
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
D- 307788 MP-843/XHM2 1 Installation Guide MP-843/XHM2 ZigBee 3.0 Home Automation Wireless Digital Pet Immune PIR Motion Detector Introduction The MP-843/XHM2 PIR motion detector is wireless, digital, and immune to the movements of pets. The detector is controlled by a micro- processor and supports ZigBee 3.0. The detector has the following features: • Detection distance of up to 49 ft. • Uniform detection. • White light immunity Note: T his feature is not evaluated by UL. • Target Specific Imaging™ (TSI) enables immunity from pets weighing up to 85 lb. Note: T his specification is not evaluated by UL. • The patented True Motion Recognition™ algorithm enhances false alarm rejection. • Requires no vertical adjustment. • To save battery power, the detector goes to sleep after a detection while in normal mode. If there is no detection during the following 2-minute period, the detector returns to a ready state. • Temperature compensation. • Front tamper protection. • Black m irror tec hnology provides ex cellent white light protection. • Elegant, sturdy case. Figure 1: Legend Callout Description 1 Red LED 2 Green LED 3 Tamper switch Specifications • Detector type: dual element low-noise pyroelectric sensor • O ptical data: o 9 far parabolic blac k m irrors provide 18 beams. o 5 near c ylinder blac k m irrors provide 10 curtains. o An optical attenuator on the mirror provides pet immunity protection. • Max imum c overage: 90° and 15 x 15 m or 49.2 ft x 49.2 ft • Pet immunity: up to 85 lb Electrical • Internal batteries: two 3 V CR-123A lithium batteries. Note: For UL installations, use only GP batteries. • Nominal battery capacity: 1400 mAh • Battery life: over 5 years * Note: • The battery life reduces faster if the device cannot connect to a wireless network or the wireless connection quality is lower than 20%. • This specification is not evaluated by UL. • Battery power test: occurs when you insert the battery and periodically every several hours Functional • Alarm period: 3 s • Visual indications: o The red LED lights for 3 seconds when the detector transmits an alarm or tamper message. o The red LED lights for 3 seconds when the detector detects motion while it is in walk test mode. Note: Outside of walk test mode, the red LED does not light when the detector detects alarm, or when it sends transmission or supervision messages. o The red LED flashes during the power-up stabiliz ation period and when you press the tamper switch • Rearm tim er: rearms the detector 2 minutes after the last alarm. The tim er is disabled in walk test mode. Wireless • Supported network: ZigBee 3.0 • Frequency: 2.405 to 2.480 Ghz as per IEEE 802.15.4 • Tam per alert: reports when a tamper event occurs and in any subsequent message until the tamper switch is restored Mounting • Height: 6 ft to 7 ft. For pet immunity, the optimal height is 7 ft. • Installation options: flat surfac e or c orner Environmental • RFI protection: >20 V/m up to 1000 MHz • O perating temperatures: -1 0°C or 14°F to 50°C or 122°F • Storage temperatures: -20°C or -4°F to 60°C or 140°F Physical • Size (H x W x D): 4.68 in. x 3.11 in. x 1.31 in. • Weight including batteries: 4.2 oz . • Color: white • Patent: U.S. patents 5,693,943 and 6,211,522 Installation General Guidance Note: Install the device in accordance with the Standard for Installation and Classification of Residential Alarm Systems, UL 1641. Do not install the device in any of the following locations. See Figure 2: 1. Near high-voltage electrical lines 2. Near heat sourc es 3. Outdoors 4. In direct sunshine 5. In an area exposed to air drafts 2 D- 307788 MP-843/XHM2 6.Behind partitions or objects 7.On unstable surfaces Warning: Do not obsc ure partially or completely the detector’s field of view. Figure 2: General installation guidance Mounting the MP-843/XHM2 1.To remove the bracket, turn the detector so that the flat side is facedown and the detector spine is faceup. Press the spine below the snap and slide off the cover. S ee Figure 3. 