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Y3DPRM92K20CEUHF RFID MODULE

Phychips Inc.
UHF RFID MODULE - FCC ID Y3DPRM92K20CE - Phychips Inc.
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Application Details

Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
Date of Grant
Jan 13, 2013
Application Purpose
Original Equipment
Date of Application
Jan 13, 2013
Equipment Note
UHF RFID MODULE
Frequency Range
917.10000000 - 926.90000000
Company
Phychips Inc.
Country
South Korea

Documents & Files

Select a file to view

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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Operational Description

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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

PRM92K20CE UHF RFID Module User’s Manual 28 December 2012 2 of 12 PRM92x20CE USER’s MANUAL – PRM92x20CE_ADK01 Contents 1 Revision History ................................................................................................................................ 3 2 Introduction ....................................................................................................................................... 4 2.1 Package configuration ......................................................................................................................... 4 2.2 Features .............................................................................................................................................. 5 3 DK description ................................................................................................................................... 6 3.1 PRM92x10C_CTRL ............................................................................................................................. 6 4 Specifications .................................................................................................................................... 9 5 Address Information ....................................................................................................................... 10 28 December 2012 3 of 12 PRM92x20CE USER’s MANUAL – PRM92x20CE_ADK01 1 Revision History Version Date Description ADK01 2012.10. 09 Initial Release 28 Decem 2 Intro The PRM92 x supports DC PRM92x20C 2.1 Packa PRM92x20 C  PRM  PRM  AQU  Tag  Mini  FF C  Des mber 2012 oduction x20CE DK c C power supp CE is UHF R age config CE DK includ M92x20CE : M9x10C_CTR UAxxxS_601 Samples ( U i-USB cable C cable ign Kit Docu consists of PR ply and PC in FID reader m Figure 1 Co guration des RF board RL : PC inter 0 Antenna UPM Short Di ment CD RM92x20CE nterface. module using onnection to P rface board ipole) PRM92x2 E and PRM9x g PR9200 an PRM92x10C 0CE USER’s x10C_CTRL nd include TC C_CTRL & PR s MANUAL – board. The CXO. RM92x20CE – PRM92x20 PRM9x10C_ E 4 of 12 0CE_ADK01 _CTRL board 1 d 28 December 2012 5 of 12 PRM92x20CE USER’s MANUAL – PRM92x20CE_ADK01 2.2 Features PRM92x20CE is reference designed module of PR9200 and low cost components. PRM9x10C_CTRL is control board that connects Reader Module to PC, supporting USB-to-UART interface and DC power management for reader module. PRM92x20CE - EPC Gen2 support - RCP protocol with CRC - FCC,EN certified - PR9200, TCXO, Coupler, Antenna port - Module size : 30mm x 35mm - U.FL connector for Antenna port (50ohm) - 30pin FFC connector (PR9200 full IO including I2C, GPIO) PRM92x10C_CTRL - Board size: 70mm x 70mm - DC power supply to USB - UART based PC interface - Mini USB connector - FFC connector for DC supplement & data interface - 2.54mm pitch application connector (ALL GPIO) - SWD support Firmware & GUI - RCP protocol with CRC - Read, Write, access, lock, kill operation - Bi-directional transfer to host microcontroller - Bi-directional transfer via I2C interface - Modular and easy to customize to final use case - Easy to access to GPIOs 28 December 2012 6 of 12 PRM92x20CE USER’s MANUAL – PRM92x20CE_ADK01 3 DK description 3.1 PRM92x10C_CTRL Figure 2 3.1.1 Power connector ① This is 3-pin connector for power supply to internal LDO of this module (⑨) If this connector is connected by jumper, PRM92x20CE is powered by USB 5V. Also you can connect external power through this connector pin. (A) When USB power is used (Default) (B) When External power is used Figure 3 Power connector 3.1.2 Mini USB port ② Connect mini-USB port to PC using mini-USB cable enclosed in the package PRM92x20CE can connect PC through UART and be supplied DC power. 28 December 2012 7 of 12 PRM92x20CE USER’s MANUAL – PRM92x20CE_ADK01 3.1.3 SWD port ③ In order to debug or firmware download, this SWD port is connected to H/W debugger such as ULINK2 and X- LINK (A) X-LINK port (B) ULINK2 port Figure 4 SWD port [Notice] SWD port power (3.3V) is provided by ULINK2 or X-LINK adapter. Please check jumper setting of adapter (refer to ULINK2 user’s guide, http://www.keil.com/support/man/docs/ulink2/ulink2_hw_jumpers.htm) 3.1.4 LED part ④ PRM9x10C_CTRL has two LED. One indicate POWER, the other indicate ACTIVE. When DC power is normally supplied, “POWER” LED is ON. When RFID reader is ready, “ACTIVE” LED is ON. “ACTIVE” LED is connected to GPIO(P07) of PRM92x20CE and change that function in Firmware Figure 5 PRM92x20CE_CTRL LED 3.1.5 RESETb button ⑤ This button is used when user want to reset PRM92x20CE and CP2102. (C) USB Reset (D) Module Reset Figure 6 Reset button 3.1.6 FFC connector ⑥ 30pin FFC connector has used for interconnection with PRM92x20CE 28 December 2012 8 of 12 PRM92x20CE USER’s MANUAL – PRM92x20CE_ADK01 3.1.7 Application connector ⑦ User can connect GPIO, SPI, I2C through application connector and use PRM92x20CE MCU all IO function. This connector has 2.54mm pitch. Each pin location help user connect IO in many way. 282624222018161412108642 272523211917151311 97531 ISP_MODEb P17P16P15 GND P14_TXD1 P13_RXD1 P12_SCL P11_SDA P10 GND P01_TXD0 P00_RXD0 VCC36 GNDGNDGNDGNDNCNCSWCLKSWDIOP07_SPI_CSP06_SPI_CLKP05_SPI_RXDP04_SPI_TXDP03GND 29 CSE 30 GND Figure 7 Application connector 3.1.8 USB-to-UART ⑧ PRM92x10C_CTRL use CP2102 (Silicon Labs) as USB-to-UART bridge. In order to connect PRM92x20CE to PC, user must install driver at first time. 3.1.9 LDO ⑨ This LDO make 3.6V power supply voltage for PR9200 and TCXO. 28 December 2012 9 of 12 PRM92x20CE USER’s MANUAL – PRM92x20CE_ADK01 4 Specifications Parameter Symbol Min Typ Max Unit PRM92x10C_CTRL supply voltage 5 V PRM92x10C_CTRL output voltage VDD_36 3.6 V PRM92x10C Current consumption in active mode I OP 550 mA TX output maximum power 1 P OUT 25 dBm Frequency range f C 917.1 926.9 MHz 1. Current board max power is about 25dBm. 28 December 2012 10 of 12 PRM92x20CE USER’s MANUAL – PRM92x20CE_ADK01 5 Address Information PHYCHIPS Inc. #20…

