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User’s Manual Written By Sensor research team S-1 CORPORATION 168, S1 BUILDING, SOONHWA-DONG, JOONG-GU, SEOUL, KOREA Tel: +82 1588 3112 Fax: +82 2 2131 8869 Website: www.s1.co.kr Revised: March 2013 URS-0030 UWB Intrusion Detection Sensor CAUTION!! • This equipment may only be operated Indoors. • Do not use to Outdoors. • Do not intentionally install aimed at windows or outside opening doors. Table of Contents Introduction ......................................................................1 Information to the user........................................................1 Features of the UWB Sensor.................................................2 Coverage of the UWB Sensor...............................................3 UWB Sensor Specifications.................................................4 Configuration and Installation..............................................5 Operational precautions......................................................6 UWB Intrusion Detection Sensor – URS-00301 Introduction The UWB(Ultra Wide Band) sensors refers to a kind of radar technology that was traditionally used in military applications. When used asa security means, it’s low power, wide band characteristics often causes frequent false alarms. Overcoming such limitations with its excellence in technology, S1 showcases the first ever UWB-based security sensor in the world. Its radar-based principle makes it inherently immune to heat source-induced false alarms and enables high level of sensitivity to the movement of heat-insulated intruders. Coverage can be flexibly adjusted to enable its deployment in various environments. This document describes the features and the specifications of the UWB sensor, important regulatory information concerning its use, and details on how to diagnose potential problems. Information to the User The UWB sensor is an ultra-wideband(UWB) wireless device certified under FCC Part 15.517. It’s use is subject to technical requirements for indoor UWB systems, in particular the stipulation that the devices must only be used indoors. Users should note carefully the following information: • CAUTION: This equipment may only be operated indoors. Operation outdoors is in violation of 47 U.S.C. 301 and could subject the operator to serious penalties. • This device complies with Part 15 of the FCC Rules. Operation is subject to the following two conditions: (1) this device may not cause harmful interference, and (2) this device must accept any interference received, including interference that may cause undesired operation. Users should also carefully note the following information: • CAUTION: Any changes or modifications madeto the “UWB Sensor” which are not expressly approved by the “S-1” could void the user’s authority to operate the equipment. • NOTE: This equipment has been tested and found to comply with the limits for a Class B digital device, pursuant to Part 15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful interference in a residential installation This equipment generates, uses and can radiate radio frequency energy and, if not installed and used in accordance with the instructions, may cause harmful interference to radio communications, However, there is no guarantee that interference will not occur in a particular installation. If this equipmentdoes cause harmful interference to radio or television reception, which can be determined by turning the equipment off and on, the user is encouraged to try to correct the interference by one or more of the following measures: - Reorient or relocate the receiving antenna. - Increase the separation between the equipment and receiver. - Connect the equipment into an outlet on a circuit different from that to which the receiver is connected. - Consult the