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P4M-DTEVDUALcdma EVDO/1x Module

AnyDATA Corporation
cdma EVDO/1x Module - FCC ID P4M-DTEVDUAL - AnyDATA Corporation
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Application Details

Equipment Class
PCB - PCS Licensed Transmitter
Date of Grant
Jan 29, 2006
Application Purpose
Original Equipment
Date of Application
Jan 29, 2006
Equipment Note
cdma EVDO/1x Module
Frequency Range
824.69000000 - 848.31000000
Company
AnyDATA Corporation
Country
United States

Documents & Files

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Users Manual

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Block Diagram

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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

Operational Description

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Parts List/Tune Up Info

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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

CDMA DATA TERMINAL DTEV-Dual Reference Manual Application Information November, 21, 2005 DTEV-Dual AnyDATA.NET AnyTime AnyPlace Any Wireless Data Solutions™ International Contact AnyDATA Corp. 18902 Bardeen Ave Irvine, CA 92612-1522, U.S.A. e-mail : [email protected] Korea Contact AnyDATA.NET Hanvit Bank Bldg. 6th Fl., 1-12 Byulyang-dong Kwachon, Kyunggi-do, Korea e-mail : [email protected] AnyDATA.NET Inc. AnyTime AnyPlace Any Wireless Data Solution TM Notice All data and information contained in or disclosed by this document are confidential and proprietary information of AnyDATA.NET Inc., and all rights therein are expressly reserved. By accepting this material, the recipient agrees that this material and the information contained therein are held in confidence and in trust and will not be used, copied, reproduced, or distributed in whole or in part, nor its contents revealed in any manner to others without the express written permission of AnyDATA.NET Inc. AnyDATA.NET Inc. does not assume any liability arising out of the application or use of its products. AnyDATA.NET Inc. assumes no responsibility for any damage or loss resulting from the misuse of its products. AnyDATA.NET Inc. assumes no responsibility for any loss or claims by third parties, which may arise through the use of its products. AnyDATA.NET Inc. assumes no responsibility for any damage or loss caused by the deletion or loss of data as a result of malfunctions or repairs. The information contained in this document is subject to change without notice. Information contained herein is for reference only and does not constitute a commitment on the part of AnyDATA.NET Inc. Although the information in this document has been carefully reviewed and it’s believed to be reliable, AnyDATA.NET Inc. assumes no responsibility or liability for any errors or inaccuracies that may appear in this document nor are they in anyway responsible for any loss or damage resulting from the use (or misuse) of this document. It is advised for the customers to contact our engineers for more information with respect to Keypad, audio interface, RF interface and input power supply before they start an actual design. OEM integrators and installers are instructed that the phrase 'This device contains transmitter FCC ID: P4M-DTEVDUAL must be placed on the outside of the host. ! Warning: Exposure to Radio Frequency Radiation The radiated output power of this device is far below the FCC radio frequency exposure limits. Nevertheless, the