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SARHISENSEEG59CDMA and GSM dual mode phone

Hisense Communication Co., Ltd.
CDMA and GSM dual mode phone - FCC ID SARHISENSEEG59 - Hisense Communication Co., Ltd.
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Application Details

Equipment Class
TNE - Licensed Non-Broadcast Transmitter Held to Ear
Date of Grant
Jul 19, 2010
Application Purpose
Original Equipment
Date of Application
Jul 19, 2010
Equipment Note
CDMA and GSM dual mode phone
Frequency Range
824.70000000 - 848.31000000
Company
Hisense Communication Co., Ltd.
Country
China

Documents & Files

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Users Manual

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Attestation Statements

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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

Page 1 of 13 CDMA/GSM Mobile Phone EG59 Technical Manual Apr, 2010 Page 2 of 13 1. Introduction EG59 mobile phone is designed and developed for CDMA/GSM network. Its main features are:  The QUALCOMM single chip QSC6085 and MediaTek MT6223D chipset are used, which feature Zero-IF and CMOS technology, resulting high integration and great RF performance  Memory chips are 256MByte NAND/128MByte DDR and 64M bit NOR/32M bit PSram MCP  65k colors, 320*240 TFT color LCD display  MIDI,MMF,AAC,MP3 ringtone  Camera  T-Flash memory card  Bluetooth  Touch panel  USB storage 2. Key Design Technology 2.1. Hardware: CDMA/GSM/Bluetooth antenna design technology Transmit link design technology Receive link design technology Frequency synthesize technology RF control software compensation technology Integrated system control technology LCD implementation technology Interface circuit design technology Low power consumption design technology High intensity PCB design technology Ringtone quality improve technology Components cost control EMC/EMI design technology Page 3 of 13 Reliability design technology 2.2. Software: Reliable control of Flash & RAM User-friendly UI design Localized system capture optimization technology Power consumption reducing software optimization technology Systematic reliability design 3. Technical Specifications and Performance Parameters 3.1. General specifications Item Content Mode CDMA/GSM Frequency Band CDMA 800MHz Tx: 824 ~ 849MHz Rx: 869 ~ 894MHz GSM 900 MHz: (Used in European only) Tx: 880 ~ 915MHz Rx: 925 ~ 960MHz DCS 1800 MHz: (Used in European only) Tx: 1710-1785MHz Rx: 1805-1880MHz BLUETOOTH: 2402MHz to 2480MHz Dimensions (L*W*D) 116mm×51mm×13.5mm Working temperature -20 ~ +55°C Storage temperature -30 ~ +60°C Relative humidity 5% ~ 95% Tx Output Power 23±2dBm Max (CDMA) 33±2dBm Max(GSM) 29±2dBm Max(DCS) -6~+4dBm(BT) Channel bandwidth 1.23MHz(CDMA) 200kHz(GSM) Battery capacity 1100mAh Page 4 of 13 Page 5 of 13 3.2. Electronic specifications Tx unit GSM: Item Description Marks Frequency band GSM: 880~ 915MHz DCS: 1710-1785MHz Output power GSM: 33±2dBm DCS: 29±2dBm Channel bandwidth 200kHz Modulation GMSK/QPSK CDMA: Item Description Marks Frequency band Tx:824 ~ 849MHz Output power 23±2dBm Max Channel bandwidth 1.23MHz Modulation OQPSK Rx unit GSM: Item Description Marks Frequency band GSM: 925~ 960MHz DCS: 1805-1880MHz Receiver sensitivity –102dBm (Class II FER<2.44%) Phase Error Peak -20°-- +20° Phase Error RMS ≤5° Frequency Error GSM: ±90Hz DCS: ±180Hz Page 6 of 13 CDMA: Item Content Comment Frequency