dealer or an experienced radio/TV technician for help. 2 Features of the UWB Sensor The diagram below shows several important features of the UWB Sensor: UWB Antenna Lens LED GB-41 (Option) Terminal (Power, COM) Rotary Switch Label (System) [SET] [TOP] [BOTTOM] Label (Certification) Magnetic Switch Point UWB Intrusion Detection Sensor – URS-0030 3 Coverage of the UWB Sensor Maximum detection area of the sensor is as follows: Horizontal View Vertical View 2~3m(6.56~9.84ft) 1.5~10m(4.92~32.80ft) UWB Intrusion Detection Sensor – URS-0030 4 UWB Sensor Specifications The specification of the sensor refer to the following table: ModelURS-0030 ColorsURS-0030W : White URS-0030A : Black Detection MethodImpulse Radio(Ultra Wide Band) CoverageWide: 8m x 10m(26.24 x 32.80ft), 80 ̊ Wide Mounting Height2.0 ~ 3.0m(6.5 ~ 10ft) Detection Speed0.3 ~ 1.5m/sec.(1 ~ 5ft/sec.) LED Alarm IndicatorOn Alarm PeriodApprox. 2 sec. Alarm OutputN.C, 12VDC, 0.3A max. Warm-up PeriodApprox. 60 sec. Power Supply12VDC(9.6 ~ 14.4VDC) Current Consumption30mA (max.) at 12VDC(9.6 ~ 14.4VDC) Weight85g(2.99oz) RF Parameters Output Power≤ -41.3dBm Frequency8.5 ~ 9.5GHz Band Width≥ 500MHz at -10dB Antenna TypePatch type Relay Parameters FormFrom-B (Normal Close) TypePhoto-MOS Rate60VDC, 0.1A max. Operating Temperature -10°C~ +50°C(+14°F~ +122°F) Operating Humidity95% max. UWB Intrusion Detection Sensor – URS-0030 5 Configuration and Installation The configuration of the sensor are as follows: Assembly process are as follows: 1 Step - Assemble “Bottom” and “GB-41” 2 Step - Assemble “Top” and “Terminal” 3 Step - Assemble “Top” and “Bottom” SENSOR [TOP] [BOTTOM] OPTION [Bracket] UWB Intrusion Detection Sensor – URS-0030 6 Operational precautions • Do not apply voltages higher than the rated voltage. AC110V • Do not install where pet dogs and cats. . • When swaying objects(mobiles of metal material), in the detection area, change the direction or adjust the detection distance. • Do not install in the swaying wall. • Do not install the outdoor. • Do not install the curtain(blind) by the external wind swaying. UWB Intrusion Detection Sensor – URS-0030
́͑͢͞ 6/20/2013 Federal Communications Commission Equipment Authorization Branch 7435 Oakland Mills Road Columbia, MD 21046 Request for Confidentiality Company name: <S1 Corporation> FCC ID: <Q54URS0030X> FCC Part 15 Certification Gentlemen, Pursuant to 47 CFR 0.457(d)(1)(ii) and 0.459 <S1 Corporation> hereby requests permanent confidentiality of the following documents for the subject application: Exhibit Type File Name Description Block Diagram BlockDiagram.PDF Block Diagram Operational Description OperationalDescription.PDF Operational Description Schematics Schematics.PDF Schematics Parts / BOM Parts.PDF Parts / BOM Note: Any exhibit NOT granted Confidential status is viewable on the FCC website as soon as the Grant is issued. Reason why the material should be withheld from public inspection: These documents contain detailed system, equipment description and related information about the product which <S1 Corporation> considers proprietary, confidential, and a custom design not otherwise available to the general public. State why the information is a “trade secret;” Since the design is a basis from which future products will evolve, <S1 Corporation> considers that this information would be of significant benefit to its competitors and that disclosure would give competitors an unfair advantage in the marketplace. Trade secret” information is information which is not generally known or reasonably ascertainable, by which a business can obtain an economic advantage over competitors. The information is not normally released to any party or person outside the company. Sincerely, Signature: Name: Kwang-Cheol Oh Company: S1 Corporation Title: Team Manager Date: June 16, 2013
S-1 Letter of Authorization Company: S1 Corporation Address: 10th Fl., Samsung Life Insurance & S1 Bidg. 168, Soonhwa-dong, Jung-gu, Seoul, 100-130, South Korea Product Name: UWB Sensor Model Number: URS0030X FCC ID : Q54URS0030X We authorize MiCOM Labs, 440 Boulder Court, Suite 200, Pleasanton, CA 94566, USA, to act on our behalf on all matters concerning the above named equipment. Any individual within MiCOM Labs is authorized to act on our behalf and take action on the application. This shall include the following: Approval applications (includes complete product documentation package, including Confidential information) and procedures Payment of approval fees We declare that MiCOM Labs, 440 Boulder Court, Suite 200, Pleasanton, CA 94566, USA, is allowed to forward all information related to the approval project to the applied notified body and to the notification entities and to discuss any issues concerning the approval application. Any and all acts carried out by MiCOM Labs on our behalf shall have the same effect as acts of our own. Signature: Name: Kwang-Cheol Oh Company: S1 Corporation Title: Team Manager Date: June 16, 2013
JNDL Laboratory CO., LTD Page 1 of 2 J NDL-QI-TR-F08(0) Report Ref. No. : JNDL-NU-13R-0001 http://www.jndcerti.com FCCID : Q54URS0030X External Photographs 1. Front View 2. Rear View JNDL Laboratory CO., LTD Page 2 of 2 J NDL-QI-TR-F08(0) Report Ref. No. : JNDL-NU-13R-0001 http://www.jndcerti.com FCCID : Q54URS0030X 3. Side View (Left) 4. Side View (Right)
JNDL Laboratory CO., LTD Page 1 of 1 J NDL-QI-TR-F08(0) Report Ref. No. : JNDL-NU-13R-0001 http://www.jndcerti.com FCCID : Q54URS0030X FCC PRODUCT LABELING & WARNING STATEMENT FCC ID Label : Due to the product size, only the FCC ID shall be permanently affixed to the rear side of the equipment and other information shall be placed in the instruction(user’s) manual. FCC WARNING STATEMENT(Including User’s Manual) CAUTION : This equipment may only be operated indoors. Operation outdoors is in violation of 47 U.S.C. 301 and could subject the operator to serious legal penalties. CAUTION : Any changes or modifications made to the “UWB Sensor” which are not expressly approved by the “S-1” could void the user’s authority to operate the equipment. This device complies with part 15 of the FCC Rules. Operation is subject to the following two conditions: (1) This device may not cause harmful interference, and (2) this device must accept any interference received, including interference that may cause undesired operation. FCC ID: Q54URS0030X FCC ID Location
JNDL Laboratory CO., LTD Page 1 of 7 J NDL-QI-TR-F08(0) Report Ref. No. : JNDL-NU-13R-0001 http://www.jndcerti.com FCCID : Q54URS0030X Internal Photographs 1. Front View 2. Rear View JNDL Laboratory CO., LTD Page 2 of 7 J NDL-QI-TR-F08(0) Report Ref. No. : JNDL-NU-13R-0001 http://www.jndcerti.com FCCID : Q54URS0030X 3. Component Board View Top (1) JNDL Laboratory CO., LTD Page 3 of 7 J NDL-QI-TR-F08(0) Report Ref. No. : JNDL-NU-13R-0001 http://www.jndcerti.com FCCID : Q54URS0030X 3. Component Board View Top (2) JNDL Laboratory CO., LTD Page 4 of 7 J NDL-QI-TR-F08(0) Report Ref. No. : JNDL-NU-13R-0001 http://www.jndcerti.com FCCID : Q54URS0030X 3. Component Board View Top (3) : Antenna Top JNDL Laboratory CO., LTD Page 5 of 7 J NDL-QI-TR-F08(0) Report Ref. No. : JNDL-NU-13R-0001 http://www.jndcerti.com FCCID : Q54URS0030X 3. Component Board View Top (4) : Antenna Bottom JNDL Laboratory CO., LTD Page 6 of 7 J NDL-QI-TR-F08(0) Report Ref. No. : JNDL-NU-13R-0001 http://www.jndcerti.com FCCID : Q54URS0030X 4. Component Board View Bottom (1) JNDL Laboratory CO., LTD Page 7 of 7 J NDL-QI-TR-F08(0) Report Ref. No. : JNDL-NU-13R-0001 http://www.jndcerti.com FCCID : Q54URS0030X 4. Component Board View Bottom (2)
JNDL Laboratory CO., LTD Page 1 of 30 J NDL-QI-TR-F08(0) Report Ref. No. : JNDL-NU-13R-0001 http://www.jndcerti.com FCCID : Q54URS0030X Report No. : JNDL-NU-13R-0001 Client: S1 Corporation Product: UWB Sensor Model: URS-0030W Manufacture/supplier: S1 Corporation Date test item received: 2013/05/30 Date test campaign completed: 2013/06/17 Date of issue: 2013/06/18 Test engineer Report reviewed by Sang-hun kang Kyoung-Pil, Yeom ATTESTATION STAEMENT This equipment has been tested in accordance with the standards identified in the referenced test report. To the best of my knowledge and belief, these tests were performed using the measurement procedures described in this report and demonstrate that the equipment complies with the appropriate standards. All JNDL Laboratory. CO., LTD instrumentation and accessories used to test products for compliance to the indicated standards are calibrated regularly in accordance with ISO 17025 requirements. Total number of pages of this test report : 30 pages CONFORMANCE TEST REPORT FOR Subpart F UWB Part 15.517 JNDL Laboratory CO., LTD Page 2 of 30 J NDL-QI-TR-F08(0) Report Ref. No. : JNDL-NU-13R-0001 http://www.jndcerti.com FCCID : Q54URS0030X REPORT SUMMARY Purpose of Test : To demonstrate the EUT in compliance with FCC Part 15.517 for indoor UWB systems. Disclaimer : The test results relate only to the items tested. Applicable Standards : Pt 15.517, Pt 15.209, ANSI 63.4:2009 TEST ENVIRONMENT AND TEST SETUP Test Facilities : Test Firm Registration # : 748649 3m & 10m Open Site : 386-1, Ho-dong, Cheoin-gu, Yongin-si, Gyeonggi-do, Korea 3m semi-Anechoic chamber : B 114~115, 810 Kwanyang-Dong, dongan- Gu, Anyang-Si, Kyunggi-Do, 431-060, Korea Laboratory Test Conditions : Open Site : Temperature 27 ºC, Humidity : 56 % 3m anechoic chamber : Temperature 23 ºC, Humidity : 45 % Test Exercise : The EUT was set in continuous transmit mode of operation unless stated otherwise. Modification to the EUT : No moidification was made. Supporting Accessories : None JNDL Laboratory CO., LTD Page 3 of 30 J NDL-QI-TR-F08(0) Report Ref. No. : JNDL-NU-13R-0001 http://www.jndcerti.com FCCID : Q54URS0030X Table of Contents 1. General Remarks _______________________________________________________ 4 2. Test Site ______________________________________________________________ 4 2.1 Location ___________________________________________________________ 4 2.2 List of Test equipment used for tests ____________________________________ 4 2.3 Test Date ___________________________________________________________ 4 3. Description of the Equipment Under Test ___________________________________ 5 3.1 Manufacturers declarations ___________________________________________ 5 3.2 Information about UWB intrusion Detection Sensor _______________________ 6 4. List of Measurements ___________________________________________________ 7 5. Transmitter radiated emissions setup _______________________________________ 8 6. Transmitter Characteristics ______________________________________________ 9 7. UWB Bandwidth ______________________________________________________ 10 8. Spurious Radiated Emissions ____________________________________________ 12 9. Radiated Emissions in GPS Bands ________________________________________ 25 10. Peak Emissions within a 50 MHz Bandwidth ______________________________ 28 11. Power Line Conducted ________________________________________________ 30 JNDL Laboratory CO., LTD Page 4 of 30 J NDL-QI-TR-F08(0) Report Ref. No. : JNDL-NU-13R-0001 http://www.jndcerti.com FCCID : Q54URS0030X 1. General Remarks The test results in this report apply to the particular Equipment Under Test (EUT) as declared in this report. The test results presented in this report relate only to the item tested. 2. Test Site 2.1 Location JNDL Laboratory. CO., LTD. .(Test Firm Registration # : 748649) 3m anechoic chamber : B 114~115, 810 Kwanyang-Dong, dongan-Gu, Anyang-Si, Kyunggi-Do, Korea 3m & 10m Open site : 386-1, Ho-dong, Cheoin-gu, Yongin-si, Gyeonggi-do, Korea 2.2 List of Test equipment used for tests No. Instrument Model No. Due to Calibration Manufactor Serial No. PSA SPECTRUM ANALYZER (3 Hz ~ 26.5 GHz) E4440A 2013-10-18 Agilent Technologies MY46185375 SPECTRUM ANALYZER (9 KHz ~ 40 GHz) 8564E 2014-05-12 Agilent Technologies 3846A01565 SIGNAL GENERATOR (10 MHz ~ 40 GHz) MG3694B 2013-10-18 Anritsu Corp 062513 POWER METER (DC ~ 67 GHz) NRP2 2013-10-19 Rohde & Schwarz 100973 POWER SENSOR (50 MHz ~ 40 GHz) NRP-Z85 2013-10-19 Rohde & Schwarz 101121 POWER SENSOR (9 KHz ~ 6 GHz) NRP-Z92 2013-10-19 Rohde & Schwarz 100093 EMI TEST RECEIVER (9 KHz ~ 7 GHz) ESCI7 2013-07-26 Rohde & Schwarz 100933 EMI TEST RECEIVER (20 MHz ~ 1000 MHz) ESVS30 2014-01-21 Rohde & Schwarz 828525/005 AUTORAING POWER SUPPLY E3630A 2013-10-18 Agilent Technologies MY40005094 BILOG ANTENNA (30 MHz ~ 1000 MHz) VULB 9168 2015-02-17 Schwarzbeck 9168-505 BILOG ANTENNA (30 MHz ~ 1000 MHz) VULB 9168 2014-10-23 Schwarzbeck 9168-506 HORN ANTENNA (1 GHz ~ 18 GHz) BBHA 9120D 2014-12-12 Schwarzbeck 568 HORN ANTENNA (1 GHz ~ 18 GHz) 3117 2014-10-24 ETS-Lindgren 00135889 HORN ANTENNA (1 GHz ~ 18 GHz) 3117 2014-07-29 ETS-Lindgren 00135878 HORN ANTENNA (18 GHz ~ 40 GHz) BBHA 9170 2014-10-03 Schwarzbeck 9170-499 HORN ANTENNA (18 GHz ~ 40 GHz) BBHA 9170 2014-10-03 Schwarzbeck 9170-500 Microwave Amplifier (10 MHz ~ 26.5 GHz) 83006A 2013-09-05 Agilent Technologies MY39500803 Low Noise Amplifier (18 GHz ~ 40 GHz) JS44-18004000-45-8P 2013-09-08 MITEQ 1568695 All equipment is calibrated with traceable calibrations. Each calibration is traceable to the national or international standards. 2.3 Test Date Date of Application: 2013- 06 - 13 Date of Test: 2013- 06 - 13 ~ 2013 - 06 - 17 JNDL Laboratory CO., LTD Page 5 of 30 J NDL-QI-TR-F08(0) Report Ref. No. : JNDL-NU-13R-0001 http://www.jndcerti.com FCCID : Q54URS0030X 3. Description of the Equipment Under Test 3.1 Manufacturers declarations Manufacturer : S1 Corporation Product Description : A wireless devices…
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FCC the Reference Number : 44625 Summary of Verification FCC ID : Q54URS0030X FCC the Reference Number : 44625 1. Submitted sample was tested by FCC Lab and failed as below. - The maximum level was 80.6 dBuV/m at Peak Emissions within a 50 MHz Bandwidth. - FCC limit : 70.8 dBuV/m. - Result : +9.8dB over. 2. Retested another sample by JNDL and also failed as below. 2.1 Antenna polarity ”V” (measured distance : 1 meter) Emission Frequency [MHz] Measure Value [dBμV] Plot # Cable Loss [dB] Antenna Factor [dB/m] Amp Gain [dB] Dist. Correct [dB] F/S dBμV/m @ 3m Limit dBμV/m @ 3m Margin [dB] 8987.00 75.93 1 5.84 36.72 29.67 -9.54 79.27 70.80 -8.47 * F/S(Field Strength) = Measuring Value + CL + AF -G amp + Dcf Plot #1 FCC the Reference Number : 44625 2.2 Antenna polarity ”H” (measured distance : 1 meter) Emission Frequency [MHz] Measure Value [dBμV] Plot # Cable Loss [dB] Antenna Factor [dB/m] Amp Gain [dB] Dist. Correct [dB] F/S dBμV/m @ 3m Limit dBμV/m @ 3m Margin [dB] 9060.00 78.90 2 5.86 36.83 29.66 -9.54 82.40 70.80 -11.60 * F/S(Field Strength) = Measuring Value + CL + AF -G amp + Dcf Plot #2 2.3 The maximum level was 82.4 dBuV/m at Peak Emissions within a 50 MHz Bandwidth. 3. The reason of deviation of test results between submitted one and retested one. 3.1 Applied the wrong Antenna Factor.(used 30.2, corrected 36.7) : 6.5 dB diff. 3.2 Didn’t add the cable loss of Short Cable (50cm length) : 2 dB diff. 3. 3 The used microwave amplifier(AGILENT 83006A) gain level was unstable during the testing. So, new amplifier was used for retest.(MITEQ NSPS2650-NVG) FCC the Reference Number : 44625 4. EUT Modification - MCU & FPGA Version Upgrade.(V1.0 →V1.1) - Changed UWB Pulse width (-20% decrees) and pulse Level (-15% decrees) at MCU & FPGA - No modification hardware changed. 5. The result of Retest after modification. 5.1 Antenna polarity ”V” (measured distance : 1 meter) Emission Frequency [MHz] Measure Value [dBμV] Plot # Cable Loss [dB] Antenna Factor [dB/m] Amp Gain [dB] Dist. Correct [dB] F/S dBμV/m @ 3m Limit dBμV/m @ 3m Margin [dB] 8915.00 61.47 3 5.81 36.70 29.68 -9.54 64.76 70.80 6.04 Plot #3 FCC the Reference Number : 44625 5.2 Antenna polarity ”H” (measured distance :1 meter) Emission Frequency [MHz] Measure Value [dBμV] Plot # Cable Loss [dB] Antenna Factor [dB/m] Amp Gain [dB] Dist. Correct [dB] F/S dBμV/m @ 3m Limit dBμV/m @ 3m Margin [dB] 8992.00 64.22 4 5.84 36.72 29.67 -9.54 67.57 70.80 3.23 Plot #4 5.3 The maximum level was 67.57 dBuV/m at Peak Emissions within a 50 MHz Bandwidth. FCC the Reference Number : 44625 6. BBHA 9120D(S/N: 568) HORN ANTENNA FACTOR (CALIBRATION BY NATIONAL RADIO RESEARCH AGENCY, due to calibration 2014-12 -12 ) FCC the Reference Number : 44625 7. NSPS2650-NVG(S/N:1745668) 7.1 Data Sheet ( due to Calibration 2014/08/27) FCC the Reference Number : 44625 7.2 verification amplifier gain (used power meter and signal generator) Frequency MITEQ 1-26.5G Frequency MITEQ 1-26.5G [MHz] gain (dB) [MHz] gain (dB) 1000 31.48 14000 28.85 1500 31.63 14500 29.16 2000 31.81 15000 29.24 2500 32.00 15500 29.38 3000 32.11 16000 29.65 3500 32.20 16500 29.77 4000 32.24 17000 29.81 4500 32.33 17500 29.87 5000 32.16 18000 29.85 5500 31.92 18500 29.76 6000 31.89 19000 29.22 6500 31.55 19500 28.89 7000 31.07 20000 28.61 7500 30.55 20500 28.34 8000 30.15 21000 28.25 8500 29.75 21500 28.43 9000 29.67 22000 28.27 9500 29.57 22500 28.23 10000 29.50 23000 28.28 10500 29.36 23500 28.71 11000 29.28 24000 29.32 11500 29.29 24500 30.07 12000 29.15 25000 30.53 12500 29.05 25500 30.75 13000 29.08 26000 30.22 13500 28.98 26500 29.02 FCC the Reference Number : 44625 8. Test Setup Photos 8.1 Original another EUT (Black cover) FCC the Reference Number : 44625 FCC the Reference Number : 44625 8.2 Modification EUT (White cover)
FCC the Reference Number : 44625 Summary of Verification FCC ID : Q54URS0030X FCC the Reference Number : 44625 1. Submitted sample was tested by FCC Lab and failed as below. - The maximum level was 80.6 dBuV/m at Peak Emissions within a 50 MHz Bandwidth. - FCC limit : 70.8 dBuV/m. - Result : +9.8dB over. 2. Retested another sample by JNDL and also failed as below. 2.1 Antenna polarity ”V” (measured distance : 1 meter) Emission Frequency [MHz] Measure Value [dBμV] Plot # Cable Loss [dB] Antenna Factor [dB/m] Amp Gain [dB] Dist. Correct [dB] F/S dBμV/m @ 3m Limit dBμV/m @ 3m Margin [dB] 8987.00 75.93 1 5.84 36.72 29.67 -9.54 79.27 70.80 -8.47 * F/S(Field Strength) = Measuring Value + CL + AF -G amp + Dcf Plot #1 FCC the Reference Number : 44625 2.2 Antenna polarity ”H” (measured distance : 1 meter) Emission Frequency [MHz] Measure Value [dBμV] Plot # Cable Loss [dB] Antenna Factor [dB/m] Amp Gain [dB] Dist. Correct [dB] F/S dBμV/m @ 3m Limit dBμV/m @ 3m Margin [dB] 9060.00 78.90 2 5.86 36.83 29.66 -9.54 82.40 70.80 -11.60 * F/S(Field Strength) = Measuring Value + CL + AF -G amp + Dcf Plot #2 2.3 The maximum level was 82.4 dBuV/m at Peak Emissions within a 50 MHz Bandwidth. 3. The reason of deviation of test results between submitted one and retested one. 3.1 Applied the wrong Antenna Factor.(used 30.2, corrected 36.7) : 6.5 dB diff. 3.2 Didn’t add the cable loss of Short Cable (50cm length) : 2 dB diff. 3. 3 The used microwave amplifier(AGILENT 83006A) gain level was unstable during the testing. So, new amplifier was used for retest.(MITEQ NSPS2650-NVG) FCC the Reference Number : 44625 4. EUT Modification - MCU & FPGA Version Upgrade.(V1.0 →V1.1) - Changed UWB Pulse width (-20% decrees) and pulse Level (-15% decrees) at MCU & FPGA - No modification hardware changed. 5. The result of Retest after modification. 5.1 Antenna polarity ”V” (measured distance : 1 meter) Emission Frequency [MHz] Measure Value [dBμV] Plot # Cable Loss [dB] Antenna Factor [dB/m] Amp Gain [dB] Dist. Correct [dB] F/S dBμV/m @ 3m Limit dBμV/m @ 3m Margin [dB] 8915.00 61.47 3 5.81 36.70 29.68 -9.54 64.76 70.80 6.04 Plot #3 FCC the Reference Number : 44625 5.2 Antenna polarity ”H” (measured distance :1 meter) Emission Frequency [MHz] Measure Value [dBμV] Plot # Cable Loss [dB] Antenna Factor [dB/m] Amp Gain [dB] Dist. Correct [dB] F/S dBμV/m @ 3m Limit dBμV/m @ 3m Margin [dB] 8992.00 64.22 4 5.84 36.72 29.67 -9.54 67.57 70.80 3.23 Plot #4 5.3 The maximum level was 67.57 dBuV/m at Peak Emissions within a 50 MHz Bandwidth. FCC the Reference Number : 44625 6. BBHA 9120D(S/N: 568) HORN ANTENNA FACTOR (CALIBRATION BY NATIONAL RADIO RESEARCH AGENCY, due to calibration 2014-12 -12 ) FCC the Reference Number : 44625 7. NSPS2650-NVG(S/N:1745668) 7.1 Data Sheet ( due to Calibration 2014/08/27) FCC the Reference Number : 44625 7.2 verification amplifier gain (used power meter and signal generator) Frequency MITEQ 1-26.5G Frequency MITEQ 1-26.5G [MHz] gain (dB) [MHz] gain (dB) 1000 31.48 14000 28.85 1500 31.63 14500 29.16 2000 31.81 15000 29.24 2500 32.00 15500 29.38 3000 32.11 16000 29.65 3500 32.20 16500 29.77 4000 32.24 17000 29.81 4500 32.33 17500 29.87 5000 32.16 18000 29.85 5500 31.92 18500 29.76 6000 31.89 19000 29.22 6500 31.55 19500 28.89 7000 31.07 20000 28.61 7500 30.55 20500 28.34 8000 30.15 21000 28.25 8500 29.75 21500 28.43 9000 29.67 22000 28.27 9500 29.57 22500 28.23 10000 29.50 23000 28.28 10500 29.36 23500 28.71 11000 29.28 24000 29.32 11500 29.29 24500 30.07 12000 29.15 25000 30.53 12500 29.05 25500 30.75 13000 29.08 26000 30.22 13500 28.98 26500 29.02 FCC the Reference Number : 44625 8. Test Setup Photos 8.1 Original another EUT (Black cover) FCC the Reference Number : 44625 FCC the Reference Number : 44625 8.2 Modification EUT (White cover)
JNDL Laboratory CO., LTD Page 1 of 30 J NDL-QI-TR-F08(0) Report Ref. No. : JNDL-NU-13R-0001 http://www.jndcerti.com FCCID : Q54URS0030X Report No. : JNDL-NU-13R-0001 Client: S1 Corporation Product: UWB Sensor Model: URS-0030W Manufacture/supplier: S1 Corporation Date test item received: 2013/05/30 Date test campaign completed: 2013/06/17 Date of issue: 2013/06/18 Date of Reissue: 2013/12/09 Test engineer Report reviewed by Sang-hun kang Kyoung-Pil, Yeom ATTESTATION STAEMENT This equipment has been tested in accordance with the standards identified in the referenced test report. To the best of my knowledge and belief, these tests were performed using the measurement procedures described in this report and demonstrate that the equipment complies with the appropriate standards. All JNDL Laboratory. CO., LTD instrumentation and accessories used to test products for compliance to the indicated standards are calibrated regularly in accordance with ISO 17025 requirements. Total number of pages of this test report : 30 pages CONFORMANCE TEST REPORT FOR Subpart F UWB Part 15.517 JNDL Laboratory CO., LTD Page 2 of 30 J NDL-QI-TR-F08(0) Report Ref. No. : JNDL-NU-13R-0001 http://www.jndcerti.com FCCID : Q54URS0030X REPORT SUMMARY Purpose of Test : To demonstrate the EUT in compliance with FCC Part 15.517 for indoor UWB systems. Disclaimer : The test results relate only to the items tested. Applicable Standards : Pt 15.517, Pt 15.209, ANSI 63.4:2009 TEST ENVIRONMENT AND TEST SETUP Test Facilities : Test Firm Registration # : 748649 3m & 10m Open Site : 386-1, Ho-dong, Cheoin-gu, Yongin-si, Gyeonggi-do, Korea 3m semi-Anechoic chamber : B 114~115, 810 Kwanyang-Dong, dongan- Gu, Anyang-Si, Kyunggi-Do, 431-060, Korea Laboratory Test Conditions : Open Site : Temperature 27 ºC, Humidity : 56 % 3m anechoic chamber : Temperature 23 ºC, Humidity : 45 % Test Exercise : The EUT was set in continuous transmit mode of operation unless stated otherwise. Modification to the EUT : - MCU & FPGA Version Upgrade.(V1.0 →V1.1) - Changed UWB Pulse width (-20% decrees) and Pulse level (-15% decrees) at MCU & FPGA - No modification hardware changed. Supporting Accessories : None REVISION HISTORY Revison Date Desriptions 0 2013. 06. 18Original release 1 2013. 09. 11 Correction Measurement Data & Plot in chapter 10. Peak Emissions within a 50 MHz Bandwidth. - correct Peak Data & Plot instead of Average Data & Plot - 28~29 pages - Measurement date : 2013/06/17 2 2013. 12. 09 - Test Fail at FCC the Commission’s Laboratory Over than 10 dBuV/m limit. (the Reference Number : 44625, 2013/11/08) - Change test equipment(Amplifier) and verifcaiton Original smaple. - Verification Original sample level is 82.4 dBuV/m( FCC 80.6 dBuV/m) * Diffierent reason : microwave amplifier gain level unstable, wrong applied Antenna Factor (dB/m) and short cable loss (50 cm) missing calculation. - Full Testing after Firmware Upgrade EUT JNDL Laboratory CO., LTD Page 3 of 30 J NDL-QI-TR-F08(0) Report Ref. No. : JNDL-NU-13R-0001 http://www.jndcerti.com FCCID : Q54URS0030X Table of Contents 1. General Remarks _______________________________________________________ 4 2. Test Site ______________________________________________________________ 4 2.1 Location ___________________________________________________________ 4 2.2 List of Test equipment used for tests ____________________________________ 4 2.3 Test Date ___________________________________________________________ 4 3. Description of the Equipment Under Test ___________________________________ 5 3.1 Manufacturers declarations ___________________________________________ 5 3.2 Information about UWB intrusion Detection Sensor _______________________ 6 4. List of Measurements ___________________________________________________ 7 5. Transmitter radiated emissions setup _______________________________________ 8 6. Transmitter Characteristics ______________________________________________ 9 7. UWB Bandwidth ______________________________________________________ 10 8. Spurious Radiated Emissions ____________________________________________ 12 9. Radiated Emissions in GPS Bands ________________________________________ 25 10. Peak Emissions within a 50 MHz Bandwidth ______________________________ 28 11. Power Line Conducted ________________________________________________ 30 JNDL Laboratory CO., LTD Page 4 of 30 J NDL-QI-TR-F08(0) Report Ref. No. : JNDL-NU-13R-0001 http://www.jndcerti.com FCCID : Q54URS0030X 1. General Remarks The test results in this report apply to the particular Equipment under Test (EUT) as declared in this report. The test results presented in this report relate only to the item tested. 2. Test Site 2.1 Location JNDL Laboratory. CO., LTD. .(Test Firm Registration # : 748649) 3m anechoic chamber : B 114~115, 810 Kwanyang-Dong, dongan-Gu, Anyang-Si, Kyunggi-Do, Korea 3m & 10m Open site : 386-1, Ho-dong, Cheoin-gu, Yongin-si, Gyeonggi-do, Korea 2.2 List of Test equipment used for tes…
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440 Boulder Ct, Suite 200 · Pleasanton, California
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15F | 8.77 GHz - 9.32 GHz | - |

UWB Sensor
Equipment Class
UWB - Ultra Wideband Transmitter
Smart Card Reader
Equipment Class
DXX - Part 15 Low Power Communication Device Transmitter
RF Card & Fingerprint Terminal
Equipment Class
DXX - Part 15 Low Power Communication Device Transmitter
Fingerprint Attendance & Absence Reader
Equipment Class
DXX - Part 15 Low Power Communication Device Transmitter
Fingerprint Attendance & Absence Reader
Equipment Class
DXX - Part 15 Low Power Communication Device Transmitter