device should be used in such a manner that the potential for human contact during normal operation is minimized. In order to avoid the possibility of exceeding the FCC radio frequency exposure limits, human proximity to the antenna should not be less than 20cm during normal operation and the gain of the antenna must not exceed 1dBi All Rights Reserved. AD-2001-06-28 Ver 1.1 -2- AnyDATA.NET Inc. AnyTime AnyPlace Any Wireless Data Solution TM Contents 1 Introduction 1.1 Purpose 1.1.1 Features 1.1.2 Applications 1.2 Organization 1.3 Revision History 1.4 Reference 1.5 Acronym List 2 Overview 2.1 Application Description 2.2 Technical Specifications 2.2.1 General Specification 2.2.2 Receive Specification 2.2.3 Transmit Specification 2.2.4 gpsOne Receiver Specification 2.2.5 Standards 2.3 Interface Diagram 3 PIN Description 3.1 I/O Description Parameters 3.2 PIN Names and Pin-outs 3.2.1 100-PIN Connector 3.2.2 100-PIN Connector Pin-out (Top view) 4 Interface Descriptions 4.1 Overview All Rights Reserved. AD-2001-06-28 Ver 1.1 -3- 4.2 Powering Up the Module 4.2.1 External Supply AnyDATA.NET Inc. AnyTime AnyPlace Any Wireless Data Solution TM 4.2.2 Keypad Power On and Supply Input to BATT_INT 4.3 Power Down Registration Protocol for CDMA device 4.3.1 Using AT command ( When Vcc is applied to VEXT_DC 4.3.2 Using POWER_ON ( Only when Vcc is applied to VBATT_INT ) 4.4 Stereo Wideband CODEC Interface 4.4.1 Microphone and Earphone Interface 4.4.2 Stereo Headphone Interface 4.4.3 Digital PCM Interface 4.4.4 Stereo DAC Interface 4.5 UART Interface 4.5.1 UART1 Interface 4.5.2 UART2 R-UIM Interface 4.5.3 UART3 Debug Port Interface 4.5.4 USB Interface 4.6 General Purpose Interface 4.7 User Interface 4.7.1 Key Pad 4.7.2 MultiMediaCard Controller 4.7.3 Vibration Motor Driver 4.7.4 LED Interface 4.8 External Bus Interface II (or LCD interface ) 4.9 RF Interface All Rights Reserved. AD-2001-06-28 Ver 1.1 -4- 4.9.1 Antenna for Primary RF Chain 4.9.2 Antenna for Secondary RF Chain AnyDATA.NET Inc. AnyTime AnyPlace Any Wireless Data Solution TM 5 Electrical Specifications 5.1 DC Electrical Specifications 5.1.1 Absolute Maximum Ratings 5.1.2 Recommended Operating Conditions 5.1.3 Power Consumption 5.1.4 Serial Interface Electrical Specifications 5.1.5 Multi-Purpose Pin Specifications 5.1.5.1 Multi-Purpose Pin Configured 5.1.5.2 Multi-Purpose Pin Configured as a Bidirectional I/O 5.1.5.3 Multi-Purpose Pin Configured as an Analog 6 Mechanical Dimensions 6.1 DTEV-1000 Outline 6.2 100-Pin Connector Mechanical Dimension 6.3 RF Connector 6.3.1 Cable Assembly, Sunridge Corp Part 6.3.1.1 Bulkhead SMA Type cable : MCB2G-RH-59-LLL-SMAJB101 6.3.1.2 PCB mountable right angle SMA cable : MCB2G-RH-59-LLL-SMAJX103 6.3.1.3 Contact Info. 6.3.2 Murata Part 7 Application Schematic 8 Module Picture All Rights Reserved. AD-2001-06-28 Ver 1.1 -5- AnyDATA.NET Inc. AnyTime AnyPlace Any Wireless Data Solution TM Figures Figure 2-1 Interface Block Diagram ...................................................................17 Figure 3-1 100-PIN Connector Pinouts ...................................................................................22 Figure 4-7.1 Keypad Matrix ....................................................................................................32 Figure 4-7.2 MMC Bus Circuitry Diagram .............................................................................34 Figure 6-1 DTEV-Dual Outline ..........................................................…

