Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
ZTE S170 CDMA 1X Digital Mobile Phone Quick Start Guide ZTE CORPORATION NO. 55, Hi-tech Road South, ShenZhen, P.R.China Postcode: 518057 Tel: (86) 755 26779999 URL: http://www.zte.com.cn E-mail: [email protected] LEGAL INFORMATION Copyright © 2011 ZTE CORPORATION. All rights reserved. No part of this publication may be excerpted, reproduced, translated or utilized in any form or by any means, electronic or mechanical, including photocopying and microfilm, without the prior written permission of ZTE Corporation. The manual is published by ZTE Corporation. We reserve the right to make modifications on print errors or update specifications without prior notice. Version No. : R1.0 Edition Time : 2011.11 Manual No. : Confidential and Proprietary Information of ZTE CORPORATION 1 C h a p t e r 1 Phone Overview Charger Jack Earphone LCD Screen Navigation Keys Left Soft Key Call Key Number Keys * Key # Key End Key Right Soft Key OK Key LED Light Headset Microphone Confidential and Proprietary Information of ZTE CORPORATION 2 C h a p t e r 2 Key Functions Key Function Description Call Key • Make or answer a call. • Press the Call Key in standby mode to enter All Calls list. End Key • End an active call or reject a call. • Long press to Power on/Power off. • Exit from any interface to standby mode. Left Soft Key • Enter main Menu in standby mode. • Switch to the options at lower left of the LCD. Right Soft Key • Enter All of Phonebook in standby mode. • Switch to the options at lower right of the LCD. Navigation Keys • Move the cursor up, down, left and right. • In standby mode, Used as hot keys to enter the designated functions. • In Phonebook list, press the Left key or Right key to switch groups. • Press the Left key or Right key to adjust volume in conversation. • Used as direction keys in games. • Press and hold the Down Key to turn on/off the LED Light. OK Key • Confirm the commands and options selected. • Confirm the character chosen while character inputting. • In standby mode, press the OK Key to access Freedom menu. 0 ~ 9 Number Keys • Key in numbers or characters. • Press and hold the 0 key to input + in standby mode. • Make a Speed Dial call (2–9) in standby mode. • Press to enter corresponding submenu. # Key • Press the # Key to select text mode when edit text. • From the idle screen long press the # Key to activate or deactivate vibration mode. * Key • Press and hold the * Key in standby mode to lock phone’s keypad. ZTE-C S170 User Guide Confidential and Proprietary Information of ZTE CORPORATION 3 Key Function Description • Press the * Key once to enter symbols in text input mode. ZTE-C S170 User Guide 4 Confidential and Proprietary Information of ZTE CORPORATION C h a p t e r 3 Open the Back Cover Remove the back cover as shown below. Confidential and Proprietary Information of ZTE CORPORATION 5 C h a p t e r 4 Installing the Battery Install the battery as shown below. Confidential and Proprietary Information of ZTE CORPORATION 6 C h a p t e r 5 Inserting the UIM Card Insert the UIM card as shown below. Confidential and Proprietary Information of ZTE CORPORATION 7 C h a p t e r 6 Charging Your Phone 1. Insert the lead from the charger to the socket, and connect the charger to a standard wall AC socket. 2. After the completion of charging, disconnect the charger from the phone and AC socket. Confidential and Proprietary Information of ZTE CORPORATION 8 C h a p t e r 7 Switching On/Off 1. Press and hold the End Key to switch on/off your phone. 2. The phone will automatically search for available networks. Confidential and Proprietary Information of ZTE CORPORATION 9 C h a p t e r 8 Indicators and Icons 图标 说明 图标 说明 Signal strength Battery indicator New SMS Silence mode Vibrate mode Alarm Ring + Vibrate mode Confidential and Proprietary Information of ZTE CORPORATION 10 C h a p t e r 9 Keypad Lock If you activate Auto Keypad Lock, the keypad will be locked automatically according to your settings. Press and hold the * Key to lock the keypad in standby mode. If you want to unlock the keypad, please press first the Right Soft Key, and then the * Key. Notes: If the call is coming when the keypad is locked, you can press the Call Key to answer. When the keypad is locked, calls may be possible to the official emergency number programmed into your device. Confidential and Proprietary Information of ZTE CORPORATION 11 C h a p t e r 10 Phone Code Phone code could prevent your phone from illegal use. The default phone code is 0000. Please change it to your own as soon as possible. Notes: Please remember the code; otherwise some service expense may happen. Confidential and Proprietary Information of