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ZC4T99MOBILE PHONE

Corporativo Lanix S.A. de C.V.
MOBILE PHONE - FCC ID ZC4T99 - Corporativo Lanix S.A. de C.V.
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Application Details

Equipment Class
DTS - Digital Transmission System
Date of Grant
Dec 14, 2011
Application Purpose
Original Equipment
Date of Application
Dec 14, 2011
Equipment Note
MOBILE PHONE
Frequency Range
2412.00000000 - 2462.00000000
Company
Corporativo Lanix S.A. de C.V.
Country
Mexico

Documents & Files

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Users Manual

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.

External Photos

External Photos 1. Front View of EUT 2. Back View of EUT 3. Side View of EUT

ID Label/Location Info

FCC ID: ZC4T99 1. Label 2. Label Location

ID Label/Location Info

Date: June 20, 2011 Equipment Authorization Division Office of Engineering and Technology Federal Communications Commission 7435 Oakland Mills Road Columbia, MD 21046 Ref: FCC ID: ZC4T99 Dear Sirs: Corporativo Lanix SA de CV. requests acceptance of the labeling proposal described below for cell phone bearing FCC identifier ZC4T99. The subject cell phone are compact handheld models as shown in figure 1, authorized under 47CFR Part 22H&24E for GSM mobile services. Figure 1. Because the majority of the cell phone housing is composed of display, speaker, operating controls and a removable battery pack, there is extremely limited space available to attach the required label carrying the FCC identifier. Attaching the label to the battery pack is not acceptable because the battery pack is a removable item. For this reason, Corporativo Lanix SA de CV. proposes placing the label carrying the FCC identifier inside the battery compartment as shown in figure 2. Figure 2. The consumer packaging for these models includes the battery pack as a separate item, NOT installed on the radio. As such, the FCC identifier will be readily visible to the user before the battery pack is installed and whenever the battery pack is removed or replaced. In this location, the label will also be protected from physical abuse and remain readable for the anticipated life of the device. The consumer packaging for these models is a "gift box" which does not allow the transceiver to be seen at time of purchase. In order to meet the requirements of 47CFR Part 2.925 (d), Corporativo Lanix SA de CV. will add the FCC identifier " ZC4T99" to the outside of the consumer "gift box" packaging. Thank you for your attention to this matter. Yours Sincerely,

Internal Photos

Internal Photos

RF Exposure Info

SZ11030128S01 Page 2 of 151 DIRECTORY 1. TESTING LABORATORY.......................................................................................................4 1.1. Identification of the Responsible Testing Laboratory.........................................................4 1.2. Identification of the Responsible Testing Location..............................................................4 1.3. Accreditation Certificate........................................................................................................4 1.4. List of Test Equipments..........................................................................................................4 2. TECHNICAL INFORMATION ...............................................................................................5 2.1. Identification of Applicant.....................................................................................................5 2.2. Identification of Manufacturer..............................................................................................5 2.3. Equipment Under Test (EUT)................................................................................................5 2.3.1. Photographs of the EUT..................................................................................................5 2.3.2. Identification of all used EUTs........................................................................................5 2.4. Applied Reference Documents...............................................................................................6 2.5. Device Category and SAR Limits..........................................................................................6 2.6. Test Environment/Conditions................................................................................................7 3. SPECIFIC ABSORPTION RATE (SAR) ................................................................................8 3.1. Introduction.............................................................................................................................8 3.2. SAR Definition.........................................................................................................................8 4. SAR MEASUREMENT SETUP ...............................................................................................9 4.1. The Measurement System......................................................................................................9 4.2. Probe........................................................................................................................................9 4.3. Phantom................................................................................................................................. 11 4.4. Device Holder........................................................................................................................ 11 5. TISSUE SIMULATING LIQUIDS.........................................................................................12 6. UNCERTAINTY ASSESSMENT ...........................................................................................14 6.1. UNCERTAINTY EVALUATION FOR HANDSET SAR TEST......................................14 6.2. UNCERTAINTY FOR SYSTEM PERFORMANCE CHECK........................................15 7. SAR MEASUREMENT EVALUATION ...............................................................................17 7.1. System Setup..........................................................................................................................17 7.2. Validation Results..................................................................................................................17 8. OPERATIONAL CONDITIONS DURING TEST ................................................................18 8.1. Informations on the testing..................................................................................................18 SZ11030128S01 Page 3 of 151 8.2. Body-worn Configurations...................................................................................................18 8.3. Measurement procedure.......................................................................................................19 8.4. Description of interpolation/extrapolation scheme............................................................19 9. MEASUREMENT OF CONDUCTED OUTPUT POWER .................................................21 10. TEST RESULTS LIST .............................................................................................................23 11. MULTIPLE TRANSMITTERS EVALUATION ...................................................................25 ANNEX A ACCREDITATION CERTIFICATE ..........................................................................26 ANNEX B EUT SETUP PHOTOS ................................................................................................27 ANNEX C GRAPH TEST RESULTS ...........................................................................................31 Change History Issue Date Reason for change 1.0 Jun 14, 2011 First edition SZ11030128S01 Page 4 of 151 1. Testing Laboratory 1.1. Identification of the Responsible Testing Laboratory Company Name: Shenzhen Morlab Communications Technology Co., Ltd. Department: Morlab Laboratory Address: 3/F, Electronic Testing Building, Shahe Road, Nanshan District, Shenzhen, 518055 P. R. China Responsible Test Lab Manager: Mr. Shu Luan Telephone: +86 755 86130268 Facsimile: +86 755 86130218 1.2. Identification of the Responsible Testing Location Name: Shenzhen Morlab Communications Technology Co., Ltd. Morlab Laboratory Address: 3/F, Electronic Testing Building, Shahe Road, Nanshan District, Shenzhen, 518055 P. R. China 1.3. Accreditation Certificate Accredited Testing Laboratory: No. CNAS L3572 (see Annex A) 1.4. List of Test Equipments No. Instrument Type Cal. Date Cal. Due 1 PC Dell (Pentium IV 2.4GHz, SN:X10-23533) (n.a) (n.a) 2 N…