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Block Diagram

DTEV-Dual Block Diagram FL301 FL302 FL304 FL305

External Photos

AnyDATA Corporation FCC ID: P4M-DTEVDUAL EXHIBIT C - EUT PHOTOGRAPHS EUT - Front View

ID Label/Location Info

AnyDATA Corporation FCC ID: P4M-DTEVDUAL EXHIBIT A - FCC ID LABELING AND WARNING STATEMENT Proposed FCC ID Label Specifications : Text is black or white in color and is left justified. Labels are silk-screened and shall be “permanently affixed” at a conspicuous location on the EUT. Proposed Label Location on EUT Bottom View of the EUT/Proposed ID Label Location FCC Warning Statement A FCC Warning Statement is provided in the product manual. FCC ID: P4M-DTEVDUAL

Operational Description

AnyDATA.NET APPROVAL SHEET ITEM : HW - 3BM - SMA FREQUENCY : TRIPLE MAGNET-ANTENNA FOR CDMA/USPCS/GPS HANUL Technology TEL. : 032) 678-8614 032)678-8610 FAX. : 032) 678-8615 ANTENNA SPECITICATION 1. ITEM : HW-3BM-SMA 2. Electrical Specifications No. ELECTRICAL DATA SPECIFICATIONS REMARK AMPS 824MHz-894MHz GPS 1575MHz 2.1 RESONANCE FREQUENCY UPPCS 1850MHz-1990MHz 2.2 IMPEDANCE 50Ω NOMINAL CDMA +1dBi GPS -4dBi 2.3 GAIN USPCS +1dBi Peak 2.4 ELECTRICAL LENGTH 1/4λ 2.5 RADIATION PATTERN OMNI – DIRECTIONAL 2.6 POLARIZATION VERTICAL 3. Mechanical Specifications No. MECHANICAL SPECIFICATIONS REMARK 3.1 ELEMENT Ø0.5-PWG Ni-PLATING 3.2 SLEEVE URETHANE BLACK-COLOR 3.3 COVER ABS BLACK-COLOR 3.4 CONNECTOR SMA(Male) GOLD- PLATING 3.5 TOTAL LENGTH 85 ± 2.0 mm 4. Antenna Configuration 한울 한울테크놀로지 5. Measurement Result CH1MEMLOG3 dB/REF 0 dB START600 . 000000MHzSTOP2 200 . 000000MHz HW-3BM-SMA MARKER 5 1.99 GHz 15 Jun 2004 22:47:53 1 2 3 4 5 5 : -11. 054dB1 990 . 000000MHz CH1Markers 1 : -12. 557dB 824 . 000MHz 2 : -12. 679dB 894 . 000MHz 3 : -8 . 9691dB 1 . 57500GHz 4 : -12. 786dB 1 . 85000GHz MARKER PARAMChannel1Channel2Channel3Channel4 MARKER 1824 . 000000MHz0. 