band CELL:869~ 894MHz Channel bandwidth 1.23MHz Receiver sensitivity < –104dBm (FER:0.5%) Single Frequency Interference Resist < –101dBm (FER: 1.0%) Frequency offset: 900KHz Power: -30dBm Frequency offset: ±0.9MHz/±1.7MHz, Power: ①- 43dBm Frequency offset: ±0.9MHz/±1.7MHz, Power: ②- 32dBm Inter-modulation spurious response attenuation Frequency offset: ±0.9MHz/±1.7MHz, Power: ③- 21dBm <①–81dBm Conductibility spurious emission <②–61dBm 3.3. Other Electronic Specifications SIM / UIM interface, Support either 3V or 1.8V 4. Phone Work Principles 4.1 RF circuit 4.1.1 RF circuit of CDMA 4.1.1.1Main functions of RF circuit: The baseband CDMA signal is modulated by transmitting circuit, and then is transmitted by antenna on the bandwidth: 824MHz~849MHz; When the receiver circuit receives the signal on 869MHz~894MHz, it is demodulated and becomes to the forward channel baseband CDMA signal; and at the same time, provides the constant controllable 19.2MHz frequency source. 4.1.1.2 Structure of RF circuit: We could divide it to 4 units according to the functions: Antenna unit, Page 7 of 13 frequency synthesized unit, receiving unit, transmitting unit. 4.1.1.2.1 Antenna unit This unit is composed by antenna groupware, antenna switch, diplexer and duplexer. This antenna groupware is the transceiver of the wireless signal that is composed by intside antenna, and could fetch up the disadvantages such as the low efficiency and the poor radiancy direction by the high performance match. This phone has the antenna switch, diplexer and duplexer. The antenna switch is used as the auto-test mechanical switch, which is located at the RF channel and parallel connected to the antenna to reduce the 0.47dB loss during using. When producing and testing, it is connected to the test cable. Duplexer is used to isolate the received and transmitted signals, which can reduce the interference. 4.1.1.2.2 Frequency-synthesized unit QSC6085 platform has a high integration on the frequency-synthesizing and a flexible design project, which is composed of the following circuits: crystal oscillator (XO) 19.2MHz, Loop filter and QSC6085 power management. Crystal oscillator (XO) is provided to TX and RX as the fiducially source, and also is provided to QSC6085 as the clock source buffered and filtered by inside power management. 4.1.1.2.3 Transmitting unit Mainly the following circuits compose this unit: Tx SAW filter, Power amplifier, burst mode/PA-ON control circuit and high power detect circuit. CDMA 1X signal is output from QSC6085. For transmitting the power control correctly, QSC6085 outputs TX_AGC_ADJ PDM signal to control the output power. PDM pulse wave can realize the plus control beyond 85dB by RC filter circuit. The frequency of the output signal is conversed up from analog base band signal to 824MHz-849MHz mixed by UHF_LO. Output signal go through TX SAW filter (836.5MHz+/- 12.5MHz) to power amplifier, and then output to duplexer. The duplexer has 55dB isolation to the receiver unit. 4.1.1.2.4Receiving unit The duplexer gets the 869MHz-894MHz signals received from the antenna. To the transmitting loop, the duplexer has 56dB isolation, and the insertion loss of the duplexer is 2.2dB. After entering the integrated low noise amplifier embedded in QSC6085 chip, the low noise amplifier has gain switch function, when there are stronger interfering signals coming in the received band, the gain will be …

