
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
PUBLICATION TSM 20-308 TECHNICAL MANUAL 100 WATT UHF AMPLIFIER FOR MX100U SERIES TV TRANSMITTER/TRANSLATOR LARCAN INC. 228 AMBASSADOR DRIVE MISSISSAUGA, ONTARIO CANADA L5T 2J2 PHONE:(905) 564-9222 FAX:(905) 564-9244 Rev 0: November 9, 1999 MX Series - 100 Watt UHF AMPLIFIER TSM 20-308 rev 1: April 3, 20001100 W UHF Amplifier SectionTitlePage NOTICES, ETC. ...............................................................................................................................3 SAFETY AND HEALTH WARNINGS ............................................................................. 4&5 GENERAL SERVICE INFORMATION 1) Parts Lists Explained..........................................................................................5 2) Interpreting LARCAN Drawing Numbers............................................................5 3) The LARCAN Assembly Prefix Numbering System ...........................................6 4) List of Prefix Numbers for the 100 W Amplifier ..................................................7 5) Production Changes ...........................................................................................7 INTRODUCTION .................................................................................................................8 GENERAL DESCRIPTION..................................................................................................8 SPECIFICATIONS.............................................................................................................10 ABOUT THIS MANUAL .....................................................................................................11 PUBLICATIONS LIST for MX series 100W UHF Amplifier: PUB99-30 100W UHF Amplifier Installation: 1.General Information..............................................................................30-1 2.Grounding and Ground Loops ..............................................................30-2 3.Lightning and other Transient Protection .............................................30-4 4.Power Wiring ........................................................................................30-9 5.Ventilation and Air Conditioning .........................................................30-10 6.Fire Protection ....................................................................................30-11 7.Unpacking ..........................................................................................30-12 8.Transmitter External Interlock Connections .......................................30-12 9.On Site: First Time Start-up................................................................30-13 PUB99-31 100W UHF Amplifier (Prefix 2): 1.Amplifier Chassis Description...............................................................31-1 MX Series - 100 Watt UHF AMPLIFIER TSM 20-308 rev 1: April 3, 20002100 W UHF Amplifier SectionTitlePage PUB99-32 Heatsink Assembly: 1.Heatsink Assembly Description............................................................32-1 2.Front End Module .................................................................................32-2 3.IPA1 Module.........................................................................................32-2 4.IPA2/PA Module ...................................................................................32-4 5.Two-way Splitter/Combiner ..................................................................32-5 6.+28V Voltage Regulator .......................................................................32-5 PUB99-33 RF Output Metering Board (Prefix 4): 1.RF Metering Board Description ............................................................33-1 2.RF Metering Board Test and Calibration ..............................................33-2 PUB99-34 100W UHF Power Supply (Prefix 1): 1.Power Supply Chassis Description ......................................................34-1 2.Control Panel .......................................................................................34-2 3.Control Board Assembly Description ...................................................34-2 PUB99-35 100W UHF Basic Transmitter Maintenance: 1.General.................................................................................................35-1 2.Daily .....................................................................................................35-1 3.Weekly..................................................................................................35-2 4.Monthly .................................................................................................35-2 5.Semi-annually and Annually .................................................................35-2 6.Transmitter Cooling System .................................................................35-2 7.Static 1, Equipment 0: A brief Static Tutorial........................................35-3 8.FET and Surface Mount Replacement .................................................35-4 9.Replacement Parts ...............................................................................35-7 10.Spare Parts Recommendations ...........................................................35-9 CADCO M-369 Manual CADCO P-379 Manual MX100 Series - 100 Watt UHF AMPLIFIER TSM 20-308 rev 1: April 3, 20003100 W UHF Amplifier NOTICES, ETC.: THIS EQUIPMENT USES STATIC-SENSITIVE CMOS INTEGRATED CIRCUITS. Observe proper handling precautions (indicated in Maintenance Sections) at all times when working with this equipment. TOXIC MATERIALS NOTICE... IMPORTANT... Effective thermal management in certain semiconductor devices in this equipment is possible only through the use of Beryllium Oxide ceramic materials. This equipment contains devices made with Beryllium Oxide! Beryllium and its compounds is a POISON if taken into the body in any manner. To reduce your risk, remember: In case of accidental breakage of any kind of semiconductor device, DO NOT INHALE THE DUST, and AVOID GETTING DUST IN YOUR MOUTH; it could cβ¦
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APPLICATION FOR FCC CERTIFICATION BZ5MX100UX HETERODYNE PROCESSOR INPUT 100 WATT UHF TRANSLATOR EXHIBIT 13 ENGINEER'S STATEMENT I, John Tremblay, do hereby certify that the attached information was prepared by me or under my direction. _______________________________ John E. Tremblay, P.Eng. Vice-President Engineering 26 Feb. 2002 _______________________________ Date
APPLICATION FOR FCC CERTIFICATION BZ5MX100UX HETERODYNE PROCESSOR INPUT 100 WATT UHF TRANSLATOR EXHIBIT 1PAGE 3 average input signal (500uV to 5000uV recommended) with fear that the input signal change would result in the output power exceeding 100% at some point. The output will always track, even when the input level is far above or below recommended levels. PART 74.750(c)(5): This equipment meets all the requirements for unattended operation. A description of the automatic control circuitry can be found in Exhibit 2a. PART 74.750(c)(6): Measurements can be taken while the equipment is in operation. Normal operating constants of the power output stage average +28 volts at 13 amps. PART 74.750(c)(7) AND PART 74.783(a)(2): Station identification requirements will be supplied by the originating station. PART 74.750(c)(8): Wiring, shielding and construction are in accordance with accepted principles of good engineering practice. Apparatus is constructed on an aluminum chassis suitably protected to resist corrosion. Power circuits are fused and overload protected by automatic shutdown. PART 74.750(d)(1): This equipment meets the requirements of Part 73.687(a)(1) and Part 73.687(b)(3) at the final RF output terminal. It is anticipated that the translator will be driven directly by the demodulator output of an FM microwave repeater. No provision is made for tampering with or adjusting the composite video or audio signal, except depth of video modulation. Therefore, all aspects of the input video signal (Transmission Standard 73.682 and 73.687) are determined solely by the originating television station. This performance data has been obtained with an NTSC signal generator that produces standard video test signals. See Exhibit 10a, 10b, 10c and 10d. Exhibit 10 shows photographs of various video test waveforms as seen on the translator, demonstrating that the transmitted waveform is substantially identical to the input. The typical envelope delay response of the heterodyne processor as required in Part 73.687(a)(5) will be made on each unit manufactured to ensure that readings meet the FCC specifications. The additional group delay in the translator in negligible. The test equipment and set-up used is described in Exhibit 3. Tabulated data is shown in Exhibit 11a and graphed in Exhibit 11b. The graphs of Exhibit 10 show linearity of the translator between reference black and white levels.
APPLICATION FOR FCC CERTIFICATION BZ5MX100UX HETERODYNE PROCESSOR INPUT 100 WATT UHF TRANSLATOR EXHIBIT 12a PHOTO, FRONT OVERALL VIEW OF BZ5MX100UX APPLICATION FOR FCC CERTIFICATION BZ5MX100UX HETERODYNE PROCESSOR INPUT 100 WATT UHF TRANSLATOR EXHIBIT 12b PHOTO, FRONT VIEW, AMPLIFIER APPLICATION FOR FCC CERTIFICATION BZ5MX100UX HETERODYNE PROCESSOR INPUT 100 WATT UHF TRANSLATOR EXHIBIT 12e PHOTO, FRONT VIEW, POWER SUPPLY
APPLICATION FOR FCC CERTIFICATION BZ5MX100UX HETERODYNE PROCESSOR INPUT 100 WATT UHF TRANSLATOR EXHIBIT 12c PHOTO, INTERIOR VIEW, AMPLIFIER APPLICATION FOR FCC CERTIFICATION BZ5MX100UX HETERODYNE PROCESSOR INPUT 100 WATT UHF TRANSLATOR EXHIBIT 12f PHOTO, INTERIOR VIEW, POWER SUPPLY
APPLICATION FOR FCC CERTIFICIATION BZ5MX100UX HETERODYNE PROCESSOR INPUT 100 WATT UHF TRANSLATOR EXHIBIT NO.TITLENO.OF PAGES 1 Supporting Statement, Application4 for FCC Certification of BZ5MX100UX 2 Instruction Manuals 2a100W UHF Amplifier Manual 2bCadco P379 Operating Manual 3 Test Measurement Set-up 4 Frequency Drift vs. Temperature2 4aHeterodyne Processor Tabulated Data 4bTemperature Test Set-up 5 Output Stability AGC Data Tabulated 6 Frequency Response2 6aInput 1000uV 6bInput 1000uv -15dB 6cInput 1000uV +15dB 7 Active Devices and Function List2 8 FCC Identification Label for BZ5MX100UX 9 Power Measurement Statement 10 Video Waveforms3 10aInput Modulated Stair Step 10bOutput Unmodulated Stair Step 10cDifferential Gain 10dDifferential Phase 11 Group Delay2 11aOverall Group Delay Tabulated Data 11bOverall Group Delay Graph 12 BZ5MX100UX Translator Photos7 12aPhoto, Front Overall View of BZ5MX100UX 12bPhoto, Front View, Amplifier 12cPhoto, Interior View, Amplifier 12dPhoto, Amplifier Rear View with FCC Label 12ePhoto, Front View, Power Supply 12fPhoto, Interior View, Power Supply 12gPhoto, Power Supply View with FCC Label 13 Engineerβs Statement APPLICATION FOR FCC CERTIFICATION BZ5MX100UX HETERODYNE PROCESSOR INPUT 100 WATT UHF TRANSLATOR EXHIBIT 1PAGE 1 This application requests authorization for video/audio input to our 100 Watt UHF Translator, BZ5MX100UX (Certification applied for). The amplifier will be driven directly by a color television heterodyne processor. The intended use of the BZ5MX100UX is to rebroadcast a television translator relay station or other legal source of video and audio. A paragraph by paragraph reference is given herein, presenting the required additional data to that called for on FCC Form 731 for FCC Certification of BZ5MX100UX 100 Watt UHF Translator. Exhibits are attached to authenticate this application. If further data is required, it will be furnished on request. The unit tested specifically for this application was operated on Channel 50. This channel was chosen to provide protection to and from existing radio services, and to facilitate the measurement of possible spurious products conducted or radiated from the 100 Watt UHF Translator. The results noted here are βworse caseβ unless otherwise noted. The input signals used in the tests were generated by a color bar generator driving a Cadco Heterodyne Processor which is typically the modulator used. However, due to varying customer requirements, other heterodyne processors are available on customer request. The published specifications on any heterodyne processor used in this equipment will meet or exceed FCC specifications. The output of the 100 Watt UHF Translator was properly terminated with a resistive type RF load. 2.1033(b)(1): Applicant is the manufacturer of the equipment. See FCC Form 731 2.1033(b)(2): See FCC Form 731 2.1033(b)(3): Exhibit 2 (100W UHF Amplifier Manual, Cadco P379 Operating Manual) 2.1033(b)(4): Exhibit 7 (Active Devices and Function List) 2.1033(b)(5,6,7): See also, the paragraph by paragraph summary of compliance with Part 74, Sub-part G of the FCC Commission Rules that follow. PART 74.750(c)(1): The frequency stability of this equipment as measured per Part 2.1055 of the rules is much better than required over the specified range of the input voltage and temperature. The