ZTE CORPORATION 12 C h a p t e r 11 PIN and PUK PIN Code PIN code could prevent your UIM card from illegal use. When PIN lock is on, you should enter the PIN code when powering on the handset again. The network provider offers you PIN code (four to eight digits). You should change PIN code as soon as possible for security. PUK Code Consecutive inputting wrong PIN code for three times can cause locking of UIM card. To unlock, you need PUK code. Notes: PIN code and PUK code may be offered together with the UIM card. If not, please contact your network service provider. Please change default PIN code to your own as soon as possible. Confidential and Proprietary Information of ZTE CORPORATION 13 C h a p t e r 12 Te x t Your phone offers text input modes: abc, Abc, ABC, 123, eZi and Symbols. Operation Method Change input mode Press the # Key to select another text mode, press the * Key to enter the symbols mode. Input Letters In the abc/Abc/ABC mode, press corresponding letter key till the letter appears. Input Words In the eZi mode, press any key once to key in any word. Predictive text input is based on a built-in dictionary. When you have finished writing the word and it is correct, confirm it by pressing the OK Key. If the word is incorrect, press the Up key or Down key to view other matching words fou…
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Internal Use Only ▲ ZTE Corporation Copyright Reserved Abroad Unless Permitted ZTE-C S170 SYSTEM BLOCK DIAGRAM Frequency TX: 824MHz~849MHz RX: 869MHz~894MHz CDMA Cellular Crystal Oscillator Frequency ZTE-C S170 include one 19.2MHz Crystal Oscillator, PA Parameter Voltage:3.2V~4.2V Current:10mA~300mA
Authorization Letter FCC ID: Q78-ZTECS170 Date: 15 th November, 2011 To whom it may concern: We, the undersigned, hereby authorize The State Radio_monitoring_center Testing Center (SRTC) to act on our behalf, as our agent, in the following matters related to the FCC approval of our product: Product Name: CDMA 1X Digital Mobile Phone Product Model: ZTE-C S170 Report submittal, related correspondence, the signing of all documents relating to these matters, and any other lawful activity necessary to obtain such certification. Any act carried out by The State Radio_monitoring_center Testing Center (SRTC) within the scope of this authorization shall have the same effects as our own. This authorization shall expire 2 months from original date. If you have any question regarding the authorization, please don’t hesitate to contact with me. Thank you. Sincerely, Royce Wang Title: Product Certification Director ZTE Corporation
Request of Confidentiality Federal Communications Commission Authorization and Evaluation Division Pursuant to Sections 0.457 and 0.459 of the Commission’s Rules, the Applicant hereby requests confidential treatment of information accompanying of following product: Product Name: CDMA 1X Digital Mobile Phone Product Model: ZTE-C S170 FCC ID: Q78-ZTECS170 The following information should be held confidential: All Schematics/block diagrams All Parts list for the above schematic diagram Tune-Up Procedure Operational description and technical overview of product The above 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. The applicant understands that pursuant to Rule 0.457, disclosure of this application and all accompanying documentation will not be made before the date of the Grant for this application. Royce Wang Title: Product Certification Director ZTE Corporation Zhongxing Bldg, Shenzhen Hi-tech Industrial Park Nanshan District, Shenzhen city, GuangDong Province, P.R.China 518057 Tel: 086-021-68895196 Fax: 086-021-50801070
Q78-ZTECS170 External Photo
Q78-ZTECS170 Internal Photo
Antenna Details The antenna characters of ZTE-C S170 CDMA 1X Digital Mobile Phone are as follows: CDMA 1X antenna: Manufacturer: SPEED Communication Technology Limited Antenna Type: Monopole Antenna Gain: 2dBi
Internal Use Only ▲ ZTE Corporation Copyright Reserved Abroad Unless Permitted ZTE-C S170 is a mobile phone, which is base on the solution of QUALCOMM Single Chip QSC1100. The baseband, radioOne RF, and power management is integrated in the QSC1100 device. The main parts of ZTE-C S170 are QSC1100, FLASH, LCD, KeyPad and UIM card. FLASH is M36W0R6050U4ZSE W0. It is the MCP (64Mb FLASH &32Mb PSRAM).Dots of LCD is 128*128. The RUIM is a smart card for CDMA cellular applications; it provides personal authentication information that allows the mobile station or handset to be connected with the network. The RUIM card can be inserted into any CDMA RUIM equipped handset to enable its user to receive or make calls and receive other subscribed services, thus enabling more handset independence for the user. The internal power management circuits, UIM circuit, and UIM pads allow for implementing 1.8V OR 2.85 V cards via a direct connection. The QSC1100 device includes most of the active RF and LO functions for low cost CDMA wireless handset applications. It is organized according to function: RF receive signal path, Rx LO circuits, RF transmit signal path, and Tx LO circuits. The cellular CDMA receiver is supported and largely implemented by the QSC1100 device. The handset antenna collects the base station forward link signals and radiates the handset reverse link signal. The antenna interfaces with receive and transmit paths through a duplexer that exploits their frequency spacing to separate them from one another. The receive signal is routed from the duplexer to the QSC cellular LNA through a matching network (MN) that optimizes the power transfer into the LNA. The four-gain state LNA is followed by an external bandpass filter that suppresses out-of-band received signals and handset transmitter leakage. Suppression must be adequate to ensure cross-modulation products do not severely degrade receiver performance under jammed conditions. The LNA output impedance is matched to this filter, which provides a single-ended to differential transformation for compatibility with the differential downconverter input. A carefully controlled differential match is required between the filter and the downconverter input to maintain the QSC device’s high common-mode rejection and second-order intermodulation performance. The downconverter's RF circuitry includes two gain states that supplement the LNA gain Internal Use Only ▲ ZTE Corporation Copyright Reserved Abroad Unless Permitted steps to further extend the receiver dynamic range. The quadrature downconverter translates the RF signal directly to baseband, producing two analog outputs: in-phase (I) and quadrature (Q). The baseband signals are routed to lowpass filters whose passband and stopband characteristics are optimized for the CDMA waveform. Both filter outputs are buffered and routed to analog-to-digital converters for digitization. The digital baseband outputs are routed to QSC baseband circuits for further processing. Cellular CDMA handsets implemented using the QSC1100 device include a single RF transmitter, much of which is contained within the device. The RF transmit path begins with the analog I and Q differential baseband signals from the device’s baseband circuits. These baseband signals are lowpass filtered and amplified to levels sufficient for driving the quadrature upconverter. The transmitter LO signals are generated by circuits, and delivered to the upconverter circuits at the correct frequency, with the proper phase relationship, and with adequate drive level. The upconverter's output is at the desired RF channel frequency and drives the QSC output stages. These RF circuits include multiple variable gain stages that provide transmit AGC control. Greater than 85-dB gain control range is realized using a pulse density modulated(PDM) signal from the baseband circuits that is lowpass filtered to generate the necessary analog control signal. The wide range of driver amplifier output levels is achieved while supporting the CDMA2000 standard's requirements for ACPR, spurious emissions, Rx-band noise, etc. A single driver amplifier output is sufficient for all cellular applications. This Tx output has a differential configuration that includes some integrated matching components; additional external matching components are required to achieve the desired 200-Ω differential nominal output impedance. The driver amplifier ends the signal path circuitry within the QSC1100 device, but the transmit path continues by routing the QSC Tx output to a bandpass filter whose center frequency is suitable for the specific band supported by the handset. This filter passes the transmit channel power while suppressing wideband noise, spurs, harmonics, and other undesired out-of-band spectra. Next, the power amplifier boosts the channel power to the desired level. A coupler provides a Internal Use Only ▲ ZTE Corporation Copyright Reserved Abroad Unless Permitted low-level sample of Tx power that is routed to a temperature detector circuit that generates an analog indication of output power for the baseband circuits. This assists the software in setting the transmit gains and assuring the maximum allowed output power is not exceeded. The transmit signal continues through the duplexer's Tx port to the antenna port; the duplexer provides filtering and separates the Tx and Rx signals present at the antenna. And finally, the antenna collects the cellular CDMA forward link signals and radiates the handset reverse link signal.
ProjectZTE-C S170BOM NameZTE-C S170 MB(TELKOM/FM/No Motor) BOM NO.126880451000ADBPCB Version110101(cu7A) NO.Material NumberMaterial NameStyleUnitQTYLocation/Remark 1*002031100002Dual SPDT Analog SwitchNLAS4717EPMTR2G//SGM4717EP-YWPCS1S1 2*004020100086 Transient Voltage SuppressorPESD12VS1UB//CESD12VD5//VESD1 PCS1VD4 3*004020200027ESD Protection diodeRSB6.8CS//PESD5V0S1BL//ESD9B5PCS8Remark 01 4*006030200102 64M NOR Flash + 32M PsRAM MCM36W0R6050U4ZSE//M36W0R6050U4 PCS1D15 5*012090200092QUALCOMM Single chip QSC1100QSC-1100-0-284CSP-TR-06//QSC-1D16 6*012090300038FM ICRDA5802HSPCS1D5 7*013040100009Side View White LED01.JT.ZB001ZA-B//LTW-008ZDCG-PCS1HL1 8*013040100111super thin Chip WHITE LED19-118UTD/S327-2/TR8//BL-HZ33PCS6HL2-HL7 9*014030200021p channel power mosfetNTR4101PT1G//CJ2305//DMP2305UPCS1VT1 10*015011700008Cellular Rf Power AmplifierACPM-1106-TR11D3 11*030012000048SMD Crystal Resonator W-225-5//TSX-3225 19.200000MH PCS1G1 12*036010290034SAW DUPLEXERSAYFP836MCC0F001DP1 13040110600026ZTE-C S165 MB-PCBcu7APCS1 14*0421201000396.5h battery connector with BATF003G5K81-00RPCS1X4 15*042120200021UIM card connector SIMF006G5K05-13R//1.005A1-006 PCS1X5 16*042120300025micro-usbUSBF005G5K22-00R//3.042A0-005PCS1X3 17*042120600021 Φ3.5HEADPHONE JACK WITH CURPJEB-049A-1-G-BLK//AJR83-6860 PCS1X1 18*045020100100Chip-ResistorERJ2RKF1182X//WR04X1182FTL//2PCS1R11 19*045020100107Chip-Resistor232270672213L//WR04X2212FTLPCS1R10 20*045020100109Chip-Resistor WR04X51R1FTL//RC1005F51R1CS// PCS1R12 21*045020100112Chip-Resistor232270672214L//WR04X2213FTLPCS1R129 22*045020100118Chip-Resistor232270674753L//WR04X4752FTLPCS2R47,R104 23*045020100120Chip-Resistor232270674752L//WR04X4751FTLPCS2R7,R31 24*045020100179Chip-ResistorWR04X2211FTL//232270672212LPCS3R135,R136,R21 25*045020100182Chip-ResistorWR04X2001FTL//232270672002LPCS1R98 26*045020100184Chip-ResistorWR04X82R5FTL//232270678259LPCS1R17 27*045020100185Chip-Resistor232270679099L//WR04X90R9FTLPCS2R4,R18 28*045020100191Chip-ResistorWR04X120 JTL//232270570129LPCS2R1,R5 29*045020100196Chip-Resistor232270570153L//WR04X153 JTLPCS1R130 30*045020100198Chip-Resistor232270570309L//WR04X300 JTLPCS2R114,R29 31*045020100199Chip-ResistorWR04X3R3 JTL//232270570338LPCS1R111 32*045020100204Chip-Resistor232270674704L//WR04X4703FTLPCS2R13,R46 33*045020100215Chip-Resistor232270570108L//WR04X1R0 JTLPCS8R116,R117,R35,R36,R41-R44 34*045020100230Chip-Resistor232270570561L//WR04X561 JTL//PCS1R97 35*045020100232Chip-Resistor 232270591001L//WR04X000 PTL// PCS2R23,C24 36*045020100257Chip-Resistor232270570104L//WR04X104 JTLPCS3R102,R37,R200 37*045020100259Chip-Resistor232270570109L//WR04X100 JTLPCS2R6,R48 38*045020100273Chip-ResistorWR04X101 JTL//232270570101LPCS7R2,R20,R22,R24-R27 39*045020100282Chip-Resistor 232270672208L//ERJ2RCF2R20X// PCS1R120 40*045020100296Chip-ResistorWR04X1002FTL//MCR01MZPF1002//PCS1R100 ZTE Corporation Copyright Reserved,No Spreading Abroad unless Permitted.Page 1 of 3 ProjectZTE-C S170BOM NameZTE-C S170 MB(TELKOM/FM/No Motor) BOM NO.126880451000ADBPCB Version110101(cu7A) NO.Material NumberMaterial NameStyleUnitQTYLocation/Remark 41*045020200108Chip-ResistorWR06X4531FTL//232270464532LPCS1R99 42*045070200010NTC thermistor NCP15XV103J03RC//B57221V2103J PCS1RT1 43*045080200008SMT VaristorVRS0402SR55R101N//SDV1005E5R5PCS4R14-R16,R19 44*046050200013 Multilayer Ceramic Chip CapaCL05B472KA5NNXC//CC0402KRX7R8 PCS1C22 45*046050200014Multilayer Ceramic Chip CapaCC0402KRX5R5BB105//CL05A105KQPCS3C19,C150,C3 46*046050200057 Multilayer Ceramic Chip CapaC1005C0G1H6R8CT//CC0402CRNPO9 PCS1C135 47*046050200066Multilayer Ceramic Chip CapaCC0402JRNPO9BN101//CL05C101JBPCS18Remark 02 48*046050200072Multilayer Ceramic Chip Capa0402X823K6R3CT//CC0402KRX7R6BPCS1C127 49*046050200095 Multilayer Ceramic Chip CapaCL05C470JB5NNXC//CC0402JRNPO9 PCS1C33 50*046050200100Multilayer Ceramic Chip CapaCL05C060DB5ANXC//C1005C0G1H06PCS1C124 51*046050200109 Multilayer Ceramic Chip CapaUMK105 CG100DV-F//0402CG100J5 PCS2C138,C114 52*046050200112Multilayer Ceramic Chip CapaCC0402JRNPO9BN560//0402N560J5PCS4C10,C16,C20,C27 53*046050200119 Multilayer Ceramic Chip Capa0402B102K500CT//CC0402KRX7R9B PCS8Remark 03 54*046050200122Multilayer Ceramic Chip CapaCM05CG270J50AH//CC0402JRNPO9BPCS4VD6,VD7,VD29,VD30 55*046050200123 Multilayer Ceramic Chip CapaCL05A104KP5NNXC//0402X105K100 PCS37Remark 04 56*046050200147ceramic capacitor0402N471J500CT//C1005COG1H471PCS1C132 57*046050200150 Multilayer Ceramic Chip CapaRM EMK105 BJ822KV-F//C1005X7R PCS1C129 58*046050200152ceramic capacitor0402ZA334KAT2A//GRM155R61A334PCS1C206 59*046050200165General Multilayer Ceramic CGRM155R60J225ME15D//CL05A225MPCS7Remark 05 60*046050300004 Multilayer Ceramic Chip CapaCV105X5R475K06AT//CC0603KRX5R PCS7Remark 06 61*046050300015Multilayer Ceramic Chip CapaCM105X5R106M06AT//CL10A106MQ8PCS8Remark 07 62*046050300197 Multilayer Ceramic Chip Capa0603X105K250CT//GRM188R61E105 PCS1C17 63*046050400034Multilayer Ceramic Chip Capa0805X226M6R3CT//CV21X5R226M06PCS1C1 64*046050400219 Multilayer Ceramic Chip Capa0805X106K160CT//GRM21BR61C106 PCS1C154 65*047020100044Chip InductorLQG15HS12NJ02D//VHF100505H12NPCS3L39,L40,L26 66*047020100046Chip Inductor LQG15HS5N6S02//VHF100505H5N6S PCS1L47 67*047020100049Chip InductorLQG15HS3N9S02D//VHF100505H3N9PCS1C105 68*047020100063Chip Inductor LQG15HS82NJ02D//SDCL1005C82NJ PCS1L15 69*047020100066Chip InductorVHF100505H10NJT//SDCL1005C10NPCS2L35,L36 70*047020100070Chip InductorVHF100505H2N7ST//SDCL1005C2N7PCS2L45,C99 71*047020800086Power Inductors CBC2012T4R7M//KSLI-201210DG-4 PCS2L7,L19 72*047020900001chip beadBLM18PG181SN1//PZ1608U181-1R52L2,L8 73*047020900036Chip Beads BK1005HM601_T//BLM15BD601SN1D PCS2L11,L12 74*047020900052Chip Ferrite BeadsMMZ1005A152ET//BLM15HD182SN1DPCS9Remark 08 75080402100116ZTE-C S165 DomeZXM10.166JA-01/02 V1.0PCS1 76080405501112ZTE-C S165 Shielding CoverZXM10.166JA-01/04 V1.2PCS1 77080405501114ZTE-C S165 Shielding FrameZXM10.166JA-01/03 V1.1PCS1 Remark 01:VD1,VD2,VD5,VD16,VD18,VD23-VD25 Rem…
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800MHz CDMA of S170 第1页 Tune up procedure 1 Scope This Standard details definitions, methods of measurement, and minimum performance characteristics for Band Class 0 (8 00MHz) of Code Division Multiple Access (CDMA) mobile stations. 2 Terms and Definitions AWGN. Additive White Gaussian Noise. Bad Frame. A frame classified with insufficient frame quality or for Radio Configuration 1 9600 bps primary traffic only, with bit errors. See also Good Frame. Band Class (BC). A set of frequency channels and a numbering scheme for these channels. Base Station. A fixed station used for communicating with mobile stations. Depending upon the context, the term base station may refer to a cell, a sector within a cell, an MSC, or other part of the wireless system. CDMA. See Code Division Multiple Access. CDMA Channel. The set of channels transmitted between the base station and the mobile stations within a given CDMA frequency assignment. See also Forward CDMA Channel and Reverse CDMA Channel. CDMA Channel Number. An 11-bit number corresponding to the center of the CDMA frequency assignment. Code Channel. A subchannel of a Forward CDMA Channel or Reverse CDMA Channel. Each subchannel uses an orthogonal Walsh function or quasi-orthogonal function. dBc. The ratio (in dB) of the sideband power of a signal, measured in a given bandwidth at a given frequency offset from the center frequency of the same signal, to the total inband power of the signal. For CDMA, the total inband power of the signal is measured in a 1.23 MHz bandwidth around the center frequency of the CDMA signal for a Spreading Rate 1 CDMA signal and in a 3.69 MHz bandwidth around the center frequency of the CDMA signal for a Spreading Rate 3 CDMA signal. 