
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Confidential and Proprietary Information of ZTE CORPORATION 1 Vodafone R209-Z Quick Guide ZTE CORPORATION NO. 55, Hi-tech Road South, ShenZhen, P.R.China Postcode: 518057 VODAFONE R209-Z Quick Guide 2 Confidential and Proprietary Information of ZTE CORPORATION LEGAL INFORMATION Copyright © 2014 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 : 3.2014 VODAFONE R209-Z Quick Guide Confidential and Proprietary Information of ZTE CORPORATION 3 Getting to Know Your Device Appearance The following figure is only for your reference. The actual product may be different. 1. LED Indicators 2. Power Button 3. WPS Button 4. Micro USB Port 5. (U)SIM Card Slot 6. microSDHC Card Slot NOTE: 1.microSDHC logo is a trademark of SD-3C, LLC. 2. You can hold the Power button and WPS button to reset the device. Indicators Indicator Status Description Network Red solid Error status. Not registered to the mobile network, no (U)SIM card inserted or no network service available. Green solid Registered to the mobile network. Green blinking Connected to the mobile network and data is being transferred. Wi-Fi Blue solid Wi-Fi is active. Blue blinking WPS is active. LED light off Wi-Fi is off or your device is in sleep mode. SMS Blue solid You have unread messages. Blue blinking You have new messages. VODAFONE R209-Z Quick Guide 4 Confidential and Proprietary Information of ZTE CORPORATION LED light off No messages. Battery Red solid/ blinking The battery is low. Please charge the battery. Green blinking The battery is being charged. Green solid The battery level is middle or high. LED light off Your device is in standby mode and not being charged, or the battery is not inserted. Connection Scenario Your device supports two methods to connect to the Internet and supports multi-clients for surfing on the Internet at the same time. The following figure is only for your reference. 3G Mode: Use your (U)SIM card to access the Internet. Internet Wi-Fi Mode: Your device will connect to other WLAN device (hotspot device, wireless router, etc.) via Wi-Fi to access the Internet. The WLAN device has already connected to the Internet. VODAFONE R209-Z Quick Guide Confidential and Proprietary Information of ZTE CORPORATION 5 NOTE: The subnets of your device and other WLAN device must be different. Installing Your Device 1. Slide the back cover and remove it 2. Insert the (U)SIM card. IMPORTANT: Your device does not support Micro/Nano or any other nonstandard SIM cards. To avoid device damage, please do not use them. VODAFONE R209-Z Quick Guide 6 Confidential and Proprietary Information of ZTE CORPORATION 3. Insert the microSDHC card if necessary. 4.Insert the battery. 5. Close the back cover. Connecting to Your Device Via Wi-Fi 1. Power on your device directly. It will take 1~2 minutes to initialize. 2. Use your normal Wi-Fi application on the client to search for the available wireless networks. VODAFONE R209-Z Quick Guide Confidential and Proprietary Information of ZTE CORPORATION 7 NOTE: Please set the client to obtain an IP address automatically referring to the chapter “Configuring your PC”, and then the client will get an IP address like “192.168.0.101”. 3. Select the SSID of your device, and then click Connect. NOTE: Please check the label on your device to get the default SSID. 4. Input the password, and then click Connect. VODAFONE R209-Z Quick Guide 8 Confidential and Proprietary Information of ZTE CORPORATION NOTE: You may need to input the password for Wi-Fi connection. Please c heck the label on your device to get the default. 5. Wait a moment, and then the client will connect to your device successfully. Via USB Cable 1. Connect to the device. 2. Power on your device. 3. The OS detects and recognizes new hardware and finishes the installation automatically. NOTE: If the system does not launch installation automatically, you can run the installation program in path of My Computer > ZTEMODEM. 