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Cover Letter(s)

PHYCHIPS Inc. #204 Migun Techno world 1, 533 Yongsan-dong, Yuseong-gu, Daejeon, Korea, 305-500 Date: December 26, 2012 Timco Engineering, Inc. 849 N.W. State Road 45 P.O. Box 370 Newberry, Florida 32669 USA LETTER OF AUTHORIZATION We, the undersigned, hereby authorize Harvey Sung of DIGITAL EMC CO., LTD. to act on our behalf in all manners relating to application for equipment authorization for FCC ID:Y3DPRM92K20CE including signing of all documents relating to these matters. Any and all acts carried out by Harvey Sung of DIGITAL EMC CO., LTD. on our behalf shall have the same affect as acts of our own. This authorization is valid until further written notice from PHYCHIPS Inc. Sincerely, Laekyu Chang Manager

Cover Letter(s)

PHYCHIPS Inc. #204 Migun Techno world 1, 533 Yongsan-dong, Yuseong-gu, Daejeon, Korea, 305-500 Date: December 26, 2012 Timco Engineering, Inc. 849 N.W. State Road 45 P.O. Box 370 Newberry, Florida 32669 USA RE: Request of Confidentiality for FCCID: 3YDPRM92K20CE To Whom It may Concern: Pursuant to Sections 0.457 and 0.459 of the Commission`s Rules(CFR 47), and Section 552 (b) (4) of the Freedom of Information Act, PHYCHIPS Inc. hereby requests confidentiality and treatment of certain information accompanying this application. The materials contain trade secrets and proprietary information not customarily released to the public. The public disclosure of these matters might be harmful to the Applicant and provide unjustified benefits to its competitors. We are also hereby request Short-Term Confidentiality for 180 days after the grant as outlined in Public Notice DA 04-1705. This provision will give PHYCHIPS Inc.temporary confidentiality of commercially sensitive information prior to product release. The requested permanent and Short-Term Confidential exhibits are listed as follows: PERMANENT & SHORT-TERM CONFIDENTIAL LIST Exhibit Description PERMANENT 1 Block Diagram 2 Schematics 3 Operational Description 4 Part Lists and Tune-Up Procedure SHORT-TERM 5 External Photos 6 Internal Photos 7 Test-Setup Photos 8 User Manual The Applicant understands that pursuant to Rule 0.457, disclosure of this application and all accompanying documentations, where applicable, will not be public before the date of the Grant for this application. Sincerely, Laekyu Chang Manager

