
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
NetVistaW50 WirelessInternetAppliance (Type8368) GettingStarted W5UG0000 NetVistaW50 WirelessInternetAppliance (Type8368) GettingStarted W5UG0000 First Edition (November 2001) © Copyright International Business Machines Corporation 2001. All rights reserved. US Government Users Restricted Rights – Use, duplication or disclosure restricted by GSA ADP Schedule Contract with IBM Corp. Contents ImportantSafetyInstructions......v Chapter 1. Welcome.........1 Chapter 2. Checklist for unpacking....3 Chapter 3. Set up..........5 Chapter 4. Tablet features.......7 Frontview.............7 Leftview.............8 Rightview.............9 Backview.............10 Chapter 5. Cradle features.......11 Frontview ............11 Rearview.............11 Chapter 6. Operating the tablet.....13 Starting the tablet..........13 Shutting down the tablet........13 Usingthebuttons..........14 Understanding the indication lights....14 Attachingexternaldevices.......14 USB..............14 Audio.............14 CompactFlash..........14 Chapter 7. Solving problems......15 Troubleshooting...........15 Errors without messages.......15 Apasswordproblem........15 A power switch problem.......15 Wireless connection problems.....15 Standby problems.........16 Tabletscreenproblems.......16 Battery problems.........17 Otherproblems..........17 Starting the BIOS Setup Utility......17 Chapter 8. Getting information, help, and service.............19 Getting information.........19 UsingtheWorldWideWeb......19 Getting information by fax......19 Getting help and service........20 Using the documentation and diagnostic programs............20 Calling for service.........20 Appendix A. Specifications......23 Features.............23 Specifications...........24 Appendix B. Notices.........27 Processing date data.........27 References to the Web site addresses....28 Federal Communications Commission (FCC) Statement.............28 Industry Canada..........29 European Community Directive Conformance Statement.......29 © Copyright IBM Corp. 2001iii ivNetVista W50 Wireless Internet Appliance (Type 8368) Getting Started Important Safety Instructions DANGER Danger Notices To prevent a possible electrical shock during an electrical storm, do not connect or disconnect cables or station protectors for communications lines, display stations, printers or telephones. (RSTFD003) To prevent a possible electrical shock from touching two surfaces with different electrical grounds, use one hand, when possible, to connect or disconnect signal cables. (RSTFD004) An electrical outlet that is not correctly wired could place hazardous voltage on metal parts of the ysstme or the products that attach to the system. It is the customer’s responsibility to ensure that the outlet is correctly wired and grounded to prevent an electrical shock. (RSTFD201) To prevent a possible electrical shock when installing the system, ensure that the power cords for all devices are unplugged before installing signal cables. (RSTFD202) To prevent a possible electrical shock when adding the device to a system, disconnect all power cords, if possible, from the existing system before connecting the signal cable to that device. (RSTFD205) To prevent a possible electrical shock, disconnect the power cord from the electrical outlet before opening the unit (RSTFD215) To reduce the risk of electrical shock, use only AC power sources provided by IBM (RSTFD216) © Copyright IBM Corp. 2001v DANGER To avoid a shock hazard, do not connect or disconnect any cables or perform installation, maintenance, or reconfiguration of this product during an electrical storm. To avoid a shock hazard: vThe power cord must be connected to a properly wired and earthed receptacle. vAny equipment to which this product will be attached must also be connected to properly wired receptacles. When possible, use one hand to connect or disconnect signal cables to prevent a possible shock from touching two surfaces with different electrical potentials. Electric current from power, telephone, and communication cables is hazardous. To avoid shock hazard, connect and disconnect cables as described below when installing, moving, or opening the covers of this product or attached devices. To Connect: 1.Turn everything OFF. (For hot-pluggable features, read your User’s guide for more information.) 2.First, attach all cables to devices. 3.Attach signal cables to receptacles. 4.Attach power cord to outlet. 5.Turn device ON. To Disconnect: 1.Turn everything OFF. (For hot-pluggable features, read your User’s guide for more information.) 2.First, remove power cord from outlet. 3.Remove signal cables from receptacles. 4.Remove all cables from devices. DANGER If the rechargeable battery pack is incorrectly replaced, there is a danger of an explosion. The battery pack contains a small amount of harmful substances. To avoid possible injury: vReplace only with a battery of the type recommended by IBM, or an equivalent. vKeep the battery pack away from fire. vDo not expose it to water or rain. vDo not attempt to disassemble it. vDo not short-circuit it. vKeep it away from children. Do not put the battery pack in trash that is disposed of in landfills. When disposing of the battery, comply with local ordinances or regulations and your company’s safety standards. viNetVista W50 Wireless Internet Appliance (Type 8368) Getting Started DANGER Reduce the risk of fire and electric shock by always following basic safety precautions, including the following: vDo not use your device in or near water. vDuring electrical storms: –Do not use your device with the telephone cable connection. –Do not connect the cable to or disconnect it from the telephone outlet on the wall. CAUTION: The flourescent lamp in the liquid crystal display (LCD) contains mercury. Do not put it in trash that is disposed of in landfills. Dispose of it as required by local ordinances or regulations. The LCD is made of glass, and rough handling or dropping the computer can cau…