800MHz CDMA of S170 第2页 dBm. A measure of power expressed in terms of its ratio (in dB) to one milliwatt. dBm/Hz. A measure of power spectral density. The ratio, dBm/Hz, is the power in one Hertz of bandwidth, where power is expressed in units of dBm. Eb. Average energy of an information bit at the mobile station antenna connector. Eb/Nt. The ratio in dB of the combined received energy per bit to the effective noise power spectral density at the mobile station antenna connector. Ec. Average energy accumulated over one PN chip period (Ec). FER. Frame Error Rate of Forward Traffic Channel. Forward Fundamental Channel (FCH). A portion of a Forward Traffic Channel which carries a combination of higher-level data and power control information. I0. The total received power spectral density, including signal and interference, as measured at the mobile station antenna connector. Ioc. The power spectral density of a band-limited white noise source (simulating interference from other cells) as measured at the mobile station antenna connector. For test cases where multiple channels or cells are specified, this power spectral density does not include power from these multiple channels or cells. Ior. The total transmit power spectral density of the Forward CDMA Channel at the base station antenna connector. For transmit diversity test cases, it shall be the total combined transmit power spectral density of the Forward CDMA Channel from both the main and transmit diversity base station antenna connectors. Îor. The received power spectral density of the Forward CDMA Channel as measured at the mobile station antenna connector. Mobile Station. A station intended to be used while in motion or during halts at unspecified points. Mobile stations include portable units (e.g., hand-held personal units) and units installed in vehicles. Spreading Rate (SR). The PN chip rate of the Forward CDMA Channel or the 800MHz CDMA of S170 第3页 Reverse CDMA Channel, defined as a multiple of 1.2288 Mcps. 3 Minimum Standard Target (dBm) 23dBm ≤ Maximum RF Output Power ≤ 30dBm Test Result (dBm) 23.5dBm
D-PL-12111-01-01 CNAS L0447 Registration No.910917 CONFORMANCE TEST REPORT FOR HUMAN EXPOSURE TO ELECTROMAGNETIC FIELDS Report No.: SRTC2011-H024-E0086 Product Name: CDMA 1X Digital Mobile Phone Product Model: ZTE-C S170 Applicant: ZTE Corporation Manufacturer: ZTE Corporation Specification: FCC OET Bulletin 65 (Edition 97-01) Supplement C (Edition 01-01) FCC ID: Q78-ZTECS170 The State Radio_monitoring_center Testing Center (SRTC) No.80 Beilishi Road Xicheng District Beijing, China Tel: 86-10-68009202 Fax: 86-10-68009205 No.: SRTC2011-H024-E0086 FCC ID: Q78-ZTECS170 The State Radio_monitoring_center Testing Center (SRTC) Page number: 1 of 40 Tel: 86-10-68009202 68009203 Fax: 86-10-68009195 68009205 Copyright © SRTC Executive Summary Test report no.: SRTC2011-H024-E0086 Product Model: ZTE-C S170 Date of test: 2011.11.16 Date of report: 2011.12.02 Laboratory: The State Radio_monitoring_center Testing Center (SRTC) Test has been Carried out in accordance with: 47CFR §2.1093 Radiofrequency Radiation Exposure Evaluation: Portable Devices FCC OET Bulletin 65 (Edition 97-01), Supplement C (Edition 01-01) Evaluating Compliance with FCC Guidelines for Human Exposure to Radiofrequency Electromagnetic Fields RSS-102 Evaluation Procedure for Mobile and Portable Radio Transmitters with Respect to Health Canada’s Safety Code 6 for Exposure of Humans to Radio Frequency Fields 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 Technique Documentation:The documentation of the testing performed on the tested devices is archived for 5 years at SRTC Result summary: Mode CH/f(MHz) Powerposition Limit (mW/g)/1g Measured (mW/g) Result 800MHz SO55 RC3 full rate 384/836.52 24.36Right hand Cheek1.6 0.911 PASS This Test Report Is Issued by: Mr. Song Qizhu Director of the test lab Checked by: Mr. Wang Junfeng Deputy director of the test lab Tested by: Ms. Liu Jia Test engineer Issued date: 2011.12.02 No.: SRTC2011-H024-E0086 FCC ID: Q78-ZTECS170 The State Radio_monitoring_center Testing Center (SRTC) Page number: 2 of 40 Tel: 86-10-68009202 68009203 Fax: 86-10-68009195 68009205 Copyright © SRTC Tables of Contents 1. General information ...................................................................................................................... 