2.Mount the bracket on the wall with screws. To mount the brac ket in a c orner, use either hole set A1 or hole set A2. To mount the bracket on a flat surface or hole set B. See Figure 4. 3.Ac tivate the detector with one of the following options: •If batteries are already installed, pull the activation tab that protrudes from the battery compartment. See Figure 5. •If there are no batteries, insert new ones with the correct polarity. For m ore inform ation, see Inserting or replac ing the batteries. 4.To mount the detector on the bracket, align the groove of the detector with the rail of the bracket and slide the detector downward until you hear a click. 5.When the unit is mounted in its final location and ready for the walk test, remove the protective film on the front of the unit. Replacing the batteries 1.P ress upward to slide off the detector from the bracket. See Figure 7. 2.Optional: Remove the batteries and wait for 1 minute. Note: Dispose of used batteries according to the manufacturer's instructions. 3.Insert the new batteries. Caution! R isk of ex plosion if battery is replac ed with an inc orrec t type. For more information, see Batteries in Specifications. 4.To mount the detector on the brac ket, slide it downward until you hear a click. Fig ure 7: Replacing the batteries Pairing the detector and the panel Pair the detector and control panel before you install the detector. Note: For UL listed installations, only use the device with UL listed control panels. 1.Se t the panel to pairing mode. For m ore inform ation, refer to the panel user guide. 2.Set the detector to pairing mode. 3.To activate the detector, pull the activation strip that protrudes from the battery compartment. See Figure 5. 4.Verify that the detector is searching for the panel: the green LED blinks 3 times every 5 seconds and continues to blink for up to 1 minute. Note: If you press the tamper switch or trip the motion detector, the search process fails and resta…
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Visonic Ltd. 24 Habarzel Street P.O.Box 22020 Tel-Aviv 69710, Israel Tele: +972 3 645 6789 Fax: +972 3 645 6788 www.visonic.com June 02, 2020 Telefication B.V. Attn: Dept. FCC TCB Edisonstraat 12A 6902 PK ZEVENAAR The Netherlands Subject: Application for certification of a PIR detector ZigBee, MP-843 (2.4GHz), FCC ID: WP3MP843 Dear Gentlemen, Please find attached our application for certification of a PIR detector ZigBee, brand name MP-843 (2.4GHz), FCC ID: WP3MP843, prepared in accordance with FCC Rules, part 15, section 15.247 . The product testing and this application for certification were performed by Hermon Laboratories, which is recognized and accredited by FCC, Test Firm Registration Number is 927748, Designation Number is IL1001. Hermon Labs responsible person is Mr. Michael Nikishin, tel: +972 4626 8440, fax:+972 4628 8277, e-mail: [email protected]. Please send an invoice to Hermon Labs. We hope this application satisfies your requirements Sincerely yours, Zuri Rubin, I Certification Manager Visonic Ltd.
Visonic Ltd. 24 Habarzel Street P.O.Box 22020 Tel-Aviv 69710, Israel Tele: +972 3 645 6789 Fax: +972 3 645 6788 www.visonic.com Declaration of Authorization We Name: Visonic Ltd. Address: 24 Habarzel street City: Tel Aviv 69710 Country: Israel Declare that: Name Representative of agent: ............. (1) Agent Company name: Hermon Laboratories Ltd. Address: Harakevet Industrial Zone City: Binyamina 3055001 Country Israel is authorized to apply for Certification of the following product(s): Product description: PIR detector ZigBee Type designation: MP-843 (2.4GHz) Trademark: Visonic Ltd. Validity/ expiry date: June 02, 2021 on our behalf. Date: June 02, 2020 City: Tel Aviv Name: Zuri Rubin (2) Function: Certification Manager Signature: Notes: (1): Required for FCC application (2): For FCC it must be the Grantee Code “owner” or the authorized agent.
