FCC ID : JPZ0146 IC : 2851A-JPZ0146 EUT Description : Low voltage lighting control interface Test Standard(s) : FCC 47 CFR PART 15 SUBPART C: 2022 ISED RSS-247 ISSUE 2: 2017 ISED RSS-GEN ISSUE 5 + A2: 2021 Date Of Issue: 2022-12-29 Prepared by: UL LLC 12 Laboratory Dr. Research Triangle Park, NC 27709 U.S.A. TEL: (919) 549-1400 REPORT NO: R14558600-E2 DATE: 2022-12-29 FCC ID: JPZ0146 IC: 2851A-JPZ0146 Page 2 of 43 UL LLC 12 Laboratory Dr., Research Triangle Park, NC 27709; USA TEL: (919) 549-1400 This report shall not be reproduced except in full, without the written approval of UL LLC REPORT REVISION HISTORY Rev. Issue Date Revisions Revised By V1 2022-11-17 Initial Issue Noah Bennett V2 2022-11-23 Revised DC equation in Section 9.1 Revised Zigbee references to 802.15.4 Brian Kiewra V3 2022-12-02 Corrected typos is section 9.1 and firmware version in section 6.4 Brian Kiewra V4 2022-12-15 Added attenuator to antenna port equipment list in section 8. Added additional model on cover page and sections 1 and 6.1. Writeup of model descriptions added to section 6.1 Brian Kiewra V5 2022-12-29 Addressed TCB Feedback Noah Bennett REPORT NO: R14558600-E2 DATE: 2022-12-29 FCC ID: JPZ0146 IC: 2851A-JPZ0146 Page 3 of 43 UL LLC 12 Laboratory Dr., Research Triangle Park, NC 27709; USA TEL: (919) 549-1400 This report shall not be reproduced except in full, without the written approval of UL LLC TABLE OF CONTENTS REPORT REVISION HISTORY ..................................................................................................2 TABLE OF CONTENTS .............................................................................................................3 1. ATTESTATION OF TEST RESULTS ..................................................................................5 2. TEST RESULTS SUMMARY ...............................................................................................6 3. TEST METHODOLOGY ......................................................................................................6 4. FACILITIES AND ACCREDITATION ..................................................................................6 5. DECISION RULES AND MEASUREMENT UNCERTAINTY ...............................................7 5.1. METROLOGICAL TRACEABILITY ...............................................................................7 5.2. DECISION RULES ........................................................................................................7 5.3. MEASUREMENT UNCERTAINTY ................................................................................7 5.4. SAMPLE CALCULATION .............................................................................................7 6. EQUIPMENT UNDER TEST ................................................................................................8 6.1. EUT DESCRIPTION .....................................................................................................8 6.2. MAXIMUM OUTPUT POWER .......................................................................................8 6.3. DESCRIPTION OF AVAILABLE ANTENNAS ...............................................................8 6.4. SOFTWARE AND FIRMWARE .....................................................................................8 6.5. WORST-CASE CONFIGURATION AND MODE ...........................................................8 6.6. DESCRIPTION OF TEST SETUP .................................................................................9 7. MEASUREMENT METHOD...............................................................................................10 8. TEST AND MEASUREMENT EQUIPMENT ......................................................................11 9. ANTENNA PORT TEST RESULTS ...................................................................................14 9.1. ON TIME AND DUTY CYCLE .....................................................................................14 9.2. 99% BANDWIDTH ......................................................................................................15 9.2.1. 802.15.4 ...............................................................................................................15 9.3. 6 dB BANDWIDTH ......................................................................................................16 9.3.1. 802.15.4 ...............................................................................................................16 9.4. OUTPUT POWER .......................................................................................................17 9.4.1. 802.15.4 ...............................................................................................................17 9.5. AVERAGE POWER ....................................................................................................18 9.5.1. 802.15.4 ...............................................................................................................18 9.6. POWER SPECTRAL DENSITY ..................................................................................19 9.6.1. 802.15.4 ...............................................................................................................19 REPORT NO: R14558600-E2 DATE: 2022-12-29 FCC ID: JPZ0146 IC: 2851A-JPZ0146 Page 4 of 43 UL LLC 12 Laboratory Dr., Research Triangle Park, NC 27709; USA TEL: (919) 549-1400 This report shall not be reproduced except in full, without the written approval of UL LLC 9.7. CONDUCTED SPURIOUS EMISSIONS .....................................................................20 9.7.1. 802.15.4 ...............................................................................................................21 10. RADIATED TEST RESULTS ................................................................................…
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SETUP PHOTOS EXHIBIT Report Number. : R14558600-EP1 Applicant : Lutron Electronics CO INC 7200 Suter Rd Coopersburg, PA, 18036-1249, US Model : A-WN-D01-OCC/A-WN-D01-RF Brand : Lutron FCC ID : JPZ0146 IC : 2851A-JPZ0146 EUT Description : Low voltage lighting control interface Test Standard(s) : FCC 47 CFR PART 15 SUBPART C: 2022 ISED RSS-247 ISSUE 2: 2017 ISED RSS-GEN ISSUE 5 + A2: 2021 Date Of Issue: 2022-12-15 Prepared by: UL LLC 12 Laboratory Dr. Research Triangle Park, NC 27709 U.S.A. TEL: (919) 549-1400 REPORT NO: R14558600-EP1 DATE: 2022-12-15 FCC ID: JPZ0146 IC: 2851A-JPZ0146 Page 2 of 12 UL LLC 12 Laboratory Dr., RTP, NC 27709; USA TEL: (919) 549-1400 This report shall not be reproduced except in full, without the written approval of UL LLC REPORT REVISION HISTORY Rev. Issue Date Revisions Revised By v1 2022-11-17 Initial Issue Noah Bennett V2 2022-12-15 Added additional model number to cover page Brian Kiewra REPORT NO: R14558600-EP1 DATE: 2022-12-15 FCC ID: JPZ0146 IC: 2851A-JPZ0146 Page 3 of 12 UL LLC 12 Laboratory Dr., RTP, NC 27709; USA TEL: (919) 549-1400 This report shall not be reproduced except in full, without the written approval of UL LLC TABLE OF CONTENTS REPORT REVISION HISTORY ................................................................................................. 2 TABLE OF CONTENTS ............................................................................................................ 3 1. SETUP DIAGRAMS ........................................................................................................... 4 2. SETUP PHOTOS ................................................................................................................ 5 END OF TEST REPORT ..........................................................................................................12 REP…
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| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 2 | 15C | 2.40 GHz - 2.48 GHz | 72.00 mW |
Wireless Interface
Equipment Class
DTS - Digital Transmission SystemWireless Processor
Equipment Class
DTS - Digital Transmission SystemCopy of Wireless Processor
Equipment Class
DTS - Digital Transmission SystemLED Downlight
Equipment Class
DTS - Digital Transmission SystemLED Lighting Controller
Equipment Class
DTS - Digital Transmission System