
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
UTPCD_USERMANUAL 1 Safety Information and Notices Preface • Thank you for purchasing this Cell phone. • To properly operate your new cell phone, carefully read this user’s manual first. • To prevent any possible accident or malfunction which may be caused by improper operations, please detailed review the following “Safety Information and Notices”. • Safety warnings are needed to avoid bodily injury or property damage. • Screen displays and illustrations in this user’s manual are designed to help you to operate all the steps directly and precisely. Using the Cell Phone and Charger Danger: • Only the specified battery charger is permitted. Using other brands may cause battery leakage, overheating, explosion or even fire. Caution: • Avoid exposure to moisture, heat or dust to prevent breakdown. • The phone, battery, charger and AC adapter are not waterproof. Keep them away from rain and other liquids. Warning: • Don’t strongly bump, shake or tamper with the phone or charger to avoid battery leakage, overheating, explosion or even fire. • Don’t place the battery, phone or charger near the microwave or high-voltage devices to prevent battery leakage, overheating, explosion or even fire; also keep the phone and AC adapter away from overheating, smoking or short circuiting. • Don’t use the phone where there is volatile oil to avoid possibilities of fire, breakdown or damage. • To avoid any damage or breakdown don’t disassemble the phone, battery, charger or internal components by yourself. UTPCD_USERMANUAL 2 Using the Cell Phone Warning: • Don’t use the phone while you are driving. To avoid any traffic accident and away from danger, park your car in a safe place before using it. • Usage of cell phones in aircraft or in hospitals is prohibited. Switch the phone off to prevent interference with electronic medical devices. Follow any rules or regulations in such places. • Don’t use the phone at a gas station, near fuel or chemicals. • Don’t use the phone near electronic medical devices such as hearing aids, pacemakers and auto-control devices such as fire detectors and automatic doors. • Before using cell phones near electronic medical devices such as pacemakers, please contact first with your manufacturer or dealer for advice on preventing any interference. Caution: • Under certain circumstances, using cell phones in an automobile may cause electronic device’s interference. To prevent any danger it is recommended not to use phones. • Avoid using your phone in crowded places. • Don’t put a magnetic card and your phone together. Data on the floppy disk or card might be erased. • Keep your phone far from pins. Pins can be absorbed by phone’s receiver magnet, which may cause harm. Using the Battery Danger: • Don’t expose the battery near fire. Doing so may cause battery explosion or even fire. • If you have difficulties installing the battery, please don’t force the installation to prevent battery leakage, overheating, explosion or even fire. • Don’t connect the polarities of the battery with metals such as pins or wire to avoid short circuit. Don’t place or carry the phone with metal objects to avoid battery leakage, overheating, explosion or even fire. • Don’t weld the polarities of the battery directly to prevent battery leakage, overheating, explosion or even fire. • Battery liquid is severely harmful for one’s eyes. Don’t rub your eyes. Rather wash your eyes with water first and go directly to a doctor for help. • Don’t use or locate your phone near areas of high temperature to prevent battery leakage, overheating, explosion or even fire. UTPCD_USERMANUAL 3 Warning: • Take the battery out and do not use the battery any more when abnormal charging or storing situation occurs, such as overheating, changes of color, shape, etc. • If the battery leaks liquid on your skin or clothes use water to wash affected parts of your body immediately. • If the battery leaks liquid or produces a weird odor, dispose of it away from the fire to avoid possible explosion or fire. Caution: • Don’t expose the battery to high temperature, because the battery may leak, overheat, degrade or shorten its usage life. Using the Charger Danger: • Usage of improper voltage will cause fire and breakdown. • If the charger short circuits or breaks down, smoke or even fire may appear. • If the power cable is already damaged (worn or