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International Business Machines Corporation P.O. Box 12195 Research Triangle Park, NC 27709 Attn.: Reviewing Engineer Federal Communications Commission 7435 Oakland Mills Road Columbia, MD 21046 RE: IBM 8368 MODEL 10J USER MANUAL, FCC ID: ANO836810J To Whom It May Concern: This product is not currently scheduled to be marketed and sold. Only some customer evaluation testing is planned. This product was originally developed under a different type and model number and with a different application intended. That user manual has been submitted. This new product, the IBM 8368 Model 10J Webpad is intended strictly for the commercial retail point-of-sale environment. The electronic emissions statements in the original manual do not reflect the new definition of this product. The Marconi Compliance Statement Addendum document reflects the correct manual statements and has also been submitted. When we bring this product to market, the user manual will be updated with the correct information and a copy will be sent to the FCC. Please contact me if there is any information you may need. Sincerely, John Hibbard IBM Corporation Retail Store Solutions EMC Design Engineer
IBM 8368 Model 10J Webpad Electronic Emission Notices Addendum Page 1 of 2 USA – Federal Communications Commission (FCC) Federal Communications Commission (FCC) Statement This equipment has been tested and found to comply with the limits for a Class A digital device, pursuant to Part 15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful interference when the equipment is operated in a commercial environment. This equipment generates, uses, and can radiate radio frequency energy and, if not installed and used in accordance with the instruction manual, may cause harmful interference to radio communications. Operation of this equipment in a residential area is likely to cause harmful interference in which case the user will be required to correct the interference at his own expense. IBM is not responsible for any radio or television interference caused by unauthorized changes or modifications to this equipment. Unauthorized changes or modifications could void the user’s authority to operate the equipment. This device complies with Part 15 of the FCC Rules. Operation is subject to the following two conditions: (1) this device may not cause harmful interference, and (2) this device must accept any interference received, including interference that may cause undesired operation. Exposure to Radio Frequency Energy The radiated output power of the IBM 8368-10J Webpad is far below the FCC radio frequency exposure limits. Nevertheless, the IBM 8368-10J Webpad shall be used in such a manner that the potential for human contact during normal operations is minimized. The antenna(s) must not be co-located (within 20cm) or operating in conjunction with any other antenna or transmitter during customer usage. Interference Statement An improper installation or unauthorized use may cause harmful interference to radio communications. Also, any tampering with the internal antenna will void the FCC certification and your warranty. Refer to the Appendix: Electronic Emission notices in the User Manual for more detail. Canada – Industry Canada (IC) This Class A digital apparatus complies with Canadian ICES-003. Cet appareil numèrique de la classe A est conforme à la norme NMB-003 du Canada. IBM 8368 Model 10J Webpad Electronic Emission Notices Addendum Page 2 of 2 Low Power License – Exempt Radio Communication Devices (RSS-210) Operation is subject to the following two conditions: (1) this device may not cause interference, and (2) this device must accept any interference, including interference that may cause undesired operation of the device. Permis d’émission à faible puissance – Cas des appareils de communications radio (CNR-210) L’utilisation de ce dispositif est autorisée seulement aux conditions suivantes : (1) il ne doit pas produire de brouillage et (2) l’utilisateur du dispositif doit être prêt à accepter tout brouillage est susceptible de compromettre le fonctionnement du dispositif. To prevent radio frequency interference to the licensed service, this device is intended to be operated indoors and away from windows to provide maximum shielding. Equipment (or its transmit antenna) that is installed outdoors is subject to licensing. Pour empêcher que cet appareil cause du brouillage au service faisant l’objet d’une licence, il doit être utilisé à l’intérieur et devrait être placé loin des fenêtres afin de fournir un écran de blindage maximal. Si le matériel (ou son antenne d’émission) est installé à l’extérieur, il doit faire l’objet d’une licence.