FCC, Request for non-disclosure Date: 16-Jul-10 RF_501, Issue 6 Page 1 of 1 Company Name: Visonic Ltd. Address: Habarzel street 24, City: Tel Aviv 69710, Country: Israel To: Telefication B.V., Dept. FCC TCB Edisonstraat 12A 6902 PK ZEVENAAR The Netherlands Subject: Request for confidentiality FCC ID: WP3MP843 Reference number: ###### Dear FCC TCB, 1. Long-Term Confidentiality Pursuant to 47 CFR Section 0.459(a) & (b), we hereby requests non-disclosure and confidential treatment of the following materials submitted in support of FCC certification application: Bill(s) of Material Block Diagrams Operational Description Schematic Diagrams Tune-up Procedure Above materials contain secrets, proprietary and technical information, which would customarily be guarded from competitors under 47 CFR, section 0.457(d)(2). Disclosure or publication or any portion of this company confidential material to other parties could cause substantial competitive harm and provide unjustified benefits for competitors. 2. Short-Term Confidentiality (STC) 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, applicant hereby requests Short-Term Confidential treatment of the following materials (note 1): Internal Photos User’s Manual Test Set-up Photos External Photos Justification: in order to avoid exposed of the technology to the competitors Planned Release Date STC: 180 days after grant date (notes 2, 3, 4, 5) Date: June 02, 2020 Name and signature of applicant: Zuri Rubin Notes: 1) A document or type of document can only have ONE type of confidentiality! 2) Short-Term confidentiality is in principle for 45 days from date of grant; it can be extended max 3 times (total time 180 days max.)! 3) FCC must be informed when marketing begins earlier. 4) Release takes place automatically thus extension must be requested in time. Telefication does not remind you of this! 5) Request for extension or for release must be received by Telefication at least 7 days before date of actual marketing or before expiration of the STC period
Visonic Ltd. FCC ID:WP3MP843 IC:1467C-MP843 Page 1 of 3 EXTERNAL PHOTOGRAPHS This document contains 2 photographs Visonic Ltd. FCC ID:WP3MP843 IC:1467C-MP843 Page 2 of 3 Photograph No.1 Front view Visonic Ltd. FCC ID:WP3MP843 IC:1467C-MP843 Page 3 of 3 Photograph No.2 Rear view
ECM Title: TYCO LABEL DRAWING TYCO TBD Product Name: Label MP-843 NA + SN (2.4GHz) Date Name Document No: NA 08.06.2020 ALBERT F. Created Document Rev: 00 Updated Sheet 1 of 1 Approved MATERIAL: Each label print on Polyester S-306185 S-209583 (Label 1 - left) & S-209584 (Label 2 - right) S-209585 (Label 3)
Visonic Ltd. FCC ID:WP3MP843 IC:1467C-MP843 Page 1 of 5 INTERNAL PHOTOGRAPHS This document contains 4 photographs Visonic Ltd. FCC ID:WP3MP843 IC:1467C-MP843 Page 2 of 5 Photograph No.1 Internal view Visonic Ltd. FCC ID:WP3MP843 IC:1467C-MP843 Page 3 of 5 Photograph No.2 Component side of the main PCB Visonic Ltd. FCC ID:WP3MP843 IC:1467C-MP843 Page 4 of 5 Photograph No.3 Print side of the main PCB Visonic Ltd. FCC ID:WP3MP843 IC:1467C-MP843 Page 5 of 5 Photograph No.4 Antenna assembly
Visonic Ltd. FCC ID:WP3MP843 Exposure limit according to §15.247(i) The PIR detector is classified as a mobile device. The FCC limit for power density for general population/uncontrolled exposure is 1 mW/cm 2 for 2.4 GHz. The power density P (mW/cm 2 ) = P T / 4 r 2 P T is the transmitted power, which is equal to the peak transmitter output power 19.2 dBm plus maximum antenna gain 1 dBi, the maximum equivalent isotropically radiated power EIRP is P T = 20.2 dBm = 105 mW. The power density at 20 cm (minimum safe distance, required for mobile devices), calculated as follows: 105 mW / 4 (20 cm) 2 = 0.02 mW/cm 2 << 1 mW/cm 2 General public cannot be exposed to dangerous RF level.