4. Wait a moment, and then the client will connect to your device successfully. Accessing the Internet 3G Mode After the client connected to your device successfully, you can access the Internet in the Automatic or Manual mode. The default mode is Automatic. Mode Operations Automatic Your device will connect to the Internet automatically, and your clients can surf on the Internet directly. Manual Log in the webGUI configuration page, and select Settings > Network Settings > Network Selection > Manual (To change current setting, please disconnect from network), then Apply . VODAFONE R209-Z Quick Guide Confidential and Proprietary Information of ZTE CORPORATION 9 NOTE: If you want to modify the detailed parameters of your device, please log in the webGUI configuration page by visiting http://192.168.0.1 or http://m.home. The default password is admin. Internet Wi-Fi Mode 1. Log in the webGUI configuration page. 2. Select Settings > Internet Wi-Fi. 3. Choose the Internet Wi-Fi Switch and Preferred Network, and then click Apply. NOTE: You need to enable Internet Wi-Fi switch and select preferred network Wi-Fi. 4. Connect to the Wi-Fi device. There are two methods for your reference. Input the Wi-Fi device information in the Wi-Fi Setting area, and then click Apply. Clickfor more help. VODAFONE R209-Z Quick Guide 10 Confidential and Proprietary Information of ZTE CORPORATION 5. After the client connected to the Wi-Fi device successfully, you can access the Internet. Configuring Your PC Follow the following steps and figures for Windows XP to configure the Internet Protocol for your Wi-Fi connection. . 1. Right-click My Network Places,…
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Rev. 0 ZTE Corporation ZTE Plaza, Keji Road South, Shenzhen, China Date: April 16, 2014 Federal Communications Commission Authorization and Evaluation Division Confidentiality Request regarding application for certification of FCC ID: Pursuant to Sections 0.457 and 0.459 of the Commission’s Rules, we hereby request confidential treatment of information accompanying this application as outlined below: Schematics Block Diagram Parts List Operation Description Tune up Procedure The above materials contain trade secrets and proprietary information not customarily released to the public. The public disclosure of these materials may be harmful to the applicant and provide unjustified benefits to its competitors. The applicant understands that pursuant to Section 0.457 of the Rules, disclosure of this application and all accompanying documentation will not be made before the date of the Grant for this application. Sincerely, Contact Person: Yang Zhao Company: ZTE Corporation TEL: +86-29-88458594 FAX: +86-29-88458594 E-mail: [email protected]
ZTE Corporation ZTE Plaza, Keji Road South, Shenzhen, China Tel: +86-21-68897541 ; Fax: +86-21-50801070 Date: April 15, 2014 Power of Attorney To whom it may concern, Please be notified that I, Min Zhang, have designated Michael Lin in TMC. as the persons being responsible for this project and to sign the form 731 and other documentation. Any and all acts carried out by Chongwen Song in TMC. on the matters of relating to all processes required in the FCC approval and any communication needed with the national authority, shall have the same legal authority as acts on our own behalf. We further certifies that neither the applicant nor any party to this application, as defined in 47 CFR Ch. 1.2002 (b), is subject to a denial to Federal benefits, that include FCC benefits, pursuant to section 5301 of the Anti-Drug Abuse Act of 1998, 21 U.S.C. 835(a). This authorization is limited to the product of as following: FCC ID: SRQ- If you have any acknowledgement and response, please send it to TMC. directly. Should you have any questions or comments regarding this matter, please have my best attention. Sincerely yours, Contact Person: Min Zhang Company: ZTE Corporation TEL: +86-21-68897541 FAX: +86-21-50801070 E-mail: [email protected]