broken), immediately stop using the charger to prevent fire. • Clean dust away from the power socket to avoid any fire possibilities. • Don’t place containers filled with liquid like water near the charger. Liquid spilled into the charger will cause overheating or other breakdowns. • If liquid like water is spilled into the charger, immediately pull the power cable out of the outlet to prevent overheating, fire or other breakdowns. • Don’t use the charger in places with high humidity, like a bathroom, to avoid causing fire or breakdown. • Don’t touch the charger, power cable or socket with wet hands to prevent electric shock. Caution: • Keep the environment temperatures within the range of 0 ºC ~40ºC while charging. Temperature below 0 ºC or higher than 40ºC will cause charging inefficient or terminated or even cause the battery explosion • Pull the plug from the socket before maintaining and cleaning to avoid electric shock. • Don’t place heavy objects on the power cord to prevent electric shock or fire. • Hold the plug while pulling on the power cord; this can avoid any potential damage or even fire. UTPCD_USERMANUAL 4 Requirements for Cell Phone • Avoid using your mobile phone in extremely high or low temperature Places. It is recommended to use the phone in a temperature range from 5 ºC~35ºC and humidity of 35%~85%. • It is recommended that you don’t use your mobile phone near a telephone, TV set, radio or other radio frequency sensitive devices. Requirements for the Battery • Battery should be located in a cool, well-ventilated place with sunshine. If you won’t use the cell phone for an extended …
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Cellon (Shenzhen) Co.,Ltd. Date: 10 March, 2008 To: Federal Communications Commission, Authorization & Evaluation Division, 7435 Oakland Mills Road, Columbia, MD 21046 To Whom It May Concern: The Cellon Communications Technology (Shenzhen) Co.,Ltd. , the undersigned, hereby authorizes Mr.Wu Xuewen from Shenzhen Morlab Communications Technology Co., Ltd., to act on the behalf of the Cellon Communications Technology (Shenzhen) Co.,Ltd. solely in matters relating to the application for an FCC equipment authorization for FCC ID # T38UT1082 including the signing of documents in connection with this Application. Necessary acts carried out by Cellon Communications Technology (Shenzhen) Co.,Ltd. on our behalf of the Cellon Communications Technology (Shenzhen) Co.,Ltd. in connection with the Application shall have the same effect as acts of the Cellon Communications Technology (Shenzhen) Co.,Ltd.. The Cellon Communications Technology (Shenzhen) Co.,Ltd. also hereby certify that no party to this application is subject to a denial of benefits, including FCC benefits, pursuant to Section 5301 of the Anti-Drug Abuse Act of 1988, 21 U.S.C. 853(a). Thank you for your attention to this matter. Yours Sincerely, Xinglan Yu Type Approval Engineer Communications Technology (Shenzhen) Co.,Ltd.
Cellon (Shenzhen) Co.,Ltd. Date: 10 March, 2008 To: Federal Communications Commission, Authorization & Evaluation Division, 7435 Oakland Mills Road, Columbia, MD 21046 Re: Cellon Communications Technology (Shenzhen) Co.,Ltd. FCC ID: T38UT1082 FCC Part 22H&24E Certification Confidentiality Request Gentlemen: This letter is to comply with 47 CFR 0.457 and 0.459 pertaining to confidentiality material. Cellon Communications Technology (Shenzhen) Co.,Ltd. requests that the following documents regarding this submission for FCC ID: T38UT1082 be kept confidential: Exhibit Type File Name Block Diagram Block Diagram.pdf Schematics Circuit Diagram.pdf Operational Description Operational Description.pdf Part list BOM.pdf Tune-Up-Procedure Tune up procedure.pdf Those documents contain detailed system and equipment description and related information about the product which Cellon Communications Technology (Shenzhen) Co.,Ltd. considers to be confidential proprietary, a custom design and, otherwise, not releasable to the general public. Since this design is a basis form which future technological products will evolve, Cellon Communications Technology (Shenzhen) Co.,Ltd. considers this information would be of benefit to its competitors, and that the disclosure of the information in these documents would give competitors an unfair advantage in the market. Yours Sincerely, Xinglan Yu Type Approval Engineer Communications Technology (Shenzhen) Co.,Ltd.