000000MHz0. 000000MHz0 . 000000MHz -12 . 557dBOFFOFFOFF MARKER 2894 . 000000MHz0. 000000MHz0. 000000MHz0 . 000000MHz -12 . 679dBOFFOFFOFF MARKER 31575 . 000000MHz0. 000000MHz0. 000000MHz0 . 000000MHz -8 . 9691dBOFFOFFOFF MARKER 41850 . 000000MHz0. 000000MHz0. 000000MHz0 . 000000MHz -12 . 786dBOFFOFFOFF MARKER 51990 . 000000MHz0. 000000MHz0. 000000MHz0 . 000000MHz -11 . 054dBOFFOFFOFF MKR STIM OFFSET0 . 000000MHz0. 000000MHz0. 000000MHz0 . 000000MHz 0 dB0 dB. 0000dB0 dB REFERENCE MARKEROFFOFFOFFOFF PLACEMENTCONTINUOUSCONTINUOUSCONTINUOUSCONTINUOUS MARKER SEARCHOFFOFFOFFOFF TARGET VALUE-3dB-3dB-3dB-3dB MKR WIDTH VALUE-3dB-3dB-3dB-3dB OFFOFFOFFOFF MARKER TRACKINGOFFOFFOFFOFF SMOOTH APERTURE1 % SPAN1 % SPAN1 % SPAN1 % SPAN OFFOFFOFFOFF PHASE OFFSET0 000 ELECTRICAL DELAY0 s0 s0 s0 s CH1MEMSWR1 /REF 1 START600 . 000000MHzSTOP2 200 . 000000MHz HW-3BM-SMA MARKER 5 1.99 GHz 15 Jun 2004 22:48:27 1 2 3 4 5 5 : 1 . 77971 990 . 000000MHz CH1Markers 1 : 1 . 6163 824 . 000MHz 2 : 1 . 6068 894 . 000MHz 3 : 2 . 1059 1 . 57500GHz 4 : 1 . 5957 1 . 85000GHz MARKER PARAMChannel1Channel2Channel3Channel4 MARKER 1824 . 000000MHz0. 000000MHz0. 000000MHz0 . 000000MHz 1 . 6163OFFOFFOFF MARKER 2894 . 000000MHz0. 000000MHz0. 000000MHz0 . 000000MHz 1 . 6068OFFOFFOFF MARKER 31575 . 000000MHz0. 000000MHz0. 000000MHz0 . 000000MHz 2 . 1059OFFOFFOFF MARKER 41850 . 000000MHz0. 000000MHz0. 000000MHz0 . 000000MHz 1 . 5957OFFOFFOFF MARKER 51990 . 000000MHz0. 000000MHz0. 000000MHz0 . 000000MHz 1 . 7797OFFOFFOFF MKR STIM OFFSET0 . 000000MHz0. 000000MHz0. 000000MHz0 . 000000MHz 00 dB. 0000dB0 dB REFERENCE MARKEROFFOFFOFFOFF PLACEMENTCONTINUOUSCONTINUOUSCONTINUOUSCONTINUOUS MARKER SEARCHOFFOFFOFFOFF TARGET VALUE-3-3dB-3dB-3dB MKR WIDTH VALUE-3-3dB-3dB-3dB OFFOFFOFFOFF MARKER TRACKINGOFFOFFOFFOFF SMOOTH APERTURE1 % SPAN1 % SPAN1 % SPAN1 % SPAN OFFOFFOFFOFF PHASE OFFSET0 000 ELECTRICAL DELAY0 s0 s0 s0 s