Hermon Laboratories Ltd. P.O. Box 23, Binyamina 3055001, Israel Tel. +972 4628 8001 Fax. +972 4628 8277 E-mail: [email protected] Page 1 of 100 Report ID: VISRAD_FCC.35662 Date of Issue: 17-Jun-20 ELECTRICAL TESTING 0839.01 TEST REPORT ACCORDING TO: FCC 47CFR part 15 subpart C §15.247 (DTS) and subpart B, RSS-247 Issue 2:2017, ICES-003 Issue 6:2016 FOR: Visonic Ltd. PIR detector ZigBee Model: MP-843 (2.4GHz) and MP-843 (2.4GHz) XHM2 FCC ID: WP3MP843 IC: 1467C-MP843 This report is in conformity with ISO/ IEC 17025. The "A2LA Accredited" symbol endorsement applies only to the tests and calibrations that are listed in the scope of Hermon Laboratories accreditation. The test results relate only to the items tested. This test report shall not be reproduced in any form except in full with the written approval of Hermon Laboratories Ltd. Report ID: VISRAD_FCC.35662 Date of Issue: 17-Jun-20 Page 2 of 100 Table of contents 1 Applicant information ..................................................................................................................................................... 3 2 Equipment under test attributes .................................................................................................................................... 3 3 Manufacturer information .............................................................................................................................................. 3 4 Test details .................................................................................................................................................................... 3 5 Tests summary .............................................................................................................................................................. 4 6 EUT description ............................................................................................................................................................. 5 6.1 General information ....................................................................................................................................................... 5 6.2 Test configuration .......................................................................................................................................................... 5 6.3 Changes made in EUT .................................................................................................................................................. 5 6.4 Transmitter characteristics ............................................................................................................................................ 6 7 Transmitter tests according to 47CFR part 15 subpart C requirements ........................................................................ 7 7.1 Minimum 6 dB bandwidth .............................................................................................................................................. 7 7.2 Field strength of spurious emissions ........................................................................................................................... 13 7.3 Peak output power ...................................................................................................................................................... 47 7.4 Band edge radiated emissions .................................................................................................................................... 58 7.5 Peak spectral power density ....................................................................................................................................... 