
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
1 Rev.00-03_Dec 15, 2014_ NJR4262F3 K-Band Doppler Sensor Module RF Frequency: 24.075 to 24.175 GHz Model No. NJR4262F3P3/F3P5 Specifications Rev.00-03 December 15, 2014 Copyright 2014 New Japan Radio Co., Ltd. Microwave Components Division -Notice of Proprietary Information- This document and its contents are proprietary to New Japan Radio Co., Ltd. This publication and its contents may not be reproduced or distributed for any other purpose without the written permission of New Japan Radio Co., Ltd. * Above Specifications are subject to change without notice. 2 Rev.00-01_Sep.11, 2014_ NJR4262J3 Caution 1. NJRC strives to produce reliable and high quality microwave components. NJRC's microwave components are intended for specific applications and require proper maintenance and handling. To enhance the performance and service of NJRC's microwave components, the devices, machinery or equipment into which they are integrated should undergo preventative maintenance and inspection at regularly scheduled intervals. Failure to properly maintain equipment and machinery incorporating these products can result in catastrophic system failures. 2. To ensure the highest levels of reliability, NJRC products must always be properly handled. The introduction of external contaminants (e.g. dust, oil or cosmetics) can result in failures of microwave components. 3. NJRC offers a variety of microwave components intended for particular applications. It is important that you select the proper component for your intended application. You may contact NJRC's sales office or sales representatives, if you are uncertain about the products listed in the catalog and the specification sheets. 4. Special care is required in designing devices, machinery or equipment, which demand high levels of reliability. This is particularly important when designing critical components or systems whose foreseeable failure can result in situations that could adversely affect health or safety. In designing such critical devices, equipment or machinery, careful consideration should be given to, amongst other things, their safety design, fail-safe design, back-up and redundancy systems, and diffusion design. 5. The products listed in the catalog and specification sheets may not be appropriate for use in certain equipment where reliability is critical or where the products may be subjected to extreme conditions. You should consult our sales office or sales representatives before using the products in any of the following types of equipment. * Aerospace Equipment * Equipment Used in the Deep Sea * Power Generator Control Equipment (nuclear, steam, hydraulic) * Life Maintenance Medical Equipment * Fire Alarm/Intruder Detector * Vehicle Control Equipment (automobile, airplane, railroad, ship, etc.) * Various Safety Equipment 6. NJRC's products have been designed and tested to function within controlled environmental conditions. Do not use products under conditions that deviate from methods or applications specified in the catalog and specification sheets. Failure to employ NJRC's products in the proper applications can lead to deterioration, destruction or failure of the products. NJRC shall not be responsible for any bodily injury, fires or accidents, property damage or any consequential damages resulting from the misuse or misapplication of its products. PRODUCTS ARE SOLD WITHOUT WARRANTY OF ANY OF KIND, EITHER EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO ANY IMPLIED WARRANTY OF MERCHANTABILITY OR FITNESS FOR A PARTICULAR PURPOSE. 7. The product specifications and descriptions listed in the catalog and specification sheets are subject to change at any time, without notice. * Above Specifications are subject to change without notice. 3 Rev.00-01_Sep.11, 2014_ NJR4262J3 20100-10-20 90 60 30 0 -30 -60 -90 (dBm) Angle(deg.) 20100-10-20 90 60 30 0 -30 -60 -90 (dBm) Angle(deg.) Category: K-Band Doppler Sensor Module Type Name: NJR4262F3P3, NJR4262F3P5 Description: Motion detector using microwave doppler effect Miniaturized RF circuit with MMIC technology High accurate I-Q mixer Specification: 1. Electric Characteristics (Common measure condition Ta= +25 deg.C) Item Specification Unit Condition / Note Min. Typ. Max. 1.1 Operation voltage 3.3 - 5.5 V 1.2 Operation current - 45 55 mA 1.3 Operation frequency - 24.125 - GHz 1.4 E.I.R.P. - +16 (40) +17 (50) dBm (mW) *measured value Field Strength at 3m 109.1dBuV/m(Average) 109.3dBuV/m(Peak) 1.5 Frequency Stability -1 - 0 MHz/deg.C Ta= -20 to +60 deg.C 1.6 Start-up time - 4 6 msec 1.7 2nd Harmonics (E.I.R.P.) - - -30 dBm 1.8 Radiation pattern - - - - See Fig.1: Typical Radiation Pattern. 1.8.1 –3dB beam width (H-plane) - 70 - deg. 1.8.2 –3dB beam width (V-plane) - 28 - deg. 1.8.3 Side lobe suppression (H-plane) - - - dB No side lobe 1.8.4 Side lobe suppression (V-plane) - 13 - dB 1.9 Noise Voltage - - 400 mV Upon amplified with 85dB Gain amp. Band width: 10 to 300Hz 1.10 Signal level 0.5 0.8 - Vp-p Refer to Fig.2 : Signal Test System 1.11 Offset voltage 1.1 1.35 1.6 V I-Q Amplitude Balance -3 - +3 dB I-Q Phase Balance 85 - 95 deg. Fig.1: Typical Radiation Pattern V - P lane H-Plane H-plane 70 deg. (±35 deg.) V-plane 28 deg. (±14 deg.) * Above Specifications are subject to change without notice. 4 Rev.00-01_Sep.11, 2014_ NJR4262J3 2. Mechanical characteristics Item Specification 2.1 Size 25(W) x 25(D) x 7.3(H) mm Tolerance: ±0.5 mm 2.2 Weight 7 g max. 2.3 Interface / Pin assignment Pin Size: 0.64 mm square Pin Pitch: 2.54 mm Recommended via hole diameter: 1.2 ± 0.05 mm 3. Environmental characteristics Item Specification 3.1 Operation Temperature -20 to +60 deg.C 3.2 Storage Temperature -40 to +80 deg.C 3.3 Humidity 0 to 95 % @ +30 deg.C 3.4 Vibration 49.03 m/s 2 (5 G) 30 to 50 Hz, 10 minutes, XYZ direction 3.5 Shock 196.13 m/s 2 (20 G) Half sine, 11 msec, XYZ direction, 3 times 4. Absolute Maximum Rating Item Specification Unit Condition / Note Min. Typ. Max. 4.1 Supply voltage 0 - 7 V 4.2 Operation…
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Back side: Patch Antenna Front side Diagrammatic perspective view External photo for NJR4262F3P5
10 6. Label *NJR4262F3P3 *NJR4262F3P5 unit: mm Material: PET Adhesive compound: PA-T1 (acrylic ester) Life time: over 10years
Internal photo for NJR4262F3P5 With cavity resonatorWithout cavity resonator
FCC ID: 2ACUJR4262 Produkte Products Prüfbericht - Nr.: Test Report No.: 50006140 001 Seite 2 von 26 Page 2 of 26 TEST SUMMARY 5.1.1 SUPPLY VOLTAGE REQUIREMENTS RESULT: PASS 5.1.2 ANTENNA REQUIREMENTS RESULT: PASS 5.1.3 RESTRICTED BANDS OF OPERATION RESULT: PASS 5.2.1 RADIATED EMISSIONS OF TRANSMITTER (CARRIER, SPURIOUS AND HARMONICS) RESULT: PASS 5.2.2 20DB BAND WIDTH RESULT: PASS 5.3.1 AC POWER LINE CONDUCTED EMISSION OF TRANSMITTER RESULT: PASS FCC ID: 2ACUJR4262 Produkte Products Prüfbericht - Nr.: Test Report No.: 50006140 001 Seite 3 von 26 Page 3 of 26 Contents 1. GENERAL REMARKS ............................................................................................... 4 1.1 COMPLEMENTARY MATERIALS ................................................................................. 4 2. TEST SITES ............................................................................................................ 4 2.1 TEST FACILITIES ..................................................................................................... 4 2.2 LIST OF TEST AND MEASUREMENT INSTRUMENTS ...................................................... 5 2.3 MEASUREMENT UNCERTAINTY ................................................................................. 6 3. GENERAL PRODUCT INFORMATION ........................................................................... 7 3.1 PRODUCT FUNCTION AND INTENDED USE .................................................................. 7 3.2 SYSTEM DETAILS .................................................................................................... 7 3.3 CLOCK FREQUENCIES ............................................................................................. 7 3.4 NOISE SUPPRESSING PARTS .................................................................................... 7 4. TEST SET-UP AND OPERATION MODES ..................................................................... 8 4.1 TEST METHODOLOGY .............................................................................................. 8 4.2 OPERATION MODES ................................................................................................ 8 4.3 PHYSICAL CONFIGURATION FOR TESTING ................................................................. 8 4.4 TEST SOFTWARE .................................................................................................... 9 4.5 SPECIAL ACCESSORIES AND AUXILIARY EQUIPMENT ............................................... 10 4.6 COUNTERMEASURES TO ACHIEVE EMC COMPLIANCE .............................................. 10 5. TEST RESULTS R ADI O ....................................................................................... 11 5.1 TECHNICAL REQUIREMENTS ................................................................................... 11 5.1.1 Supply Voltage Requirements ................................................................................................... 11 5.1.2 Antenna Requirements .............................................................................................................. 11 5.1.3 Restricted Bands of Operation ................................................................................................... 12 5.2 RADIATED MEASUREMENTS ................................................................................... 13 5.2.1 Radiated Emissions of Transmitter (Carrier, Spurious and Harmonics) .................................... 13 5.2.2 20dB Band Width ....................................................................................................................... 18 5.3 AC POWER LINE CONDUCTED MEASUREMENTS ...................................................... 20 5.3.1 AC Power Line Conducted Emission of Transmitter .................................................................. 20 6. PHOTOGRAPHS OF THE TEST SETUP....................................................................... 22 7. LIST OF TABLES .................................................................................................... 26 8. LIST OF FIGURES .................................................................................................. 26 9. LIST OF PHOTOGRAPHS ......................................................................................... 26 FCC ID: 2ACUJR4262 Produkte Products Prüfbericht - Nr.: Test Report No.: 50006140 001 Seite 4 von 26 Page 4 of 26 1. General Remarks 1.1 Complementary Materials There is no attachment to this test report. 2. Test Sites 2.1 Test Facilities TÜV Rheinland Japan Ltd. – Global Technology Assessment Center 4-25-2 Kita-Yamata, Tsuzuki-ku, Yokohama 224-0021, Japan The used test equipment is in accordance with CISPR 16 for measurement of radio interference. The Federal Communications Commission has reviewed the technical characteristics of the radiated and conducted emission facilities and has found these test sites to be in compliance with the requirements of section 2.948 of the FCC rules. The description of the test facility is listed under FCC registration number 299054. The test facility is accredited by VLAC (member of ILAC) under number VLAC-017 according to ISO/IEC 17025:2005. TÜV Rheinland Japan Ltd. is accredited by the Federal Communications Commission as a Conformity Assessment Body under Designation Number JP0017 and Test Firm Registration Number 386498. FCC ID: 2ACUJR4262 Produkte Products Prüfbericht - Nr.: Test Report No.: 50006140 001 Seite 5 von 26 Page 5 of 26 2.2 List of Test and Measurement Instruments Table 1: List of Test and Measurement Equipment Kind of Equipment Manufacturer Model Name Serial Number Equipment ID Calibrated until For AC Power Line Conducted Emission Receiver Rohde & Schwarz ESU 8 100025 RF-0020 2014-09 LISN Rohde & Schwarz ENV216 100276 RF-0016 2014-06 For Transmitter and Receiver Radiated Spurious Emission (below 40GHz) Receiver Rohde & Schwarz ESU 8 100025 RF-0020 2014-09 Receiver Rohde & Schwarz ESU 40 100029 RF-0021 2015-03…
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FCC ID: 2ACUJR4262 Produkte Products Prüfbericht - Nr.: Test Report No.: 50006140 001 Seite 22 von 26 Page 22 of 26 6. Photographs of the Test Setup Photograph 1: Set-up for AC Power Line Conducted Emission of Transmitter, Front View FCC ID: 2ACUJR4262 Produkte Products Prüfbericht - Nr.: Test Report No.: 50006140 001 Seite 23 von 26 Page 23 of 26 Photograph 2: Set-up for AC Power Line Conducted Emission of Transmitter, Rear View Photograph 3: Set-up for Radiated Emission of Transmitter, Front View FCC ID: 2ACUJR4262 Produkte Products Prüfbericht - Nr.: Test Report No.: 50006140 001 Seite 24 von 26 Page 24 of 26 Photograph 4: Set-up for Radiated Emission of Transmitter, Rear View Photograph 5: Set-up for Radiated Emission, EUT Configuration X-Axis FCC ID: 2ACUJR4262 Produkte Products Prüfbericht - Nr.: Test Report No.: 50006140 001 Seite 25 von 26 Page 25 of 26 Photograph 6: Set-up for Radiated Emission, EUT Configuration Y-Axis Photograph 7: Set-up for Radiated Emission, EUT Configuration Z-Axis
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15.245 | 24.13 GHz - 24.13 GHz | - |

K-Band Doppler Sensing Device (Movement Sensor)
Equipment Class
DXX - Part 15 Low Power Communication Device Transmitter
K-Band Doppler Sensor Module (Movement Sensor)
Equipment Class
FDS - Part 15 Field Disturbance Sensor