External Photos 1. Front View of EUT 2. Back View of EUT 3. Side View of EUT
Label Label Location
Cellon (Shenzhen) Co.,Ltd. Date: 10 March, 2008 Equipment Authorization Division Office of Engineering and Technology Federal Communications Commission 7435 Oakland Mills Road Columbia, MD 21046 Ref: FCC ID: T38UT1082 Dear Sirs: Cellon Communications Technology (Shenzhen) Co.,Ltd. requests acceptance of the labeling proposal described below for cell phone bearing FCC identifier T38UT1082. The subject cell phone are compact handheld models as shown in figure 1, authorized under 47CFR Part 22&24 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, Cellon Communications Technology (Shenzhen) Co.,Ltd. proposes placing the label carrying the FCC identifier inside the battery compartment as shown in figure 2. Cellon (Shenzhen) Co.,Ltd. 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), Cellon Communications Technology (Shenzhen) Co.,Ltd. will add the FCC identifier "T38UT1082" to the outside of the consumer "gift box" packaging. Thank you for your attention to this matter. Yours Sincerely, Xinglan Yu Type Approval Engineer Communications Technology (Shenzhen) Co.,Ltd.
Internal Photos
No.SAR08-019 Page 3 of 71 Contents 1. GENERAL CONDITIONS 2. ADMINISTRATIVE DATA 2.1. Identification of the Responsible Testing Laboratory 2.2. Identification of the Responsible Testing Location(s) 2.3. Organization Item 2.4. Identification of Applicant 2.5. Identification of Manufacture 3. EQUIPMENT UNDER TEST (EUT) 3.1. Identification of the Equipment under Test 3.2. Identification of all used Test Sample of the Equipment under Test 4. OPERATIONAL CONDITIONS DURING TEST 4.1. Schematic Test Configuration 4.2. SAR Measurement System 5. CHARACTERISTICS OF THE TEST 5.1. Applicable Limit Regulations 5.2. Applicable Measurement Standards 6. LABORATORY ENVIRONMENT 7. TEST RESULTS 7.1. Dielectric Performance 7.2. Summary of Measurement Results 7.3. Conclusion 8. MEASUREMENT UNCERTAINTY 9. MAIN TEST INSTRUMENTS This Test Report consists of the following Annexes: Annex A: Accreditation Certificate Annex B: Test Layout Annex C: Sample Photographs Annex D: Graph Test Results Annex E: System Performance Check Data No.SAR08-019 Page 4 of 71 1ˊGENERAL CONDITIONS 1.1 This report only refers to the item that has undergone the test. 1.2 This report standalone dose not constitute or imply by its own an approval of the product by the certification Bodies or competent Authorities. 1.3 This document is only valid if complete; no partial reproduction can be made without written approval of Shenzhen Electronic Product Quality Testing Center. 1.4 This report cannot be used partially or in full for publicity and/or promotional purposes without previous written approval of Shenzhen Electronic Product Quality Testing Center and the Accreditation Bodies, if it applies. No.SAR08-019 Page 5 of 71 2. Administrative Date 2.1. Identification of the Responsible Testing Laboratory Company Name: ShenZhen Electronic Product Quality Testing Center Department: Testing Department Address: Electronic Testing Building, ShaHe Road, NanShan District, ShenZhen, P. R. China Telephone: +86-755-26628676 Fax: +86-755-26627238 Responsible Test Lab Managers: Mr. Wu Li’an 2.2. Identification of the Responsible Testing Location(s) Company Name: ShenZhen Electronic Product Quality Testing Center Address: Electronic Testing Building, ShaHe Road, NanShan District, ShenZhen, P. R. China 2.3. Organization Item S.E.T Report No.: SAR08-019 S.E.T Project Leader: Mr. Li Sixiong S.E.T Responsible for accreditation scope: Mr. Wu Li’an Start of Testing: 2007-10-22 End of Testing: 2008-3-10 2.4. Identification of Applicant Company Name: CELLON COMMUNICATIONS TECHNOLOGY(SHENZHEN)CO., LTD. Address: 13/F, Skyworth Building C Gaoxin S. Ave. 1st, High-Tech industrial Park NanShan, ShenZhen Contact person: moore.zhong Telephone: 0755-86365750 Fax: 0755-86365686 2.5. Identification of Manufacture Company Name: NEO Aplus Tec Address: 13/F, Skyworth Building C Gaoxin S. Ave. 1st, High-Tech industrial Park NanShan, ShenZhen Contact person: moore.zhong Telephone: 0755-86365750 Fax: 0755-86365686 Notes: This data is based on the information by the applicant. No.SAR08-019 Page 6 of 71 3. Equipment Under Test (EUT) 3.1. Identification of the Equipment under Test Brand Name: UTSTARCOM Ty pe Na me: GFM1218/GSM1218/GFM1219/GSM1219/GLP128 Marking Name: GFM1218/GSM1218/GFM1219/GSM1219/GLP128 Test frequency GSM 850MHz and PCS 1900MHz Development Stage Identical Prototype Accessories ChargerˈBattery Battery type BTR1218 Battery specification 680mAh 3.7V Antenna type Build inside Operation mode Call established General description: Modulation mode GMSK NOTE: 1. The EUT is a model of GSM Mobile Station (“MS” for short in this report) operating in GSM 850MHz and PCS 1900MHz band. 2. Please refer to Appendix C for the photographs of the EUT. For a more detailed features description about the EUT, please refer to User’s Manual. 