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Users Manual

EG59 USER MANUAL Main Features: You can do much more with phone then make and receive a call. Bluetooth Wireless Your phone supports Bluetooth wireless connection. You connect your phone with an optional Bluetooth headset or Bluetooth car kit to make hands free calls, or with a set of Bluetooth stereo headphones to listen to music stored on your phone. Music player You can manually load music files by attaching your phone to the computer as a removable storage device. Use an optional set of Bluetooth stereo headphones to listen to music stored on your phone. Use an optional removable TF memory card with your phone to store even more songs. Photos Your phone is designed to be used in a camera mode. Just aim and shoot to take a photo, you can send to your friends. Videos Your phone can record videos in multimedia. Alarm Your phone’s alarm can work when the phone is powered on or off, which helps you not to miss every important moment of your life. Large Capacity Phonebook Up to 500 records can be stored in your phone’s phonebook. Each record can have name, mobile number, home number, office number and other contents. Safety information For safety, use only an adapter approved by Hisense. Hisense does not bear responsibility for any faults that may arise due to non-conformation to this guide. Example:  Do not, in any way, cause a short-circuit. It may start a fire or the phone may explode causing injury.  Do not create a sudden impact on the battery by throwing it.  Do not dispose off batteries by putting them in a fire. They may explode or catch fire due to the electrolyte within. Caution  Do not use the phone with a car battery.  Avoid using the phone in high temperature or humidity. Avoid spilling any liquid on this phone. If the phone gets wet, Switch off phone and turn off AC power supply.  Keep the phone dry. Submersion, humidity, and liquids contain minerals that may corrode internal electronic circuits.  Do not store or use the phone in dusty or dirty areas as this can damage the moving parts.  Do not store the phone in hot/ cold areas.  Do not attempt to open it. Non-expert handling of the phone could damage it. Consult your authorized Hisense dealer for assistance.  Do not drop, knock or shake the phone. Rough handling may break the internal circuit boards.  Do not use harsh chemicals, cleaning solvents or strong detergents to clean the phone. Wipe it with a soft cloth that has been slightly dampened in a mild soap and water solution.  Do not paint the phone. Paint can clog the phone’s moving parts and prevent proper functioning.  During lightning, do not touch the power plug or the phone line. It may result in an electric shock or death.  Do not install the phone under direct sunlight or on an uneven surface.  Before using the plug, check the available power voltage. Inaccurate power voltage may cause fire and damage. FCC Interference Statement The device complies with Part 15 of FCC rules. Operation is subject to the following two conditions: (1) This device may not cause harmful interference. (2) This device must accept any interference received, including interference that may cause undesired operations. This device 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 device 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 device does cause harmful interference to radio/television reception, which can be determined by turning the device 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 the 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. Warning: Changes or modifications to this unit not expressly approved by the party responsible for compliance could void the user’s authority to operate the equipment. SAR Information • This device complies with Part 22 of the FCC Rules. • This device meets government requirements for exposure to radio waves. This device is a radio transmitter and receiver. It is designed and manufactured not to exceed limits for exposure to radio frequency (RF) energy. These limits are part of comprehensive guidelines and establish permitted levels of RF energy for the population. The guidelines were developed and confirmed by independent scientific organizations through periodic and thorough evaluation of scientific studies. The limits include a substantial safety margin designed to assure the safety of all persons, regardless of age and health. The exposure standard for device employs a unit of measurement known as the Specific Absorption Rate, or SAR. Under the guidelines for your device, the SAR limit is 1.6 W/kg .The highest SAR value for this device when tested for use at the head is 0.976 W/kg and when worn on the body is 0.667 W/kg. NOTE: For body worn operation, this phone has been tested and meets the FCC RF exposure guidelines when used with an accessory that contains no metal and that positions the handset a minimum of 1.5 cm from the body. Use of other accessories may not ensure compliance with FCC RF exposure guidelines. The FCC has granted an Equipment Authorization for this device with all reported SAR levels evaluated as in compliance with the FCC RF exposure guidelines. SAR information on this device is on file with the FCC and can be found under the Display Grant section of http://www.fcc.gov/oet/fccid after searching …

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Cover Letter(s)