73 7.6 Antenna requirements ................................................................................................................................................. 84 8 Emission tests according to 47CFR part 15 subpart B requirements .......................................................................... 85 8.1 Radiated emission measurements .............................................................................................................................. 85 9 APPENDIX A Test equipment and ancillaries used for tests ....................................................................................... 90 10 APPENDIX B Test equipment correction factors ......................................................................................................... 91 11 APPENDIX C Test laboratory description ................................................................................................................... 96 12 APPENDIX D Measurement uncertainties .................................................................................................................. 97 13 APPENDIX E Specification references........................................................................................................................ 98 14 APPENDIX F Manufacturer’s declaration .................................................................................................................... 99 15 APPENDIX F Abbreviations and acronyms ............................................................................................................... 100 Report ID: VISRAD_FCC.35662 Date of Issue: 17-Jun-20 Page 3 of 100 1 Applicant information Client name: Visonic Ltd. Address: 24 Habarzel street, Tel Aviv 69710, Israel Telephone: +972 3645 6832 Fax: +972 3645 6788 E-mail: [email protected] Contact name: Mr. Zuri Rubin 2 Equipment under test attributes Product name: PIR detector ZigBee Product type: Transciver Model(s): MP-843 (2.4GHz) Serial number: NA Hardware version: 90-209582 Software release: JS-703699 Receipt date 21-Jan-20 3 Manufacturer information Client name: Visonic Ltd. Address: 24 Habarzel street, Tel Aviv 69710, Israel Telephone: +972 3645 6832 Fax: +972 3645 6788 E-mail: [email protected] Contact name: Mr. Zuri Rubin 4 Test details Project ID…
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Report ID: VISRAD_FCC.35662 Date of Issue: 17-Jun-20 Test specification: Section 15.247(d) / RSS-247 section 5.5, Radiated spurious emissions Test procedure: ANSI C63.10 section 11.12.1 Test mode: Compliance Verdict: PASS Date(s): 16-Dec-19 Temperature: 22 ºC Relative Humidity: 47 % Air Pressure: 1020 hPa Power: 3 VDC Remarks: Page 30 of 100 Plot 7.2.21 Radiated emission measurements from 1000 to 2400 MHz at the low carrier frequency TEST SITE: Semi anechoic chamber TEST DISTANCE: 3 m ANTENNA POLARIZATION: Vertical and Horizontal CARRIER FREQUENCY: 2405.0 MHz EUT TX ANTENNA: #1 Plot 7.2.22 Radiated emission measurements from 1000 to 2400 MHz at the low carrier frequency TEST SITE: Semi anechoic chamber TEST DISTANCE: 3 m ANTENNA POLARIZATION: Vertical and Horizontal CARRIER FREQUENCY: 2405.0 MHz EUT TX ANTENNA: #2 0 10 20 30 40 50 60 70 80 90 1000 1100 1200 1300 1400 1500 1600 1700 1800 1900 2000 2100 2200 2300 2400 Level in dBμV/m Fre que ncy in MH z 2.400000000 G Hz 57.206 dBμV/m 0 10 20 30 40 50 60 70 80 90 1000 1100 1200 1300 1400 1500 1600 1700 1800 1900 2000 2100 2200 2300 2400 Level in dBμV/m Fre que ncy in MH z 2.399533333 G Hz 60.272 dBμV/m 2.328786667 G Hz 41.986 dBμV/m Report ID: VISRAD_FCC.35662 Date of Issue: 17-Jun-20 Test specification: Section 15.247(d) / RSS-247 section 5.5, Radiated spurious emissions Test procedure: ANSI C63.10 section 11.12.1 