
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
FCC ID: OJUTX-01H With reference to your inquiries, the Equipment is now being referred to as Industrial Transmitter. It is capable of video and audio signal transfer. This equipment will be sold exclusively by Tote Vision. Tote Vission will be solely responsible for installtion and monitoring. The user manual will not contain any information as to installation or maintenance of the device. There will also be a warning that the equipment will only be professionally handled by Tote Vision authorized personnel. Any unauthorized person is not allowed to handle this device EUTIndustrial Transmitter Model NamesReceiver: RX-01 & Transmitter: TX-01H Description Primarily to transmit and receive video signal. Audio signal may also accompany the video signal in some instances Technical Specification Frequency Range 2400 MHz (2.4 - 2.4835GHz) Frequency Tolerance 0.1% Output Power 0.48mW Power Supply/Current 12Vdc Adapter Transmission Power 10mW to 500mW (EIRP) Channels 2 Indoor Range 50 bis to 75m (depending on transmission) Outdoor Range 800 bis to 2000m (depending on transmission) Antenna Standard with omnidirection Video Input +0.1 / 75Ω Video Bandwidth 50Hz - 5MHz Modulation FM Audio Input 500mV > 10KΩ Audio Bandwidth 15Hz - 20KHz Current Up to 650mA Video BNC / Camera Integrated Audio Chinch / Microphone Integrated Size/Weight/IP 55 x 35 x 75mm (Aluminum), 130g, IP 30 Operation Temp. 10 0 C bis to +55 0 C Maximum Humidity 10% - 70% (not condensing) William S. Taraday Tote Vision
FCC PART 15 SUB-PART B & PART 90 EMI TEST REPORT on Consumer Video/Audio Sender model name Transmitter: TX-01H provided for evaluation by Tote Vision 969 Thomas Street Seattle, Washington 98109-5212 tests and evaluation performed by Rockford Engineering Services, Inc. 9959 Calaveras Road, Box 543 Sunol, California 94586-0543 Tel: (925) 862-2944 Fax: (925) 862-9013 Email: [email protected] Web Site: http://www.resemc.com EN45001 Accredited Compliance Laboratory [RES-GmbH] Registration number: TTI-P-G 159/98-00 [RES-GmbH Client: Tote Vision Page: Report Number: 9903RS504-1/F Tested and Evaluated by Rockford Engineering Services, Incorporated Laboratory Measurement Report; FCC Part 15 SubPart B & Part 90 Consumer Video/Audio Sender/Receiver Surveillance Devices, FCC ID: OJUTX-01H April, 1999 2 FCC PART 15 SUB-PART B & PART 90 EMI TEST REPORT on Consumer Video/Audio Sender Transmitter: TX-01H provided for evaluation by Tote Vision 969 Thomas Street Seattle, Washington 98109-5212 This report contains 25 pages AGENCY DECLARATION/DISCLAIMER All services undertaken are subject to the following general policy: Reports are submitted for exclusive use of the client to whom they are addressed. Their significance is subject to the adequacy and representative character of the samples and to the comprehensiveness of the tests, examinations or surveys made. No quotations from reports or use of RES name or NVLAP or VCCI logo is permitted except as expressly authorized by RES or NVLAP or VCCI in writing. It is agreed between RES, NVLAP, VCCI and the client that no distribution in part of any test data herein or of this reports or analysis shall be made to any third party without the prior written consent of both parties. This report is not valid unless copied in full. All parties acknowledge that this report must not be used to claim product endorsement by RES and/or NVLAP or VCCI. Reports are maintained on file for a period of five years. Additional copies of reports are available at a nominal fee. In correspondence concerning this report please refer to the date, manufacturer's name and the report number. Accepted by the Federal Communications Commission (FCC) for FCC Methods, CISPR Methods and AUSTEL Technical Standards (Ref: NVLAP Lab Code 200172-0) Approved by the Industry Canada for Telecom Testing Certified by Rockford Engineering Services GmbH for EMC Testing according to the European EMC Directive 89/336/EEC per EN45001 Certified by Reg. TP for EMC Testing according to the European EMC Directive 89/336/EEC per EN45001 For RES GmbH (DAR-Registration number: TTI-P-G 159/98-00) Certified by the Voluntary Control Council for Interference by Information Technology Equipment (VCCI) For EMC testing, in accordance with the Regulations for Voluntary Control Measures, Article 8, Registration Numbers- Site 1: C-714 & R-696 and Site 2: C-715 & R-697 Client: Tote Vision Page: Report Number: 9903RS504-1/F Tested and Evaluated by Rockford Engineering Services, Incorporated Laboratory Measurement Report; FCC Part 15 SubPart B & Part 90 Consumer Video/Audio Sender/Receiver Surveillance Devices, FCC ID: OJUTX-01H April, 1999 3 TABLE OF CONTENTS Part 1 General..................................................................................................................5 1.1Test Methodology ..................................................................................................5 1.1.2Test Facility ...........................................................................................................5 1.1.3Accuracy of Test Data.........................................................................................5-6 1.2Summary ................................................................................................................7 1.2.1Description of EUT ................................................................................................7 1.2.2Support Equipment Included in Tests ....................................................................7 FCC Part 15 SubPart B Part 2 Power line Conducted Emissions...........................................................................8 2.1 Configuration and Procedure .................................................................................8 2.1.1 EUT Configuration ................................................................................................8 2.1.2 Test Procedure .......................................................................................................8 2.1.3 Field Strength Calculation .....................................................................................8 2.1.4 Spectrum Analyzer Configuration .........................................................................8 2.2 Power line Conducted Emissions...........................................................................9 2.2.1 Administrative Details ...........................................................................................9 2.2.2 EUT Configuration Summary ................................................................................9 2.2.3 Powerline Conducted Emissions Test Results .......................................................9 FCC Part 15 SubPart B Part 3 Open Field Radiated Emissions.........................................................................10 3.1 Configuration and Procedure... ............................................................................10 3.1.1 EUT Configuration... ...........................................................................................10 3.1.2 Test Procedure... ..................................................................................................10 3.1.3 Field Strength Calculation ...................................................................................11 3.1.4 Spectrum Analyzer Configuration .......................................................................11 3.2 Open Field Radiated Emissions ................…
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PART 4 - OCCUPIED BANDWIDTH per FCC PART 2, SECTION 47 CFR §2.1049 4.1. Configuration and Procedure 4.1.1 EUT Configuration The EUT is set up in accordance with the suggested configuration given in FCC Measurement Procedure ANSI C63.4-1992. The measurement instrumentation used was an Hewlett Packard 8566B Spectrum Analyzer with detector and bandwidth parameters as stipulated in C63.4-1992. EUT was 12Vdc powered. 4.1.2 Test Procedure The Transmitter was placed on the test table. The EUT was configured for maximum response and was set up as described above and configured to transmit continuously. Signal was monitored with an HP 8566B Spectrum Analyzer, using the EMCO Horn Antenna, model # 3115. Unless stated otherwise, the antenna to EUT distance was 1 meter. 4.1.3 Spectrum Analyzer Configuration (During Swept Frequency Scans) Start Frequency ........................................................... 2,425MHz Stop Frequency............................................................. 2,430MHz Sweep Speed ..................................................................... Manual RES Bandwidth ................................................................... 1MHz Video Bandwidth ................................................................ 1MHz Quasi Peak Adapter Mode ................................................. Bypass Quasi Peak Adapter Bandwidth ...................................... Disabled 4.2. Bandwidth Test per FCC Part 2, Section §2.1049.1049 20dB Bandwidth Plot Performed at 1 Meter Distance (Please see initial plot forwarded with application in May) PART 5 - FREQUENCY STABILITY TEST per FCC PART 2, SECTION 47 CFR §2.1055 5.1. Configuration and Procedure 5.1.1 EUT Configuration The EUT is set up in accordance with the suggested configuration given in FCC Measurement Procedure ANSI C63.4-1992. The measurement instrumentation used was an Hewlett Packard 8566B Spectrum Analyzer with detector and bandwidth parameters as stipulated in C63.4-1992. EUT was powered by a dc power supply. 5.1.2 Test Procedure The Transmitter was placed in the temperature control chamber. The EUT was configured for maximum response and was set up as described above and configured to transmit continuously. The input voltage was varied from 10.2 to 13.8 vdc. Frequency stability was monitored with the HP 8566B Spectrum Analyzer, below and above the center frequencies using an appropriate receiving antenna. 