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1 Welcome Thank you for choosing Motorola—a global leader in communications technology.All Motorola phones are designed and manufactured in the United States to meet Motorola’s exacting specifications and world-class quality standards. During development, our laboratory testing team took the durable Digital StarTAC ® phone through its paces. They cooked it, steamed it, shook it, shocked it, dusted it, and dropped it—and the phone still worked! We are confident that the one you purchased will meet your own exacting standards.Thank you for choosing Motorola, and we hope you enjoy your StarTAC ST7767D cellular phone! 2 Guide Overview Okay, you’ve got a brand new phonewith a bunch of nifty features.Now what?Afraid you’ll press the wrong key? Or forget a feature or two?Don’t sweat it!We’ve designed this guide to take you step-by-step through each feature of your new Digital StarTAC ® phone. We’ll show you what key to press and what happens when you press it. Follow along, chapter-by-chapter, and you’ll find it’s as easy as 1-2-3.Here’s an idea of what you’ll learn in each chapter. Getting Started First things first. Once the box is open, this section will show you where to begin. We will explain what came with your new phone and show you how to use the battery. Turn to page 10 to get started. The Basics What do all those buttons and lights mean? How do I make my first phone call? In this section, we’ll answer those questions and teach you everything necessary to start using your Digital StarTAC phone. Begin learning “The Basics” on page 22. 3 Guide Overview Using Memory Read “Using Memory,” beginning on page 36, and we will explain how to make the most of your new phone’s internal Phone Book. You will save time with dialing shortcuts and memory features that make it easy to place quick calls. Using Messaging This Digital StarTAC ® phone supports optional messaging services, like Caller ID * , which allows you to see who is calling before you answer. It can even receive alphanumeric messages just like a pager and tell you when you have Voice Mail. Turn to page 48 to begin “Using Messaging.” The Works When you are ready to learn the advanced features of your new phone, turn to page 56 for “The Works.” We will explain everything from navigating the menu system to electronically locking your phone.So relax! Let us show you what your Digital StarTAC phone can do! * Contact your Service Provider for availability. 4 Contents Introduction Guide Overview . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 2Safety Information . . . . . . . . . . . . . . . . . . . . . . . . . . . . 6 Getting Started Package Content Options . . . . . . . . . . . . . . . . . . . . . . 10Introduction to Batteries. . . . . . . . . . . . . . . . . . . . . . . 12Installing Batteries . . . . . . . . . . . . . . . . . . . . . . . . . . . 14Charging Batteries . . . . . . . . . . . . . . . . . . . . . . . . . . . 16Phone Overview. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 20Using the Smart Button . . . . . . . . . . . . . . . . . . . . . . . 21 The Basics Turning Your Phone On . . . . . . . . . . . . . . . . . . . . . . . 22Reading the Indicators . . . . . . . . . . . . . . . . . . . . . . . . 24Placing and Ending Calls. . . . . . . . . . . . . . . . . . . . . . 28Redialing Numbers. . . . . . . . . . . . . . . . . . . . . . . . . . . 29Receiving Calls . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 31Basic Tone Controls . . . . . . . . . . . . . . . . . . . . . . . . . . 32Your Phone & Its Shortcuts . . . . . . . . . . . . . . . . . . . . 34 Using Memory Introduction . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 36Making the Most of Memory . . . . . . . . . . . . . . . . . . . 37Storing. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 38Recalling . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 40Pause Dialing . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 44Using Calling Cards . . . . . . . . . . . . . . . . . . . . . . . . . . 46 5 Contents Using Messaging Introduction . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .48Receiving Messages . . . . . . . . . . . . . . . . . . . . . . . . . . .49Viewing Your Caller IDs . . . . . . . . . . . . . . . . . . . . . . . .50Checking Your Voice Mail . . . . . . . . . . . . . . . . . . . . . .52Reading Your Messages . . . . . . . . . . . . . . . . . . . . . . . .54 The Works Introducing the Menu Features. . . . . . . . . . . . . . . . . .56The Internal Phone Book . . . . . . . . . . . . . . . . . . . . . .58 Store and recall numbers Using Call Timers . . . . . . . . . . . . . . . . . . . . . . . . . . . .66 Monitor the length of your calls Setting Tone Controls. . . . . . . . . . . . . . . . . . . . . . . . . .72 Adjust your phone’s tone controls Lock/Security Features. . . . . . . . . . . . . . . . . . . . . . . . .80 Control access to your phone Phone Options . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .88 Personalize your phone’s operation Reference Information Accessory Options . . . . . . . . . . . . . . . . . . . . . . . . . . . .106Troubleshooting. . . . . . . . . . . . . . . . . . . . . . . . . . . . .109Glossary . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .111Index . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .118 6 Safety Information Exposure to Radio Frequency Signals Your wireless handheld portable telephone is a low power radio transmitter and receiver. When it is ON, it receives and also sends out radio frequency (RF) signals. In August 1996, the Federal Communications Commissions (FCC) adopted RF exposure guidelines with safety levels for hand-held wireless phones. Those guidelines are consistent with the safety standards previously set by both U.S. and international standards bodies: • ANSI C95.1 (1992) * • NCRP Report 86 (1986)* • ICNIRP (1996)* Those standards were based on com…
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APPLICANT: MOTOROLA, INC.FCC ID : IHDT56ZJ1 EXHIBIT 2A June 30, 1999 SPECIFICATION COMPLIANCE STATEMENT Engineer-in-Charge Equipment Authorization Branch Federal Communications Commission We hereby certify that this transmit and receive equipment (FCC ID: IHDT56ZJ1) for dual mode, dual band mobile station cellular use is capable of compliance with TIA/EIA-95-B Mobile Station-Base Station Compatibility Standard for Dual-Mode Spread Spectrum Systems, December 1998. (Signed – John Ross) John Ross Engineering Section Manager Cellular Subscriber Equipment (Signed – Don Millar) Don Millar Engineering Manager Cellular Subscriber Equipment APPLICANT: MOTOROLA, INC.FCC ID : IHDT56ZJ1 EXHIBIT 2B STATEMENT OF CERTIFICATION The technical data supplied with this application, having been taken under my supervision is hereby duly certified. The following is a statement of my qualifications: BSEE 1992 Washington University 7 years Cellular Design Experience SIGNATURE: (signed) John R. Ross NAME: John R. Ross DATE: 6/30/99 POSITION: Engineering Section Manager I hereby certify that the above application was prepared under my direction and that to the best of my knowledge and belief, the facts set forth in the application and accompanying technical data are true and correct: SIGNATURE: (signed) Don Millar NAME: Don Millar DATE: 6/30/99 POSITION: Engineering Manager APPLICANT: MOTOROLA, INC.FCC ID : IHDT56ZJ1 EXHIBIT 2C RADIO FREQUENCY ENERGY EXPOSURE EVALUATION STATEMENT Motorola, Inc., Personal Communications Sector, hereby certifies that, when used as stated in the operating instructions supplied, this Cellular/PCS Portable Transceiver, FCC ID: IHDT56ZJ1, complies with the FCC's Radio frequency energy exposure limits for General Population/Uncontrolled environment, per FCC Rule 47CFR2.1093.
APPLICANT: MOTOROLAFCC ID: IHDT56ZJ1 Exhibit 13 June 30, 1999 CONFIDENTIALITY REQUEST CONTAINED WITHIN Federal Communications Commission Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, Maryland 21046 Re: Application for Cellular/PCS Transceiver Type Acceptance Gentlemen: Application: Motorola, Inc., Pan American Cellular Subscriber Group, 600 N. U.S. Highway 45, Libertyville, Illinois 60048-1286 herein submits: Application for Equipment Authorization (FCC Form 731- October 1992 with integrated Fee Processing Form, Fee Codes EFT and EBT), Check Number 124-2433621 in the amount of $610 and Exhibits, for Type Acceptance of a Cellular Transceiver, FCC ID: IHDT56ZJ1. Motorola is also the manufacturer of this equipment. Confidentiality: Pursuant to Section 0.459 of the Commission's rules (CFR 47), Motorola requests confidentiality for portions of the material contained in this application and that the identified material be withheld from public inspection following the grant of this authorization. This material contains Motorola's trade secrets and confidential information that Motorola does not customarily release to the public and which is otherwise not generally available to the public. Confidentiality is requested for the following exhibits: • Exhibit 4 Block Diagrams • Exhibit 5 Schematics • Exhibit 12 Operational Description Description: This equipment has the capability to operate in the conventional Analog Cellular standard in the 800 MHz cellular band and the Digital CDMA standard in the PCS bands, as outlined in EIA/TIA IS-95-A "Mobile Station – Base Station Compatibility Standard for Dual-Mode Wideband Spread Spectrum Cellular System”. Technical details for this alternate cellular technology (permitted under the cellular service option provisions in Section 22.930 of the Commission's rules) related to Type Acceptance of this equipment, as noted in paragraphs 31 and 32 of the Report and Order in FCC GEN. Docket No. 87-390, are detailed in Exhibit 12. Contact Information: Please contact me by telephone at (847) 523-6167, by facsimile at (847) 523-2350, or by e-mail ([email protected]), if there are any further questions or additional information needed concerning this filing. Regards, Andrew J. Bachler FCC Liaison Cellular Subscriber Sector 600 N. U.S. Highway 45 Libertyville, IL 60048-5343
APPLICANT: MOTOROLA, INC. FCC ID: IHDT56ZJ1 EXHIBIT 3-1 APPLICANT: MOTOROLA, INC. FCC ID: IHDT56ZJ1 EXHIBIT 3-2 FCC Label Location
APPLICANT: MOTOROLA, INC.FCC ID : IHDT56ZJ1 EXHIBIT 1 FCC IDENTIFICATION (NAMEPLATE) INFORMATION The FCC label shown is representative of the label that will appear on the radio when in production. It will be placed on the radio telephone as shown in Exhibit 3-2. Other information may also be included on this label. FCC ID: IHDT56ZJ1
APPLICANT: MOTOROLA, INC.FCC ID : IHDT56ZJ1 EXHIBIT 9
Applicant: Motorola, Inc. FCC ID: IHDT56ZJ1 Exhibit 9A Front View Rear View
APPLICANT: MOTOROLA, INC. FCC ID: IHDT56ZJ1 TRANSCEIVER ADJUSTMENTS/TUNE-UP PROCEDURE EXHIBIT 10 There are no user accessible adjustments or tuning in this portable cellular transceiver. All necessary adjustments and tuning are performed during manufacture of the product. Any adjustments or tuning after service or repair are done as part of that process as special equipment is required to perform such adjustments.
P P a a g g e e 1 1 June 30, 1999 SAR Test Report for Motorola portable cellular phone (FCC ID IHDT56ZJ1). Prepared by: Paul Moller, Principal Staff Engineer Motorola Personal Communications Sector Product Safety Laboratory Libertyville, Illinois Contents 1) Introduction 2) Applicable Regulations 3) Description of Test Sample 4) Description of Motorola SAR Test Facility 5) Test Sample Conditions 6) Method of Measurement 7) Measurement Uncertainty 8) SAR Test Results 9) SAR in the Hand Measurements 10) Summary Appendix A: Included data Appendix B: Measurement Probe Calibration Certificate Appendix C: Printout from the Dasy measurement system validation test Appendix D: Dasy Users Manual (first page) P P a a g g e e 2 2 1. Introduction The Motorola Personal Communications Sector Product Safety Laboratory has performed measurements of the maximum potential exposure to the user of portable cellular phone FCC ID IHDT56ZJ1. The Specific Absorption Rate (SAR) of this product was measured. This report details the test setup and equipment as well as the results of those tests. 2. Applicable Regulations Federal Communications Commission rule §2.1093(d)(2), the ANSI/IEEE C95.1 1992 and the NCRP Report Number 86 specify the maximum exposure limit of 1.6 W/kg as averaged over any 1 gram of tissue for portable devices being used within 20cm of the user in the uncontrolled environment. 3. Description of Test Sample A prototype unit serial number EDDDF8F7 was measured. This unit is identical in physical construction, maximum radiated power levels and antenna structure to units that will be in production. It transmits in the frequency range of 824 to 849 MHz using AMPS mode, and 1850 to 1910 MHz using CDMA mode. The unit is equipped with a telescoping antenna that serves as both a receive and transmit antenna. The antenna has a retracted and an extended operating position as shown in figures 1 and 2 respectively. Figure 1.Figure 2. P P a a g g e e 3 3 Figure 3 shows the test unit as it is placed onto the Motorola phantom. For the purposes of the actual SAR tests the Motorola phantom head is tilted on its side by 90 degrees so that a vertically oriented measurement probe can easily scan an area where the phone is in close contact with the phantom and the SAR will be the highest. Figure 3. Phone against side of Phantom Head. 4. SAR Test Facility The Motorola test facility utilized for the SAR testing of this product is the Personal Communications Sector Product Safety Laboratory, in Libertyville Illinois. The laboratory utilizes a Dosimetric Assessment System (Dasy™) SAR measurement system manufactured by Schmid & Partner Engineering AG (SPEAG™), of Zurich Switzerland. This system utilizes a computer controlled six axis robot to move a measurement probe to measure the SAR. A photo of the Dasy system with the Motorola phantom is shown in figure 4. Probe serial number 1103 was used for the measurements. It was calibrated at SPEAG™, and has a calibration date April 20, 1999. A copy of the calibration certificate is included as appendix B. Dipole Validation Kit type D900V2, serial number 036 was used to validate the system accuracy at 800MHz. The validation SAR value is P P a a g g e e 4 4 9.56 mW/g normalized to 1 Watt, and the Dasy system used for the test phone measured 9.40 mW/g normalized to 1 Watt. This is within the required accuracy, and thus the measured SAR values are considered correct. See appendix C for printout of the validation test from the Dasy measurement system. Dipole Validation Kit type D1800V2, serial number 226 was used to validate the system accuracy at 1900MHz. The validation SAR value is 39.9 mW/g normalized to 1 Watt, and the Dasy system used for the test phone measured 36.4 mW/g normalized to 1 Watt. This is within the required accuracy, and thus the measured SAR values are considered correct. See appendix C for printout of the validation test from the Dasy measurement system. The measurement methodology is described in IEEE Transactions on Vehicular Technology, vol. 44, no. 3, August 1995, titled Electromagnetic Energy Exposure of Simulated users of Portable Cellular Telephones. The Dasy system is operated per the instructions in the Dasy Users Manual. A copy of the title page of this manual is included as appendix D. The entire manual is available directly from SPEAG. Figure 4. Dasy System P P a a g g e e 5 5 5. Test Sample Conditions For the purposes of these tests the subject phone was positioned on the measurement phantom per the instructions in the Motorola users manual for the subject phone. The position used for the tests is the 3-point contact position. In this position the test sample contacts the phantom’s ear and cheek and is positioned with a repeatability of better than ±6%. Since the antenna is not located on the center of the phone, the SAR was measured with the phone on both the left and right side talk positions (See figure 3). Due to the construction of the phone, the base of the antenna is 23 mm away from the phantom for the left side head, which is the closest. The test sample is capable of operation in a test mode that allows control of the transmitter without the need to place actual phone calls. This guarantees that the unit does not change its transmitter power, and that the resultant SAR values will not be affected by external connections. For the purposes of this test the unit is commanded to test mode and manually set to the proper channel, transmitter power level and transmit mode of operation. The phone is then placed in the SAR measurement system with a fully charged battery. At the end of each test the Dasy system measures the drift of the SAR at a fixed point in the phantom so as to ensure that the test sample has not changed in transmitter power. For the purposes of these tests, the transmitter was operated at the highest transmitter output and with the phone and module on both left and right side talk positions. 6. Method of Measurement…
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P P a a g g e e 1 1 August 26, 1999 Supplement to SAR Test Report for Motorola portable cellular phone (FCC ID IHDT56ZJ1). Prepared by: Paul Moller, Principal Staff Engineer Motorola Personal Communications Sector Product Safety Laboratory Harvard, Illinois Contents 1) Summary of FCC request for additional information 2) Body Worn Configuration Evaluation 3) PCMCIA Card Utilization 4) Battery Options affect on Compliance with the RF Guidelines Appendix A: Included data Appendix B: Measurement Probe Calibration Certificate Appendix C: Printout from the Dasy measurement system validation test Appendix D: Dasy Users Manual (first page) P P a a g g e e 2 2 1. Summary of FCC request for additional information There was a request for additional information regarding relationship between the use of the product and the SAR test data submitted with the Report for Motorola’s portable cellular phone (FCC ID IHDT56ZJ1) dated June 30, 1999. The requested information may be summarized as follows: 1.Whether the use of the holster for body worn operations meets the RF Guidelines. 2.Whether the PCMCIA card can be used when the phone is in a “body-worn” configuration and, if so, will the RF Guidelines be met. 3.Whether the product’s battery options affect compliance with the RF Guidelines. 2. Body Worn Configuration Evaluation The cellular phone (FCC ID IHDT56ZJ1) can be used in a body-worn configuration using the supplied holster. With proper usage of this holster the antenna is kept at least one inch away from the user's body. We have performed an evaluation to show RF exposure compliance when used with the holster. Figure 1 shows the test unit as it is placed onto the phantom. The test sample is capable of operation in a test mode that allows control of the transmitter without the need to place actual phone calls. This guarantees that the unit does not change its transmitter power, and that the resultant SAR values will not be affected by external connections. For the purposes of this test the unit is commanded to test mode and manually set to the proper channel, transmitter power level and transmit mode of operation. Figure 1. Phone In Supplied Belt Clip Against Phantom P P a a g g e e 3 3 The following table shows the SAR values for the body worn condition for 800MHz. A full data set output of two test conditions with the highest SAR values from the Dasy measurement system is included as appendix A. The test condition included are indicated as a bold number in the following table. All other test conditions measured lower SAR values than those included. 800MHz RetracedExtended ChannelAntennaAntenna 9910.210.47 3840.40.47 7990.470.48 Probe serial number 1375 was used for the measurements. It was calibrated at SPEAG™, and has a calibration date July 1, 1999. A copy of the calibration certificate is included as appendix B. Dipole Validation Kit type D900V2, serial number 036 was used to validate the system accuracy at 800MHz. The validation SAR value is 9.56 mW/g normalized to 1 Watt, and the Dasy system used for the test phone measured 10.28 mW/g normalized to 1 Watt. This is within the required accuracy, and thus the measured SAR values are considered correct. See appendix C for printout of the validation test from the Dasy measurement system. Also, the manual is currently under revision to include the following text: "For body-worn operation, the antenna should be kept at least one inch from the body when transmitting. A carry holder with a belt clip is provided with the radio for body-worn use." 3. PCMCIA Card Utilization The cellular phone (FCC ID IHDT56ZJ1) can be used with a PCMCIA card connection while in a body worn configuration. The use of the PCMCIA card connection does not affect the transmitter output power and thus will not increase the maximum SAR value. 4. Battery Options affect on Compliance with the RF Guidelines The cellular phone (FCC ID IHDT56ZJ1) does have several battery options when used in a body-worn configuration. There are two 'main' battery options that fit in the pocket of the upper portion of the phone which, when the phone is closed and placed in the supplied holster, is the side nearer the body. This holster has a pocket that will allow either of two 'main' batteries ('slim' or 'extended') to fit in the holster so there is no impact on distance between the body and the antenna. There are two 'auxiliary' batteries options that clip on the lower portion of the phone and are slightly narrower than the main body of the phone. When the phone is closed and in the supplied holster, the lower portion of the phone is the side away from the body so, again, there is no impact on distance between the body and the antenna. The 'Extended Main LiON (900 mAH)' is the battery option that was used for body-worn testing. Since the SAR found for body worn use was lower than what was found for head adjacent use, and the margins are believed sufficient for head adjacent use, they should also be sufficient for P P a a g g e e 4 4 body worn use. By making this statement, Motorola should not be considered to have agreed that there is 15% performance variation due to the battery options that would give rise to SAR differences of the magnitude of 15%. Appendix A Measurement Results of Cellular Phone FCC ID IHDT56ZJ1 used in a Body-Worn Holster Data CDMA SWF0280A EDDDF8F7 CH 799 ANTOUT CH 799 ANT OUT/BELT CLIP /SC Belt Clip Phantom; Section; Position: ; Frequency: 849 MHz Probe: ET3DV6 - SN1375; ConvF(6.59,6.59,6.59); Crest factor: 1.0; Muscle 800 MHz: σ = 1.10 mho/m ε r = 52.0 ρ = 1.00 g/cm 3 Cube 5x5x7: SAR (1g): 0.480 [mW/g], SAR (10g): 0.323 [mW/g], (Worst-case extrapolation) Coarse: Dx = 10.0, Dy = 10.0, Dz = 0.0 Powerdrift: -0.05 dB SAR Tot [mW/g] 4.84E-2 9.68E-2 1.45E-1 1.94E-1 2.42E-1 2.90E-1 3.39E-1 3.87E-1 4.36E-1 4.84E-1 08/20/99 Motorola, Inc. P P a a g g e e 5 5 Appendix B The following page is a copy of the Calibration Certificate for Dasy probe serial number 1375. P P a a g g e…
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P P a a g g e e 1 1 September 14, 1999 Supplement to SAR Test Report for Motorola portable cellular phone (FCC ID IHDT56ZJ1) Prepared by: Paul Moller, Principal Staff Engineer Motorola Personal Communications Sector Product Safety Laboratory Harvard, Illinois Contents 1) Summary of FCC request for additional information 2) Body Worn Configuration Evaluation Appendix A: Included data Appendix B: Measurement Probe Calibration Certificate Appendix C: Printout from the Dasy measurement system validation test Appendix D: Dasy Users Manual (first page) P P a a g g e e 2 2 1. Summary of FCC request for additional information There was a request for additional information regarding relationship between the use of the product and the SAR test data submitted with the Report for Motorola’s portable cellular phone (FCC ID IHDT56ZJ1) dated June 30, 1999. The requested information may be summarized as follows: Whether the use of the holster for body worn operations meets the RF Guidelines. 2. Body Worn Configuration Evaluation The cellular phone (FCC ID IHDT56ZJ1) can be used in a body-worn configuration using the supplied holster. With proper usage of this holster the antenna is kept at least one inch away from the user's body. We have performed an evaluation to show RF exposure compliance when used with the holster. Figure 1 shows the test unit as it is placed onto the phantom. The test sample is capable of operation in a test mode that allows control of the transmitter without the need to place actual phone calls. This guarantees that the unit does not change its transmitter power, and that the resultant SAR values will not be affected by external connections. For the purposes of this test the unit is commanded to test mode and manually set to the proper channel, transmitter power level and transmit mode of operation. Figure 1. Phone In Supplied Belt Clip Against Phantom P P a a g g e e 3 3 The following table shows the SAR values for the body worn condition for 800MHz and 1900MHz. A full data set output of two test conditions with the highest SAR values from the Dasy measurement system is included as appendix A. The test conditions included are indicated as a bold number in the following table. All other test conditions measured lower SAR values than those included. 800MHz1900MHz RetracedExtendedRetracedExtended ChannelAntennaAntennaChannelAntennaAntenna 9910.210.47250.250.33 3840.400.476000.460.40 7990.47 0.48 1175 0.58 0.46 Probe serial number 1375 was used for the measurements. It was calibrated at SPEAG™, and has a calibration date July 1, 1999. A copy of the calibration certificate is included as appendix B. Dipole Validation Kit type D900V2, serial number 036 was used to validate the system accuracy at 800MHz. The validation SAR value is 9.56 mW/g normalized to 1 Watt, and the Dasy system used for the test phone measured 10.28 mW/g normalized to 1 Watt. This is within the required accuracy, and thus the measured SAR values are considered correct. See appendix C for printout of the validation test from the Dasy measurement system. Dipole Validation Kit type D1800V2, serial number 226 was used to validate the system accuracy at 1900MHz. The validation SAR value is 39.9 mW/g normalized to 1 Watt, and the Dasy system used for the test phone measured 40.8 mW/g normalized to 1 Watt. This is within the required accuracy, and thus the measured SAR values are considered correct. See appendix C for printout of the validation test from the Dasy measurement system Also, the manual is currently under revision to include the following text: "For body-worn operation, the antenna should be kept at least one inch from the body when transmitting. A carry holder with a belt clip is provided with the radio for body-worn use. Appendix A Measurement Results of Cellular Phone FCC ID IHDT56ZJ1 used in a Body-Worn Holster Data SWF0280A S/N: EDDDF8F7 CH 799/ Ant Extended / Pwr 2 / SC Belt Clip Phantom; Section; Position: ; Frequency: 849 MHz Probe: ET3DV6 - SN1375; ConvF(6.59,6.59,6.59); Crest factor: 1.0; Muscle 800 MHz: σ = 1.10 mho/m ε r = 52.0 ρ = 1.00 g/cm 3 Cube 5x5x7: SAR (1g): 0.480 [mW/g], SAR (10g): 0.323 [mW/g], (Worst-case extrapolation) Coarse: Dx = 10.0, Dy = 10.0, Dz = 0.0 Powerdrift: -0.05 dB SAR Tot [mW/g] 4.84E-2 9.68E-2 1.45E-1 1.94E-1 2.42E-1 2.90E-1 3.39E-1 3.87E-1 4.36E-1 4.84E-1 08/20/99 Motorola, Inc. SWF0280A S/N: EDDDF8F7 Ch 1175 / Ant Retracted / JK Belt Clip Phantom; Belt Clip Section; Position: (80°,220°); Frequency: 1909 MHz Probe: ET3DV6 - SN1375; ConvF(5.79,5.79,5.79); Crest factor: 1.0; Muscle 1900Mhz: σ = 1.83 mho/m ε r = 51.4 ρ = 1.00 g/cm 3 Cube 5x5x7: SAR (1g): 0.580 [mW/g], SAR (10g): 0.336 [mW/g], (Worst-case extrapolation) Coarse: Dx = 10.0, Dy = 10.0, Dz = 0.0 Powerdrift: -0.08 dB SAR Tot [mW/g] 5.88E-2 1.18E-1 1.76E-1 2.35E-1 2.94E-1 3.53E-1 4.12E-1 4.70E-1 5.29E-1 5.88E-1 09/10/99 Motorola, Inc. Appendix B The following page is a copy of the Calibration Certificate for Dasy probe serial number 1375 Appendix C The following page is the printout from the Dasy measurement system validation tests Dipole 900MHz Forward Power : 0.25W MOT FLAT Phantom; MOTO FLAT Section; Position: (0°,0°); Frequency: 900 MHz Probe: ET3DV6 - SN1375; ConvF(6.59,6.59,6.59); Crest factor: 1.0; Brain 900Mhz: σ = 0.85 mho/m ε r = 43.0 ρ = 1.00 g/cm 3 Cube 5x5x7: SAR (1g): 2.57 [mW/g], SAR (10g): 1.67 [mW/g], (Worst-case extrapolation) Coarse: Dx = 10.0, Dy = 10.0, Dz = 10.0 Powerdrift: -0.07 dB SAR Tot [mW/g] 1.08E-1 2.16E-1 3.24E-1 4.32E-1 5.40E-1 6.49E-1 7.57E-1 8.65E-1 9.73E-1 1.08E+0 07/21/99 Motorola, Inc. Dipole 1800 MHz Forward Power : 258mW MOT FLAT Phantom; MOTO FLAT Section; Position: (0°,0°); Frequency: 1800 MHz Probe: ET3DV6 - SN1375; ConvF(5.79,5.79,5.79); Crest factor: 1.0; Brain 1800 MHz: σ = 1.71 mho/m ε r = 41.0 ρ = 1.00 g/cm 3 Cubes (2): SAR (1g): 10.2 mW/g ± 0.03 dB, SAR (10g): 4.99 mW/g ± 0.24 dB, (Worst-case extrapolation) Coarse: Dx = 10.0, Dy = 10.0, Dz = 10.0 Powerdrift: …
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APPLICANT: MOTOROLA, INC.TRANSCEIVER TYPE: IHDT56ZJ1 EXHIBIT 6 SUBMITTED MEASURED DATA INDEX EXHIBITMEASUREMENT 6ARF Power Output 6BAudio Response 6CPost Limiter Low Pass Filter Response - Graph 6DSignaling Channel Audio Roll-Off Filter Response - Graph 6E1Modulation Limiting (Compander In Wide Mode) - Graph 6E2Modulation Limiting (Compander Out Wide Mode) - Graph 6F1Occupied Bandwidth, Audio - Photograph 6F2Occupied Bandwidth, Audio and SAT - Graph 6F3Occupied Bandwidth, Wideband Data - Graph 6F4Occupied Bandwidth, Signaling Tone and SAT - Graph 6F5Occupied Bandwidth, Digital Mode - Graph 6G1Conducted Spurious and Harmonic Emissions, Analog Mode - Graph 6G2Conducted Spurious and Harmonic Emissions, Digital Mode - Graph 6H1Radiated Spurious and Harmonic Emissions, Analog Mode - Graph 6H2Radiated Spurious and Ha…
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| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 3 | 24E | 1.85 GHz - 1.91 GHz | 600.00 mW | 1M25F9W | 150 Hz |
Smart Watch
Equipment Class
NII - Unlicensed National Information Infrastructure TXMobile Cellular Phone
Equipment Class
DTS - Digital Transmission SystemSmart Watch
Equipment Class
JBP - Part 15 Class B Computing Device PeripheralMobile Cellular Phone
Equipment Class
PCE - PCS Licensed Transmitter held to earMobile Cellular Phone
Equipment Class
6XD - 15E 6 GHz Low Power Indoor Client