Test mode: Compliance Verdict: PASS Date(s): 16-Dec-19 Temperature: 22 ºC Relative Humidity: 47 % Air Pressure: 1020 hPa Power: 3 VDC Remarks: Page 31 of 100 Plot 7.2.23 Radiated emission measurements from 1000 to 2400 MHz at the mid carrier frequency TEST SITE: Semi anechoic chamber TEST DISTANCE: 3 m ANTENNA POLARIZATION: Vertical and Horizontal CARRIER FREQUENCY: 2445.0 MHz EUT TX ANTENNA: #1 Plot 7.2.24 Radiated emission measurements from 1000 to 2400 MHz at the mid carrier frequency TEST SITE: Semi anechoic chamber TEST DISTANCE: 3 m ANTENNA POLARIZATION: Vertical and Horizontal CARRIER FREQUENCY: 2445.0 MHz EUT TX ANTENNA: #2 0 10 20 30 40 50 60 70 80 90 1000 1100 1200 1300 1400 1500 1600 1700 1800 1900 2000 2100 2200 2300 2400 Level in dBμV/m Fre que ncy in MH z 2.368733333 G Hz 42.842 dBμV/m 0 10 20 30 40 50 60 70 80 90 1000 1100 1200 1300 1400 1500 1600 1700 1800 1900 2000 2100 2200 2300 2400 Level in dBμV/m Fre que ncy in MH z 2.368780000 G Hz 42.780 dBμV/m Report ID: VISRAD_FCC.35662 Date of Issue: 17-Jun-20 Test specification: Section 15.247(d) / RSS-247 section 5.5, Radiated spurious emissions Test procedure: ANSI C63.10 section 11.12.1 Test mode: Compliance Verdict: PASS Date(s): 16-Dec-19 Temperature: 22 ºC Relative Humidity: 47 % Air Pressure: 1020 hPa Power: 3 VDC Remarks: Page 32 of 100 Plot 7.2.25 Radiated emission measurements from 1000 to 2400 MHz at the mid carrier frequency TEST SITE: Semi anechoic chamber TEST DISTANCE: 3 m ANTENNA POLARIZATION: Vertical and Horizontal CARRIER FREQUENCY: 2475.0 MHz EUT TX ANTENNA: #1 Plot 7.2.26 Radiated emission measurements from 1000 to 2400 MHz at the mid carrier frequency TEST SITE: Semi anechoic chamber TEST DISTANCE: 3 m ANTENNA POLARIZATION: Vertical and Horizontal CARRIER FREQUENCY: 2475.0 MHz EUT TX ANTENNA: #2 0 10 20 30 40 50 60 70 80 90 1000 1100 1200 1300 1400 1500 1600 1700 1800 1900 2000 2100 2200 2300 2400 Level in dBμV/m Fre que ncy in MH z 2.360473333 G Hz 40.163 dBμV/m 0 10 20 30 40 50 60 70 80 90 1000 1100 1200 1300 1400 1500 1600 1700 1800 1900 2000 2100 2200 2300 2400 Level in dBμV/m Fre que ncy in MH z 2.397573333 G Hz 41.230 dBμV/m Report ID: VISRAD_FCC.35662 Date of Issue: 17-Jun-20 Test specification: Section 15.247(d) / RSS-247 section 5.5, Radiated spurious emissions Test procedure: ANSI C63.10 section 11.12.1 Test mode: Compliance Verdict: PASS Date(s): 16-Dec-19 Temperature: 22 ºC Relative Humidity: 47 % Air Pressure: 1020 hPa Power: 3 VDC Remarks: Page 33 of 100 Plot 7.2.27 Radiated emission measurements from 1000 to 2400 MHz at the high carrier frequency TEST SITE: Semi anechoic chamber TEST DISTANCE: 3 m ANTENNA POLARIZATION: Vertical and Horizontal CARRIER FREQUENCY: 2480.0 MHz EUT TX ANTENNA: #1 Plot 7.2.28 Radiated emission measurements from 1000 to 2400 MHz at the high carrier frequency TEST SITE: Semi anechoic chamber TEST DISTANCE: 3 m ANTENNA POLARIZATION: Vertical and Horizontal CARRIER FREQUENCY: 2480.0 MHz EUT TX ANTENNA: #2 0 10 20 30 40 50 60 70 80 90 1000 1100 1200 1300 1400 1500 1600 1700 1800 1900 2000 2100 2200 2300 2400 Level in dBμV/m Fre que ncy in MH z 2.217766667 G Hz 38.108 dBμV/m 0 10 20 30 40 50 60 70 80 90 1000 1100 1200 1300 1400 1500 1600 1700 1800 1900 2000 2100 2200 2300 2400 Level in dBμV/m Fre que ncy in MH z 2.010426667 G Hz 37.268 dBμV/m Report ID: VISRAD_FCC.35662 Date of Issue: 17-Jun-20 Test specification: Section 15.247(d) / RSS-247 section 5.5, Radiated spurious emissions Test procedure: ANSI C63.10 section 11.12.1 Test mode: Compliance Verdict: PASS Date(s): 16-Dec-19 Temperature: 22 ºC Relative Humidity: 47 % Air Pressure: 1020 hPa Power: 3 VDC Remarks: Page 34 of 100 Plot 7.2.29 Radiated emission measurements from 2400 