1/1 ZTE Corporation Date: April 16, 2014 Federal Communications Commission Authorization and Evaluation Division RE : Certification Application FCC ID : To Whom It May Concern, Pursuant to sections 0.457 and 0.459 of CFR 47 and to avoid premature release of sensitive information prior to marketing or release of the product to the public, the applicant requests the following documents contained in this certification application be temporarily withheld from public disclosure for an initial period of 180 days: External Photos Internal Photos Test set-up photos Users Manual The application contains technical information, which ZTE Corporation deems to be trade secrets and proprietary. If made public, the information might be used to the disadvantage of the applicant in the market place. 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 Sincerely, Contact Person: Yang Zhao Company: ZTE Corporation TEL: +86-29-88458594 FAX: +86-29-88458594 E-mail: [email protected]
EUT photograph
No.I14Z45278-SEM02 Page 1 of 92 ©Copyright. All rights reserved by TMC Beijing. SAR TEST REPORT No. I14Z45278-SEM02 For ZTE CORPORATION GSM/DC HSPA+ uFi Mode Name: R209-Z With Hardware Version: ddxB Software Version: BD_R209V0.1 FCC ID: SRQR209-Z Issued Date: 2014-04-09 Note: The test results in this test report relate only to the devices specified in this report. This report shall not be reproduced except in full without the written approval of TMC Beijing. Test Laboratory: TMC Beijing, Telecommunication Metrology Center of MIIT No. 52, Huayuan Bei Road, Haidian District, Beijing, P. R. China 100191. Tel:+86(0)10-62304633-2079, Fax:+86(0)10-62304633 Email:[email protected]. www.emcite.com No. I14Z45278-SEM02 Page 2 of 92 Revision Version Report Number Revision Date Memo I14Z45278-SEM02 0 2014-04-09 Initial creation of test report No. I14Z45278-SEM02 Page 3 of 92 TABLE OF CONTENT 1 TEST LABORATORY .................................................................................................................... 5 1.1 TESTING LO C AT I O N ........................................................................................................................................ 5 1.2 TESTING ENVIRONMENT ................................................................................................................................. 5 1.3 PROJECT DATA ............................................................................................................................................... 5 1.4 SIGNATURE ..................................................................................................................................................... 5 2 STATEMENT OF COMPLIANCE .................................................................................................. 6 3 CLIENT INFORMATION ................................................................................................................ 7 3.1 APPLICANT INFORMATION .............................................................................................................................. 7 3.2 MANUFACTURER INFORMATION ..................................................................................................................... 7 4 EQUIPMENT UNDER TEST (EUT) AND ANCILLARY EQUIPMENT (AE) ................................. 8 4.1 ABOUT EUT ................................................................................................................................................... 8 4.2 INTERNAL IDENTIFICATION OF EUT USED DURING THE TEST .......................................................................... 8 4.3 INTERNAL IDENTIFICATION OF AE USED DURING THE TEST ............................................................................ 8 5 TEST METHODOLOGY ................................................................................................................ 9 5.1 APPLICABLE LIMIT REGULATIONS .................................................................................................................. 9 5.2 APPLICABLE MEASUREMENT STANDARDS ...................................................................................................... 9 6 SPECIFIC ABSORPTION RATE (SAR) ...................................................................................... 10 6.1 INTRODUCTION ............................................................................................................................................. 10 6.2 SAR DEFINITION .......................................................................................................................................... 