Request for Additional Information for EMC Certification TCBJ FORM-13 EMC Issued by: TCB Administrator 4/23/2008 Company: Hisense Communication Co. Ltd. Composite Device: Yes: No: MT#: 29537 FCC Direct Filing: Yes: No: Permit But Ask: Yes: No: FCC ID: SARHISENSEEG59 FCC Rule Part: 22H/15C/15B UPN: N/A RSS Standard: N/A FRN: 0011142353 Class II PC/Reassessment: Yes: No: Dear Jim, Thank you for your application. In order for us to process your approval, the following must be addressed. Please provide a response in a timely manner to avoid delays or dismissals. Technical Review: 1. As a precursor to the review can you find out from the client how makes the SAR system? Specifically who makes the software? ANTENNESSA made the SAR system and software, and ANTENNESSA has been incorporated by SATIMO 2. Per FCC 2.1033 (c)(8) the DC voltages applied to and dc currents into the several elements of the final radio frequency amplifying device for normal operation over the power range is required. Please provide this information. Vref: 2.75 - 2.95Vdc, Iref: 1 - 10mA. 3. Please clarify the spacing between the phone and face of flat phantom. Separation distance is 1.5 cm. 4. Please confirm that belt clips or any kind of other accessories are not sold with the phone. Belt chips or any kind of other accessories are NOT sold with phone, except that headset. 5. The after power appears to be higher than the before power as listed in the SAR report. Please explain why this is so. I think it should be measurement error. Additionally, not all after powers are higher than before powers, for Right head/Title 15/Mid channel, Body/mid channel(back face to phantom with headset) and Body/high channel(back face to phantom), the after power is less than the before power. 6. Please explain how the conversion factors were derived from the E-field probe calibration certificate. I cannot tell where the numbers you listed on the conversion factor.pdf came from. Also, please describe how the SAR value is calculated based on the data from the E-field calibration certificate and the measured data. This needs to be detailed in the SAR report. So far, the SAR test system (including the software) can not export the information of the probe. And the conversion factors of the probe are calculated in accordance with the attachment and calibration certificate. 7. What is the frequency of calibration of the dipoles used to versify the SAR system? For the E-field probe, the frequency of calibration is 1 year. For the dipole, it is 2 years. 8. More detail is required for the calibration factors. You mention CFn = SAR(N)/Vin. How is Vin for each dipole within the probe calculated. A voltmeter is mentioned but how does it measure the voltage separately of all three dipoles? V / (N) can be read from Voltmeter, and there is a switch inside the Voltmeter, so it is possible to measure all three dipoles separately with the switch during calibration and measurement. BTW, the testing laboratory SIMT have the accreditation certificate for calibration which accredited by ANTENNESSA. Please find enclosed for more detail information. Request for Additional Information for EMC Certification TCBJ FORM-13 EMC Issued by: TCB Administrator 4/23/2008 If you have any questions or concerns, please contact us. Thank you! Jenn Warnell TCB Administrator MET Laboratories, Inc. [email protected] www.metlabs.com Admin Review By: Jenn Warnell Technical Review By: Dusmantha Tennakoon Please note that partial responses increase processing time and should not be submitted. The items indicated above must be provided before processing can continue on the above referenced application. Failure to provide the requested information in a timely manner may result in application dismissal.

External Photos

FCC ID: SARHISENSEEG59 Page 1 of 6 APPENDIX 1 External Photos FCC ID: SARHISENSEEG59 Page 2 of 6 Appearance View Front View FCC ID: SARHISENSEEG59 Page 3 of 6 Left Side View Right Side View FCC ID: SARHISENSEEG59 Page 4 of 6 Top View Bottom View FCC ID: SARHISENSEEG59 Page 5 of 6 Charger: Front View Charger: Side View1 FCC ID: SARHISENSEEG59 Page 6 of 6 Charger: Side View2 Charger: USB port View

ID Label/Location Info

FCC ID: SARHISENSEEG59 Page 1 of 2 APPENDIX 4 Label Sample & Location FCC ID: SARHISENSEEG59 Page 2 of 2 Label Sample as below: Label Location

Internal Photos

FCC ID: SARHISENSEEG59 Page 1 of 6 APPENDIX 2 Internal Photos FCC ID: SARHISENSEEG59 Page 2 of 6 Uncovered View1 Uncovered View2 FCC ID: SARHISENSEEG59 Page 3 of 6 PCB Back View PCB with Shield Front View FCC ID: SARHISENSEEG59 Page 4 of 6 PCB without Shield Front View FCC ID: SARHISENSEEG59 Page 5 of 6 Battery: Front View Battery: Rear View FCC ID: SARHISENSEEG59 Page 6 of 6 Charger: PCB View1 Charger: PCB View2

RF Exposure Info

LiquidEpsilonSigma (S/m)CF dipole 1 (W.kg-1 (mV)-1) CF dipole 2 (W.kg-1 (mV)- 1) CF dipole 3 (W.kg-1 (mV)-1) Head41.580.9128.1227.4324.55 Body54.5131.2930.1126.97 Sensitivity in liquid @ 835 MHz:

RF Exposure Info

校准证书编号:2009J10-10-912004 Calibrated certificate series No. 第 2 页 共 22 页 Page of total pages 校准证书续页专用 Continued page of calibration certificate 国家法定计量检定机构计量授权证书号(中心/院):(国)法计(2007)01039 号/(2007)01019 号 The number of the Certificate of Metrological Authorization to The Legal Metrological Verification Institution is No.(2002)01039 / No.(2002)01019 中国实验室国家认可委员会(CNAL)实验室认可证书号:No.L0134 The number of the certificate accredited by CNAL is No.L0134 本次校准所依据的技术规范(代号、名称): Reference documents for the calibration (code 、name) JCJ/J101001.1/0-2007 SAR电场探头校准规范 (SAR E-FIELD PROBE calibration criterion) IEC 62209-1:2003 Procedure to measure the Specific Absorption Rate (SAR) in the frequency range of 300 MHz to 3 GHz Part 1: hand-held mobile wireless communication IEEE 1528:2003 IEEE Recommended Practice for Determining the Peak Spatial-Average Specific Absorption Rate (SAR) in the Human Head from Wireless Communications Devices: Measurement Techniques 本次校准所使用的主要计量标准器具: Main measurement standards used in this calibration 参见附录一 (Refer to attachment 1) 以上计量标准器具的量值溯源至国家基准。 Quantity values of above measurement standards used in this calibration are traced to those of the national primary standards in the P.R. China. 校准地点及环境条件: Location and environmental condition for the calibration 地点: Location 宜山路716号 (No. 716 Yishan Road, Shanghai) 温度: Ambient temperature 21 °C; 湿度: Relative humidity 50 %RH; 其它: Others / 本次校准结果的扩展不确定度: Expanded uncertainty Antenna factor (Voltage): k=2, U=2U c (E)=0.92dB 校准结果/说明: Results of calibration and additional explanation Pass The requirements of the calibration criterion: Linearity less than 0.25dB Isotropy less than 0.25dB Sensitivity less than the Low limit detection(12mW/Kg) 本证书提供的结果仅对本次被校的器具有效。 The data are valid only for the instrument(s). 校准证书编号:2009J10-10-912004 Calibrated certificate series No. 第 3 页 共 22 页 Page of total pages 校准证书续页专用 Continued page of calibration certificate 校准结果/说明(续页): Results of calibration and additional explanation(continued page) 1. Production description Frequency Range: 100 MHz - 3 GHz Probe length: 330 mm Length of one dipole: 4.4 mm Maximum external diameter: 8 mm Probe extremity diameter: 6.3 mm Distance between dipoles/probe extremity: < 2.7 mm Resistance of the three dipole (at the connector): Dipole 1: R1=1.181M Dipole 2: R2=1.186M Dipole 3: R3=1.183M Connector (HIROSE series SR30): 6 wire male (Hirose SR30series) 2. Calibration Results 2.1 Calibration Frequency: 835.00MHz BODY 2.1.1 Calibration basic information S/N Calibration 1 Epsilon: 54.50 2 Sigma: 1.00S/m 3 Temperature: 21°C 4 Cable loss: 0.20dB 5 Coupler loss: 19.77dB 6 Waveguide Return Loss: -17.75dB 2.1.2 Calibration parameters 2.1.2.1 Sensitivity (Low limit detection): 0.81V/m(0.66mW/Kg) 校准证书编号:2009J10-10-912004 Calibrated certificate series No. 第 4 页 共 22 页 Page of total pages 校准证书续页专用 Continued page of calibration certificate 校准结果/说明(续页): Results of calibration and additional explanation(continued page) 2.1.2.2 Linearity: 0.04dB Calibration curves of Probe: Calibration curves ei=f(V) (i=1,2,3) allow to obtain E-field value using the formula: E=(e1*e1+e2*e2+e3*e3)pow(1/2) Remark: Dipole 1: calibration curves of the dipole 1; Dipole 2: calibration curves of the dipole 2; Dipole 3: calibration curves of the dipole 3 校准证书编号:2009J10-10-912004 Calibrated certificate series No. 第 5 页 共 22 页 Page of total pages 校准证书续页专用 Continued page of calibration certificate 校准结果/说明(续页): Results of calibration and additional explanation(continued page) Calibration data of probe Factor v 1 (V) e 1 (V/m) v 2 (V) e 2 (V/m) v 3 (V) e 3 (V/m) 0.736397 416.278843 0.755159 419.744116 0.791775 415.708791 0.587520 337.358527 0.605268 341.452638 0.638480 339.858135 0.476409 278.378344 0.490802 281.589452 0.518454 280.403248 0.378406 226.251419 0.394181 230.967220 0.412711 227.935923 0.303133 186.093545 0.313865 188.771824 0.332361 187.968897 0.244274 154.561105 0.250836 155.525019 0.268297 155.992470 0.196185 128.647987 0.203919 130.643241 0.216363 129.944620 0.156181 106.911595 0.161882 108.178946 0.174679 108.896938 0.124762 89.643300 0.129403 90.634435 0.140821 91.644337 0.099806 75.716752 0.103885 76.653196 0.111779 76.655442 0.064716 55.629510 0.066425 55.629510 0.071887 55.629510 0.058448 51.797075 0.060057 51.856743 0.065085 51.856743 0.051319 47.512211 0.052782 47.512211 0.057306 47.512211 0.043597 42.687944 0.044882 42.687944 0.048852 42.687944 0.036561 38.133375 0.037672 38.133375 0.041138 38.133375 0.030305 33.986405 0.031281 33.986405 0.034202 33.947300 0.024945 30.220749 0.025776 30.220749 0.028280 30.220749 0.020386 26.841404 0.021102 26.872324 0.023187 26.841404 0.016549 23.839944 0.017154 23.839944 0.018875 23.839944 0.013405 21.198505 0.013911 21.198505 0.015378 21.198505 0.010806 18.849734 0.011226 18.849734 0.012436 18.849734 0.008677 16.741919 0.009020 16.761205 0.010013 16.761205 0.006944 14.886933 0.007214 14.904082 0.008027 14.886933 0.005548 13.252727 0.005779 13.267993 0.006399 13.267993 0.004421 11.797914 0.004623 11.811505 0.005116 11.811505 0.003491 10.514902 0.003661 10.514902 0.004086 10.514902 0.002779 9.339774 0.002902 9.360633 0.003249 9.343200 0.002194 8.333901 0.002279 8.297689 0.002540 8.292290 0.001745 7.470562 0.001825 7.459682 0.002058 7.494168 0.001353 6.625471 0.001432 6.649532 0.001566 6.580398 0.001061 5.918051 0.001133 5.959843 0.001272 5.967953 0.000825 5.277457 0.000847 5.215486 0.000973 5.272626 0.000620 4.649929 0.000685 4.742304 0.000796 4.813916 0.000480 4.167421 0.000522 4.212899 0.000579 4.183466 0.000380 3.785302 0.000383 3.702113 0.000421 3.656673 0.000281 3.364523 0.000283 3.285894 0.000363 3.443129 0.000195 2.950691 0.000221 2.998967 0.000242 2.948251 0.000124 2.559095 0.000143 2.593287 0.000145 2.481249 校准证书编号:2009J10-10-912004 Calibrated certificate series No. 第 6 页 共 22 页 Page of total pages 校准证书续页专用 Continued page of calibration certificate 校准结果/说明(续页): Results of calibration and additional explanation(continued page) v 1 (V) e 1 (V/m) v 2 (V) e 2 (…