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Test Report

Ref: CR-280-1-08-SATB-A COMOSAR E-Field probe Calibration Report Page: 1/26 Issue: A Date: 2010/10/06 1 COMOSAR E-FIELD PROBE CALIBRATION REPORT Prepared By: LUC Jérôme, SATIMO Project Description: SAR TEST BENCH Prepared For (End User): Shenzhen Morlab Communication Technology This document is issued by SATIMO, in confidence and is not to be reproduced in whole or in part without the prior written permission. The information contained herein is to be used only for the purpose for which it is submitted and is not to be released in whole or in part without the prior written permission of SATIMO. Ref: CR-280-1-08-SATB-A COMOSAR E-Field probe Calibration Report Page: 2/26 Issue: A Date: 2010/10/06 2 COMOSAR SEPT ISOTROPIC E-FIELD PROBE CALIBRATION REPORT DATE: 12/02/2009 REFERENCE: SN 37/08 EP80 OBJECT: COMOSAR SEPT ISOTROPIC E-FIELD PROBE MANUFACTURER: SATIMO SERIAL NUMBER: SN 37/08 EP80 CUSTOMER: Shenzhen Morlab Communication Technology CONTRACT: PF2130108b_SAR_Morlab DATE OF CALIBRATION: 24/09/20 10 WARRANTY: This Calibration certificate may not be reproduced other than in full. Calibration certificates without signature and seal are not valid. This documentation contains property information which is protected by copyright. All right are reserved. No part of this document may be photocopied, reproduced without the prior written agreement of SATIMO. SATIMO shall not be liable for errors contained herein or for incidental or consequential in connection with the furnishing, performance or use of this material. Warranty doesn’t apply to Normal wear, Normal tear, Improper use, Improper maintain, Improper installation. Date SAR TEAM MANAGER Ref: CR-280-1-08-SATB-A COMOSAR E-Field probe Calibration Report Page: 3/26 Issue: A Date: 2010/10/06 3 PRODUCT DESCRIPTION Frequency Range 100 MHz - 30 GHz Probe length 330 mm Length of one dipole 4.5 mm Maximum external diameter 8 mm Probe extremity diameter 6.5 mm Distance between dipoles/probe extremity < 2.7 mm Resistance of the three dipole (at the connector) Dipole 1: R1=1.4382 MΩ Dipole 2: R2=1.4894 MΩ Dipole 3: R3=1.4683 MΩ Connector (HIROSE series SR30) 6 wire male (Hirose SR30series) The probe could be checked by measuring the resistance of the three dipoles. CALIBRATION TEST EQUIPMENT TYPE IDENTIFICATION Calibration bench CALISAR Multimeter Keithley 2000 Ref: CR-280-1-08-SATB-A COMOSAR E-Field probe Calibration Report Page: 4/26 Issue: A Date: 2010/10/06 4 MEASUREMENT PROCEDURE Probe calibration is realized, in compliance with CENELEC EN 50361 and IEEE 1528 std, with CALISAR, Antennessa proprietary calibration system. The calibration is performed with the EN 50361 annexe technique using reference guide at the five frequencies. Where : P fw = Forward Power P bw = Backward Power a and b = Waveguide dimensions  = Skin depth Keithley configuration: Rate = Medium; Filter =ON; RDGS=10; FILTER TYPE =MOVING AVERAGE; RANGE AUTO After each calibration, a SAR measurement is performed on a validation dipole and compared with a NPL calibrated probe, to verify it. Ref: CR-280-1-08-SATB-A COMOSAR E-Field probe Calibration Report Page: 5/26 Issue: A Date: 2010/10/06 5 PROBE UNCERTAINTIES Ref: CR-280-1-08-SATB-A COMOSAR E-Field probe Calibration Report Page: 6/26 Issue: A Date: 2010/10/06 6 1. Calibration at 450.00 MHz A. Calibration parameters. Label GSM450 Epsilon 43.33 Sigma 0.84 S/m Temperature 21°C Antenna gain 2.03 dB Antenna S11 -10.50 dB Low limit detection (CW) 0.72 V/m (0.47 mW/kg) Calibration curves ei=f(V) (i=1,2,3) allow to obtain E-field value using the formula: 2 3 2 2 2 1 **EEEE= The following tables represent the calibration curves linearization by curve segment in CW signal. Ref: CR-280-1-08-SATB-A COMOSAR E-Field probe Calibration Report Page: 7/26 Issue: A Date: 2010/10/06 7 Calibration coefficients for the three dipoles in CW: v1 e1 v2 e2 v3 e3 0.584004 419.557857 -0.696059 435.622023 0.541191 412.830715 0.467833 339.207465 -0.556278 351.381991 0.469757 336.297240 0.376994 276.348283 -0.452232 288.647980 0.378826 274.224190 0.302778 224.954643 -0.359005 232.397390 0.305842 224.365698 0.241038 182.154071 -0.286978 188.889931 0.246562 183.825274 0.192549 148.484090 -0.230386 154.650994 0.195712 148.993075 0.154033 121.674762 -0.185412 127.378480 0.157543 122.783107 0.123397 100.276479 -0.147311 104.193802 0.125866 100.956090 0.099878 83.770361 -0.118637 86.660489 0.101471 84.063863 0.081165 70.553219 -0.095250 72.263937 0.082289 70.694342 0.065166 59.152028 -0.076788 60.795323 0.066427 59.538957 0.051916 49.592416 -0.061280 51.041514 0.053353 50.232492 0.041968 42.297602 -0.048746 43.022565 0.042906 42.675214 0.033724 36.126757 -0.039149 36.748110 0.034686 36.605243 0.021855 26.962568 -0.024798 27.024723 0.022272 27.149463 0.018405 23.975145 -0.020856 24.085809 0.018755 24.141334 0.015467 21.515985 -0.017534 21.515985 0.015767 21.615299 0.013018 19.309065 -0.014750 19.398191 0.013276 19.487731 0.010938 17.408496 -0.012392 17.529166 0.011157 17.569575 0.009022 15.586953 -0.010228 15.658899 0.009215 15.676938 0.007353 13.956010 -0.008328 13.988181 0.007484 14.020428 0.005989 12.466979 -0.006801 12.495719 0.006111 12.567858 0.004890 11.214019 -0.005573 11.265779 0.005003 11.330818 0.004019 10.133541 -0.004570 10.121882 0.004099 10.168601 0.003279 9.094132 -0.003739 9.157170 0.003352 9.125596 0.002660 8.095827 -0.003041 8.293946 0.002769 8.265350 0.002126 7.324219 -0.002453 7.366500 0.002188 7.358024 0.001685 6.565400 -0.001947 6.580536 0.001724 6.542765 0.001300 5.784440 -0.001511 5.718225 0.001334 5.757862 0.001123 5.245191 -0.001307 5.269400 0.001174 5.275471 0.000891 4.701768 -0.001057 4.723470 0.000924 4.728912 0.000704 4.209798 -0.000850 4.226839 0.000736 4.243862 0.000574 3.790376 -0.000689 3.791428 0.000603 3.830551 0.000457 3.396200 -0.000570 3.434303 0.000483 3.421852 0.000365 3.050686 -0.000463 3.078014 0.000389 3.079630 0.000292 2.745766 -0.000369 2.726866 0.000311 2.759206 0.000236 2.486639 -0.000312 2.489933 0.000246 2.460514 0.000…