Operational Description

DTEV-DUAL Multi-band (Cellular + PCS + GPS) with diversity Circuit Description 1. Overview The following of this section provides an introductory overview of DTEV-Dual transceiver supporting a variety of diversity-capable handset designs using the radioOne Zero-IF architecture, directly converting signals between RF and baseband (and vice versa). The module has two antennas at the RF front end. ■ The primary antenna collects CDMA base station forward link signals and radiates the phone’s reverse link signal. ■ The secondary antenna collects CDMA base station forward link signals or GPS satellite downlink signals. The function block diagram for the DTEV-Dual implementation is shown in figure 1-1 AnyDATA.NET Inc. AnyTime AnyPlace Any Wireless Data Solution TM All Rights Reserved. AD-2001-06-28 Ver 1.1 -2- Figure 1-2 DTEV-Dual Transceiver Functional Block Diagram AnyDATA.NET Inc. AnyTime AnyPlace Any Wireless Data Solution TM All Rights Reserved. AD-2001-06-28 Ver 1.1 -3- 2. Primary Antenna The primary antenna of DTEV-Dual is used for CDMA Tx/Rx functions. As the figure1-2, the antenna interface with a diplexer that separates the Cell and PCS bands. Each band has a duplexer to separates Rx and Tx signals. 2.1 Transmitter For Tx paths, the transmit baseband signals are generated by digital-to-analog converter (DAC) circuits within the MSM. The analog I and Q differential baseband are amplified to levels sufficient for driving the quadrature upconverters, U101 RFT6100. The fully integrated Tx PLL and VCO circuits generate the different LO, one dedicated to Cellular bands and the others to PCS bands, used in the quadrature upconverter that translates baseband signals directly to RF at the correct frequency, with the proper phase relationship, and with adequate drive level. The separates upconverters output plus RF paths supports different frequency bands. The transmit AGC control is implemented on U101 by using an MSM-adjusted pulse density modulated (PDM) signal that is RC-lowpass filtered ( R126 and C122 ) at the RFT input to generate the necessary analog control signal. The signals output of U101 are filtered by FL102 for Cell and FL101 for PCS. Those filters pass the transmit channel power while suppressing wideband noise, spurs, harmonics, and other undesired out-of band spectra. And then the power amplifiers U103 for Cell and U6 for PCS boost the channel power with the transmitter performance characteristics such as output power level, ACPR, Rx band noise. Finally, the transmit signal continues to the different duplexer’s Tx port; the duplexers DUP2 and DUP102 provides filtering and separates the Tx and Rx signals, and then on to the diplexer DIP101 to separate Cellular and PCS frequency bands. 2.2 Tx LO synthesizer As in the Figure 1-2, the Tx LO circuits include a reference divider (the R-counter), phase detector, charge pump, feedback divider (the N-counter), Tx VCO, LO generation and distribution are included within the RFT6100 (U101).Only the off chip loop filter allow optimization the stability, transitory response, settling time and phase noise. The buffered 19.2 MHz TCXO signal provides the synthesizer input (REF), the frequency reference to which the PLL is phase and frequency locked. The reference is divided by the Rcounter to create a fixed frequency input to the phase detector, FR. The other phase detector input (FV) varies as the loop acquires lock, and is generated by dividing the VCO output frequency using the feedback paths N-counter. The closed loop will force FV to equal FR when locked. The Tx LO distribution circuits apply signals at mixer port of Cell and PCS upconverter are differential with a quadrature phase relationship. AnyDATA.NET Inc. AnyTime AnyPlace Any Wireless Data Solution TM All Rights Reserved. AD-2001-06-28 Ver 1.1 -4- 2.3 Receiver The primary CDMA receive signal paths which are routed from the primary antenna to the diplexer DIP101, and separated to Cellular and PCS bands. Each bands are separated into receive and transmit paths by the duplexers DUP2 and DUP102. The CDMA receiver signals from each duplexer which are amplified by the LNA RFL6000 (U201). Separate LNAs are provided each bands Cell and PCS. The LNA gain is incrementally and dynamically controlled by the MSM to maximize the receiver’s dynamic range. And then, the LNA outputs are routed to the bandpass filters FL202 for Cell and FL201 for PCS that suppresses out-of- band received signals as well as handset transmitter leakage. Those filters are a single-ended to differential transformation for compatibility with the differential downconverter input to RFR6000 U202. The quadrature downconverter translates the RF signal directly to baseband, producing two analog outputs: in-phase (I) and quadrature (Q). The downconverted baseband outputs are multiplexed and routed to lowpass filters. And then, the baseband signals Rx0 are buffered and routed to the MSM . 2.4 Rx LO synthesizer The primary Rx LO PLL supports to the receivers RF-to-baseband downconversions. The Rx PLL has reference divider, phase detector, charge pump, and feedback divider within U101 RFT6100. The loop filter and primary VCO201 are off-chips. The PCS and Cellular LO signal originates within an off-chip VCO that is closed-loop controlled by the RFT6100 PLL via a discrete loop filter and share a common RFR6000 buffer amplifier that supplies a feedback signal to the RFT6100 as the PLL circuits. The VCO’s output is buffered within U202_RFR6000, and then distribution circuits create the PCS and Cellular quadrature downconverters’ LO signals. External RX VCO Frequency Range Option VCO Output Frequency (MHz) Operation Band Lower Center Upper US Cellular 1738 1763 1788 USPCS 1715 1742 1769 3. Secondary Antenna The secondary antenna of DTEV-Dual is used for CDMA base station forward link signal and GPS satellite down link signals. As the figure1-2, this antenna interface with a triplexer that separates the Cell, PCS and GPS bands. Each ba…

