
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
FCC ID: AZ489FT4833 INSTRUCTION MANUAL X Preliminary Manual attached. Complete Manual attached. FCC ID: AZ489FT4833 EXHIBIT 8 FP9 OWNERS MANUAL Spirit GT Congratulations on your purchase of the Spirit GT Retail Business Radio. Your radio is a product of Motorola’s 50 years of experience as a world leader in the designing and manufacturing of communications equipment. With proper care and use, your Motorola radio should give you years of reliable communication. Please read this manual carefully to ensure you know how to properly operate the radio before use. Contents of Package 1. Radio – 1 channel model shown 2. Holster 3. NiMH Battery Pack 4. 10 Hour Charger Adapter Literature (Not shown) Owner’s Manual Warranty Card Quick Reference Guide Accessory Brochure Product 1. Power Switch (On/Off/Volume) 2. Graphical Display 3. Scroll Button 4. Monitor Button 5. Menu Button 6. Lock button (1 channel model) Lock/Scan button (2 channel model) 7. Call Button 8. Push-To-Talk (PTT)/Transmit 9. External Microphone/speaker/PTT accessory jack 10. Internal Microphone 11. Internal Speaker FCC ID: AZ489FT4833 Batteries Your Spirit GT radio operates on a Nickel Metal Hydride (NiMH) rechargeable battery pack. The NiMH rechargeable battery pack will provide approximately 11 hours of operation with normal use. To Install NiMH Battery 1. Turn radio display side down 2. Hold both sides of radio with one hand 3. Pull down back cover with opposite hand 4. Insert NiMH battery pack with contact side down. 5. Replace the NiMH battery door and push up until secure. To Charge NiMH Battery To get maximum use from the battery, charge it for at least five hours before you use it for the first time. After initial charging, your battery will fully charge in about three hours 1. Turn the radio off. 2. Plug the charger into an AC wall outlet. 3. Lift the charging cover (not detachable) and plug charger connector into jack. 4. The red light on the charger will flash while the battery is charging, and will glow continuously when the battery is fully charged. Notes: • For optimum battery life, the battery should not be left charging for prolonged periods after reaching full charge. Charging the battery over the weekend is acceptable. • Do not transmit while radio is charging. Transmitting while radio is charging can cause the radio transmitter or the charger to operate improperly. • Turn radio off when charging. If radio is on while charging, at least twice as much time is required to charge the battery. Battery Meter Indicator The battery meter, located on the front display, is divided into three bars. As power is used, the bars will disappear. Low Battery Alert When the battery is low, the radio will beep: • 3 to 4 seconds after turning power on • every 10 minutes in standby mode • after releasing the Push-To-Talk button • after releasing the Call button FCC ID: AZ489FT4833 Note:Remove batteries before storing your radio for extended periods. Batteries corrode over time and may cause permanent damage to your radio. Turn the Radio on/Off Turn the On-Off/Volume know clockwise. You will hear a beep and see the Transmit Light flash momentarily to indicate the radio is on. To turn the radio off, turn the On-Off/Volume knob counterclockwise. You will hear a click to indicate the radio is turned off. Adjust the Volume Hold Monitor button down to listen to audio level while rotating On-Off/Volume knob. Rotate clockwise to increase and counterclockwise to decrease volume. To Send/Receive Messages Check channel activity by pressing Monitor button. You will hear static if the channel is clear to use. Do not transmit if someone is talking on the channel. 1. To send messages, press Push-To-Talk and speak into radio. (To maximize clarity, hold radio 2.5 to 5 cm from mouth). 2. The Transmit Light will glow continuously when sending messages. 