4 1.1 Notes of the test report ........................................................................................................ 4 1.2 Information about the testing laboratory ........................................................................... 4 1.3 Applicant’s details ................................................................................................................. 4 1.4 Manufacturer’s details .......................................................................................................... 4 1.5 Application details ................................................................................................................. 5 1.6 Maximum Results ................................................................................................................. 5 2. DESCRIPTION OF THE DEVICE UNDER TEST ..................................................................... 5 2.1 Description of the Antenna .................................................................................................. 5 2.2 Picture of the EUT ................................................................................................................ 6 2.3 Test Positions for the Device under test ............................................................................ 6 2.4 Picture to demonstrate the required liquid depth ............................................................. 7 2.5 Reference Specification ....................................................................................................... 7 2.6 The IEEE Standard C95.1 and the FCC Exposure Criteria ........................................... 7 2.7 Distinction Between Exposed Population, Duration of Exposure and Frequencies ... 8 2.8 Distinction between Maximum Permissible Exposure and SAR Limits ........................ 8 2.9 SAR Limit ............................................................................................................................... 9 3. The FCC Measurement Procedure ................................................................................................ 9 3.1 General Requirements ......................................................................................................... 9 3.2 Phantom specifications (shell and liquid)........................................................................ 10 3.3 Specifications of the SAR measurement equipment ..................................................... 10 3.4 Scanning system specifications ....................................................................................... 11 3.5 Mobile phone holder specifications ................................................................................. 11 4. Measurement preparation ............................................................................................................ 11 4.1 General preparation ........................................................................................................... 11 4.2Simplified performance checking ...................................................................................... 11 4.3 Preparation of the mobile phone under test ................................................................... 12 4.4 Position of the mobile phone in relation to the phantom .............................................. 12 4.5Tests to be performed ......................................................................................................... 13 5. The Measur…
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| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15B | - | - |

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