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RF Exposure Info

检测报告编号:2010J10-30-106044 Test report series No. 检测报告续页专用 第 2 页 共 59 页 Continued page of test report Page of total pages 国家法定计量检定机构计量授权证书号(中心/院):(国)法计(2007)01039号/(2007)01019号 The number of the Certificate of Metrological Authorization to The Legal Metrological Verification Institution is No.(2007)01039 / No.(2007)01019 中国合格评定国家认可委员会实验室认可证书号:No. CNAS L0134 The number of the certificate accredited by CNAS is No.L0134 中国国家认证认可监督管理委员会资质认定计量认证证书(CMA)号:2009000597E The number of the metrology accreditation certificate by CNCA is No. 2009000597E 本次检测所依据的技术规范(代号、名称): Reference documents for the test (code 、name) IEEE 1528: 2003 IEEE Recommended Practice for Determining the Peak Spatial-Average Specific Absorption Rate (SAR) in the Human Head from Wireless Communications Devices: Measurement Techniques FCC OET Bulletin 65 Supplement C: 2001 Evaluating Compliance with FCC Guidelines for Human Exposure to Radiofrequency Electromagnetic Fields 本次检测所使用的主要测量仪器: Main measuring instruments used in this test Refer to Attachment 1 检测地点及环境条件: Location and environmental condition for the test 地点: Location No. 716 Yishan Road 温度: Ambient temperature (21.1-21.6) °C; 湿度: Relative humidity (62-64) %RH; 其它: Others / 检测结果/说明: Results of test and additional explanation The testing results are in compliance with IEEE 1528: 2003, FCC OET Bulletin 65 Supplement C: 2001 (see the continued pages) (Test date: 2010.06.09-2010.06.12) 本报告提供的结果仅对本次被测的样品有效。 The data are valid only for the sample(s). 检测报告编号:2010J10-30-106044 Test report series No. 检测报告续页专用 第 3 页 共 59 页 Continued page of test report Page of total pages 检测结果/说明(续页): Results of test and additional explanation(continued page) 1. Specific Absorption Rate Test 1.1 EUT Description Product Name CDMA & GSM dual mode phone Model No. EG59 FCC ID SARHISENSEEG59 Antenna Type Soldered on PCB GPRS Class / GPRS Timeslots of Test / Modulation Mode OQPSK Tx Frequency range 824.70 MHz~848.31 MHz Rx Frequency range 869.00MHz~894.00MHz Maximum RF Conducted Power CDMA 800: 28.98 dBm 1.2 Test Environment during SAR test Temperature Min. =19°C, Max. =23°C Relative humidity Min. =30%, Max. =70% Ground system resistance <0.5Ω Ambient noise is checked and found very low and in compliance with requirement of standards. Reflection of surrounding objects is minimized and in compliance with requirement of standards. 检测报告编号:2010J10-30-106044 Test report series No. 检测报告续页专用 第 4 页 共 59 页 Continued page of test report Page of total pages 检测结果/说明(续页): Results of test and additional explanation(continued page) 1.3 Tissue Simulating Liquid 1.3.1 The composition of the tissue simulating liquid The parameters of the simulating solution strongly influence the SAR values. The different normalization organizations have defined adapted solutions for the each mobile system. GSM liquid is made of 1-2 Propylene Glycol, de-ionized water and NaCl, reconstituting the electric properties of human tissues at 850 MHz/900 MHz; DCS/PCS Liquid is made of de-ionized water, DGBE, Triton X 100 and NaCl, reconstituting the electric properties of human tissues at 1800 MHz/1900 MHz; UMTS Liquid is made of de-ionized water, DGBE, Triton X 100 and NaCl, reconstituting the electric properties of human tissues at 2000 MHz; Bluetooth Liquid is made of de-ionized water, DGBE, Triton X 100 and NaCl, reconstituting the electric properties of human tissues at 2450 MHz; 1.3.2 Tissue Calibration Result The dielectric parameters of the liquids were verified prior to the SAR evaluation using the Calibration Kits and R&S® ZVB8 Vector Network Analyzers. Head Tissue simulating Measurement Dielectric Parameters Frequency [MHz] Description εr σ (S/m) Tissue Temp.(°C) Reference result +/-5% 41.50 0.90 N/A 836 MHz 2010-06-09 41.67 0.94 21.3 Body Tissue simulating Measurement Dielectric Parameters Frequency [MHz] Description εr σ (S/m) Tissue Temp.(°C) Reference result +/-5% 55.20 0.97 N/A 836 MHz 2010-06-09 55.59 1.01 21.2 检测报告编号:2010J10-30-106044 Test report series No. 检测报告续页专用 第 5 页 共 59 页 Continued page of test report Page of total pages 检测结果/说明(续页): Results of test and additional explanation(continued page) 1.4 SAR Measurement System This SAR Measurement System uses a Computer-controlled 3-D stepper motor system (SAR Handset Assessment Systems from Antennessa). An E-field probe is used to determine the internal electric fields. The SAR can be obtained from the equation SAR=σ (|Ei|2)/ ρ where σ and ρ are the conductivity and mass density of the tissue simulating liquid. During SAR test, EUT is in Traffic Mode (Channel Allocated) at Normal Voltage Condition. A communication link is set up with a System Simulator (SS) by air link, and a call is established. The TCH is allocated to 975, 38 and 124 respectively in the case of GSM 900 MHz, or to 512, 698 and 885 respectively in the case of DCS 1800 MHz. The EUT is commanded to operate at maximum transmitting power. The EUT shall use its internal transmitter. The antenna(s), battery and accessories shall be those specified by the manufacturer. The EUT battery must be fully charged and checked periodically during the test to ascertain uniform power output. If a wireless link is used, the antenna connected to the output of the base station simulator shall be placed at least 50 cm away from the handset. The signal transmitted by the simulator to the antenna feeding point shall be lower than the output power level of the handset by at least 35 dB. 检测报告编号:2010J10-30-106044 Test report series No. 检测报告续页专用 第 6 页 共 59 页 Continued page of test report Page of total pages 检测结果/说明(续页): Results of test and additional explanation(continued page) 1.4.1 SAM phantom Figure 1:SAM phantom The SAM phantom (Antennessa SN: SN_36_05_SAM25) is used to measure the SAR relative to persons exposure to electro-magnetic field radiated by mobile phones. For thickness control purpose, the phantom has several integrated thickness control points (see crosses on the picture below) Shell thickness 2 mm+/-0.2 mm Filling volume 2…

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Test Report

检测报告编号:2010J10-30-106052 Test report series No. 检测报告续页专用 第 2 页 共 83 页 Continued page of test report Page of total pages 国家法定计量检定机构计量授权证书号(中心/院):(国)法计(2007)01039号/(2007)01019号 The number of the Certificate of Metrological Authorization to The Legal Metrological Verification Institution is No.(2007)01039 / No.(2007)01019 中国合格评定国家认可委员会实验室认可证书号:No. CNAS L0134 The number of the certificate accredited by CNAS is No.L0134 中国国家认证认可监督管理委员会资质认定计量认证证书(CMA)号:2009000597E The number of the metrology accreditation certificate by CNCA is No. 2009000597E 本次检测所依据的技术规范(代号、名称): Reference documents for the test (code 、name) FCC part 22: 2009 Part 22: Public Mobile Services 本次检测所使用的主要测量仪器: Main measuring instruments used in this test Refer to Attachment 1 检测地点及环境条件: Location and environmental condition for the test 地点: Location No. 716 Yishan Road 温度: Ambient temperature (21-22) °C; 湿度: Relative humidity (51-58) %RH; 其它: Others / 检测结果/说明: Results of test and additional explanation The testing results are in compliance with FCC part 22: 2009 (see the continued pages) (Test date: 2010…

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Contact Information

Applicant

Haining Wang
[email protected]865326761747Fax: 865326762066

Technical Contact

Hisense Communication Co., Ltd.Lifeng Wang
[email protected]+86-532-83878888

Hisense Infor. Industrial Park · Qingdao, Shandong · China

Test Firm

SGS-CSTC Standards Technical Services Co.,Ltd.Zenger Zhang
[email protected]86(0)2161915654Fax: 8602161915655

Technical Specifications

#Rule PartsFrequency RangePower OutputEmissionTolerance
122H824.7 MHz - 848.31 MHz380.00 mW1M28F9W2.5000000000 ppm
Confidentiality
Long Term
Grant Notes
Power output is ERP. Body-worn operations are restricted to belt-clips, holsters or similar accessories that have no metallic component in the assembly and which provide at least 1.5 cm separation between the device and the users body. End users must be informed of the body worn requirements for satisfying RF Exposure compliance. The highest reported SAR values are: Head: 0.976 W/kg; Body-worn 0.667 W/kg. This device also contains functions that are not operational in U.S. Territories. This filing is only applicable for U.S. operations.

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