5.1.3 Data Table Legend and Field Strength Calculation 'Margin' indicates the degree of compliance with the applicable limit. For example, a margin of -8 dB means that the emissions is 8 dB below the limit (in compliance); a margin of +4 dB means that the emission is 4 dB over the limit (out of compliance). The margin calculated as follows: Margin = Corrected Amplitude - Limit; where Corrected Amplitude = Amplitude + Antenna Correction Factor + Cable Loss A =Average P=Peak Q=Quasi Peak 5.1.4 Spectrum Analyzer Configuration (During Swept Frequency Scans) Start Frequency ......................................................... 2,4370MHz Stop Frequency........................................................... 2,4374MHz Sweep Speed ..................................................................... Manual RES Bandwidth ................................................................... 1MHz Video Bandwidth ................................................................ 1MHz Quasi Peak Adapter Mode ................................................. Bypass 5.2.FREQUENCY STABILITY TEST per FCC PART 2, SECTION 47 CFR §2.1055 5.2.3 Test Results Temperature-30 0 C-30 0 C-30 0 C-30 0 C TimeStart Up2 minutes5 minutes10 minutes Frequency (GHz)2.437332.437172.437072.43707 Temperature -20 0 C-20 0 C-20 0 C-20 0 C TimeStart Up2 minutes5 minutes10 minutes Frequency (GHz)2.437322.437172.437072.43707 Temperature -10 0 C-10 0 C-10 0 C-10 0 C TimeStart Up2 minutes5 minutes10 minutes Frequency (GHz)2.437322.437192.437072.43707 Temperature 0 0 C0 0 C0 0 C0 0 C TimeStart Up2 minutes5 minutes10 minutes Frequency (GHz)2.437322.437192.437072.43707 Temperature 10 0 C10 0 C10 0 C10 0 C TimeStart Up2 minutes5 minutes10 minutes Frequency (GHz)2.437302.437202.437092.43709 Temperature 22 0 C22 0 C22 0 C22 0 C TimeStart Up2 minutes5 minutes10 minutes Frequency (GHz)2.437302.437202.437102.43709 Temperature 30 0 C30 0 C30 0 C30 0 C TimeStart Up2 minutes5 minutes10 minutes Frequency (GHz)2.437312.437192.437102.43709 Temperature 40 0 C40 0 C40 0 C40 0 C TimeStart Up2 minutes5 minutes10 minutes Frequency (GHz)2.437312.437192.437092.43709 Temperature 50 0 C50 0 C50 0 C50 0 C TimeStart Up2 minutes5 minutes10 minutes Frequency (GHz)2.437342.437202.437092.43709 Table 5.2.3 Stability Test for Transmitter, model TX-01H Conclusion:The EUT meets the requirements of the test reference for Frequency Stability PART 6 - RF POWER OUTPUT per FCC PART 2, SECTION 47 CFR §2.1046 6.1.CONFIGURATION AND PROCEDURE 6.1.1 EUT Configuration The EUT is set up in accordance with the suggested configuration given in FCC Measurement Procedure ANSI C63.4-1992. The measurement instrumentation used was an Hewlett Packard 8566B Spectrum Analyzer with detector and bandwidth parameters as stipulated in C63.4-1992. EUT was 12Vdc powered. 6.1.2 Test Procedure The Transmitter was placed on the test table. The EUT was configured for maximum response and was set up as described above and configured to transmit continuously. Signal was monitored with an HP 8566B Spectrum Analyzer, using the EMCO Horn Antenna, model # 3115. Unless stated otherwise, the antenna to EUT distance was 1 meter. The RF power output = Measured value + antenna correction + cable correction + distance correction, or -41..5 dBm + 27.1 dB + 1.6 dB+ 9.5 dB = -3.3 dBm 6.1.3 Spectrum Analyzer Configuration (During Swept Frequency Scans) Start Frequency 2,424.4MHz Stop Frequency 2,429.4MHz Sweep SpeedManual RES Bandwidth1MHz Video Bandwidth1MHz Quasi Peak Adapter ModeBypass Quasi peak Adapter Bandwidth Dis…
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PART 4 - OCCUPIED BANDWIDTH per FCC PART 2, SECTION 47 CFR §2.1049 4.1. Configuration and Procedure 4.1.1 EUT Configuration The EUT is set up in accordance with the suggested configuration given in FCC Measurement Procedure ANSI C63.4-1992. The measurement instrumentation used was an Hewlett Packard 8566B Spectrum Analyzer with detector and bandwidth parameters as stipulated in C63.4-1992. EUT was 12Vdc powered. 4.1.2 Test Procedure The Transmitter was placed on the test table. The EUT was configured for maximum response and was set up as described above and configured to transmit continuously. Signal was monitored with an HP 8566B Spectrum Analyzer, using the EMCO Horn Antenna, model # 3115. Unless stated otherwise, the antenna to EUT distance was 1 meter. 4.1.3 Spectrum Analyzer Configuration (During Swept Frequency Scans) Start Frequency ........................................................... 2,425MHz Stop Frequency............................................................. 2,430MHz Sweep Speed ..................................................................... Manual RES Bandwidth ................................................................... 1MHz Video Bandwidth ................................................................ 1MHz Quasi Peak Adapter Mode ................................................. Bypass Quasi Peak Adapter Bandwidth ...................................... Disabled 4.2. Bandwidth Test per FCC Part 2, Section §2.1049.1049 20dB Bandwidth Plot Performed at 1 Meter Distance (Please see initial plot forwarded with application in May) PART 5 - FREQUENCY STABILITY TEST per FCC PART 2, SECTION 47 CFR §2.1055 5.1. Configuration and Procedure 5.1.1 EUT Configuration The EUT is set up in accordance with the suggested configuration given in FCC Measurement Procedure ANSI C63.4-1992. The measurement instrumentation used was an Hewlett Packard 8566B Spectrum Analyzer with detector and bandwidth parameters as stipulated in C63.4-1992. EUT was powered by a dc power supply. 5.1.2 Test Procedure The Transmitter was placed in the temperature control chamber. The EUT was configured for maximum response and was set up as described above and configured to transmit continuously. The input voltage was varied from 10.2 to 13.8 vdc. Frequency stability was monitored with the HP 8566B Spectrum Analyzer, below and above the center frequencies using an appropriate receiving antenna. 5.1.3 Data Table Legend and Field Strength Calculation 'Margin' indicates the degree of compliance with the applicable limit. For example, a margin of -8 dB means that the emissions is 8 dB below the limit (in compliance); a margin of +4 dB means that the emission is 4 dB over the limit (out of compliance). The margin calculated as follows: Margin = Corrected Amplitude - Limit; where Corrected Amplitude = Amplitude + Antenna Correction Factor + Cable Loss A =Average P=Peak Q=Quasi Peak 5.1.4 Spectrum Analyzer Configuration (During Swept Frequency Scans) Start Frequency ......................................................... 2,4370MHz Stop Frequency........................................................... 2,4374MHz Sweep Speed ..................................................................... Manual RES Bandwidth ................................................................... 1MHz Video Bandwidth ................................................................ 1MHz Quasi Peak Adapter Mode ................................................. Bypass 5.2.FREQUENCY STABILITY TEST per FCC PART 2, SECTION 47 CFR §2.1055 5.2.3 Test Results Temperature-30 0 C-30 0 C-30 0 C-30 0 C TimeStart Up2 minutes5 minutes10 minutes Frequency (GHz)2.437332.437172.437072.43707 Temperature -20 0 C-20 0 C-20 0 C-20 0 C TimeStart Up2 minutes5 minutes10 minutes Frequency (GHz)2.437322.437172.437072.43707 Temperature -10 0 C-10 0 C-10 0 C-10 0 C TimeStart Up2 minutes5 minutes10 minutes Frequency (GHz)2.437322.437192.437072.43707 Temperature 0 0 C0 0 C0 0 C0 0 C TimeStart Up2 minutes5 minutes10 minutes Frequency (GHz)2.437322.437192.437072.43707 Temperature 10 0 C10 0 C10 0 C10 0 C TimeStart Up2 minutes5 minutes10 minutes Frequency (GHz)2.437302.437202.437092.43709 Temperature 22 0 C22 0 C22 0 C22 0 C TimeStart Up2 minutes5 minutes10 minutes Frequency (GHz)2.437302.437202.437102.43709 Temperature 30 0 C30 0 C30 0 C30 0 C TimeStart Up2 minutes5 minutes10 minutes Frequency (GHz)2.437312.437192.437102.43709 Temperature 40 0 C40 0 C40 0 C40 0 C TimeStart Up2 minutes5 minutes10 minutes Frequency (GHz)2.437312.437192.437092.43709 Temperature 50 0 C50 0 C50 0 C50 0 C TimeStart Up2 minutes5 minutes10 minutes Frequency (GHz)2.437342.437202.437092.43709 Table 5.2.3 Stability Test for Transmitter, model TX-01H Conclusion:The EUT meets the requirements of the test reference for Frequency Stability PART 6 - RF POWER OUTPUT per FCC PART 2, SECTION 47 CFR §2.1046 6.1.CONFIGURATION AND PROCEDURE 6.1.1 EUT Configuration The EUT is set up in accordance with the suggested configuration given in FCC Measurement Procedure ANSI C63.4-1992. The measurement instrumentation used was an Hewlett Packard 8566B Spectrum Analyzer with detector and bandwidth parameters as stipulated in C63.4-1992. EUT was 12Vdc powered. 6.1.2 Test Procedure The Transmitter was placed on the test table. The EUT was configured for maximum response and was set up as described above and configured to transmit continuously. Signal was monitored with an HP 8566B Spectrum Analyzer, using the EMCO Horn Antenna, model # 3115. Unless stated otherwise, the antenna to EUT distance was 1 meter. The RF power output = Measured value + antenna correction + cable correction + distance correction, or -41..5 dBm + 27.1 dB + 1.6 dB+ 9.5 dB = -3.3 dBm 6.1.3 Spectrum Analyzer Configuration (During Swept Frequency Scans) Start Frequency 2,424.4MHz Stop Frequency 2,429.4MHz Sweep SpeedManual RES Bandwidth1MHz Video Bandwidth1MHz Quasi Peak Adapter ModeBypass Quasi peak Adapter Bandwidth Dis…
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9959 Calaveras Road · Sunol, California · United States
| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 1 | 90 | 2.40 GHz - 2.48 GHz | 480.00 mW | 50M0F9W | 0.1000000000 % |

DXX - Part 15 Low Power Communication Device Transmitter
Equipment Class
DXX - Part 15 Low Power Communication Device Transmitter