test equipment was set as shown in Exhibit 3. The translator was swept with a CW signal equivalent to 100 watts peak sync. The AGC circuit was defeated to facilitate the measurement. Three different input signal levels, (1000uV, 1000uV-15dB, 1000uV+15dB), were introduced. The gain of the AGC amplifier was adjusted to 100 watts to demonstrate the output bandpass under different input signal conditions. Exhibits 6a, 6b, and 6c, are photos of the frequency response displayed on the oscilloscope. They show the bandpass to be flat +1.5dB with no substantial change due to the input signal levels. PART 74.761(a): The frequency stability of the visual carrier is totally dependent upon the modulator. Exhibits 4a and 4b document the measurements made, including method and equipment. Modulator output frequency can be, and is normally set to zero deviation at the output channel. APPLICATION FOR FCC CERTIFICATION BZ5MX100UX HETERODYNE PROCESSOR INPUT 100 WATT UHF TRANSLATOR EXHIBIT 1PAGE 2 As shown in Exhibit 4a, the typical characteristic variation due to temperature is less than +.002%. This is true of all heterodyne processor channels. PART 74.750(c)(2): With the translator set up as in Exhibit 3 with a normal Channel 13 TV input signal, the following products, more than 2MHz from the channel edges, were measured at the output terminal relative to 100 watts peak sync. FREQUENCY(MHz)SOURCELEVEL MEASURED(dB) 1374.502 nd HARMONIC -68 700.75Aural +9.0MHz >-70 696.25Aural +4.5MHz>-70 682.75Visual β4.5MHz -68 678.25Visual β9.0MHz>-70 Observations were made on a properly operating translator Channel 13 to Channel 60 using a Hewlett-Packard 8591E Spectrum Analyzer with a cut to frequency dipole antenna at 10 meters from the translator and rotated to detect maximum radiation. The following signals were present: SPECIFICATION FREQUENCY(MHz)SOURCELIMIT uVMEASURED uV 1374.502 nd Harmonic 700 100 733.00 LO 238133 10 Radiation from the heterodyne processor was nil. No spurious products could be detected at 10 meters that were less than 90dB down. Antenna terminal measurements with the 8591E Spectrum Analyzer showed no change due to the heterodyne processor since the power amplifier stages are not affected by this modulation. The above tests were performed using the same equipment hook up and methods described in Exhibit 3a. The translator test data compiled for this application was Channel 13 to Channel 60. Translator operating with a standard video test signal input (modulated stair step and color burst) and a modulated audio carrier at β10dB of peak visual. Results are typical of performance on all channels. PART 74.750(c)(3)(iβ¦
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APPLICATION FOR FCC CERTIFICATION BZ5MX100UX HETERODYNE PROCESSOR INPUT 100 WATT UHF TRANSLATOR EXHIBIT 5 TABULATED AGC DATA INPUT LEVELRELATIVE OUTPUT dB=100% OUTPUT POWER -15-0.1 -10-0.1 -5 0 500uV=0dB 0.0 +5 0 +10 0 +15 0 +20-0.1 ____________________________________________________________________________ -15 0 -10 0 -5 0 1000uV=0dB 0.0 +5 0 +10 0 +15 0 +20-0.1 +25-0.1 ____________________________________________________________________________ -15 0 -10 0 -5 0 5000uV=0dB 0.0 +5 0 +10 0 +15-0.1 +20-0.1 APPLICATION FOR FCC CERTIFICATION BZ5MX100UX HETERODYNE PROCESSOR INPUT 100 WATT UHF TRANSLATOR EXHIBIT 9 Power requirements for the 100 Watt UHF Translator were determined as follows: 1. The translator's visual power meter measures the peak visual power by reading the average levels of a detected sample of the output. The meter is calibrated by multiplying the above visual power reading by 168%. The visual metering circuitry has a negligible response to the aural power due to the large (>10MHz) detector bandwidth. When the detector bandwidth is this large, the detector does not peak detect the intercarrier beat product. 2. The aural power is measured by reading the peak level of the detected 4.5MHz intercarrier product. The level of this product has a direct correspondence to the aural power and is independent of the visual power as long as the peak visual power exceeds the aural power. This is always true for normal operation. BZ5MX100UX POWER MEASUREMENTS SUPPLY CURRENT SUPPLY CURRENT MEASURED MEASURED TO OUTPUT DEVICESTO OUTPUT DEVICES VISUAL POWER AURAL POWER VISUAL ONLY VISUAL & AURAL NOTE 1 NOTE 2 NOTE 3 NOTE 3 59.5 WATTS 5.95 WATTS 13 AMPS 13 AMPS NOTE 1: Measured on the Model 43 Bird Wattmeter with the visual carrier modulated by the standard synchronizing signal at 75% of peak amplitude and the aural carrier disabled. NOTE 2: Measured on the Model 43 Bird Wattmeter with the visual carrier disabled. NOTE 3: The voltage across the output devices on all models is +28 volts. The output devices are operated Class A. APPLICATION FOR FCC CERTIFICATION BZ5MX100UX HETERODYNE PROCESSOR INPUT 100 WATT UHF TRANSLATOR EXHIBIT 11a OVERALL GROUP DELAY FREQUENCY(MHz)OVERALL DELAY(nS) 0.20 0 (Reference) 0.40 -30 0.60 -30 0.80 -50 1.0 -55 1.20 -55 1.40 -30 1.60 -45 1.80 -30 2.0 -45 2.20-30 2.40 -20 2.60 -30 2.80 -10 3.0 -60 3.20 -55 3.40 -120 3.58 -160 3.80 -240 4.0 -300 4.18 -320
APPLICATION FOR FCC CERTIFICATION BZ5MX100UX HETERODYNE PROCESSOR INPUT 100 WATT UHF TRANSLATOR EXHIBIT 1PAGE 2 As shown in Exhibit 4a, the typical characteristic variation due to temperature is less than +.002%. This is true of all heterodyne processor channels. PART 74.750(c)(2): With the translator set up as in Exhibit 3 with a normal Channel 13 TV input signal, the following products, more than 2MHz from the channel edges, were measured at the output terminal relative to 100 watts peak sync. FREQUENCY(MHz)SOURCELEVEL MEASURED(dB) 1374.502 nd HARMONIC -68 700.75Aural +9.0MHz >-70 696.25Aural +4.5MHz>-70 682.75Visual β4.5MHz -68 678.25Visual β9.0MHz>-70 Observations were made on a properly operating translator Channel 13 to Channel 60 using a Hewlett-Packard 8591E Spectrum Analyzer with a cut to frequency dipole antenna at 10 meters from the translator and rotated to detect maximum radiation. The following signals were present: SPECIFICATION FREQUENCY(MHz)SOURCELIMIT uVMEASURED uV 1374.502 nd Harmonic 700 100 733.00 LO 238133 10 Radiation from the heterodyne processor was nil. No spurious products could be detected at 10 meters that were less than 90dB down. Antenna terminal measurements with the 8591E Spectrum Analyzer showed no change due to the heterodyne processor since the power amplifier stages are not affected by this modulation. The above tests were performed using the same equipment hook up and methods described in Exhibit 3a. The translator test data compiled for this application was Channel 13 to Channel 60. Translator operating with a standard video test signal input (modulated stair step and color burst) and a modulated audio carrier at β10dB of peak visual. Results are typical of performance on all channels. PART 74.750(c)(3)(ii): Variation of input voltage +15% (reference +24VDC or 120VAC) during the temperature tests resulted in no discernible frequency variation traceable to the power supply. This is reasonable due to the heterodyne processorβs internal regulation. PART 74.750(c)(4): With the equipment set as described in Exhibit 3, a CW signal at the visual carrier frequency was substituted for the normal input signal. After setting the translator output to 100 watts, the input signal was varied. Refer to Exhibits 6a, 6b, 6c. The output power may be set at 100% for any
228 Ambassador Drive Β· Mississauga, Ontario Β· Canada
| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 2 | 74G | 470 MHz - 806 MHz | 10 W | 250KF3E | 1 Amp |

Digital Television Translator
Equipment Class
TBC - Licensed Broadcast Station Transmitter
Television Broadcast Translator
Equipment Class
TBC - Licensed Broadcast Station Transmitter
Digital Television Translator
Equipment Class
TBC - Licensed Broadcast Station Transmitter
Digital Television Broadcast Translator
Equipment Class
TBC - Licensed Broadcast Station TransmitterDigital Television Broadcast Translator
Equipment Class
TBC - Licensed Broadcast Station Transmitter