HFA3783 QUAD IF ISL3685IR RF/IF CONV ISL3984 RFPA PLL RF LO REF IN PLL I/Q LO I ADC Q ADC RX ADC IF DAC RX DAC TX DAC Q DAC I DAC IF LO REF IN TX ADC REF_OUT TX ALC MOD DEMOD AGC CTL I/O ANT_SEL 6 1 1 1 6 6 6 6 6 REF IN 44 MHz CLOCK PHY I/O CONTROL PROCESSOR MEMORY ARBITER RADIO I/O HOST I/O WEP ENGINE CAL_EN T/R Optional Parallel FLASH miniPCI HOST Intf Differential signals ISL3874 MAC/BBP 128Kx16 SRAM RF VCO ISL3183 IF VCO 32KHz Sleep SAW External Antenna Optional Diversity Switch External Status LEDs Serial EEPROM BLOCK DIAGRAM
E33252 LISTED I.T.E. E33252 LISTED I.T.E. IC:IC: IC:IC:
Operational Description General Description The IBM 8368 Model 10J Webpad is a wireless web enabled portable tablet designed for the retail store environment. Internal to the product is a wireless LAN interface card, 802MIP, developed by Actiontec Electronics Inc. The wireless LAN radio operates between 2412 and 2462 MHz. The transmitted signal is a direct sequence spread spectrum signal with a maximum bandwidth of 11.58 MHz. Mechanical Description The wireless LAN card and antenna is permanently mounted inside of the webpad device. The card and antenna is an integral design and thus is not accessible to the user. The antenna is a diversity antenna mounted in the cover of the webpad. Description of Modular Design The wireless LAN radio is designed as a module as described below: 1. Data modulation inputs are buffered with the module. 2. Power regulation is accomplished on the module
SAR EVALUATION CERTIFICATE OF COMPLIANCE FCC ID: ANO836810J APPLICANT: IBM Corporation EUT: IBM 8368 Model 10J Webpad Date of Receipt:March 12, 2003 Device Category:Part 15 C RF exposure environment:Uncontrolled RF exposure category:Portable Power supply:Powered by Battery and AC/DC adaptor Antenna:Integrated Antenna Production/prototype:Identical Prototype Measured Standards:Oet 65 Supplement C Modulation:DSSS Crest Factor:DSSS = 1 TX Range:2.4 12– 2.462 GHz RX Range:2.4 12– 2.462 GHz Used TX Channels:Low: ch. 2412 MHzCenter: ch 2437MHzHigh: ch. 2462MHz Maximum RF Power Output:0.04W Conducted Maximum SAR Measurement (averaged over: 1g) 0.178 W/kg Body Len Knight EMC Lab Manager APPLICANT NAME AND ADDRESS: DATE OF TEST:April 29, 2003 IBM Corporation TEST LOCATION:MET LABORATORIES INC. New Orchard Road 914 West Patapsco Ave. Armonk, NY 10504 Baltimore, Maryland 21230 This wireless portable device has been tested in accordance with the measurement procedures specified in FCC/OET Bulletin 65 Supplement C (2001) and IEEE Std. 1528-200X (July 2001), and has been shown to be capable of compliance for localized specific absorption rate (SAR) for uncontrolled environment/general population exposure limits specified in ANSI/IEEE Std. C95.1 - 1992. I attest to the accuracy of this data. All reported measurements were performed by me, or were made under my supervision, and are correct to the best of my knowledge and belief. I assume full responsibility for the completeness of these measurements and vouch for the qualifications of all persons taking them. I also certify that no party to this application has been denied the FCC benefits pursuant to Section 5.301 of the Anti-Drug Abuse Act of 1988, 21 U.S.C. 862. IBM CorporationIBM 8368 Model 10J Webpad FCC ID: ANO836810J April 30, 2003 EMC13384-SARCopyright 2003, MET Laboratories, Inc.Page 2 of 41 April 30, 2003 IBM Corporation New Orchard Road Armonk, NY 10504 Reference:IBM 8368 Model 10J Webpad FCC ID: ANO836810J Dear Mr. John Hibbard: Enclosed is the EMC SAR Evaluation Report for the IBM 8368 Model 10J Webpad FCC ID: ANO836810J was tested in accordance with the measurement procedures specified in FCC OET 65 Supplement C:01-01 and shown to be capable to be in compliance for localized specific absorption rate (SAR) for uncontrolled environment/general population exposure limits specified in FCC OET 65 Supplement C:01-01. Thank you for using the testing services of MET Laboratories. If you have any questions regarding these results or if MET can be of further assistance to you, please feel free to contact me. We appreciate your business and look forward to working with you again soon. Kindest Regards, MET LABORATORIES, INC. Marianne T. Bosley EMC Administrator Enclosures: DOCTEM-23 Jan 02 Certificates and reports shall not be reproduced except in full, without the written permission of MET Laboratories, Inc. The Nation’s First Licensed Nationally Recognized Testing Laboratory IBM CorporationIBM 8368 Model 10J Webpad FCC ID: ANO836810J April 30, 2003 EMC13384-SARCopyright 2003, MET Laboratories, Inc.Page 3 of 41 Dosimetric Assessment Test Report for the IBM Corporation IBM 8368 Model 10J Webpad Tested and Evaluated In Accordance With FCC OET 65 Supplement C:01-01 MET REPORT: EMC13384-SAR April 30, 2003 PREPARED FOR: IBM Corporation New Orchard Road Armonk, NY 10504 PREPARED BY: MET Laboratories, Inc. 914 West