3. Declaration: No.SAR08-019 Page 7 of 71 3.2. Identification of all used Test Sample of the Equipment under Test EUT Code IMEI Hardware Version Software Version / 35666001009178401P7 0300080105010000 (NO FM) 0300080104010010 ( WITH FM) No.SAR08-019 Page 8 of 71 4 OPERATIONAL CONDITIONS DURING TEST 4.1 Schematic Test Configuration 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 128, 190 and 251 respectively in the case of GSM 850 MHz ; 25, 600 and 1175 respectively in the case of PCS 1900 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. 4.2 SAR Measurement System The SAR measurement system being used is the IndexSAR SARA2 system, which consists of a Figure1. SAR Lab Test Measurement Set-up No.SAR08-019 Page 9 of 71 Mitsubishi RV-E2 6-axis robot arm and controller, IndexSAR probe and amplifier and SAM phantom Head Shape. The system is controlled remotely from a PC, which contains the software to control the robot and data acquisition equipment. The software also displays the data obtained from test scans. In operation, the system first does an area (2D) scan at a fixed depth within the liquid from the inside wall of the phantom. When the maximum SAR point has been found, the system will then carry out a 3D scan centred at that point to determine volume averaged SAR level. 4.2.1 Robot system specification The robot is used to articulate the probe to programmed positions inside the phantom head to obtain the SAR readings from the DUT. 4.2.2 Probe an…
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Report No.: SZ07110121E01 Page 2 of 53 TABLE OF CONTENTS 1.TEST CERTIFICATION ...........................................................................................................4 2.GENERAL INFORMATION ....................................................................................................5 2.1EUT Description .........................................................................................................................5 2.2Test Standards and Results ........................................................................................................7 2.3Facilities and Accreditations ......................................................................................................9 2.3.1Facilities ....................................................................................................................................9 2.3.2Test Environment Conditions....................................................................................................9 3.47 CFR PART 15B REQUIREMENTS ..................................................................................10 3.1Test Mode ..................................................................................................................................10 3.1.1GSM Test Mode ......................................................................................................................10 3.2Test Setup and Equipments List..............................................................................................11 3.2.1Conducted Emission................................................................................................................11 3.2.2Radiated Emission...................................................................................................................12 3.3Conducted Emission .................................................................................................................13 3.3.1Requirement ............................................................................................................................13 3.3.2Test Description ......................................................................................................................13 3.3.3Test Result ...............................................................................................................................13 3.4Radiated Emission ....................................................................................................................15 3.4.1Requirement ............................................................................................................................15 3.4.2Test Description ......................................................................................................................15 3.4.3Test Result ...............................................................................................................................15 4.47 CFR PART 2, PART 22H & PART 24E REQUIREMENTS ...........................................18 4.1Frequencies................................................................................................................................18 4.1.1Requirement ............................................................................................................................18 4.1.2Test Description ......................................................................................................................18 4.1.3Test Result ...............................................................................................................................19 4.2Conducted RF Output Power ..................................................................................................22 4.2.1Requirement ............................................................................................................................22 4.2.2Test Description ......................................................................................................................22 4.2.3Test Result ...............................................................................................................................22 Report No.: SZ07110121E01 Page 3 of 53 4.320dB Occupied Bandwidth ......................................................................................................26 4.3.1Definition ................................................................................................................................26 4.3.2Test Description ......................................................................................................................26 4.3.3Test Verdict..............................................................................................................................26 4.4Frequency Stability ...................................................................................................................30 4.4.1Requirement ............................................................................................................................30 4.4.2Test Description ......................................................................................................................30 4.4.3Test Verdict..............................................................................................................................30 4.5Conducted Out of Band Emissions .........................................................................................32 4.5.1Requirement ............................................................................................................................32 4.5.2Test Description ......................................................................................................................32 4.5.3Test Result ...............................................................................................................................32 4.6Band Edge ........................................…
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Report No. SN0093_900 April 2007 INDEXSAR 900MHz validation Dipole Type IXD-090 S/N 0093 Performance measurements MI Manning Indexsar, Oakfield House, Cudworth Lane, Newdigate, Surrey RH5 5BG. UK. Tel: +44 (0) 1306 632870 Fax: +44 (0) 1306 631834 e-mail: [email protected] 1. Measurement Conditions Measurements were performed using a box-shaped phantom made of PMMA with dimensions designed to meet the accuracy criteria for reasonably-sized phantoms that do not have liquid capacities substantially in excess of the volume of liquid required to fill the Indexsar upright SAM phantoms used for SAR testing of handsets against the ear. An Anritsu MS4623B vector network analyser was used for the return loss measurements. The dipole was placed in a special holder made of low-permittivity, low-loss materials. This holder enables the dipole to be positioned accurately in the centre of the base of the Indexsar box-phantom used for flat-surface testing and validation checks. The validation dipoles are supplied with special spacers made from a low- permittivity, low-loss foam material. These spacers are fitted to the dipole arms to ensure that, when the dipole is offered up to the phantom surface, the spacing between the dipole and the liquid surface is accurately aligned according to the guidance in the relevant standards documentation. The spacers are rectangular with a central hole equal to the dipole arm diameter and dimensioned so that the longer side can be used to ensure a spacing of 15mm from the liquid in the phantom (for tests at 900MHz and below) and the shorter side can be used for tests at 1800MHz and above to ensure a spacing of 10mm from the liquid in the phantom. The spacers are made on a CNC milling machine with an accuracy of 1/40 th mm but they may suffer wear and tear and need to be replaced periodically. The material used is Rohacell, which has a relative permittivity of approx. 1.05 and a negligible loss tangent. The apparatus supplied by Indexsar for dipole validation tests thus includes: Balanced dipoles for each frequency required are dimensioned according to the guidelines given in IEEE 1528 [1]. The dipoles are made from semi-rigid 50 Ohm co-ax, which is joined by soldering and is gold-plated subsequently. The constructed dipoles are easily deformed, if mis-handled, and periodic checks need to be made of their symmetry. Rohacell foam spacers designed for presenting the dipoles to 2mm thick PMMA box phantoms. These components also suffer wear and tear and should be replaced when the central hole is a loose-fit on the dipole arms or if the edges are too worn to ensure accurate alignment. The standard spacers are dimensioned for use with 2mm wall thickness (additional spacers are available for 4mm wall thickness). 