10 7 TISSUE SIMULATING LIQUIDS ................................................................................................. 11 7.1 TARGETS FOR TISSUE SIMULATING LIQUID .................................................................................................... 11 7.2 DIELECTRIC PERFORMANCE ......................................................................................................................... 11 8 SYSTEM VERIFICATION ............................................................................................................ 13 8.1 SYSTEM SETUP ............................................................................................................................................. 13 8.2 SYSTEM VERIFICATION ................................................................................................................................. 14 9 MEASUREMENT PROCEDURES .............................................................................................. 15 9.1 TESTS TO BE PERFORMED ............................................................................................................................. 15 9.2 GENERAL MEASUREMENT PROCEDURE ........................................................................................................ 16 9.3 WCDMA MEASUREMENT PROCEDURES FOR SAR ...................................................................................... 17 9.4 BLUETOOTH & WI-FI MEASUREMENT PROCEDURES FOR SAR .................................................................... 18 9.5 POWER DRIFT ............................................................................................................................................... 18 10 AREA SCAN BASED 1-G SAR ................................................................................................. 19 10.1 REQUIREMENT OF KDB .............................................................................................................................. 19 10.2 FAST SAR ALGORITHMS ............................................................................................................................ 19 11 CONDUCTED OUTPUT POWER .............................................................................................. 20 No. I14Z45278-SEM02 Page 4 of 92 11.1 MANUFACTURING TOLERANCE ................…
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No. I14Z45278-SEM02 Page 24 of 92 12 Simultaneous TX SAR Considerations 12.1 Introduction The following procedures adopted from “FCC SAR Considerations for Cell Phones with Multiple Transmitters” are applicable to handsets with built-in unlicensed transmitters such as 802.11 a/b/g and Bluetooth devices which may simultaneously transmit with the licensed transmitter. For this device, the Wi-Fi can transmit simultaneous with other transmitters. 12.2 Transmit Antenna Separation Distances Picture 12.1 Antenna Locations 12.3 SAR Measurement Positions According to the KDB941225 D06 Hot Spot SAR v01, the edges with less than 2.5 cm distance to the antennas need to be tested for SAR. SAR measurement positions Mode Position1 Position2 Position3 Position4 Position5 Position6 Main antenna Yes Yes Yes Yes Yes No WLAN Yes Yes Yes No Yes Yes No. I14Z45278-SEM02 Page 25 of 92 12.4 Standalone SAR Test Exclusion Considerations Standalone 1-g head or body SAR evaluation by measurement or numerical simulation is not required when the corresponding SAR Exclusion Threshold condition, listed below, is satisfied. The 1-g SAR test exclusion threshold for 100 MHz to 6 GHz at test separation distances ≤ 50 mm are determined by: [(max. power of channel, including tune-up tolerance, mW) / (min. test separation distance, mm)] · [√f(GHz)] ≤ 3.0 for 1-g SAR, where f(GHz) is the RF channel transmit frequency in GHz Power and distance are rounded to the nearest mW and mm before calculation The result is rounded to one decimal place for comparison Table 12.1: Standalone SAR test exclusion considerations Band/Mode F(GHz) Position SAR test exclusion threshold (mW) RF output power SAR test exclusion dBm mW 2.4GHz WLAN 802.11 b 2.45 Head 9.58 15.54 35.81 No Body 19.17 15.54 35.81 No 13 Evaluation of Simultaneous Table 13.1: The sum of reported SAR values