Patapsco Avenue Baltimore, Maryland 21230-3432 IBM CorporationIBM 8368 Model 10J Webpad FCC ID: ANO836810J April 30, 2003 EMC13384-SARCopyright 2003, MET Laboratories, Inc.Page 4 of 41 Dosimetric Assessment TEST REPORT for the IBM 8368 Model 10J Webpad Tested and Evaluated In Accordance With FCC OET Supplement C: 01-01 Prepared for IBM Corporation New Orchard Road Armonk, NY 10504 Report Prepared By Marianne T. Bosley EMC ADMINISTRATOR Report Reviewed By Liming Xu TEST ENGINEER Final Review By EMC LAB MANAGER Len Knight EMC LAB MANAGER Engineering Statement: The measurements shown in this report were made in accordance with the procedures specified in Supplement C to OET Bulletin 65 of the Federal Communications Commission (FCC) Guidelines [FCC 2001] for uncontrolled exposure. I assume full responsibility for the accuracy and completeness of these measurements, and for the qualifications of all persons taking them. It is further stated that upon the basis of the measurements made, the equipment evaluated is capable of compliance for localized specific absorption rate (SAR) for uncontrolled environment/general population exposure limits specified in ANSI/IEEE Std. C95.1-1992. IBM CorporationIBM 8368 Model 10J Webpad FCC ID: ANO836810J April 30, 2003 EMC13384-SARCopyright 2003, MET Laboratories, Inc.Page 5 of 41 Quick Links • Summary of test Report • EUT Description • Test Conditions • Host Laptops Used • System Validation • SAR results summary • SAR Area Scans • Setup Pictures • Measurement System IBM CorporationIBM 8368 Model 10J Webpad FCC ID: ANO836810J April 30, 2003 EMC13384-SARCopyright 2003, MET Laboratories, Inc.Page 6 of 41 OBJECTIVE The objective of the procedure was to perform a dosimetric assessment one of the TDMA cell phone. The measurements have been carried out with the dosimetric assessment system “SARA2", and were made according to the Supplement C to OET Bulletin 65 of the Federal Communications Commission (FCC) Guidelines [FCC 2001] for evaluating compliance of mobile and portable devices with FCC limits for human exposure in the general population to radio frequency emissions. INTRODUCTION In the United States, the most recent FCC RF exposure criteria is documented in the publication OET 65 Supplement C Edition 01-01 [FCC 2001], which sets limits for human exposure to radio frequency electromagnetic fields in the frequency range 3kHz to 300GHz. The safety limits used for the environmental evaluation measurements are based on the criteria published by the American National Standards Institute (ANSI) for localized specific a…
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IMMERSIBLE SAR PROBE CALIBRATION REPORT Part Number: IXP – 050 S/N 0122 25 th October 2002 Indexsar Limited Oakfield House Cudworth Lane Newdigate Surrey RH5 5DR Tel: +44 (0) 1306 631 233 Fax: +44 (0) 1306 631 834 e-mail: [email protected] INTRODUCTION This Report presents measured calibration data for a particular Indexsar SAR probe (S/N 0122) and describes the procedures used for characterisation and calibration. Indexsar probes are characterised using procedures that, where applicable, follow the recommendations of CENELEC [1] and IEEE [2] standards. The procedures incorporate techniques for probe linearisation, isotropy assessment and determination of liquid factors (conversion factors). Calibrations are determined by comparing probe readings with analytical computations in canonical test geometries (waveguides) using normalised power inputs. Each step of the calibration procedure and the equipment used is described in the sections below. CALIBRATION PROCEDURE 1. Equipment Used For the first part of the characterisation procedure, the probe is placed in an isotropy measurement jig as pictured in Figure 1. In this position the probe can be rotated about its axis by a non-metallic belt driven by a stepper motor. The probe is attached via its amplifier and an optical cable to a PC. A schematic representation of the test geometry is illustrated in Figure 2. A balanced dipole (900 MHz) is inserted horizontally into the bracket attached to a second belt (Figure 1). The dipole can also be rotated about its axis. A cable connects the dipole to a signal generator, via a directional coupler and power meter. The signal generator feeds an RF amplifier at constant power, the output of which is monitored using the power meter. The probe is positioned so that its sensors line up with the rotation center of the source dipole. By recording output voltage measurements of each channel as both the probe and the dipole are rotated, data are obtained from which the spherical isotropy of the probe can be optimised and its magnitude determined. The calibration process requires E-field measurements to be taken in air, in 900 MHz simulated brain liquid and at other frequencies/liquids as appropriate. 2. Linearising probe output The probe channel output signals are linearised in the manner set out in Refs [1] and [2]. The following equation is utilized for each channel: U lin = U o/p + U o/p 2 / DCP (1) where U lin is the linearised signal, U o/p is the raw output signal in voltage units and DCP is the diode compression potential in similar voltage units. DCP is determined from fitting equation (1) to measurements of U lin versus source feed power over the full dynamic range of the probe. The DCP is a characteristic of 3 the schottky diodes used as the sensors. For the IXP-050 probes with CW signals the DCP values are typically 0.10V (or 20 in the voltage units used by Indexsar software, which are V*200). 3. Selecting channel sensitivity factors to optimise isotropic response The basic measurements obtained using the calibration jig (Fig 1) represent the output from each diode sensor as a function of the presentation angle of the source (probe and dipole rotation angles). The directionality of the orthogonally-arranged sensors can be checked by analysing the data using dedicated Indexsar software, which displays the data in 3D format as in Figure 3. The left-hand side of this diagram shows the individual channel outputs after linearisation (see above). The program uses these data to balance the channel outputs and then applies an optimisation process, which makes fine adjustments to the channel factors for optimum isotropic response. The next stage of the process is to calibrate the Indexsar probe to a W&G EMR300 E- field meter in air. The principal reasons for this are to obtain conversion factors applicable should the probe be used in air and to provide an overall measure of the probe sensitivity. A multiplier is applied to factors to bring the magnitudes of the average E-field measurements as close as possible to those of the W&G probe. The following equation is used (where linearised output voltages are in units of V*200): E air 2 (V/m) = U linx * Air Factor x + U liny * Air Factor y + U linz * Air Factor z (2) It should be noted that the air factors are not separately used for normal SAR testing. The IXP-050 probes are optimised for use in tissue-simulating liquids and do not behave isotropically in air. 4. 900 MHz Liquid Calibration Conversion factors for use when the probes are immersed in tissue-simulant liquids at 900 MHz are determined either using a waveguide or by comparison to a reference probe that has been calibrated by NPL. Waveguide procedures are described later. The summary sheet indicates the method used for the probe S/N 0122. The conversion factor, referred to as the ‘liquid factor’ is also applied to the measurements of each channel. The following equation is used (where output voltages are in units of V*200): E liq 2 (V/m) = U linx * Air Factor x * Liq Factor x + U liny * Air Factor y * Liq Factor y + U linz * Air Factor z * Liq Factor z (3) A 3D representation of the spherical isotropy for probe S/N 0122 using these factors is shown in Figure 3. 4 The rotational isotropy can also determined from the calibration jig measurements and is reported as the 900MHz isotropy in the summary table. Note that waveguide measurements can also be used to determine rotational isotropy (Fig. 5). The design of the cells used for determining probe conversion factors are waveguide cells is shown in Figure 4. The cells consist of a coax to waveguide transition and an open-ended section of waveguide containing a dielectric separator. Each waveguide cell stands in the upright positition and is filled with liquid within 10 mm of the open end. The seperator provides a liquid seal and is designed for a good electrical transition from air filled guide to liquid filled guide. The choice of cell depends on th…
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Below are Greg’s comments from his review. If it is considered a module, I can ask him for the 8 part letter, just let me know. RT questions: 1. Does the EUT meet the definition of a personal computer? Or just a computer peripheral, if it can be directly attached to a pc via its USB ports? If so, how is this portion of the EUT being authorized? If it does meet the definition of a peripheral, please note that the test report is not sufficient for authorization, as the test set up does not meet the minimum system requirements of C63.4. Please address. 2. The Technical Description states that the EUT is a module, but only points 2 and 3 of the Modular Approval Document are specifically addressed. Is modular approval sought for the WLAN card, or is the EUT the entire tablet? If modular approval is, indeed, sought, then the remainder of points must be addressed. The Modular Approval Document is copied at the end of this email, for your convenience. 3. What is the gain of the antenna? 4. In the test report, the Table of Contents and Tables 2 and 3 all refer to Sections 15.247(g) and (h). This is not applicable to a direct sequence transmitter. Instead, they should list compliance with Section 15.247(d). 5. There is a ferrite core on the dc line of the power supply. It appears, from the test set up photo, that there is another ferrite core on a different cable, as well. What is it? 6. The BW, output power and RF spurious emission plots are all illegible. Please submit new, legible plots. 7. What RBW was used to measure the output power? Is this value greater than the BW? 8. Please provide data demonstrating compliance with Section 15.247(d) - power spectral density. 9. Were any radiated spurious emissions in restricted bands (e.g., 2nd and 3rd harmonics) measurable? Per FCC Modular Approval Public Notice ALL the following provisions MUST be met: In order to obtain a modular transmitter approval, a cover letter requesting modular approval must be submitted and the numbered requirements identified below must be addressed in the application for equipment authorization. 1. The modular transmitter must have its own RF shielding. This is intended to ensure that the module does not have to rely upon the shielding provided by the device into which it is installed in order for all modular transmitter emissions to comply with Part 15 limits. It is also intended to prevent coupling between the RF circuitry of the module and any wires or circuits in the device into which the module is installed. Such coupling may result in non-compliant operation. 2. The modular transmitter must have buffered modulation/data inputs (if such inputs are provided) to ensure that the module will comply with Part 15 requirements under conditions of excessive data rates or over-modulation. 3. The modular transmitter must have its own power supply regulation. This is intended to ensure that the module will comply with Part 15 requirements regardless of the design of the power supplying circuitry in the device into which the module is installed. 4. The modular transmitter must comply with the antenna requirements of Section 15.203 and 15.204(c). The antenna must either be permanently attached or employ a “unique” antenna coupler (at all connections between the module and the antenna, including the cable). Any antenna used with the module must be approved with the module, either at the time of initial authorization or through a Class II permissive change. The “professional installation” provision of Section 15.203 may not be applied to modules. 5. The modular transmitter must be tested in a stand-alone configuration, i.e., the module must not be inside another device during testing. This is intended to demonstrate that the module is capable of complying with Part 15 emission limits regardless of the device into which it is eventually installed. Unless the transmitter module will be battery powered, it must comply with the AC line conducted requirements found in Section 15.207. AC or DC power lines and data input/output lines connected to the module must not contain ferrites, unless they will be marketed with the module (see Section 15.27(a)). The length of these lines shall be length typical of actual use or, if that length is unknown, at least 10 centimeters to insure that there is no coupling between the case of the module and supporting equipment. Any accessories, peripherals, or support equipment connected to the module during testing shall be unmodified or commercially available (see Section 15.31(i)). 6. The modular transmitter must be labeled with its own FCC ID number, and, if the FCC ID is not visible when the module is installed inside another device, then the outside of the device into which the module is installed must also display a label referring to the enclosed module. This exterior label can use wording such as the following: “Contains Transmitter Module FCC ID: XYZMODEL1” or “Contains FCC ID: XYZMODEL1.” Any similar wording that expresses the same meaning may be used. The Grantee may either provide such a label, an example of which must be included in the application for equipment authorization, or, must provide adequate instructions along with the module which explain this requirement. In the latter case, a copy of these instructions must be included in the application for equipment authorization. 7. The modular transmitter must comply with any specific rule or operating requirements applicable to the transmitter and the manufacturer must provide adequate instructions along with the module to explain any such requirements. A copy of these instructions must be included in the application for equipment authorization. For example, there are very strict operational and timing requirements that must be met before a transmi…
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| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.41 GHz - 2.46 GHz | 40.00 mW |

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