Cover Letter(s)

PHYCHIPS Inc. #204 Migun Techno world 1, 533 Yongsan-dong, Yuseong-gu, Daejeon, Korea, 305-500 Date: December 26, 2012 Timco Engineering, Inc. 849 N.W. State Road 45 P.O. Box 370 Newberry, Florida 32669 USA DECLARATION FOR ADDITIONAL FREQUENCY HOPPING REQUIREMENTS To whom it may concern: We hereby declare that the Bluetooth of Y3DPRM92K20CE meet following FCC requirements of the Section 15.247(a)(1) : 1. The hopping sequence is pseudorandom. 2. All channels are used equally on average. 3. The receiver input bandwidth approximately equal the transmit bandwidth. 4. The receiver hop in sequence with the transmit signal. Sincerely, Laekyu Chang Manager

Cover Letter(s)

PHYCHIPS Inc. #204 Migun Techno world 1, 533 Yongsan-dong, Yuseong-gu, Daejeon, Korea, 305-500 Timco Engineering, Inc. 849 N.W. State Road 45 P.O. Box 370 Newberry, Florida 32669 USA December 26, 2012 Modular Approval Attestation for Transceiver Module. Applicant: PHYCHIPS Inc. FCC ID: Y3DPRM92K20CE No. FCC requirements 1 Have its own RF shielding RF Block shielded by Metal Case 2 Have buffered modulation/data inputs (if such inputs are provided), Yes, the module has buffered data input. 3 The modular transmitter must have its own power supply regulation. We used self own power supply regulation. 4 Meet the antenna requirements of section 15.203 This module meets the antenna requirements of section 15.203. 5 Be tested in a stand-alone configuration, i.e., the antenna, AC or DC power and data input/output lines must be connected to the module but, the module must not be inside another case during testing Yes, the EUT (module) was tested a stand alone configuration. 6 Be labeled with its own FCC ID number, and if the FCC ID is not visible when the module is installed inside another device, then the outside of the device into which the module is installed must also display a label referring to the enclosed module. The proposed FCC ID label format is to be placed on the module. If FCC ID label is not visible when module is install into the system, “Contains FCC ID: Y3DPRM92K20CE” shall be placed on the outside of final product. 7 The modular transmitter is manufactured so that the user can not influence the operation of the transmitter that will operate outside of the scope of the regulations. It complies with specific rules or operating requirements. And instruction is included User manual. 8 Address compliance with the Commission`s RF exposure limits in Sections 1.1310 and 2.1093. In addition, spread spectrum transmitters operation under Section 15.247 are required to address RF exposure compliance in accordance with Section 15.247(b)(4) The RF exposure limit is addressed in RF Exposure Calculation. Sincerely, Laekyu Chang Manager

External Photos

FCCID: Y3DPRM92K20CE Copyright Ⓒ 2012, Digital EMC Co., Ltd. View 1 FCCID: Y3DPRM92K20CE Copyright Ⓒ 2012, Digital EMC Co., Ltd. View 2 FCCID: Y3DPRM92K20CE Copyright Ⓒ 2012, Digital EMC Co., Ltd. View 3

ID Label/Location Info

FCC ID: Y3DPRM92K20CE Copyright Ⓒ 2012, DIGITAL EMC Co., Ltd. FCC ID SAMPLE LABEL & LOCATION LABELLING REQUIREMENTS PER §2.925 The Label shown shall be permanently affixed at a conspicuous location on the device and be readily visible to the user at the time of purchase The label is attached to this device by an adhesive. The adhesive is permanent type with strong strength.