3. To listen for messages, release the Push-to Talk button. Scan (Spirit GT 2 Channel Model only) Scan allows you to monitor channels and codes of other transmitting radios. When the ratio detects channel activity, it stops scanning and locks in on the active channel and code. It allows you to listen and talk back to the person (s) transmitting without having to switch channels. Note:To scan for radios without Interference Eliminator Codes, change your code to zero (off) before starting scan. Call Spirit GT radios have five unique call tones to identify each user and alert others that you intend to transmit. Press the Call button and all users on your channel and code will be alerted with our call tone. Hands Free Use Spirit GT radios have built-in Voice Operated Transmission (VOX) capability. This means the sound of your voice activates transmission when the radio is used and accessory ( Model ###, Sold separately). To use the VOX feature: 1. Make sure the radio is off. 2. Plug accessory’s connector into jack on the left hand side of the radio. FCC ID: AZ489FT4833 3. Turn radio on and use the Volume Control knob to lower the volume before placing the accessory on the head or in ear. The VOX indicator will appear on the display to indicate that the VOX feature is active. 4. Use the Volume Control Knob to adjust volume to a comfortable listening level. 5. To transmit, speak into accessory microphone. To receive, stop talking. Note: There will be a brief delay between when you start/stop talking and radio transmission. Do not press the Push-To-Talk button to exit the Volume selection mode; this will disable the VOX Feature. To reset to Push-To-Talk Mode: 1. Press Push-To-Talk button once. The VOX indicator will disappear. 2. To transmit, press Push-To-Talk button on radio. To receive, release the Push-To-Talk. 3. To return to VOX mode, turn the radio off, then on again with the accessory in place. Note: The Accessory Jack Cover is not detachable and should be closed when not in use. To select VOX sensitivity: Spirit GT radios allow you to adjust the VOX sensitivity of the radio to compensate for varying l…
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FCC ID: AZ489FT4833 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: 1) B.S.E.E. from the University of Miami. 2) M.S.E.E from Florida Atlantic University. 3) 2 years of Design and Development experience in the field of two-way radio communications. Name: Joe Zbib Signature: Joe Zbib Date:February 28,1999. Position: Electrical Dev. Engineer 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: Name: Mark Bradford Signature: Mark Bradford Date: February 28,1999 Position: Senior Resource Manager FCC ID: AZ489FT4833 EXHIBIT 2
Applicant: Motorola Inc FCC ID: AZ489FT4833 RF EXPOSURE INFORMATION: In accordance with 47 CFR 2.1093 (c ), this transmitter has been subjected to routine environmental evaluation for RF exposure and found to be compliant with the limits specified in 47 CFR 2.1093 (d). EXHIBIT 11
Applicant: Motorola Inc. FCC ID: AZ489FT4833 Global Technology Development Group 8000 West Sunrise Boulevard, Fort Lauderdale, Florida 33322. (954) 723-5000 Date: March 22, 1999. Authorization and Evaluation Division Federal Communications Commission Laboratory 7435 Oakland Mills Road Columbia. MD 21046 Att:Frank Coperich, George Tannahill. Subject: Application for Certification of Transmitter with FCC ID: AZ489FT4833. Gentlemen: Motorola Inc, 8000 West Sunrise Boulevard, Fort Lauderdale, Florida, herein submits application for Certification of the subject transmitter. This transmitter is primarily intended for use in a portable radio application with capabilities for clear communications with transmit output power of 1.0 Watt or 30 dBm. The subject transmitter complies with Section 90.203 of the rules in that the operator cannot directly program transmit frequencies using only the unit’s normally accessible external controls. Enclosed is a complete Type Acceptance Application. Contact me (954) 723-5793 or Fax me at (954) 723-4794, if you require any additional information. Sincerely, Mike Ramnath. FCC Liaison.
