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W55TIAFM1B2Tire Pressure Monitoring System

Oro Technology Co., LTD
Tire Pressure Monitoring System - FCC ID W55TIAFM1B2 - Oro Technology Co., LTD
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Application Details

Equipment Class
DSR - Part 15 Remote Control/Security Device Transceiver
Date of Grant
Jul 07, 2013
Application Purpose
Original Equipment
Date of Application
Jul 03, 2013
Equipment Note
Tire Pressure Monitoring System
Frequency Range
433.92000000 - 433.92000000
Company
Oro Technology Co., LTD
Country
Taiwan

Documents & Files

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Users Manual

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Cover Letter(s)

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External Photos

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ID Label/Location Info

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Internal Photos

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RF Exposure Info

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Test Report

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Test Setup Photos

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Document Text

Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.

Users Manual

Oro Technology Co., LTD Tire Pressure Monitoring System W408 User Manual W408 TPMS Specification 1. Tire Sensor’s Specification Battery life 5~7 years normally use. Battery Voltage 3.6 V Operating Humidity Max 95% Storage Temperature -40°C to 125 °C Operation Temperature -30 °C to 115 °C Operation Frequency 314.6MHz Transmission Frequency Transmit 1 signal each 30 sec. Pressure Monitoring Range 0 ~ 350 kPa (or 0~51 psi ; 0~3.5 bar) Pressure Reading Accuracy ±7 kPa Temperature Monitoring Range -30 °C to 115 °C Temperature Reading Accuracy ±3°C Module weight 31.6 g ± 1 g 2. Receiver Specification Operation Voltage 9V ~ 16V Operating Humidity Max 95% Normal Operation Voltage ≦200mA Storage Temperature Range -40°C to 90 °C Operation Temperature Range -30°C to 85 °C Tire Pressure Reading Range 0 ~ 350 kPa Temperature Reading Range -30 °C to 115 °C W408 TPMS INSTALLATION 1. Tire Sensor Installation: Step Operation Process Photographs a Take off the 4 tires and mark 1~4 for each tire position. No.4 = Left Front Tire ; No.1 = Right Front Tire。 No.3 = Left Rear Tire ; No.2 = Right Rear Tire。 b Take off the tire and bleed the air, then. to change to the ORO-Technology TPMS valve, follow the steps: 1. Snap in the valve from the internal edge side of the wheel. 2. Adjust the valve’s angle, and make sure the valve is vertical to the edge of the wheel. 3. Put on the circle screw (washer)from the outside of the wheel. 4. Tighten the valve with the nylok screw from the outside of the wheel. 5. Use the alan key provided to tighten. b c Put the marked No. 1 tire sensor to the tire which is marked No. 1. as step a. photo and follow steps: 1. Install the tire sensor to the valve. 2. Use the nylok screw and tighten up with the tire sensor. (Pls. use the screwdriver which is included to the accessories bag) 3. Adjust the tire sensor’s angle (paste on the surface of the wheel), then tight up the with the nylok screw. 4. Put on the valve’s cap, and finish the installation. When there is a need to re-install the tire sensor, please use the new nylok screw in order to prevent the usage of the old ones. d Place the No. 2 tire sensor to the tire which is marked No.2, and set up the other 2 sensors in the same manner as shown in the step C. e Make sure there is no other liquid or dust present around the area of the tire sensor. f After installation, inflate the tire to the appropriate air pressure as suggested in each vehicle’s user manual. g Balance the tires with the tire balance machine。 h Place the tires back to it’s corresponding position as shown in the photograph on step a. Once TPMS is installed correctly, turn on the ignition to start monitoring the tire pressure/temperature and voltage. Video Input Video Trigger BLACK RED GROUND ACC(+12V) Power Cable BROWN WHITE DVD Trigger(+12V Output) Video Output DVD Triger(0V Output) BLACK Reverse Gear(+12V) Reverse Car “Video in”

External Photos

Report No:128447R-RFUSP41V01 Page: 28 of 34 Attachment EUT Photograph (1) EUT Photo (2) EUT Photo

ID Label/Location Info

FCC ID.: W55TIAFM1B2 FCC ID Label The FCC ID Label will be placed on the equipment as shown in the photograph below. Tire Pressure Monitoring System Model No.: W408 FCC ID : W55TIAFM1B2 S/N: Made in Taiwan

ID Label/Location Info

FCC ID.: W55TIAFM1B2 FCC ID Label The FCC ID Label will be placed on the equipment as shown in the photograph below. Tire Pressure Monitoring System Model No.: W408 FCC ID : W55TIAFM1B2 S/N: Made in Taiwan

Internal Photos

Report No:128447R-RFUSP41V01 Page: 29 of 34 (3) EUT Photo (4) EUT Photo Report No:128447R-RFUSP41V01 Page: 30 of 34 (5) EUT Photo (6) EUT Photo Report No:128447R-RFUSP41V01 Page: 31 of 34 (7) EUT Photo (8) EUT Photo Report No:128447R-RFUSP41V01 Page: 32 of 34 (9) EUT Photo Report No:128447R-RFUSP41V01 Page: 33 of 34 (10) EUT Photo (MB) Report No:128447R-RFUSP41V01 Page: 34 of 34 (11) EUT Photo (Antenna) (12) EUT Photo (Antenna)

RF Exposure Info

Report No. 128447R-RF-US-Exp Page: 1 of 3 RF Exposure Evaluation Declaration Product Name :Tire Pressure Monitoring System Model No. :W408 FCC ID. :W55TIAFM1B2 Applicant : Oro Technology Co., LTD Address : 3F, No.32-1, 24th Road, Industrial Park, Taichung 408, Taiwan Date of Receipt : 2012/08/23 Issued Date : 2013/06/19 Report No. : 128447R-RF-US-Exp Report Version : V1.0 The declaration results relate only to the samples calculated. The declaration shall not be reproduced except in full without the written approval of QuieTek Corporation. Report No. 128447R-RF-US-Exp Page: 2 of 3 1. RF Exposure Evaluation 1.1. Limits According to FCC 1.1310: The criteria listed in the following table shall be used to evaluate the environment impact of human exposure to radio frequency (RF) radiation as specified in 1.1307(b) LIMITS FOR MAXIMUM PERMISSIBLE EXPOSURE (MPE) Frequency Range (MHz) Electric Field Strength (V/m) Magnetic Field Strength (A/m) Power Density (mW/cm 2 ) Average Time (Minutes) (A) Limits for Occupational/ Control Exposures 300-1500 -- -- F/300 6 1500-100,000 -- -- 5 6 (B) Limits for General Population/ Uncontrolled Exposures 300-1500 -- -- F/1500 6 1500-100,000 -- -- 1 30 F= Frequency in MHz Friis Formula Friis transmission formula: Pd = (Pout*G)/(4*pi*r2) Where Pd = power density in mW/cm2 Pout = output power to antenna in mW G = gain of antenna in linear scale Pi = 3.1416 R = distance between observation point and center of the radiator in cm Pd id the limit of MPE, 1 mW/cm2 . If we know the maximum gain of the antenna and the total power input to the antenna, through the calculation, we will know the distance r where the MPE limit is reached. 1.2. Test Procedure Software provided by client enabled the EUT to transmit and receive data at lowest, middle and highest channel individually. The temperature and related humidity: 18°Cand 78% RH. Report No. 128447R-RF-US-Exp Page: 3 of 3 1.3. Test Result of RF Exposure Evaluation Product Tire Pressure Monitoring System Test Mode Mode 1: Transmit Test Condition RF Exposure Evaluation Antenna Gain Antenna Gain: The maximum Gain measured in fully anechoic chamber is 0dBi or 1 in linear scale. Output Power into Antenna & RF Exposure Evaluation Distance: Channel Channel Frequency (MHz) Output Power to Antenna (mW) Power Density at R = 20 cm (mW/cm 2 ) 01 433.92 0.0371 0.00001 The power density Pd (4th column) at a distance of 20 cm calculated from the Friis transmission formula is far below the limit of 0.29 mW/cm 2 in 433.92MHz.

Test Report

Report No:128447R-RFUSP41V01 Page: 1 of 34 FCC Test Report Product Name :Tire Pressure Monitoring System Model No. :W408 FCC ID. :W55TIAFM1B2 Applicant : Oro Technology Co., LTD Address : 3F, No.32-1, 24th Road, Industrial Park, Taichung 408, Taiwan Date of Receipt:2012/08/23 Issued Date :2013/06/19 Report No. :128447R-RFUSP41V01 Report Version:V1.0 The test results relate only to the samples tested. The test report shall not be reproduced except in full without the written approval of QuieTek Corporation. This report must not be used to claim product endorsement by NVLAP any agency of the U.S. Government Report No:128447R-RFUSP41V01 Page: 2 of 34 Test Report Certification Issued Date : 2013/06/19 Report No. : 128447R-RFUSP41V01 Product Name : Tire Pressure Monitoring System Applicant : Oro Technology Co., LTD Address : 3F, No.32-1, 24th Road, Industrial Park, Taichung 408, Taiwan Manufacturer : Oro Technology Co., LTD Model No. : W408 FCC ID. : W55TIAFM1B2 EUT Voltage : Battery 3V Trade Name : ORO Applicable Standard : FCC 15 Subpart C Section 15.231(e): 2012 Test Result : Complied The test results relate only to the samples tested. The test report shall not be reproduced except in full without the written approval of QuieTek Corporation. This report must not be used to claim product endorsement by NVLAP any agency of the U.S. Government Documented By : ( Carol Tsai / Engineering Adm. Specialist ) Reviewed By : ( Quale Tang / Engineer ) Approved By : ( Roy Wang / Manager ) Report No:128447R-RFUSP41V01 Page: 3 of 34 Laboratory Information We, QuieTek Corporation, are an independent RF consultancy that was established the whole facility in our laboratories. The test facility has been accredited/accepted (audited or listed) by the following related bodies in compliance with ISO 17025 specified testing scopes: The related certificate for our laboratories about the test site and management system can be downloaded from QuieTek Corporation’s Web Site:http://www.quietek.com/tw/ctg/cts/accreditations.htm The address and introduction of QuieTek Corporation’s laboratories can be founded in our Web site : http://www.quietek.com/ If you have any comments, Please don’t hesitate to contact us. Our contact information is as below: HsinChu Testing Laboratory: No.75-2, 3rd Lin, Wangye Keng, Yonghxing Tsuen, Qionglin Shiang, Hsinchu County 307, Taiwan, R.O.C. TEL:+886-3-592-8858 / FAX:+886-3-592-8859 E-Mail : [email protected] LinKou Testing Laboratory: No.5-22, Ruishukeng, Linkou Dist., New Taipei City 24451, Taiwan, R.O.C. TEL : 886-2-8601-3788 / FAX : 886-2-8601-3789 E-Mail : [email protected] Taiwan R.O.C. : TAF, Accreditation Number: 1313 USA : FCC, Registration Number: 365520 Canada : IC, Submission No: 150981 Report No:128447R-RFUSP41V01 Page: 4 of 34 TABLE OF CONTENTS Description Page 1. General Information........................................................................................................ 5 1.1. EUT Description ............................................................................................................. 5 1.2. Operation Description.....................................................................................................6 1.3. Test Mode ....................................................................................................................... 7 1.4. Tested System Details .................................................................................................... 8 1.5. Configuration of tested System ...................................................................................... 8 1.6. EUT Exercise Software .................................................................................................. 8 1.7. Test Facility..................................................................................................................... 9 2. Radiated Emission ....................................................................................................... 10 2.1. Test Equipment............................................................................................................. 10 2.2. Test Setup .................................................................................................................... 11 2.3. Limits ............................................................................................................................ 12 2.4. Test Procedure ............................................................................................................. 13 2.5. Test Specification.......................................................................................................... 13 2.6. Uncertainty ................................................................................................................... 13 2.7. Test Result.................................................................................................................... 14 2.8. Test Photo .................................................................................................................... 19 3. Occupied Bandwidth..................................................................................................... 21 3.1. Test Equipment............................................................................................................. 21 3.2. Test Setup .................................................................................................................... 21 3.3. Limits ............................................................................................................................ 21 3.4. Test Specification.......................................................................................................... 21 3.5. Uncertainty ................................................................................................................... 21 3.6. Test Result...........................................................................................…

Text truncated - open the document above for the full version.

Test Setup Photos

Report No:128447R-RFUSP41V01 Page: 19 of 34 2.8. Test Photo Test Mode : Mode 1: Transmit Description: Front View of Radiated Emission Test Setup (Bi-Log) Test Mode : Mode 1: Transmit Description: Back View of Radiated Emission Test Setup (Bi-Log) Report No:128447R-RFUSP41V01 Page: 20 of 34 Test Mode : Mode 1: Transmit Description: Front View of Radiated Test (Horn) Test Mode : Mode 1: Transmit Description: Back View of Radiated Test (Horn)

Contact Information

Applicant

Benlin Chen(Manager)
[email protected]886-4-2359-3549Fax: 886-4-2359-3650

Technical Contact

QuieTek CorporationNeil Yeh
[email protected]886-3-592-8858

NO. 75-2, 3rd Lin, Wangye Keng, Yonghxing Tsuen, · Taiwan

Test Firm

DEKRA TESTING AND CERTIFICATION CO., LTD.Warren Lin
[email protected]+886-3-582-8001Fax: +886-3-582-8958

Technical Specifications

#Rule PartsFrequency RangePower Output
115.231(e)433.92 MHz - 433.92 MHz-
Confidentiality
Long Term

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