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Test Report

Ref: CR-280-3-08-SATB-B COMOSAR Dipole 835 MHz Calibration Report Page: 1/6 Issue: B Date: 2010/10/05 1 DIPOLE 835 MHZ CALIBRATION REPORT Prepared By: LUC Jérôme, SATIMO Project Description: SAR TEST BENCH Prepared For (End User): Shenzhen Morlab Communication Technology This document is issued by SATIMO, in confidence and is not to be reproduced in whole or in part without the prior written permission. The information contained herein is to be used only for the purpose for which it is submitted and is not to be released in whole or in part without the prior written permission of SATIMO. Ref: CR-280-3-08-SATB-B COMOSAR Dipole 835 MHz Calibration Report Page: 2/6 Issue: B Date: 2010/10/05 2 DIPOLE 835 MHz CALIBRATION REPORT DATE: 19/02/2009 REFERENCE: SN 36/08 DIPC99 OBJECT: COMOSAR IEEE REFERENCE DIPOLE MANUFACTURER: SATIMO SERIAL NUMBER: SN 36/08 DIPC99 CUSTOMER: Shenzhen Morlab Communication Technology CONTRACT: PF2130108b_SAR_Morlab DATE OF CALIBRATION: 2 3/09/2010 WARRANTY: This Calibration certificate may not be reproduced other than in full. Calibration certificates without signature and seal are not valid. This documentation contains property information which is protected by copyright. All right are reserved. No part of this document may be photocopied, reproduced without the prior written agreement of SATIMO. SATIMO shall not be liable for errors contained herein or for incidental or consequential in connection with the furnishing, performance or use of this material. Warranty doesn’t apply to Normal wear, Normal tear, Improper use, Improper maintain, Improper installation. Date SAR TEAM MANAGER Ref: CR-280-3-08-SATB-B COMOSAR Dipole 835 MHz Calibration Report Page: 3/6 Issue: B Date: 2010/10/05 3 PRODUCT DESCRIPTION Dimension: L=161 mm/ h=89.8mm / d=3.6 mm CALIBRATION TEST EQUIPMENT TYPE IDENTIFICATION DATE OF CALIBRATION Vector Network Analyzer HP8753D (SN: 5410A08882) 10-05-2010 MEASUREMENT PROCEDURE We placed the dipole under the flat part of SAM phantom fill with 835 MHz head liquid. Ref: CR-280-3-08-SATB-B COMOSAR Dipole 835 MHz Calibration Report Page: 4/6 Issue: B Date: 2010/10/05 4 Calibration was performed according to IEEE Std P1528-2003 and OET bulletin 65 Supplement C (Ed. 01-01) VSWR at 835 MHz: -24.77 dB. -24,77 -40 -35 -30 -25 -20 -15 -10 -5 0 0,7350,8350,935 Frequency (GHz) S11 (dB) Ref: CR-280-3-08-SATB-B COMOSAR Dipole 835 MHz Calibration Report Page: 5/6 Issue: B Date: 2010/10/05 5 SAR MEASUREMENT EQUIPEMENT Voltmeter Keithley (2000, SN:1000572) Date of calibration: 01-07-2010 Signal generator Rohde&Schwarz (SML_03, SN:101868) Date of calibration: 15-11-2009 Power amplifier Nuclétudes (ALB216, SN:10800) Date of calibration: 24-10-2009 Power meter Rohde&Schwarz (NRVD, SN:101066) Date of calibration: 04-07-20 10 Probe SATIMO Bretagne (SN:EP37) CF (30.41,29.18,32.33) Date of calibration: 19-06-2010 SAR MEASUREMENT CONDITION Software OpenSAR V3 Phantom SATIMO Bretagne (SN: SN_20_07_SAM42) Liquid SATIMO Bretagne (Last Calibration: 18 09 08) Head Liquid Values: eps’ : 41,20 sigma : 0,872 Distance between the center of the dipole and the liquid (set with a spacer) 15 mm Area scan resolution dx=8mm/dy=8mm Zoom scan resolution dx=8mm/dy=8m/dz=5mm Frequency 835 MHz Input power 30 dBm Expanded uncertainty (K=1) 8.09% SAR MEASUREMENT RESULT 10g 1g SAR measured Liquid : HL Input power : 1W 6,364 W/Kg + 2,64 % 9,805 W/Kg + 3,21 % Ref: CR-280-3-08-SATB-B COMOSAR Dipole 835 MHz Calibration Report Page: 6/6 Issue: B Date: 2010/10/05 6 SAR MEASUREMENT PLOTS

Test Report

Ref: CR-280-5-08-SATB-B COMOSAR Dipole 1800 MHz Calibration Report Page: 1/6 Issue: B Date: 2010/10/05 1 DIPOLE 1800 MHZ CALIBRATION REPORT Prepared By: LUC Jérôme, SATIMO Project Description: SAR TEST BENCH Prepared For (End User): Shenzhen Morlab Communication Technology This document is issued by SATIMO, in confidence and is not to be reproduced in whole or in part without the prior written permission. The information contained herein is to be used only for the purpose for which it is submitted and is not to be released in whole or in part without the prior written permission of SATIMO. Ref: CR-280-5-08-SATB-B COMOSAR Dipole 1800 MHz Calibration Report Page: 2/6 Issue: B Date: 2010/10/05 2 DIPOLE 1800 MHz CALIBRATION REPORT DATE: 19/02/2009 REFERENCE: SN 36/08 DIPF101 OBJECT: COMOSAR IEEE REFERENCE DIPOLE MANUFACTURER: SATIMO SERIAL NUMBER: SN 36/08 DIPF101 CUSTOMER: Shenzhen Morlab Communication Technology CONTRACT: PF2130108b_SAR_Morlab DATE OF CALIBRATION: 2 3/09/2010 WARRANTY: This Calibration certificate may not be reproduced other than in full. Calibration certificates without signature and seal are not valid. This documentation contains property information which is protected by copyright. All right are reserved. No part of this document may be photocopied, reproduced without the prior written agreement of SATIMO. SATIMO shall not be liable for errors contained herein or for incidental or consequential in connection with the furnishing, performance or use of this material. Warranty doesn’t apply to Normal wear, Normal tear, Improper use, Improper maintain, Improper installation. Date SAR TEAM MANAGER Ref: CR-280-5-08-SATB-B COMOSAR Dipole 1800 MHz Calibration Report Page: 3/6 Issue: B Date: 2010/10/05 3 PRODUCT DESCRIPTION Dimension: L=72 mm/ h=41.7 mm / d=3.6 mm CALIBRATION TEST EQUIPMENT TYPE IDENTIFICATION DATE OF CALIBRATION Vector Network Analyzer HP8753D (SN: 5410A08882) 10-05-2010 MEASUREMENT PROCEDURE We placed the dipole under the flat part of SAM phantom fill with 1800 MHz head liquid. Ref: CR-280-5-08-SATB-B COMOSAR Dipole 1800 MHz Calibration Report Page: 4/6 Issue: B Date: 2010/10/05 4 Calibration was performed according to IEEE Std P1528-2003 and OET bulletin 65 Supplement C (Ed. 01-01) VSWR at 1800 MHz: -25.09 dB -25,09 -35 -30 -25 -20 -15 -10 -5 0 1,71,81,9 Frequency (GHz) S11 (dB) Ref: CR-280-5-08-SATB-B COMOSAR Dipole 1800 MHz Calibration Report Page: 5/6 Issue: B Date: 2010/10/05 5 SAR MEASUREMENT EQUIPEMENT Voltmeter Keithley (2000, SN:1000572) Date of calibration: 01-07-2010 Signal generator Rohde&Schwarz (SML_03, SN:101868) Date of calibration: 15-11-2009 Power amplifier Nuclétudes (ALB216, SN:10800) Date of calibration: 24-10-2009 Power meter Rohde&Schwarz (NRVD, SN:101066) Date of calibration: 04-07-2010 Probe SATIMO Bretagne (SN:EP37) CF (35.35,34.93,37.42) Date of calibration: 19-06-2010 SAR MEASUREMENT CONDITION Software OpenSAR V3 Phantom SATIMO Bretagne (SN: SN_20_07_SAM42) Liquid SATIMO Bretagne (Last Calibration: 19 09 08) Head Liquid Values: eps’ : 39,80 sigma : 1,45 Distance between the center of the dipole and the liquid (set with a spacer) 10 mm Area scan resolution dx=8mm/dy=8mm Zoom scan resolution dx=8mm/dy=8m/dz=5mm Frequency 1800 MHz Input power 30 dBm Expanded uncertainty (K=1) 8.09% SAR MEASUREMENT RESULT 10g 1g SAR measured Liquid : HL Input power : 1W 20,05 W/Kg + 1,24 % 39,32 W/Kg + 3,20 % Ref: CR-280-5-08-SATB-B COMOSAR Dipole 1800 MHz Calibration Report Page: 6/6 Issue: B Date: 2010/10/05 6 SAR MEASUREMENT PLOTS

Test Report

Report No.: SZ11030128E04 Page 2 of 44 TABLE OF CONTENTS 1. GENERAL INFORMATION .................................................................................................... 4 1.1 EUT Description ......................................................................................................................... 4 1.2 Test Standards and Results ........................................................................................................ 5 1.3 Facilities and Accreditations ...................................................................................................... 6 1.3.1 Facilities .................................................................................................................................... 6 1.3.2 Test Environment Conditions .................................................................................................... 6 2. 47 CFR PART 15C REQUIREMENTS .................................................................................... 7 2.1 Peak Output Power .................................................................................................................... 7 2.1.1 Requirement .............................................................................................................................. 7 2.1.2 Test Description ........................................................................................................................ 7 2.1.3 Test Result ................................................................................................................................. 8 2.2 Bandwidth ................................................................................................................................... 9 2.2.1 Definition .................................................................................................................................. 9 2.2.2 Test Description ........................................................................................................................ 9 2.3 Conducted Spurious Emissions ............................................................................................... 14 2.3.1 Requirement ............................................................................................................................ 14 2.3.2 Test Description ...................................................................................................................... 14 2.3.3 Test Result ............................................................................................................................... 14 2.4 Power spectral density (PSD) .................................................................................................. 18 2.4.1 Requirement ............................................................................................................................ 18 2.4.2 Test Description ...................................................................................................................... 18 2.4.3 Test Result ............................................................................................................................... 18 2.5 Band Edge ................................................................................................................................. 23 2.5.1 Requirement ............................................................................................................................ 23 2.5.2 Test Description ...................................................................................................................... 23 2.5.3 Test Result ............................................................................................................................... 24 2.6 Conducted Emission ................................................................................................................. 29 2.6.1 Requirement ............................................................................................................................ 29 2.6.2 Test Description ...................................................................................................................... 29 2.6.3 Test Result ............................................................................................................................... 30 Report No.: SZ11030128E04 Page 3 of 44 2.7 Radiated Emission .................................................................................................................... 32 2.7.1 Requirement ............................................................................................................................ 32 2.7.2 Test Description ...................................................................................................................... 32 2.7.3 Test Result ............................................................................................................................... 34 Report No.: SZ11030128E04 Page 4 of 44 1. GENERAL INFORMATION 1.1 EUT Description EUT Type ............................. : Mobile Phone Serial No. .............................. : (n.a, marked #1 by test site) Hardware Version ................. : v1.0 Software Version .................. : Applicant .............................. : Manufacturer ........................ : v2.0 Corporativo Lanix SA de CV Carretera Internacional a Nogales KM 8.5 Hermosillo, Sonora, México 83260 SHENZHEN TINNO MOBILE TECHNOLOGY CORP 4/F, H-3 Building, OCT Eastern Industrial Park. No.1 XiangShan East Road, Nan shan Distict, ShenZhen, P. R. China Frequency Range .................. : 802.11b/g -20MHz: 2.412GHz - 2.462GHz Modulation Type................... : DSSS, OFDM Power Supply ....................... : Battery Model Name: T99-BAT Brand name: LANIX Capacitance: 1000mAh Rated voltage: 3.7V Ancillary Equipments ........... : AC Adapter (Charger for Battery) Model Name: LANIX Brand Name: T99-C Serial No.: (n.a. marked #1 by test site)…

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Test Setup Photos

Test Setup Photos 1. CE 2. RE 3. CSE 4. RSE

Contact Information

Applicant

Max Gaxiola(Product Manager)
[email protected]6621090800Fax: 6621090848

Test Firm

Shanghai Morlab Communications Technology Co.,Ltdzhang jun
[email protected]8602151089899Fax: 8602151089899-8001

Technical Specifications

#Rule PartsFrequency RangePower Output
115C2.41 GHz - 2.46 GHz39.00 mW
Confidentiality
Long Term
Grant Notes
Power listed is conducted. 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 1.5cm from body. End-users must be informed of the body-worn operating requirements for satisfying RF exposure compliance. The highest reported SAR values for body-worn conditions are 0.24 W/kg.

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