to 2483.5 MHz at the low carrier frequency TEST SITE: Semi anechoic chamber TEST DISTANCE: 3 m ANTENNA POLARIZATION: Vertical and Horizontal CARRIER FREQUENCY: 2405.0 MHz EUT TX ANTENNA: #1 Plot 7.2.30 Radiated emission measurements from 2400 to 2483.5 MHz at the low carrier frequency TEST SITE: Semi anechoic chamber TEST DISTANCE: 3 m ANTENNA POLARIZATION: Vertical and Horizontal CARRIER FREQUENCY: 2405.0 MHz EUT TX ANTENNA: #2 0 10 20 30 40 50 60 70 80 90 100 110 120 130 2400 2410 2420 2430 2440 2450 2460 2470 2483.5 Level in dBμV/m Fre que ncy 2.404698267 G Hz 108.810 dBμV/m 0 10 20 30 40 50 60 70 80 90 100 110 120 130 2400 2410 2420 2430 2440 2450 2460 2470 2483.5 Level in dBμV/m Fre que ncy in MH z 2.404506217 G Hz 110.527 dBμV/m Report ID: VISRAD_FCC.35662 Date of Issue: 17-Jun-20 Test specification: Section 15.247(d) / RSS-247 section 5.5, Radiated spurious emissions Test proced…
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Report ID: VISRAD_FCC.35662 Date of Issue: 17-Jun-20 Test specification: Section 15.247(d) / RSS-247 section 5.5, Radiated spurious emissions Test procedure: ANSI C63.10 section 11.12.1 Test mode: Compliance Verdict: PASS Date(s): 16-Dec-19 Temperature: 22 ºC Relative Humidity: 47 % Air Pressure: 1020 hPa Power: 3 VDC Remarks: Page 45 of 100 Plot 7.2.51 Radiated emission measurements from 18 to 25 GHz at the mid carrier frequency TEST SITE: Semi anechoic chamber TEST DISTANCE: 3 m ANTENNA POLARIZATION: Vertical and Horizontal CARRIER FREQUENCY: 2475.0 MHz EUT TX ANTENNA: #1 Plot 7.2.52 Radiated emission measurements from 18 to 25 GHz at the mid carrier frequency TEST SITE: Semi anechoic chamber TEST DISTANCE: 3 m ANTENNA POLARIZATION: Vertical and Horizontal CARRIER FREQUENCY: 2475.0 MHz EUT TX ANTENNA: #2 0 10 20 30 40 50 60 70 80 90 18 18.5 19 19.5 20 20.5 21 21.5 22 22.5 23 23.5 24 24.5 25 Level in dBμV/m Fre que ncy in GH z 18.018666667 GHz 52.774 dBμV/m 0 10 20 30 40 50 60 70 80 90 18 18.5 19 19.5 20 20.5 21 21.5 22 22.5 23 23.5 24 24.5 25 Level in dBμV/m Fre que ncy in GH z 18.029166667 GHz 52.570 dBμV/m Report ID: VISRAD_FCC.35662 Date of Issue: 17-Jun-20 Test specification: Section 15.247(d) / RSS-247 section 5.5, Radiated spurious emissions Test procedure: ANSI C63.10 section 11.12.1 Test mode: Compliance Verdict: PASS Date(s): 16-Dec-19 Temperature: 22 ºC Relative Humidity: 47 % Air Pressure: 1020 hPa Power: 3 VDC Remarks: Page 46 of 100 Plot 7.2.53 Radiated emission measurements from 18 to 25 GHz at the high carrier frequency TEST SITE: Semi anechoic chamber TEST DISTANCE: 3 m ANTENNA POLARIZATION: Vertical and Horizontal CARRIER FREQUENCY: 2480.0 MHz EUT TX ANTENNA: #1 Plot 7.2.54 Radiated emission measurements from 18 to 25 GHz at the high carrier frequency TEST SITE: Semi anechoic chamber TEST DISTANCE: 3 m ANTENNA POLARIZATION: Vertical and Horizontal CARRIER FREQUENCY: 2480.0 MHz EUT TX ANTENNA: #2 0 10 20 30 40 50 60 70 80 90 18 18.5 19 19.5 20 20.5 21 21.5 22 22.5 23 23.5 24 24.5 25 Level in dBμV/m Fre que ncy in GH z 18.007700000 GHz 53.836 dBμV/m 0 10 20 30 40 50 60 70 80 90 18 18.5 19 19.5 20 20.5 21 21.5 22 22.5 23 23.5 24 24.5 25 Level in dBμV/m Fre que ncy in GH z 18.008866667 GHz 54.026 dBμV/m Report ID: VISRAD_FCC.35662 Date of Issue: 17-Jun-20 Test specification: Section 15.247(b)3/ RSS-247 section 5.4(d), Peak output power Test procedure: ANSI C63.10 section 11.9.1.1 Test mode: Compliance Verdict: PASS Date(s): 16-Dec-19 Temperature: 22 ºC Relative Humidity: 47 % Air Pressure: 1020 hPa Power: 3 VDC Remarks: Page 47 of 100 7.3 Peak output power 7.3.1 General This test was performed to measure the maximum peak output power radiated by transmitter. Specification test limits are given in Table 