2. Typical SAR Measurement A SAR validation check is performed with the box-phantom located on the SARA2 phantom support base on the SARA2 robot system. Tests are then conducted at a feed power level of approx. 0.25W. The actual power level is recorded and used to normalise the results obtained to the standard input power conditions of 1W (forward power). The ambient temperature is 21 o C +/- 1 o C and the relative humidity is around 40% during the measurements. The phantom is filled with a 900MHz brain liquid using a recipe from [1], which has the following electrical parameters (measured using an Indexsar DiLine kit) at 900MHz: Relative Permittivity 42.5 Conductivity 0.97 S/m The SARA2 software version VPM2.2 is used with an Indexsar probe previously calibrated using waveguides. The 3D measurements made using the dipole at the bottom of the phantom box is shown below: The results, normalised to an input power of 1W (forward power) are typically: Averaged over 1 cm3 (1g) of tissue 10.55 W/kg Averaged over 10cm3 (10g) of tissue 6.80 W/kg These results can be compared with Table 8.1 in [1]. The agreement is within 10%. 3. Dipole impedance and return loss The dipoles are designed to have low return loss ONLY when presented against a lossy-phantom at the specified distance. A Vector Network Analyser (VNA) was used to perform a return loss measurement on the specific dipole when in the measurement-location against the box phantom. The distance was as specified in the standard i.e. 10mm from the liquid (for 900MHz). The Indexsar foam spacers (described above) were used to ensure this condition during measurement. The impedance was measured at the SMA-connector with the network analyser. The following parameters were measured: Dipole impedance at 900 MHz Re{Z} = 49.998 Ω Im{Z} = 631.311 μΩ Return loss at 900MHz -20.418 dB 4. Dipole handling The dipoles are made from standard, copper-sheathed coaxial cable. In assembly, the sections are joined using ordinary soft-soldering. This is necessary to avoid excessive heat input in manufacture, which would destroy the polythene dielectric used for the cable. The consequence of the construction material and the assembly technique is that the dipoles are fragile and can be deformed by rough handling. Conversely, they can be straightened quite easily as described in this report. If a dipole is suspected of being deformed, a normal workshop lathe can be used as an alignment jig to restore the symmetry. To do this, the dipole is first placed in the headstock of the lathe (centred on the plastic or brass spacers) and the headstock is rotated by hand (do NOT use the motor). A marker (lathe tool or similar) is brought up close to the end of one dipole arm and then the headstock is rotated by 0.5 rev. to check the opposing arm. If they are not balanced, judicious deformation of the arms can be used to restore the symmetry. If a dipole has a failed solder joint, the dipole can be fixed down in such a way that the arms are co-linear and the joint re-soldered with a reasonably-powerful electrical soldering iron. Do not use gas soldering irons. After such a repair, electrical tests must be performed as described below. Please note that, beca…
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Report No. SN0112_1900 April 2007 INDEXSAR 1900MHz validation Dipole Type IXD-080 S/N 0112 Performance measurements MI Manning Indexsar, Oakfield House, Cudworth Lane, Newdigate, Surrey RH5 5BG. UK. Tel: +44 (0) 1306 633870 Fax: +44 (0) 1306 631834 e-mail: [email protected] 1. Measurement Conditions Measurements were performed using a box-shaped phantom made of PMMA with dimensions designed to meet the accuracy criteria for reasonably-sized phantoms that do not have liquid capacities substantially in excess of the volume of liquid required to fill the Indexsar upright SAM phantoms used for SAR testing of handsets against the ear. An Anritsu MS4623B vector network analyser was used for the return loss measurements. The dipole was placed in a special holder made of low-permittivity, low-loss materials. This holder enables the dipole to be positioned accurately in the centre of the base of the Indexsar box-phantom used for flat-surface testing and validation checks. The validation dipoles are supplied with special spacers made from a low- permittivity, low-loss foam material. These spacers are fitted to the dipole arms to ensure that, when the dipole is offered up …
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| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 2 | 24E | 1.85 GHz - 1.91 GHz | 871.00 mW | 300KGXW | 0.1 ppm |

GSM quad band mobile phone
Equipment Class
PCE - PCS Licensed Transmitter held to ear
GSM850/1900 Moblie Phone
Equipment Class
PCE - PCS Licensed Transmitter held to ear
GSM/GPRS/WCDMA/BT/WIFI/GPS Mobile Phone
Equipment Class
JBP - Part 15 Class B Computing Device Peripheral
WCDMA mobile phone
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
WCDMA mobile phone
Equipment Class
JBP - Part 15 Class B Computing Device Peripheral