for main antenna and WiFi Position Main antenna WiFi Sum Highest reported SAR value for Body Test Position 1 1.15 0.34 1.49 Conclusion: According to the above tables, the sum of reported SAR values is < 1.6W/kg. So the simultaneous transmission SAR with volume scans is not required. No. I14Z45278-SEM02 Page 26 of 92 14 SAR Test Result It is determined by user manual for the distance between the EUT and the phantom bottom. The distance is 10mm and just applied to the condition of body worn accessory. It is performed for all SAR measurements with area scan based 1-g SAR estimation (Fast SAR). A zoom scan measurement is added when the estimated 1-g SAR is the highest measured SAR in each exposure configuration, wireless mode and frequency band combination or > 1.2W/kg. The calculated SAR is obtained by the following formula: Reported SAR=Measured SAR×10 � P Target −P Measured � 10 ⁄ Where P Target is the power of manufacturing upper limit; P Measured is the measured power in chapter 11. Table 14.1: Duty Cycle Mode Duty Cycle GPRS for GSM850/1900 1:4 EGPRS for GSM850/1900 1:2 WCDMA1900 & WiFi 1:1 14.1 SAR results for Fast SAR Table 14.1: SAR Values (GSM 850 MHz Band - Body) Ambient Temperature: 22.4 o C Liquid Temperature: 21.9 o C Frequency Mode (number of timeslots) Te s t Positio n Figure No. Conducted Power (dBm) Max. tune-up Power (dBm) Measured SAR(1g) (W/kg) Reported SAR(1g) (W/kg) Power Drift (dB) MHz Ch. 848.8 251 GPRS (2 ) 1 / 30.92 31 1.00 1.02 -0.15 836.6 190 GPRS (2) 1 / 30.98 31 1.02 1.02 -0.10 824.2 128 GPRS (2) 1 Fig.1 30.97 31 1.03 1.04 -0.07 836.6 190 GPRS (2) 2 / 30.98 31 0.850 0.85 -0.18 836.6 190 GPRS (2) 3 / 30.98 31 0.599 0.60 -0.08 836.6 190 GPRS (2) 4 / 30.98 31 0.062 0.06 0.07 836.6 190 GPRS (2) 5 / 30.98 31 0.535 0.54 -0.06 824.2 128 EGPRS (4) 1 / 28.69 29 0.966 1.04 0.11 Note: The distance between the EUT and the phantom bottom is 10mm. No. I14Z45278-SEM02 Page 27 of 92 Table 14.2: SAR Values (GSM 1900 MHz Band - Body) Ambient Temperature: 22.4 o C Liquid Temperature: 21.9 o C Frequency Mode (number of timeslots) Te s t Positio n Figure No. Conducted Power (dBm) Max. tune-up Power (dBm) Measured SAR(1g) (W/kg) Reported SAR(1g) (W/kg) Power Drift (dB) MHz Ch. 1909.8 810 GPRS (2) 1 / 28.62 29 0.611 0.67 0.00 1880 661 GPRS (2) 1 / 28.68 29 0.616 0.66 0.02 1850.2 512 GPRS (2) 1 Fig.2 28.67 29 0.659 0.71 -0.00 1880 661 GPRS (2) 2 / 28.68 29 0.575 0.62 0.01 1880 661 GPRS (2) 3 / 28.68 29 0.202 0.22 -0.06 1880 661 GPRS (2) 4 / 28.68 29 0.308 0.33 -0.09 1880 661 GPRS (2) 5 / 28.68 29 0.261 0.28 -0.10 1850.2 512 EGPRS (4) 1 / 26.11 26.5 0.641 0.70 -0.07 Note: The distance between the EUT and the phantom bottom is 10mm. Table 14.3: SAR Values (WCDMA 1900 MHz Band - Body) Ambient Temperature: 22.4 o C Liquid Temperature: 21.9 o C Frequency Te s t Position Figure No. Conducted Power (dBm) Max. tune-up Power (dBm) Measured SAR(1g) (W/kg) Reported SAR(1g) (W/kg) Power Drift (dB) MHz Ch. 1907.6 9538 1 / 22.78 23 0.941 0.99 -0.06 1880 9400 1 / 22.86 23 0.997 1.03 -0.06 1852.4 9262 1 Fig.3 22.80 23 1.10 1.15 -0.02 1880 9400 2 / 22.86 23 0.899 0.93 -0.18 1880 9400 3 / 22.86 23 0.331 0.34 -0.19 1880 9400 4 / 22.86 23 0.610 0.63 -0.04 1880 9400 5 / 22.86 23 0.418 0.43 -0.07 Note: The distance between the EUT and the phantom bottom is 10mm. Table 14.4: SAR Values (Wi-Fi 802.11b - Body) Ambient Temperature: 22.3 o C Liquid Temperature: 21.8 o C Frequency Te s t Position Figure No. Conducted Power (dBm) Max. tune-up Power (dBm) Measured SAR(1g) (W/kg) Reported SAR(1g) (W/kg) Power Drift (dB) MHz Ch. 2462 11 1 / 15.45 16 0.198 0.22 0.13 2437 6 1 / 15.47 16 0.229 0.26 0.11 2412 1 1 Fig.4 15.31 16 0.287 0.34 -0.07 2437 6 2 / 15.47 16 0.129 0.15 0.09 2437 6 3 / 15.47 16 0.088 0.10 0.12 2437 6 5 / 15.47 16 0.025 0.03 0.10 2437 6 6 / 15.47 16 0.052 0.06 0.10 Note: The distance between the EUT and the phantom bottom is 10mm. No. I14Z45278-SEM02 Page 28 of 92 14.2 SAR results for Standard procedure There is zoom scan measurement to be added for the highest measured SAR in each exposure configuration/band. Table 14.5: SAR Values (GSM 850 MHz Band - Body) Ambient Temperature: 2…
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No. I14Z45278-SEM02 Page 47 of 92 ANNEX C SAR Measurement Setup C.1 Measurement Set-up The Dasy4 or DASY5 system for performing compliance tests is illustrated above graphically. This system consists of the following items: Picture C.1 SAR Lab Test Measurement Set-up A standard high precision 6-axis robot (Stäubli TX=RX family) with controller, teach pendant and software. An arm extension for accommodating the data acquisition electronics (DAE). An isotropic field probe optimized and calibrated for the targeted measurement. A data acquisition electronics (DAE) which performs the signal amplification, signal multiplexing, AD-conversion, offset measurements, mechanical surface detection, collision detection, etc. The unit is battery powered with standard or rechargeable batteries. The signal is optically transmitted to the EOC. The Electro-optical converter (EOC) performs the conversion from optical to electrical signals for the digital communication to the DAE. To use optical surface detection, a special version of the EOC is required. The EOC signal is transmitted to the measurement server. The function of the measurement server is to perform the time critical tasks such as signal filtering, control of the robot operation and fast movement interrupts. The Light Beam used is for probe alignment. This improves the (absolute) accuracy of the probe positioning. A computer running WinXP and the DASY4 or DASY5 software. Remote control and teach pendant as well as additional circuitry for robot safety such as warning lamps, etc. The phantom, the device holder and other accessories according to the targeted measurement. No. I14Z45278-SEM02 Page 48 of 92 C.2 Dasy4 or DASY5 E-field Probe System The SAR measurements were conducted with the dosimetric probe designed in the classical triangular configuration and optimized for dosimetric evaluation. The probe is constructed using the thick film technique; with printed resistive lines on ceramic substrates. The probe is equipped with an optical multifiber line ending at the front of the probe tip. It is connected to the EOC box on the robot arm and provides an automatic detection of the phantom surface. Half of the fibers are connected to a pulsed infrared transmitter, the other half to a synchronized receiver. As the probe approaches the surface, the reflection from the surface produces a coupling from the transmitting to the receiving fibers. This reflection increases first during the approach, reaches maximum and then decreases. If the probe is flatly touching the surface, the coupling is zero. The distance of the coupling maximum to the surface is independent of the surface reflectivity and largely independent of the surface to probe angle. The DASY4 or DASY5 software reads the reflection durning a software approach and looks for the maximum using 2 nd ord curve fitting. The approach is stopped at reaching the maximum. Probe Specifications: Model: ES3DV3, EX3DV4 Frequency 10MHz — 6.0GHz(EX3DV4) Range: 10MHz — 4GHz(ES3DV3) Calibration: In head and body simulating tissue at Frequencies from 835 up to 5800MHz Linearity: ± 0.2 dB(30 MHz to 6 GHz) for EX3DV4 Picture C.2 Near-field Probe ± 0.2 dB(30 MHz to 4 GHz) for ES3DV3 Dynamic Range: 10 mW/kg — 100W/kg Probe Length: 330 mm Probe Tip Length: 20 mm Body Diameter: 12 mm Tip Diameter: 2.5 mm (3.9 mm for ES3DV3) Tip-Center: 1 mm (2.0mm for ES3DV3) Application: SAR Dosimetry Testing Compliance tests of mobile phones Dosimetry in strong gradient fields Picture C.3 E-field Probe C.3 E-field Probe Calibration Each E-Probe/Probe Amplifier combination has unique calibration parameters. A TEM cell calibration procedure is conducted to determine the proper amplifier settings to enter in the probe parameters. The amplifier settings are determined for a given frequency by subjecting the probe to a known E-fie ld density (1 mW/cm 2 ) using an RF Signal generator, TEM cell, and RF Power Meter. The free space E-field from amplified probe outputs is determined in a test chamber. This calibration can be performed in a TEM cell if the frequency is below 1 GHz and inn a waveguide or other methodologies above 1 GHz for free space. For the free space calibration, the probe is placed No. I14Z45278-SEM02 Page 49 of 92 in the volumetric center of the cavity and at the proper orientation with the field. The probe is then rotated 360 degrees until the three channels show the maximum reading. The power density readings equates to 1 mW/ cm 2 . . E-field temperature correlation calibration is performed in a flat phantom filled with the appropriate simulated brain tissue. The E-field in the medium correlates with the temperature rise in the dielectric medium. For temperature correlation calibration a RF transparent thermistor-based temperature probe is used in conjunction with the E-field probe. T SARC t ∆ = ∆ Where: ∆t = Exposure time (30 seconds), C = Heat capacity of tissue (brain or muscle), ∆T = Temperature increase due to RF exposure. 2 E SAR σ ρ ⋅ = Where: σ = Simulated tissue conductivity, ρ = Tissue density (kg/m 3 ). C.4 Other Test Equipment C.4.1 Data Acquisition Electronics(DAE) The data acquisition electronics consist of a highly sensitive electrometer-grade preamplifier with auto-zeroing, a channel and gain-switching multiplexer, a fast 16 bit AD-converter and a command decoder with a control logic unit. Transmission to the measurement server is accomplished through an optical downlink for data and status information, as well as an optical uplink for commands and the clock. The mechanical probe mounting device includes two different sensor systems for frontal and sideways probe contacts. They are used for mechanical surface detection and probe collision detection. The input impedance of the DAE is 200 MOhm; the inputs are symmetrical and floating. Common mode rejection is above 80 dB. PictureC.4: DAE No. I14Z45278-SEM02 Page 50 of 92 C.4.2 Robot The SPEAG DASY system uses the high precision robots …
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No. I14Z45278-SRD01 Page1 of 114 FCC PART 15C TEST REPORT No. I14Z45278-SRD01 for ZTE Corporation GSM/DC HSPA+ uFi Model name: R209-Z With FCC ID: SRQR209-Z Hardware Version: ddxB Software Version: BD_R209V0.1 Issued Date: 2014-04-21 Note :The test results in this test report relate only to the devices specified in this report. This report shall not be reproduced except in full without the written approval of TMC Beijing. Test Laboratory: TMC Beijing, Telecommunication Metrology Center of Ministry of Industry and Information Technology No. 52, Huayuan Bei Road, Haidian District, Beijing, P. R. China, 100191 Tel:+86(0)10-62304633-2046, Fax:+86(0)10-62304633-2063 Email:[email protected]. www.emcite.com No. I14Z45278-SRD01 Page2 of 114 CONTENTS CONTENTS ................................................................................................................................. 2 1. TEST LABORATORY .................................................................................................... 7 1.1. TESTING LOCATION .......................................................................................................... 7 1.2. PROJECT DATA ................................................................................................................ 7 1.3. SIGNATURE...................................................................................................................... 7 2. CLIENT INFORM ATION ................................................................................................ 8 2.1. APPLICA NT INFORMATION.................................................................................................. 8 2.2. MANUFA CTUR ER INFORMATION..…
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No. 52, Huayuan Bei Road, Haidian District, · Beijing · China
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.41 GHz - 2.46 GHz | 250.00 mW |

LTE/WCDMA/GSM(GPRS) Multi-Mode Digital Mobile Phone with Bluetooth and WiFi
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
LTE/WCDMA/GSM(GPRS) Multi-Mode Digital Mobile Phone with Bluetooth and WiFi
Equipment Class
JBP - Part 15 Class B Computing Device Peripheral
Tablet PC
Equipment Class
PCB - PCS Licensed Transmitter
LTE/UMTS Digital Mobile Phone with Bluetooth and WiFi
Equipment Class
DTS - Digital Transmission System
Tablet with GSM, WCDMA, LTE, Bluetooth and WiFi
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter