
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
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 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 exact-ing standards.Thank you for choosing Motorola, and by all means, enjoy your StarTAC Model 7762 dual mode digital cellular phone! 2 Guide Overview Okay , you’ve got a brand new phone with a bunch of nifty features.Now what?Afraid you’ll press the wrong key? Or forget a feature or two?Don’ t sweat it! W e’ve designed this guide to take you step-by-step through each feature of your new StarT AC ™ phone. W e’ll show you what key to press and what happens when you press it. Follow along, chapter -by-chapter , and you’ll fi nd it’ s as easy as 1-2-3. Here’ s an idea of what you’ll learn in each chapter: Getting Started First things fi rst. T urn to page 10 , and we’ll explain what came with your phone. Then, we’ll show you how to install and charge your battery so that you can get started with “The Basics” in the next section. The Basics What do all those buttons and lights mean? How do I make my fi rst phone call? In this section, we’ll answer those questions and get you going with your StarT AC phone. Start learning “The Basics” on page 22 . 3 Guide Overview Using Memory Read “Using Memory ,” beginning on page 36 , and you’ll learn how to make the most of your new phone’ s built-in Phone Book. Y ou’ll save time with dialing shortcuts and memory tricks that make it easy to place quick calls. Using Messaging Did you know that your StarT AC ™ phone supports optional messaging services, like Caller ID * , which allows you to see who’ s calling before you answer? Y our new phone can even receive alphanumeric messages just like a pager and tell you when you have V oice Mail*. Simply turn to page 48 to begin “Using Messaging.” The W orks When you’re ready to get into the more advanced features your new phone has to offer , just turn to page 56 for “The W orks.” Learn about everything from navigating the menu system to elec- tronically locking your phone.So relax! Let us show you what your StarT AC phone can do! * Contact your Service Provider for availability . 4 Contents Introduction Safety Information . . . . . . . . . . . . . . . . . . . . . . . . . . . . 6 Getting Started Package Content Options . . . . . . . . . . . . . . . . . . . . . . 10 Introduction to Batteries . . . . . . . . . . . . . . . . . . . . . . . 12 Installing the Battery . . . . . . . . . . . . . . . . . . . . . . . . . 14 Charging the Battery . . . . . . . . . . . . . . . . . . . . . . . . . . 16 Phone Overview . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 20 Using the Smart Button . . . . . . . . . . . . . . . . . . . . . . . 21 The Basics T urning Y our Phone On . . . . . . . . . . . . . . . . . . . . . . . 22 Reading the Indicators . . . . . . . . . . . . . . . . . . . . . . . . 24 Placing and Ending Calls . . . . . . . . . . . . . . . . . . . . . . 28 Receiving Calls . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 29 Redialing Numbers . . . . . . . . . . . . . . . . . . . . . . . . . . . 31 Basic T one Controls . . . . . . . . . . . . . . . . . . . . . . . . . . 32 Y our Phone & Its Shortcuts . . . . . . . . . . . . . . . . . . . . 34 Using Memory Introduction . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 36 Making the Most of Memory . . . . . . . . . . . . . . . . . . . 37 Storing . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 38 Recalling . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 40 Pause Dialing . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 44 Using Calling Cards . . . . . . . . . . . . . . . . . . . . . . . . . . 46 5 Contents Using Messaging Introduction . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 48 Receiving Messages . . . . . . . . . . . . . . . . . . . . . . . . . . . 49 V iewing Y our Caller IDs . . . . . . . . . . . . . . . . . . . . . . . . 50 Checking Y our V oice Mail . . . . . . . . . . . . . . . . . . . . . . 52 Reading Y our Messages . . . . . . . . . . . . . . . . . . . . . . . . 54 The W orks Introducing the Menu Features . . . . . . . . . . . . . . . . . . 56 The Internal Phone Book . . . . . . . . . . . . . . . . . . . . . . 58 Learn how to store and recall numbers Using Call T imers . . . . . . . . . . . . . . . . . . . . . . . . . . . . 66 Learn how to monitor the length of your calls Setting T one Controls . . . . . . . . . . . . . . . . . . . . . . . . . . 72 Learn how to adjust your phone’ s tone controls Lock/Security Features . . . . . . . . . . . . . . . . . . . . . . . . . 78 Learn how to control access to your phone Phone Options . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 86 Learn how to personalize your phone’ s operation Reference Information Accessory Options . . . . . . . . . . . . . . . . . . . . . . . . . . . . 100 T roubleshooting . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 103 Glossary . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 106 Index . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 114 6 Safety Information Exposure to Radio Frequency Signals Y our 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:…
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APPLICANT: MOTOROLA, INC.FCC ID: IHDT6YN1 EXHIBIT 1 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 1987 University of Illinois, Urbana, IL MSEE 1991 John Hopkins University 10 years experience in RF communications product design and development. SIGNATURE: ____________________ NAME: Jay Hong DATE: 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: ____________________ NAME: Jin Kim DATE: POSITION: Director of Engineering
September 11, 1998 CONFIDENTIALITY REQUEST CONTAINED WITHIN Federal Communications Commission Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, Maryland 21046 Re: Application for Equipment Authorization (Type Acceptance/Certification) of a Broadband Personal Communications Services Transceiver, FCC ID: IHDT6YN1 Gentlemen: Motorola, Inc., Cellular Subscriber Sector, 600 N. U.S. Highway 45, Libertyville, Illinois 60048-5343 herein submits "Electronic" Application for Equipment Authorization (to be followed by mailing of Check Number 120-660571 in the amount of $580.00 along with Form 159) for Type Acceptance of a Portable Broadband Personal Communications Services Transceiver under FCC Rule Part 24(E), FCC ID: IHDT6YN1. Motorola is also the manufacturer of this equipment. As we understand that a rule transition date is near, it is understood that the Equipment Authorization may be issued as a 'Certification' rather than as a 'Type Acceptance.' In addition to confidentiality for the entire application prior to grant (per 47CFR0.457(d)(1) (ii) ), Motorola requests, pursuant to 47CFR0.459, post-grant confidentiality for portions of the material contained in this application such that the identified material will be withheld from public inspection following the grant of this authorization. This material, as indicated by request for confidentiality of the items during the electronic submission process and further identified by their listing in RED on the List of Exhibits attached hereto, includes: Motorola Exhibit 4, Radio Semiconductor List (Description 'Motorola Exhibit 4 Parts List,' submitted as 'Parts List/Tune Up Info,' EAS Exhibit #10); Motorola Exhibit 5, Circuit Diagrams (consisting of and submitted as three parts, one as Description 'Motorola Exhibit 5 Block Diagrams,' submitted as 'Block Diagrams,' EAS Exhibit #4, and the other two as Descriptions 'Exhibit 5 Schematic 1' and Exhibit 5 Schematic 2,' submitted as 'Schematics,' EAS Exhibit #5); and Motorola Exhibit 6, Circuit Descriptions (Description 'Motorola Exhibit 6 Circuit Descriptions,' submitted as 'Operational Description,' EAS Exhibit #12). Specifically, these exhibits contain information relating to circuit function and complexity that could be of benefit to competitors. 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. Federal Communications Commission Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, Maryland 21046 September 11, 1998 Page 2 Please contact me by telephone at (847) 523-7373, by facsimile at (847) 523-2350 or by correspondence at the address herein if there are any further questions or additional information needed concerning this filing. Regards, (signed, John A. Kalenowsky) John A. Kalenowsky Patent Engineer/FCC Liaison Cellular Subscriber Sector 600 N. U.S. Highway 45 Libertyville, IL 60048-5343 Enclosures APPLICANT: MOTOROLA, INC. FCC ID: IHDT6YN1 LIST OF EXHIBITS EXHIBIT DESCRIPTION FCC REFERENCE (un-numbered) RF EXPOSURE STATEMENT 2.1093 1 CERTIFICATION OF DATA 2.911 2 GENERAL INFORMATION PRODUCTION PLANS 2.983-C APPLICATION REFERENCES 2.1061 DATA SUBMITTAL PROCEDURE 2.947 SIMILAR APPLICATIONS 3 DESCRIPTION TECHNICAL CHARACTERISTICS 2.983-D-1,2,3,4,5 TRANSMITTER APPLICATION 4* RADIO SEMICONDUCTOR LIST 2.983-D-6 5* CIRCUIT DIAGRAMS 2.983-D-7 6* CIRCUIT DESCRIPTION (INDEX) 2.983-D-10-11-12 6A* MEANS FOR FREQUENCY STABILIZATION 6B* MEANS FOR ATTENUATION OF SPURIOUS EMISSIONS 6C* MEANS FOR LIMITING MODULATION 6D* MEANS FOR ATTENUATION OF HIGHER AUDIO FREQUENCIES 6E* MEANS FOR LIMITING POWER OUTPUT 6F* DIGITAL MODULATION TECHNIQUES 7 INSTRUCTION MANUAL 2.983-D-8 8 TRANSCEIVER ADJUSTMENTS 2.983-D-9 9 MEASURED DATA (INDEX) 2.983-E 9A R.F. OUTPUT-MEASURED DATA 2.985 9B OCCUPIED BANDWIDTH-GRAPH 2.989 9C, 9C-1 thru 9C-13 CONDUCTED SPURIOUS EMISSIONS-GRAPHS 2.991, 24.238 9D RADIATED SPURIOUS EMISSIONS-GRAPH 2.993 9E FREQUENCY STABILITY vs. TEMPERATURE-GRAPH2 .995 9F FREQUENCY STABILITY vs. VOLTAGE-GRAPH 2.995 10 IDENTIFICATION (NAMEPLATE) INFORMATION 2.983-F 11-1,2,3,4 PHOTOGRAPHS 2.983-G 12 MEASUREMENT TECHNIQUES * In RED indicates submitted with Request for Post-Grant Confidentiality.
APPLICANT: MOTOROLA, INC. TRANSCEIVER TYPE: IHDT6YN1 EXHIBIT 10 FCC IDENTIFICATION (NAMEPLATE) INFORMATION The Equipment ID label above is representative (in size and in showing the FCC Identifier as it will appear) of the actual label that will appear on the equipment when in production. Its location is shown in Exhibit 11-2. FCC ID: IHDT6YN1 SCALE 2:1
EXHIBIT 11-3 ALTERNATE TRANSCEIVER TYPE: IHDT6YN1APPLICANT: MOTOROLA, INC. APPLICANT: MOTOROLA, INC.TRANSCEIVER TYPE: IHDT6YN1 EXHIBIT 11-4 ALTERNATE
APPLICANT: MOTOROLA, INC.FCC ID: IHDT6YN1 EXHIBIT 2-1 GENERAL INFORMATION 1. Production Plans---Pursuant 2.983 (c) Quantity production is planned. 2. Application References---Pursuant 2.1061 Reference is made to the following Motorola "Application References" on file with the Commission: None 3.Data Submittal Procedure: Data is supplied in accordance with Part 2, Sub-part J of the Commission's rules. Standard used on measurements supplied are J-STD-008. 4.Similar to "Currently Type Accepted Transmitter Type(s)" IHDT6XB1 - Portable Broadband PCS Transceiver 5.Report of measurements pertaining to types of emission, frequency range, maximum output power, and modulation techniques A. Types of emission The equipment is designed to provide emissions consistent with emission designator 1M25F9W, determined as explained in paragraph 6 of this exhibit. Reference is also made to J-STD-008. Actual measurements of Occupied Bandwidth are shown in Exhibit 9B. APPLICANT: MOTOROLA, INC.FCC ID: IHDT6YN1 EXHIBIT 2-2 B. Frequency range The frequency range of the equipment is the Domestic Public Personal Communications Service bands, 1850 - 1910 MHz (transmit) and 1930 - 1990 MHz (receive). Frequency Stability versus Temperature and Voltage measurements are shown in Exhibits 9E and 9F. This equipment uses Automatic Frequency Control (AFC) to lock to within ± 150 Hz of the received frequency from the Land Station system. C. Maximum output power The maximum radio frequency output power allowed per J-STD-008 ranges from 0.2 Watts to 1.0 Watt. The mobile maximum output power during a power control group is within the specified limits and is controlled by commands from a land station system. The nominal 'conducted' output power setting for this equipment is 0.25 Watts (24.0 dBm) with a tolerance of ± 0.5 dB. Maximum 'conducted' output power is then 0.28 Watts (24.5 dBm). RF Output Power measurement results are shown in Exhibit 9A. D. Modulation techniques Modulation is OQPSK (Offset Quaternary Phase Shift Keying). Reference is made to the J-STD-008, Section 2.1.3. Exhibits 6C, 6D and 6F further discuss details of the modulation techniques. Exhibit 9B show the results of modulation related testing. APPLICANT: MOTOROLA, INC.FCC ID: IHDT6YN1 EXHIBIT 2-3 6.Determination of Emission Designator (per Part 2 - Subpart C of the Commission’s rules) A. Emission, modulation and transmission characteristics (per section 2.201) a. First Symbol - Type of modulation of the main carrier. The main carrier is Offset Quaternary Phase Shift Keyed (OQPSK) and has both amplitude and angle modulation characteristics. OQPSK in and of itself does not necessarily produce amplitude modulation characteristics, however, the In-Phase (I) channel and the Quadrature (Q) channel modulating signals are filtered by a 47 tap FIR filter specified in J-STD-008, section 2.1.3.10 before being applied to a quadrature modulator. The filtering produces amplitude variation on the main carrier. Therefore, the main carrier is not a constant envelope signal, but is both amplitude and angle-modulated. Upon discussion with FCC Laboratory personnel, however, it has been agreed that the amplitude modulation characteristics are incidental to the nature of OQPSK and the filtering so 'angle-modulation' is predominant. This corresponds to the symbol F, defined as “Emissions in which the main carrier is angle-modulated.” b. Second Symbol - nature of signal(s) modulating the main carrier. The nature of the modulating signal is quantized voice or other audio information, analogue in nature at its source, and digital information for transceiver control or data transmission. The main carrier is modulated using direct sequence CDMA techniques. This corresponds to symbol 9, defined as “Composite system with one or more channels containing quantized or digital information, together with one or more channels containing analogue information.” APPLICANT: MOTOROLA, INC.FCC ID: IHDT6YN1 EXHIBIT 2-4 c. Third symbol - Type of information to be transmitted. The information transmitted in the digital mode of operation is a combination of data transmission (command data) and telephony (sampled quantized voice or other audio signals). This corresponds to symbol W, defined as “combination of above” which would be the combination of symbol D, “Data transmission, telemetry, telecommand,” and symbol E, “Telephony (including sound broadcasting).” B. Bandwidths (per section 2.202) Bandwidth is primarily determined by a 47-tap FIR filter used to filter the I channel and Q channel modulating signals. Per J-STD-008 Section 2.1.3.1.10, the Base band filter is defined to have a one-sided 1.5 dB ripple bandwidth of 590 kHz minimum and a 40dB minimum stopband at 740 kHz maximum. Computer simulations show that the occupied bandwidth as defined in paragraph 2.202(a) is 1.25MHz. Based on these considerations, the bandwidth used is 1.25 MHz. Converting this result to the format indicated in paragraph 2.202(a), yields 1M25. The resulting complete emission designator is then 1M25F9W.
APPLICANT: MOTOROLA, INC. FCC ID: IHDT6YN1 EXHIBIT 3 DESCRIPTION 1. Transmitter Technical Characteristics--Pursuant 2.983(d) A. R.F. Power Output: Variable range 0.00001 mW to 0.250 Watts (controlled by the Cell site via Closed Loop Power Control). The power out varies depending on the mobile’s data rate. Transmit duty cycle is 100% in 14400 bps, 50% in 7200 bps, 25% in 3600 bps, and 12.5% in 1800 bps. B. Frequency Range:1850.000 to 1909.950 MHz (Tuning Range) 1851.250 to 1908.750 MHz (Operating Range) C. Frequency Stability:±.00025% (2.5PPM) (Open Loop) ±.00005% (Closed Loop) In normal operation, the mobile is locked to the base station via an over-the-air AFC loop. This loop locks the mobile’s transmitter frequency to within ±15 0 Hz of the base station frequency. D. Emissions: 1M25F9W E. D.C. Voltage into the Final R.F. Amplifier: 3.6 Volts DC D.C. Current into the Final R.F. Amplifier: 0.590 Amps (Average Current in CDMA Mode in 100% transmit duty cycle) 2. Transmitter Application A. Power Supply Available The transmitter is normally operated by means of a 3.6 Volt (nominal) battery with battery cut-off voltage no lower than 2.9 volts. Performance is also guaranteed up to 5.4 volts. (Refer to Exhibit 9F) B. Antenna Available The transmitter is designed to be used with an integral quarter wave helical antenna which incorporates an extendible half wave whip portion that may be operated in an extended or retracted position. C. Maximum Transmit Channel Capability CDMA Mode - Per 2.1.1.1 of J-STD-008
APPLICANT: MOTOROLA, INC.FCC ID: IHDT6YN1 EXHIBIT 8 TRANSCEIVER ADJUSTMENTS/TUNE-UP PROCEDURE 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.
APPLICANT: MOTOROLA, INC.FCC ID: IHDT6YN1 RF Exposure Statement Motorola, Inc., Cellular Subscriber Sector, hereby certifies that, when used as stated in operating instructions supplied, this PCS Portable Transceiver, FCC ID: IHDT6YN1, complies with the FCC’s radiofrequency energy exposure limits for General Population/ Uncontrolled environment, per FCC Rule 47CFR2.1093.
P P a a g g e e 1 1 October 29, 1998 SAR Test Report for Motorola portable cellular phone (FCC ID IHDT6YN1). 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) SAR Test Results 8) Summary Appendix A: Included data Appendix B: SAR Measurement Operational Guide 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 IHDT6YN1. 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 XG1VQ 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 1850 to 1910 MHz using CDMA digital mode only. The rated maximum average transmit power for this test unit is 0.25 Watt. 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 Figures 3 and 4 show the test unit as it is placed onto the phantom head with the antenna in the extended and retracted positions respectively. For the purposes of the actual SAR tests the 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. P P a a g g e e 4 4 Figure 4. 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 an SAR measurement system developed by Motorola and manufactured by IDX Robotics™ of Corvallis, Oregon. This system utilizes a computer controlled six axis robot to move a measurement probe to measure the SAR. The probe is calibrated at the Florida Corporate Electromagnetics Laboratory in Plantation Florida, using a procedure developed by Dr. Q. Balzano. 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. Furthermore, a copy of the document “SAR Measurement Operational Guide”, dated December 1997, is attached as appendix B for reference purposes. This Motorola document describes the measurement setup and rationale in detail. 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. SAR was measured with the antenna in both the retracted and extended positions. 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 figures 3 and 4). Due to the construction of the phone, the base of the antenna is 23 mm away from the cheek of the phantom in all cases. 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 unit is measured for RF power out so as to ensure that the test was evaluating the maximum SAR level. For the purposes of these tests, the transmitter was operated at the highest transmitter output (full rate on the vocoder), with the antenna in both the extended and retracted positions, and with the phone on both left and right side talk positions. 6. Method of Measurement For each antenna position the system is instructed to scan as much of the face of the phone as is in close proximity to the phantom. Using the information gained about the general region of highest SAR, the system then automatically scans a smaller area centered around the location of peak spatial SAR. Once the precise location of highest SAR is found, the system then automatically measures the fall off of electric field strength as the measurement probe is moved away from the inner surface of the phantom in the direction of the local normal to the phantom surface. Using appropriate probe calibration techniques, the SAR in 1 gram of phantom tissue is then calculated. The phantom head, shown in figures 3 and 4, was filled with a liquid having relative dielectric constant equal to 44 and conductivity equal to 1.3 S/m. This mixture is a good dielectric equivalent of the gray matter of the human brain. The composition of the liquid mixture is as follows: 45.9% water; 53.0% sugar; 0% salt, 1% HEC; and 0.1% bactericide. 7. SAR Test Results Figure 5 shows the phone overlaid with a typical contour plot. Also shown are cross hair lines showing the +X and +Y directions. The intersection of these lines re…
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To: Kwok Chan, FCCcc: John Kalenowsky, Motorola, Inc. From: Paul Moller, Motorola, Inc. Subject: FCC ID IHDT6YN1 Hand SAR Date: October 29, 1998 Portable cellular phone FCC ID IHDT6YN1 was measured for total radiated power in the presence of a human phantom complete with a hand holding the phone. The phone was positioned on a full body measurement phantom per the instructions in the Motorola user’s manual for the subject phone. Total radiated power was measured without a hand holding the phone, and then as a second measurement with a phantom hand holding the phone in a normal position. One can see the placement of the phantom hand relative to the subject phone in picture A. The phantom hand has the same dimensions as a real human hand, and is made of a pliable shell that is filled with tissue simulant. The tissue simulant is the same as is used in the head phantom. The dielectric constant is 44 and the conductivity is 1.3 S/m. The phantom is placed inside of an anechoic chamber capable of performing full spherical scans of the phones radiation characteristics, specifically total radiated power. The difference in total radiated with and without the phantom hand is then measured for both the antenna retracted and extended cases. This difference in total radiated power with and without the phantom hand is then the maximum power that is deposited in the hand. The phone was set to transmit on maximum power (0.25 Watt) in with the vocoder set to full rate. For the subject phone, the maximum power deposited in the hand was found to be less than 20mW for both the antenna retracted and extended positions. 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 in the hand of 4 W/kg as averaged over any 10 grams of tissue for portable devices being used within 20cm of the user in the uncontrolled environment. More than 40mW of total power deposited in the hand would be required for the limit of 4 W/kg averaged over 10 grams to be exceeded. Since the total power deposited in the hand for the test phone is less than 40 mW, the standard is not exceeded. Included are two pictures. Picture A shows the subject phone in the normal talk position with the phantom hand in the test position. Picture B shows the full body phantom in the anechoic chamber. If you have any further questions please feel free to contact me directly at 847-523-5210. Paul Moller Picture A Picture B
APPLICANT: MOTOROLA, INC.FCC ID: IHDT6YN1 EXHIBIT 9 SUBMITTED MEASURED DATA INDEX EXHIBITMEASUREMENT 9ARF Power Output - Measured Data 9BOccupied Bandwidth, Maximum Power - Graph 9CConducted Spurious and Harmonic Emissions - Graphs 9DRadiated Spurious and Harmonic Emissions - Graph 9EFrequency Change vs Temperature - Graph 9FFrequency Change vs Supply Voltage - Graph APPLICANT: MOTOROLA,INC. FCC ID: IHDT6YN1 RF POWER Output Data The input supply to transmitter was set at 3.6 Volts DC. The RF power output was measured with the indicated voltage and current applied into the final RF amplifying device. The values measured for RF Output, DC Current and RF Input Power are all average values which reflect a 100% transmit duty cycle in CDMA operation. Measured RF Output:0.27 Watts Measured DC Voltage:3.6 Volts Measured DC Current:590 mA Measured RF Input:0.63 mW Effective Isotropic Radiated Power Since the unit is intended for use with a provided antenna (and “non-standard” RF connector), EIRP is measured. The antenna substitution method was used. The result indicated is the maximum EIRP found over the channels and radio orientations tested. The maximum was found at the high channel with the antenna in the extended position. Maximum Effective Isotropic Radiated Power: 25.6 dBm( 0.36 W ) EXHIBIT 9A APPLICANT: MOTOROLA,INC. FCC ID: IHDT6YN1 Bandwidth Measurement Data for Transmitter Types F9W (CDMA) Deviation of the Carrier with OQPSK Modulation Horizontal Scale = 1 MHz / Division Vertical Scale = 10dB / Division (Attenuation) Resolution Bandwidth = 30 kHz Power Level = 0.250 W (Average Power in Transmitter) Measured Data: Modulate the transmitter with OQPSK modulation, using pseudo random data. Obtain image on spectrum analyzer. Comments: Modulation products in a bandwidth of 30 kHz centered ±1.25 MHz from the channel center frequency shall be at least 42 dB below the mean output power level. EXHIBIT 9B Conducted Spurious and Harmonic Emissions – Graph Transmitter Conducted Spurious Emissions Date: 9/23/98 Signature: Carrier Power: 250mW to 0.00001mW. Carrier Frequency: 1851.250 MHz to 1908.750 MHz in 50 kHz steps. * Each reported emission reflects the highest absolute level found among all power levels and channels tested. * No signals greater than –81dBm were found in the 1930MHz to 1990MHz band. * Spectrum was searched from 10MHz to the 10 th harmonic of the transmitter. APPLICANT: MOTOROLA, INC. FCC ID: IHDT6YN1 EXHIBIT 9C APPLICANT: MOTOROLA, INC. FCC ID: IHDT6YN1 Carrier 1851.25MH…
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| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 1 | 24E | 1.85 GHz - 1.91 GHz | 380.00 mW | 1M25F9W | 150.0000000000 Hz |
Qi2 wireless charger
Equipment Class
DCD - Part 15 Low Power Transmitter Below 1705 kHzWireless Earphones
Equipment Class
JAB - Part 15 Class B Digital DeviceSmart Watch
Equipment Class
JAB - Part 15 Class B Digital DeviceMobile Cellular Phone
Equipment Class
JBP - Part 15 Class B Computing Device PeripheralSmart Watch
Equipment Class
NII - Unlicensed National Information Infrastructure TX