Internal Photos

FCCID: Y3DPRM92K20CE Copyright Ⓒ 2012, Digital EMC Co., Ltd. Page1 / 2 View 1 FCCID: Y3DPRM92K20CE Copyright Ⓒ 2012, Digital EMC Co., Ltd. Page2 / 2 View 2

Internal Photos

PRM92K20CEPRM92K20CE PCB Layout 2012. 11. 28 Pre p ared b y PHYCHIPS py PRM92K20CE TOP CONFIDENTIAL 2 PRM92K20CE GND CONFIDENTIAL 3 PRM92K20CE VCC CONFIDENTIAL 4 PRM92K20CE Bottom CONFIDENTIAL 5

Operational Description

Notes The conte n the sp nts of this da pecifications Applicat UHF RF Features High Effi High Fro Wide ban Pb-free C RoHS Co atasheet are s and delivery DA tion FID s iciency ont-Back Rati ndwidth Condition ompliant subject to ch y conditions ATA AQUA io ACT hange withou when placin ASH A920S Ser TENN Datas ut notice. Ple ng your orde HEE ries NA Document Type Application Part No. Revision heet / QSA A ase confirm r. ET Qu Antenna / UH AQUAxx Datashe uadrifilar Spir UHF RF AQUAxxxS_ 0 HF RFID xxS_6010 1 eet ral Antenna FID _6010 Notes The conte n the sp Revision Re Table of 1.F e 2. Sp 2 2 2 2 3. M 3 3 4. So 5. R nts of this da ecifications a n History ev. No 0 Content eatures pecifications 2.1 Electrical 2.2 Mechanic 2.3 Drawing 2.4 Design fo Measurement 3.1 Typical M 3.2 Typical M oldering Reliability atasheet are s and delivery Date 2010.9.10 s l Specificatio cal Specificat and Marking or Test t Result Measurement Measurement subject to ch y conditions w Title ons tions g t Result (Retu t Result (Gai hange withou when placin First, doc urn Loss) in, Radiation Datas ut notice. Ple ng your order Conten cumented n Pattern) heet / QSA A ase confirm r. nts Antenna / UH AQUAxx Pa - 3 3 3 3 4 4 5 5 6, 8 8 HF RFID xxS_6010 2 ge - 3 3 3 3 4 4 5 5 ,7 8 8 Notes The conte n the sp 1. FEAT UH Squ Wi Sm Low Low Im Eas OE 2. SPEC 2.1 Elect No 1 2 3 4 5 6 7 2.2 Mech No 1 2 nts of this da ecifications a TURES HF RFID Rea uare Quadrif de Beamwid mall Antenna w Weight, Co w Frequency munity from sy Applicatio EM / ODM CIFICATIO trical Specif Operatin P Pea A Bandwidth Beam Im hanical Spe Dimen Operat atasheet are s and delivery ader Circular filar Sprial A dth, Wide Ban Element ompact Size y Shift by Pla m User Proxim on and Save D ONS fications Item g Frequency Polarization ak Gain [dBic Axial Ratio h (-10dB R.L mwidth (degre mpedance (Ω) ecifications Item sions (L x W ting Tempera subject to ch y conditions w r Polarization ntenna (* Pa ndwidth tform Size mity and Han Developmen y [MHz] c] .) [MHz] ees) ) W x H) ature hange withou when placin n Antenna atent Registr ndling nt Time Min 2.0 60 Datas ut notice. Ple ng your order ation) Typ. 902~928 RHCP 2.5 <2.0 200 >130 50 Spec. 0 x 60 x 10 m -40 ~ +90 °C heet / QSA A ase confirm r. Max mm 3 °C Antenna / UH AQUAxx Rema Rem HF RFID xxS_6010 3 ark mark Notes The conte n the sp 2.3 Draw 2.4 Desi g C H nts of this da ecifications a wing and M gn for Test Cable connec Housing atasheet are s and delivery arking ction Note 1 : M subject to ch y conditions w Minimum ava hange withou when placin ailable cable Datas ut notice. Ple ng your order length(L) is heet / QSA A ase confirm r. 35mm Antenna / UH AQUAxx HF RFID xxS_6010 4 Notes The conte n the sp 3 MEA 3-1 Typi c R 3-2 Typ i 3 nts of this da ecifications ASUREM cal Measur Return Loss ical Measur D Radiation atasheet are s and delivery MENT RE rement Res rement Res n Pattern subject to ch y conditions ESULT sult (Return sult (Gain & hange withou when placin n Loss ) & Radiation Datas ut notice. Ple ng your order n Pattern ) heet / QSA A ase confirm r. Antenna / UH AQUAxx HF RFID xxS_6010 5 Notes The conte n the sp nts of this da ecifications a atasheet are s and delivery subject to ch y conditions w hange withou when placin Datas ut notice. Ple ng your order heet / QSA A ase confirm r. Antenna / UH AQUAxx HF RFID xxS_6010 6 Notes The conte n the sp A nts of this da pecifications Axial Ratio atasheet are s and delivery subject to ch y conditions hange withou when placin Datas ut notice. Ple ng your orde heet / QSA A ase confirm r. Antenna / UH AQUAxx HF RFID xxS_6010 7 Notes The conte n the spe 4 SOL M S M p 5 RELI No 1 2 3 4 5 6 7 nts of this da ecifications a LERING Manual Sold oldering Te Must comply performance IABILIT Item Drop T Vibration Humid Thermal High Temp Resista Low Temp Resista Adhesion St Solder atasheet are s and delivery dering (By Ir emperature y with abov e. TY m Test n Test dity Shock perature ance perature ance trength of ring subject to ch y conditions w ron) – Pb fr : 300°C േ5 e soldering 1. Place an 2. 1.5 m he 3. Drop 5 t 1. 5-55-5H Amp. = Crossov 1. 60°C, 95 1. +80°C(3 2. 10 cycle 1. +90°C, 1. -40°C, 9 1. Used of hange withou when placin ree 5°C, 5sec m condition t Test Cond ntenna on se eight times Hz, 1 octive/m 1.5mm, acce ver Freq.=18 5%RH, 96Hr 30min)5m e 96Hr 96Hr f pull push ga Datas ut notice. Ple g your order ax. (Solder to prevent fr dition et min eleration=2g Hz, Holdtim r min-40°C(3 auge heet / QSA A ase confirm r. : Sn/Ag/Cu rom degrad 1. 2 . me=2H.R 1. 2 . 1. 2 . 30min) 1. 2 . 1. 2 . 1. 2 . 1. Antenna / UH AQUAxx u:96.5/3.0/ dation of an Requirem . No visible . S11 satisfy . No visible . S11 satisfy . No visible . S11 satisfy . No visible . S11 satisfy . No visible . S11 satisfy . No visible . S11 satisfy . Spec (min HF RFID xxS_6010 8 0.5) tenna ment e defect y e defect y e defect y e defect y e defect y e defect y n. 5kgf)

RF Exposure Info

-~ - - The MPE calculation for this exposure is shown below. The peak radiated output power (EIRP) is calculated as follows: ▪=+- =+ = - ▪S=- =X = mW/cm 2 FCCID: Y3DPRM92K20CE MPE Calculations Frequency range :917.1MHz926.9MHz 24.717dBm 2.500dBi Maximum RF output power : Maximum antenna peak gain : The EUT will only be used with a separation of 20 centimeters or greater between the antenna and the user. EIRPPGNote 24.72dBm2.50dBiP = Power input to the antenna(dBm) 27.22dBmG = Power gain of the antenna(dBi) Power density at the specific separation P G / ( 4 R 2 π ) Note 296.28 1.778 / ( 4 X 20 2 X π )S = Maximum power dencity(mW/cm 2 ) 0.10482 mW/cm 2 P = Power input to the antenna(mW) G = Numeric power gain of the antenna R = Distance to the center of the radiation of the antenna(20cm) Conclusion : The exposure condition of this device is compliant with FCC rules. The maximum permissible exposure(MPE) of the general population/Uncontrolled for this device is 0.62 TRF-RF-206(00)100216

Test Report

FCC ID : VUJATUHF900S1 DEMC1207-01036 Report No.: DRTFCC1212-0909 TRF-RF-212(00)101214 Page 2 / 29 Copyright ○ C 2012, Digital EMC Co., Ltd. Table of Contents 1. General Information ................................................................................................ 3 1.1 Testing Laboratory ........................................................................................................... 3 1.2 Details of Applicant .......................................................................................................... 3 1.3 Description of EUT ........................................................................................................... 3 1.4. Declaration by the manufacturer ................................................................................... 3 1.6. Test Equipment List ........................................................................................................ 4 1.7. Summary of Test Results ................................................................................................ 5 1.8 Conclusion of worst-case and operation mode ............................................................ 6 1.9 Test report revision .......................................................................................................... 6 2. Radiated Spurious Emissions and Conducted Spurious Emission ................... 7 2.1. Test Setup ......................................................................................................................... 7 2.2. Limit .................................................................................................................................. 7 2.3. Test Procedures .............................................................................................................. 8 2.3.1. Test Procedures for Radiated Spurious Emissions ................................................ 8 2.3.2. Test Procedures for Conducted Spurious Emissions ............................................ 8 2.4. Test Results ...................................................................................................................... 9 2.4.1. Radiated Emission ...................................................................................................... 9 2.4.2. Conducted Spurious Emissions ............................................................................. 10 3. Carrier Frequency Separation .............................................................................. 16 3.1. Test Setup ...................................................................................................................... 16 3.2. Limit ................................................................................................................................ 16 3.3 Test Procedure:............................................................................................................... 16 3.4 Test Results: ................................................................................................................... 16 4. Number of Hopping Frequencies ...................................................................... 17 4.1. Test Setup ...................................................................................................................... 17 4.2. Limit ................................................................................................................................ 17 4.3 Test Procedure:............................................................................................................... 17 4.4 Test Results: ................................................................................................................... 17 5. 20dBc BW ............................................................................................................... 18 5.1. Test Setup ....................................................................................................................... 18 5.2. Limit ................................................................................................................................ 18 5.3. Test Procedure .............................................................................................................. 18 5.4. Test Results .................................................................................................................... 18 6. Time of Occupancy (Dwell Time) ......................................................................... 21 6.1. Test Setup ....................................................................................................................... 21 6.2. Limit ................................................................................................................................ 21 6.3. Test Procedure .............................................................................................................. 21 6.4. Test Results .................................................................................................................... 21 7. Maximum Peak Output Power Measurement ...................................................... 22 7.1. Test Setup ....................................................................................................................... 22 7.2. Limit ................................................................................................................................ 22 7.3. Test Procedure ............................................................................................................... 22 7.4. Test Results .................................................................................................................... 22 8. Transmitter AC Power Line Conducted Emission .............................................. 25 8.1. Test Setup ....................................................................................................................... 25 8.2. Limit ....................…

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Test Setup Photos

FCC ID: Y3DPRM92K20CE Copyright Ⓒ 2012, Digital EMC Co., Ltd. EUT Axis information X Axis Y Axis Z Axis FCC ID: Y3DPRM92K20CE Copyright Ⓒ 2012, Digital EMC Co., Ltd. Test Setup Photo of Radiated Measurement (0.009 ~ 30MHz) FCC ID: Y3DPRM92K20CE Copyright Ⓒ 2012, Digital EMC Co., Ltd. Test Setup Photo of Radiated Measurement (30 ~ 1000MHz) FCC ID: Y3DPRM92K20CE Copyright Ⓒ 2012, Digital EMC Co., Ltd. Test Setup Photo of Radiated Measurement (1 ~ 10GHz) FCC ID: Y3DPRM92K20CE Copyright Ⓒ 2012, Digital EMC Co., Ltd. Test Setup Photo of Conducted Emissions

Contact Information

Applicant

Khyungjoo Min(Principal Research Engineer)
[email protected]+82-42-864-2402Fax: -

Test Firm

Dt&C Co., Ltd.Lee Sang-Wook
[email protected]82-31-321-2664Fax: 82-31-321-1664

Technical Specifications

#Rule PartsFrequency RangePower Output
115C917.1 MHz - 926.9 MHz296.00 mW
Modular Type
Single Modular Approval
Confidentiality
Long Term
Grant Notes
Single Modular Transmitter. Power output is conducted. Approval is limited to OEM installation only. Compliance of this device in all final host configurations is the responsibility of the Grantee. This device is to be used only for mobile and fixed applications. The antenna(s) used for this transmitter must not exceed the gain of 2.5 dBi and must be installed to provide a separation distance of at least 20cm from all persons, and must not transmit simultaneously with any other antenna or transmitter. OEM integrators must be provided with antenna installation instructions and labeling requirements for finished products. OEM integrators and end-Users must be provided with transmitter operation conditions for satisfying RF exposure compliance. This grant is valid only when the device is sold to OEM integrators and the OEM integrators are instructed to ensure that the end user has no manual instructions to remove or install the device. Separate approval is required for all other operating configurations, including portable configurations with respect to 2.1093 and different antenna configurations.

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