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Parts List/Tune Up Info

Tune up procedure To set up transmit power before shipping, AnyDATA uses a manufacturing process which is called “Calibration of Rx and Tx power over the dynamic range, temperature and frequency”. CDMA technical standard requires AnyDATA’s CDMA module to transmit more than +23dBm output power when it is required to transmit its maximum power. Therefore, AnyDATA sets the maximum power of the module to +24.5dBm (+1dB, -1.5dB) By adjusting Tx AGC Amplifier built in the CDMA module, transmit power can be limited to +24.5dBm (+1dB,-1.5dB) Transmit power calibration consists of transmit linearizer calibration, and power compensation calibration over the temperature and frequency. During the transmit linearizer calibration, the module searches for 16 AGC adjust values for the 16 power levels within the dynamic range including the maximum output power and saves these AGC adjust values in the memory device in the module. These searched AGC adjust values (TX_LIN_MASTER) set the maximum power of the module. To prevent the variation in maximum power over the frequency, the transmit circuit is calibrated over the frequency and compensation values (TX_LIM_VS_FREQ) are found. These values are also used to limit the maximum output power to +24.5dBm (+1dB,-1.5dB) Also to prevent the variation in maximum power over the temperature, the transmit circuit is calibrated over the temperature and compensation values (TX_LIM_VS_TEMP) are found. These are also used to limit the maximum output power to +24.5dBm (+1dB,-1.5dB) when there is variation in temperature..

RF Exposure Info

§1.1307(b)(1) & §2.1091 - RF EXPOSURE According to §1.1310 and §2.1091 RF exposure is calculated. Limits for General Population/Uncontrolled Exposure Frequency Range (MHz) Electric Field Strength (V/m) Magnetic Field Strength (A/m) Power Density (mW/cm 2 ) Averaging Time (minute) Limits for General Population/Uncontrolled Exposure 0.3-1.34 614 1.63 *(100) 30 1.34-30 824/f 2.19/f *(180/f 2 ) 30 30-300 27.5 0.073 0.2 30 300-1500 / / f/1500 30 1500-100,000 / / 1.0 30 f = frequency in MHz * = Plane-wave equivalent power density MPE Prediction Predication of MPE limit at a given distance Equation from page 18 of OET Bulletin 65, Edition 97-01 S = PG/4πR² Where: S = power density P = power input to antenna G = power gain of the antenna in the direction of interest relative to an isotropic radiator R = distance to the center of radiation of the antenna Cellular band Maximum peak output power at antenna input terminal: 26.03 (dBm ) Maximum peak output power at antenna input terminal: 400 (mW) Prediction distance: 20 (cm) Predication frequency: 836.52 (MHz) Antenna Gain (typical): 0 (dBi) antenna gain: 1 (numeric) Power density at predication frequency at 20 cm: 0.0796 (mW/cm 2 ) MPE limit for uncontrolled exposure at prediction frequency: 0.558 (mW/cm 2 ) PCS band Maximum peak output power at antenna input terminal: 25.97 (dBm ) Maximum peak output power at antenna input terminal: 395 (mW) Prediction distance: 20 (cm) Predication frequency: 1880 (MHz) Antenna Gain (typical): 0 (dBi) antenna gain: 1 (numeric) Power density at predication frequency at 20 cm: 0.0786 (mW/cm 2 ) MPE limit for uncontrolled exposure at prediction frequency: 1 (mW/cm 2 ) AnyDATA Corporation FCC ID: P4M-DTEVDUAL Test Result The EUT is a mobile device. The power density level at 20 cm is 0.0796 mW/cm², which is below the uncontrolled exposure limit of 0.558 mW/cm² at 836.52 MHz for Cellular band. The power density level at 20 cm is 0.0786 mW/cm², which is below the uncontrolled exposure limit of 1mW/cm² at 1880 MHz for PCS band.

Test Report

Note: This test report is specially limited to the above client company and this particular sample only. It may not be duplicated without prior written consent of Bay Area Compliance Laboratory Corporation. This report must not be used by the client to claim product certification, approval, or endorsement by NVLAP, NIST or any agency of the U.S. Government. FCC PART 22, 24 TYPE APPROVALS EMI MEASUREMENT AND TEST REPORT For AnyDATA Corporation 18902 Bardeen Ave. Irvine, CA 92612 FCC ID: P4M-DTEVDUAL This Report Concerns: Original Report Equipment Type: 850/1900MHZ CDMA Modular Test Engineer: Daniel Deng / Report No.: R0512053 Report Date: 2006-1-13 Reviewed By: Snell Leong / Prepared By: Bay Area Compliance Laboratory Corporation (BACL) 230 Commercial Street Sunnyvale, CA 94085 Tel: (408) 732-9162 Fax: (408) 732 9164 AnyDATA Corporation FCC ID: P4M-DTEVDUAL Report # R0512053Rpt.doc Page 2 of 28 FCC Part 22, 24 Type Approvals Report TABLE OF CONTENTS GENERAL INFORMATION.......................................................................................................................................3 PRODUCT DESCRIPTION FOR EQUIPMENT UNDER TEST (EUT) ....................................................................................3 OBJECTIVE...................................................................................................................................................................3 RELATED SUBMITTAL(S)/GRANT(S).............................................................................................................................3 TEST METHODOLOGY..................................................................................................................................................3 TEST FACILITY.............................................................................................................................................................3 SYSTEM TEST CONFIGURATION ..........................................................................................................................5 JUSTIFICATION.............................................................................................................................................................5 BLOCK DIAGRAM.........................................................................................................................................................5 EQUIPMENT MODIFICATIONS.......................................................................................................................................5 LOCAL SUPPORT EQUIPMENT LIST AND DETAILS........................................................................................................5 INTERFACE PORTS AND CABLING.................................................................................................................................5 SUMMARY OF TEST RESULTS ...............................................................................................................................6 §2.1047 - MODULATION CHARACTERISTIC .......................................................................................................7 APPLICABLE STANDARD..............................................................................................................................................7 §2.1053 - SPURIOUS RADIATED EMISSIONS........................................................................................................8 APPLICABLE STANDARD..............................................................................................................................................8 TEST PROCEDURE........................................................................................................................................................8 TEST EQUIPMENT LIST AND DETAILS...........................................................................................................................8 ENVIRONMENTAL CONDITIONS....................................................................................................................................8 TEST RESULT...............................................................................................................................................................9 §2.1046, §22.913(A), & §24.232 – RF OUTPUT POWER........................................................................................10 APPLICABLE STANDARD............................................................................................................................................10 TEST PROCEDURE......................................................................................................................................................10 TEST EQUIPMENT LIST AND DETAILS.........................................................................................................................10 ENVIRONMENTAL CONDITIONS..................................................................................................................................10 TEST RESULTS...........................................................................................................................................................11 §2.1049, §22.917, §22.905, & §24.238 - OCCUPIED BANDWIDTH ......................................................................15 APPLICABLE STANDARD............................................................................................................................................15 TEST PROCEDURE......................................................................................................................................................15 TEST EQUIPMENT LIST AND DETAILS.........................................................................................................................15 ENVIRONMENTAL CONDITIONS......................................................................................................................…

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Test Setup Photos

AnyDATA Corporation FCC ID: P4M-DTEVDUAL EXHIBIT B - TEST SETUP PHOTOGRAPHS Radiated Emission - Front View Radiated Emission - Rear View

Contact Information

Applicant

Albert Shin(Head of Product)
[email protected]1-949-900-6040Fax: 1-949-600-9909

Test Firm

Bay Area Compliance LaboratoryJohn Chan
[email protected]408-732-9162Fax: 408-732-9164

Technical Specifications

#Rule PartsFrequency RangePower OutputEmissionTolerance
222H824.69 MHz - 848.31 MHz400.00 mW1M26F9W2.5 ppm
Confidentiality
Long Term
Grant Notes
Output is ERP for Part 22 and EIRP for Part 24. The antenna(s) used for this transmitter must be installed to provide a separation distance of at least 20 cm from all persons and must not be co-located or operated in conjunction with any other antenna or transmitter. End-users and installers must be provided with antenna installation instructions and transmitter operating conditions for satisfying RF exposure compliance.

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