Motorola Inc FCC ID: AZ489FT4833 ______________________________________________________________________________ Radio Products Group 8000 West Sunrise Boulevard, Fort Lauderdale, Florida 33322. (954) 723-5000 Date: June 04, 1999. George Tannahill Authorization & Evaluation Division Federal Communications Commission Laboratory 7435 Oakland Mills Road Columbia, MD 21046 Subject: Response to pending application for Certification of Transmitter with FCC ID: AZ489FT4833 (Confirmation # EA93620) Dear Mr. Tannahill, Responding to your email request for additional information are as follows: 1. Please provide Frequency vs Temperature data. Enclosed as Exhibit 6H-1 2. The necessary bandwidth justification mentions 16K0F3E but the rest of the report doesn’t. Is 16K0F3E being requested on the grant? No, 16K0F3E is not being requested to appear on the grant. Please ignore necessary bandwidth calculations. 3. Was the power output measurement a conducted or radiated measurement? Power was measured as Conducted Power. Contact me at (954) 723-5793 if you require any additional information. Sincerely, Mike Ramnath FCC Liaison Email: [email protected] Fax (954) 723-4794
Applicant: Motorola Inc FCC ID: AZ489FT4833 EXTERNAL PHOTOGRAPHS: 1. Front View of Radio. 2. Rear View of Radio showing FCC ID location. 3. Magnified view of FCC ID number and location. Applicant: Motorola Inc FCC ID: AZ489FT4833 EXHIBIT 3 Applicant: Motorola Inc FCC ID: AZ489FT4833 Applicant: Motorola Inc FCC ID: AZ489FT4833
FCC ID: AZ489FT4833 LIST OF EXHIBITS DESCRIPTION EXHIBIT REFERENCE I. Identification label information12.983-(f) & General Information1a 1. Production Plans2.981-(a) 2. Application References2.1061 3. Data Submittal Procedure 4. Similar Applications II. Certification of Data2 III. External Photographs32.983-(g) IV. Block Diagrams4 1. Frequency Stabilizing 4A 2. Modulation Limiting 4B and Post Limiter Filter 3.Harmonic Suppression 4C 4.Power Limiting4D V. Schematic Diagrams52.983-(d)-7 VI. Test Report6 1. Data Index6 2. RF Output Data6A2.985 3. Modulation Characteristics2.987 A. Audio Response & Low Pass Filter Response6B, 9C B. Modulation Limiting6D 4. Occupied Bandwidth6E2.989 5. Conducted Spurious Emissions 6F2.991 6. Radiated Spurious Emissions6G2.993 7. Frequency Stability (Temperature & Supply Voltage)6H-1, 9H-22.995 8. Transient Frequency Behavior6I90.214 VII. Test Set-up Procedures72.999 VIII. Instruction Manual8 2.983-(d)-8 IX. Internal Photographs.9 2.983-(g) X. Parts List and Tune-Up procedures102.983-(d)-6, 9 XI. RF Exposure Information112.1093 XII. Operational Description12 2.983- (d)1,2,3,4,5 1. Technical Characteristics 2. Application XIII. Cover Letter13 FCC ID: AZ489FT4833 IDENTIFICATION LABEL LOCATION X See the attached Photograph or Sketch Back of Radio Back of Radio under Belt Clip TYPE X The label is a paper polyester film laminate with a pressure sensitive adhesive backing. The adhesive is a permanent type acrylic with a minimum peel strength of 40 oz/ inch. The label is laser etched into the Urethane paint, exposing the Nickel plating on the Zamak casting substrate. Since no adhesive is required, the label is permanent and tamper-proof. (** - NOTE- The label attached below is a paper polyester film laminate, as described above. This is just for sample purposes, as the actual label is laser etched into the casting) MARKINGS (TEXT) See the attached Photograph, Exhibit 3. EXHIBIT 1 FCC ID: AZ489FT4833 GENERAL INFORMATION I.Production Plans—Pursuant 2.983 ( c ). Quantity production is planned. II.Application References -- Pursuant 2.1061 Reference is made to the following Motorola “Application References” 1. Portable Products and their application. 2. Portable Products Transmitter Modulations Methods. III.Data Submittal Procedure: Data is supplied in accordance with Part 2, Sub-part J of the Commissions’ Rules. IV.Similar, currently Type Accepted Transmitter, FCC ID: AZ489FT4818. EXHIBIT 1a