7.3.1. Table 7.3.1 Peak output power limits Assigned frequency range, MHz Maximum antenna gain, dBi Peak output power* Equivalent field strength limit @ 3m, dB(V/m)** W dBm 902.0 – 928.0 6.0 1.0 30.0 131.2 2400.0 – 2483.5 5725.0 – 5850.0 *- The limit is provided in terms of conducted RF power at the antenna connector. If transmitting antennas of directional gain greater than 6 dBi are used, the peak output power limit shall be reduced below the stated value as follows: by 1 dB for every 3 dB that the directional gain of antenna exceeds 6 dBi for fixed point-to-point transmitters operate in 2400-2483.5 MHz band; without any corresponding reduction for fixed point-to-point transmitters operate in 5725-5850 MHz band; by the amount in dB that the directional gain of antenna exceeds 6 dBi for the rest of transmitters. **- Equivalent field strength limit was calculated from the peak output power as follows: E=sqrt(30×P×G)/r, where P is peak output power in Watts, r is antenna to EUT distance in meters and G is transmitter antenna gain in dBi. 7.3.2 Test procedure 7.3.2.1 The EUT was set up as shown in Figure 7.3.1, energized and its proper operation was checked. 7.3.2.2 The EUT was adjusted to produce maximum available to end user RF output power. 7.3.2.3 The resolution bandwidth of spectrum analyzer was set wider than 6 dB bandwidth of the EUT and the field strength of the EUT carrier frequency was measured with antenna connected to spectrum analyzer/ EMI receiver. To find maximum radiation the turntable was rotated 360 0 and the measuring antenna height was swept in both vertical and horizontal polarizations. 7.3.2.4 The maximum field strength of the EUT carrier frequency was measured as provided in Table 7.3.2 and associated plots. 7.3.2.5 The maximum peak output power was calculated from the field strength of carrier as follows: P = (E × d) 2 / (30 × G), where P is the peak output power in W, E is the field strength in V/m, d is the test distance and G is the transmitter numeric antenna gain over an isotropic radiator. The above equation was converted in logarithmic units for 3 m test distance: Peak output power in dBm = Field strength in dB(μV/m) - Transmitter antenna gain in dBi – 95.2 dB 7.3.2.6 The worst test results (the lowest margins) were recorded in Table 7.3.2. Report ID: VISRAD_FCC.35662 Date of Issue: 17-Jun-20 Test specification: Section 15.247(b)3/ RSS-247 section 5.4(d), Peak output power Test procedure: ANSI C63.10 section 11.9.1.1 Test mode: Compliance Verdict: PASS Date(s): 16-Dec-19 Temperature: 22 ºC Relative Humidity: 47 % Air Pressure: 1020 hPa Power: 3 VDC Remarks: Page 48 of 100 Figure 7.3.1 Setup for carrier field strength measurements Spectrum analyzer/ EMI receiver Test antenna Test antenna EUT Ground plane 1.0m 4.0m 1.5 m Height Test distance Ferrites Power s upply Auxilliary equipm ent Flus h m ounted turn table Wooden table Report ID: VISRAD_FCC.35662 Date of Issue: 17-Jun-20 Test specification: Section 15.247(b)3/ RSS-247 section 5.4(d), Peak output power Test procedure: ANSI C63.10 section 11.9.1.1 Test mode: Compliance Verdict: PASS Date(s): 16-Dec-19 Temperature: 22 ºC Relative Humidity: 47 % Air Pressure: 1020 hPa Power: 3 VDC Remarks: Page …
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Report ID: VISRAD_FCC.35662 Date of Issue: 17-Jun-20 Test specification: Section 15.247(d) / RSS-247 section 5.5, Band edge emissions Test procedure: ANSI C63.10 section 11.12.1 Test mode…
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Harakevet Industrial zone, P.O.Box 23 · Israel
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.40 GHz - 2.48 GHz | 83.00 mW |

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