Applicant: Motorola Inc.FCC ID: AZ489FT4833 INTERNAL PHOTOGRAPHS: 1. Internal View. 2. Internal View- underside of PC Board. EXHIBIT 9 Applicant: Motorola Inc.FCC ID: AZ489FT4833 EX. 9
Applicant: Motorola Inc FCC ID: AZ489FT4833 CIRCUIT DESCRIPTION/BLOCK DIAGRAMS A general description of the overall circuit is not covered in an instruction manual. This section provides the description of circuits required by subpart 2.983 of the Commissions’ rules. Circuits not described in the manual are covered in this exhibit. The following are included: 1. Means for Frequency Stabilization*4A 2. Means for Modulation Limiting4B and Low Pass Filter* 3. Means for Harmonic Suppression4C 4. Means for Limiting Power*4D * From currently Type Accepted Transmitter FCC ID: AZ489FT4818. EXHIBIT 4 Applicant: Motorola Inc FCC ID: AZ489FT4833 CARRIER FREQUENCY GENERATION AND STABILIZATION BLOCK DIAGRAMS: The carrier frequency is generated using a fractional-N frequency synthesizer inside the ULTZif (U801). This consist of a phase-locked loop circuit with a voltage controlled oscillator (VCO) whose output is fed back to a programmable divider chain. The divide ratios are determined from information stored in the microcomputer and bussed to the synthesizer via a microcomputer. The microcomputer extracts the data for the division ratios as determined by the system select switch or by loading data stored in the memory ICs. Using a time averaged algorithm a combination of divide ratios are used so that the reference frequency can be a much higher value than the value of the frequency resolution. Modulation occurs by a combination of directly coupling the modulation signal to the low pass filter in the loop and by processing the digitized analog modulation signal to alter the divider values. A temperature compensated crystal oscillator at 16.8 MHz and stable to 2.5 parts per million over temperature extremes is used for the frequency reference. The 16.8 MHz reference is further divided into one of three reference frequencies which is compared to the divided down VCO output in a phase detector which in turn provides a DC steering voltage back to the VCO. EXHIBIT 4A Applicant: Motorola Inc FCC ID: AZ489FT4833 MODULATION LIMITING AND LOW PASS FILTER BLOCK DIAGRAMS : The pre-emphasis modulation limiting and low pass filtering of this transmitter are in integrated circuit form on the Audio/Signaling Filter section of the ULTZif (U801). Audio from the microphone initially enters the ULTZif (U801) where it is amplified, filter and pre- emphasized. The limited, filtered audio is then fed through digitally programmable attenuators to the modulation port on the synthesizer module. There is no access to the post limiter in the ULTZif (U801). EXHIBIT 4 B Applicant: Motorola Inc FCC ID: AZ489FT4833 HARMONIC SUPPRESSION CIRCUIT CIRCUIT DESCRIPTION: Attenuation for harmonics is provided by a low pass filter before the RF Power Amplifier and one after it, as well as, the Harmonic Filter after the Antenna Switch. The low pass filter in the RF PA is composed of C503,C504, and L501 on the input and L507 & C522 on the output. The Harmonic Filter is a fifth order Low Pass Chebyshev with 0.1 dB of ripple composed of C101, L101, C103, L102, C102 and C104. For Circuit Diagram refer to the Schematics in exhibit five. EXHIBIT 4C Applicant: Motorola Inc FCC ID: AZ489FT4833 MEANS FOR LIMITING POWER CIRCUIT DESCRIPTION The transmit power Amplifier is a two stage design. The first stage is an MMBR951 RF power amplifier IC chip with an input level of 3 dBm(2 mW)., and 15-20 dB gain. The second stage utilizes a MRF9482 device FET with a specified maximum output of 1.3 Watts.. The antenna switch controls the RF signal flow. In transmit mode, the RF signal flow is directed to the Harmonic filter. The output of the harmonic filter is connected to the antenna. For Circuit Diagram refer to the Schematics in Exhibit five. EXHIBIT 4D
Applicant: Motorola Inc FCC ID: AZ489FT4833 OPERATIONAL DESCRIPTION I.Transmitter Technical Characteristics—Pursuant 2.983 (d) A. RF Power Output1.0 Watt B. Frequency Range 458-470 MHz C. Frequency Stability 0.00025 % D. Emissions Designators 11K0F3E, (see General Info. ) E. Spurious Emissions 76.1dBc F. DC Voltage and Current into 3.6 Volts the final RF amplifier stage/stages 550 mAmps II.Transmitter Application This transmitter is primarily intended for use in a hand-held two-way portable radio. The radio is characterized by the following features, options and accessories. A.Power Supply Available 1. NiCad Battery , Mercury Battery , Alkaline Battery , AC , Lead Acid Battery , Nickel Metal Hydride X . B.Antenna Available 1. Helical X , Telescopic , Whip , Dipole , Dribble External _________, External __________. C.Squelch Types Available 1. Carrier Squelch X . 2. Tone “Private Line” X . 3. Digital “Private Line” . D.Microphone - Control 1. Handset/Palm Microphone X . 2. 600 Ohm wireline control . E. Maximum Transmit Channel Capability 14 . F. Housing The transmitter will be in the housing shown in the accompanying photographs. G.Other Options 1. Single Tone Encoder X 2. Multiple Single Tone Encoder N/A 3. Touch Code Encoder N/A 4. Unit ID Encoder N/A 5. EMS Telemetry Encoder N/A 6. Time out Timer X 7. Voice EncryptionN/A 8. Digital Signaling N/A 9. Sel-Call Decode N/A 10. Trunking N/A EXHIBIT 12
Applicant: Motorola Inc FCC ID: AZ489FT4833 EXHIBIT 10 PARTS LIST AND TUNE-UP PROCEDURE SchematicDesignator Device Circuit Key Non/Motorola Type Application Source Y70132B04 CrystalReference KSS U80157W78RF ICULTZIF Motorola U90114S84HC11E09MicroProcessor Motorola U1101LP2951DC RegulatorDC Voltage National Q350MUN511T1Self bias PNPBias voltage switch Motorola Q601NE94430NPNVCONEC Q602NE94430NPNVCONEC Q301NE94430NPNLNANEC Q302NE94430NPNLNANEC Q303NE94430NPNLNANEC Q551BCW60BNPNBias voltage switch Motorola Q552BCW60BNPNBias voltage switch Motorola Q501MRF9482FETFinal stage amp. Motorola U50109Z67FETFirst stage amp. Motorola D6011SV239VARACTORVCO Motorola D6021SV239VARACTORVCO Motorola U101X974SW-392Antenna switch Macom ____________________________________________________________________________ COMMENTS: The Motorola designators are special code numbers for active devices used in Motorola radios. These devices are either identical or derived from the device family listed under Source, by the manufacturer or are proprietary to Motorola. Service people do not have access to any cross-references or given any information on proprietary devices and are prevented from making unauthorized substitutions. Applicant: Motorola Inc FCC ID: AZ489FT4833 EXHIBIT 10 TUNE UP PROCEDURE The following tune-up procedure is for the factory only. There will be no customer tuning. Tuning Procedures There are a total of 4 tuning adjustments. All on-board tuning is performed automatically utilizing software commands. An SCI interface bus is provided for programming. D/A’s replace typical manually adjusted potentiometers. All tuning information is stored in the micro-controller’s internal EEPROM. The order of tuning should be followed as presented in this document. For more detailed information regarding the SCI bus and software protocols, refer to section 3.2. All tuning adjustments should be performed with DC voltage applied to the radio’s power terminals. It is preferable to use a DC Power Supply with voltage sense lines available and to use the sense connections at the radio supply input). Nominal battery voltage for the Model Series is 3.6 +/- 0.1 V. All RF signals from test equipment should be terminated at 50 ohms. “Standard RF input signal level” is defined as 1 mV into 50 ohms, or -47 dBm. “Standard test modulation” is defined as a 1 kHz tone @ +/- 1.5 kHz deviation. Whenever the radio’s codeplug information is changed (i.e., tuning squelch, warping the TCXO, etc.), the checksum byte must also be changed at the same time! If the checksum is not correct, the radio automatically uses a pre-defined set of codeplug values! Table 5.1 UHF FP9 New Channel Business Freqs. *1464.5000 *2464.5500 3467.7625 4467.8125 5467.8500 6467.7850 7467.9000 8467.9250 * these freqs are also the default freqs for positions/channels1-2 on the radio Applicant: Motorola Inc FCC ID: AZ489FT4833 EXHIBIT 10 5.1VCO Gross Adjustment Calculate the frequency error VCO Tune. This application is used to tune the LO VCO tank circuit for each channel to ensure that the assigned frequency will be in the middle of the operating frequency range of the VCO at which the VCO control voltage is in between 1 and 2 volt. • Assume that radio is on and in standby mode. • Send a serial command READ_DATA_REQ to read byte 7 of the ULTZIF image. Binary ANDed that byte with hexadecimal byte “F8” to zero out the least significant three bits (bit 59 to bit 60 on the ULTZIF). • Set the radio to receive a given channel. • Measure the VCO control voltage. If the voltage reading is not between specs (1 and 2), change the setting of the byte 7 by O, Ring it with hexadecimal byte “0x” where x is in between 1 to 7. 5.2 Reference Oscillator Adjustment The reference oscillator is a TCXO (Temperature Compensated Xtal Oscillator) with an external warp control. The warp signal is provided by an 8-bit DAC (Digital to Analog Convertor) located on the ULTZIF IC, and is fully programmable via the SCI bus. Ensure that the test equipment (especially the frequency measurement instrument) is on a 10 MHz reference line. Make sure that when this test is run that the codeplug in the test software “sets” the Power amplifier RF_VDAC voltage to its minimum bit setting (ie 00 bit setting). The default codeplug setting for the RF_VDAC (74) will be resumed once this tuning step is complete. A) Key the transmitter, and measure the carrier frequency relative to the radio frequency selected according to the tables in section 5.1. The measurement should be performed at 25 +/- 2 degrees C. Record the frequency error. B) Adjust the warp signal until the frequency error is within the specified limits. Spec limit: +/- 50 Hz 5.3 Modulating Limiting and Balancing Adjustment This application tunes the deviation for the low frequency port and the deviation of the high frequency port to make sure the over all deviation is within the spec limit. Like 5.2, the RF_VDAC tuning value needs to be set to 00 bit setting for this test. Once this tuning step is completed then the default codeplug value for the RF_VDAC (74) is to be reset • Assume the radio is in transmit mode without audio signal presence. Measure the deviation and make sure the reading must be less than 100. • Send a command to make radio operated with PL code of 1 or PL tone of 71.9 Hz. • Set ULTZIF’s PL bit (bit 125) to 1, and ULTZIF’s LODEV bits (bit 116 to 118) to all 0. Applicant: Motorola Inc FCC ID: AZ489FT4833 EXHIBIT 10 • Measure the deviation and change the bits 116 to 118 until the deviation is in between 200 and 300 Hz. • Inject the audio signal of 8 mVrms and change bits 119 to 124 until the deviation is between 1350 to 1550 Hz. • Increase the input voltage by 20 dB and adjust until the max. dev. is under 2400 Hz. 5.4Squelch Opening SINAD Adjustment Squelch level control is provided by a 4-bit attenuation stage located on the AFIC, and is fully programmable via the SCI bus. 1. Apply a standard RF input signal to the radio on the frequ…
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Motorola Inc FCC ID: AZ489FT4833 SCHEMATIC DIAGRAMS The following schematic diagrams show circuit connectivity. There will be no service manual. 000 - Schematic Block Diagram 100 - Harmonic Filter 200 - Microphone circuit 300 - Automatic Gain Control/LNA 400 - TX PA EXHIBIT 5 Motorola Inc FCC ID: AZ489FT4833 EXHIBIT 5-000 Motorola Inc FCC ID: AZ489FT4833 EXHIBIT 5-100 Motorola Inc FCC ID: AZ489FT4833 EXHIBIT 5-200 Motorola Inc FCC ID: AZ489FT4833 EXHIBIT 5-300 Motorola Inc FCC ID: AZ489FT4833 EXHIBIT 5-400
Applicant: Motorola Inc FCC ID: AZ489FT4833 TEST REPORT MEASUREMENT EXHIBIT NUMBER OF PAGES I RF Power Output6A1 IIAudio Response6B1 IIILow Pass Filter Response6C1 IVModulation Limiting A. 12.5 kHz channel spacing case6D1 VOccupied Bandwidth6E 1-24 VIConducted Spurious Emissions6F 1-22 VIIRadiated Spurious Emissions2 A. Tx Vertical - 1 Watt6G B. Tx Horizontal - 1 Watt6G VIII Frequency Stability A. Temperature6H-11 B. Supply Voltage 6H-21 IXTransient Frequency Behavior A. Transmitter - ON -1 W-12.5 kHz6I-11 B. Transmitter - OFF -1 W-12.5 kHz6I-21 EXHIBIT 6 Applicant: Motorola Inc FCC ID: AZ489FT4833 RF POWER OUTPUT DATA The RF power output was measured with the indicated voltage applied to and current into the final RF amplifying device. 1 Watt Measured RF output1.06Watts Normal DC Voltage3.60Volts Normal DC Current550mA Primary Supply Voltage3.60Volts EXHIBIT: 6A Applicant: Motorola Inc FCC ID: AZ489FT4833 EXHIBIT 6B Audio Frequency Response -25 -20 -15 -10 -5 0 5 10 15 100100010000 Frequency(Hz) Amplitude(dB) data high spec low spec Post Limiter Response vs. Frequency -80 -70 -60 -50 -40 -30 -20 -10 0 10 110 Freq(KHz) From 10 kHz to 30 kHz was in the noise floor of instrument. Modulation Limiting Vs. Amplitude 0 500 1000 1500 2000 2500 3000 -20-15-10-505101520 Amplitude(dB) De via tio n( Hz ) OCCUPIED BANDWIDTH DATA 12.5 kHz Channel Spacing EXHIBIT 6E-1 2500 Hz Audio Modulation Emission Type: 11K0F3E Horizontal: 5 kHz/Div. Vertical: 10 dB/Div. Carrier Ref: 0 dB Specification Mask D, 90.210 EXHIBIT 6E-2 2500 Hz & 77 Hz Tone “PL” Modulation Emission Type: 11K0F3E Horizontal: 5 kHz/Div. Vertical: 10 dB/Div. Carrier Ref: 0 dB Specification Mask D, 90.210 CARSON’S RULE 11K0F3E: BW = 2(M + D) BW = 2 (3 kHz maximum modulation frequency + 2.5 kHz deviation) BW = 2 (5.5) BW = 11 kHz 16K0F3E: BW=2(3+5)=16 kHz EXHIBIT 6E EXHIBIT 6F-1 EXHIBIT 6F-2 FCC ID: AZ489FT4833 FCC ID: AZ489FT4833 Transmitter Radiated Spurious Emissions : FP9 Radio 464.55 MHz - 12.5 kHz CH. Spacing Horizontally Polarized Frequency (MHz) FCC Maximum Emission Limit (dBm) 12.5 kHz Ch. Spac. Measured Emission Equivalent Power Into an Ideal Dipole (dBm) 2X FUND1023.975-20-28.6 3X FUND1535.963-20-30.9 4X FUND2047.950-20-37.0 5X FUND2559.938-20-26.9 6X FUND3071.925-20-35.7 7X FUND3583.913-20-37.0 8X FUND4095.900-20-40.3 9X FUND4607.888-20-39.2 10XFUND5119.875-20-38.0 Vertically polarized Frequency (MHz) FCC Maximum Emission Limit (dBm) 12.5 kHz Ch. Spac. Measured Emission Equivalent Power Into an Ideal Dipole (dBm) 2X FUND1023.975 -20-25.4 3X FUND1535.963-20-32.9 4X FUND2047.950-20-41.4 5X FUND2559.938 -20-32.8 6X FUND3071.925 -20-41.2 7X FUND3583.913 -20-36.8 8X FUND4095.900-20-39.4 9X FUND4607.888-20-39.0 10XFUND5119.875 -20-37.3 * Indicates the spurious emission was less than -60dBm or could not be detected due to noise limitations or ambients. Radiated Transmitter Emissions Vertically Polarized Antenna -60.0 -50.0 -40.0 -30.0 -20.0 -10.0 0.0 1023.9751535.9632047.9502559.9383071.9253583.9134095.9004607.8885119.875 Frequency (MHz) Emission Level (dBm) Measured Emission Equivalent Power Into an Ideal Dipole (dBm) FCC Maximum Emission Limit (dBm) 12.5 kHz Ch. Spac. Radiated Transmitter Emissions Horizontally Polarized Antenna -60.0 -50.0 -40.0 -30.0 -20.0 -10.0 0.0 1023.9751535.9632047.9502559.9383071.9253583.9134095.9004607.8885119.875 Frequency (MHz) Emission Level (dBm) Measured Emission Equivalent Power Into an Ideal Dipole (dBm) FCC Maximum Emission Limit (dBm) 12.5 kHz Ch. Spac. EX FCC ID: AZ489FT4833 6G-1 Radio resets at 5.1 Volt. EXHIBIT 6H-1 X H I B I T 6 H - 2 Frequency Stability over Temperature -2000 -1000 0 1000 2000 -20-20-1001020304050 Temp°C Hz Frequency Error Over Voltage(ppm) -3 -2 -1 0 1 2 3 33.544.55 Suplly Voltage(V) Frequency Error(ppm) upper spec lower spec Freq error(ppm) FCC ID: AZ489FT4833 FCC ID: AZ489FT4833
Applicant: Motorola Inc FCC ID: AZ489FT4833 TEST SET- UP PROCEDURES Except where otherwise stated, all measurements are made following the Electronic Industries Association (EIA) Minimum Standard for Portable/Personal Land Mobile Communications FM or PM Equipment 25-1000 MHz-(TIA/EIA-603). This exhibit presents a brief summary of how the measurements were made, the required limits, and the test equipment used. The following procedures are presented with this application. 1.RF Power Output X 2.Audio Response X 3.Low Pass Filter Response X 4.Modulation Limiting X 5.Occupied Bandwidth X 6.Radiated Spurious Emissions X 7.Conducted Spurious Emissions X 8.Frequency Stability X 9. Transient Frequency Behavior X EXHIBIT 7 Applicant: Motorola Inc FCC ID: AZ489FT4833 TEST EQUIPMENT LIST Pursuant To FCC Rules 2.999 1. Spectrum Analyzer A. HP 8591E B. HP 8566 C. HP35665A 2. RF Signal Generators A. HP 8665 B. HP 8642 C. HP 8656 3. RF Millivoltmeter A. Boonton 4200 B. Boonton 4210 4. RF Loads A. WEINSCHEL M1418 5. Dipole Antenna Set A. Singer DM-105A series B. EMCO Model 3120 6. RF Power Meters A. HP 436A B. 8482B Power Sensor C. 30 dB High Power Pad 7. Monitor Receivers A. Motorola Comm Syst Analyzer B. HP8901 8. Tenny Temperature Chamber 9. Frequency Counters a. HP 5385A 10. Audio Analyzer a. HP8903B 11. AC/DC Voltmeters a. Fluke8012A Digital Multimeter 12. HP8901B Modulation Analyzer EXHIBIT 7 Applicant: Motorola Inc FCC ID: AZ489FT4833 RF POWER OUTPUT Pursuant to FCC Rules 2.985 (a) Method of Measurement The RF power output is measured with the value of voltage and current specified in Exhibit 3 as required by 2.983(d) (5). A 50 ohm RF attenuator of proper power rating was used as a load for making these measurements. For Transmitter having an output impedance other than 50 ohm, a suitable matching network is placed between the transmitter and the load. The power measurements are made using a Hewlett Packard series HP 436A power meter and 30 dB attenuator or a HP 437B power meter. AUDIO FREQUENCY RESPONSE Pursuant FCC Rules 2.987 (a) Method of Measureme…
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8000 West Sunrise Blvd · Fort Lauderdale, Florida · United States
| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 1 | 90.210 | 458 MHz - 470 MHz | 1 W | 11K0F3E | 2.5000000000 ppm |

Portable two way radio
Equipment Class
TNF - Licensed Non-Broadcast Transmitter Held to FaceHandheld Portable - TANAPA BPR 45 400-470 MHZ 4W NKP
Equipment Class
TNF - Licensed Non-Broadcast Transmitter Held to Face
Portable 2-Way Radio with Bluetooth, Bluetooth LE, WIFI 2.4GHz, WIFI 5GHz, LTE
Equipment Class
DSS - Part 15 Spread Spectrum TransmitterOperation Critical Wireless Earpiece PTT
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
2-way Portable Radio with BT, BTLE, WIFI, NFC and LTE
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter