FCCID.CO- FCC ID Database
HomeCompaniesEquipment ClassesSearch

© 2026 FCC ID Database. All rights reserved.

AboutContactData sourced from FCC public records
  1. Home/
  2. Elettronika S.r.l./
  3. PHLCAV15U

PHLCAV15U15 watt Analog TV Transmitter

Elettronika S.r.l.
15 watt Analog TV Transmitter - FCC ID PHLCAV15U - Elettronika S.r.l.
Click to zoom

Application Details

Equipment Class
TBC - Licensed Broadcast Station Transmitter
Date of Grant
Apr 12, 2005
Application Purpose
Original Equipment
Date of Application
Feb 24, 2005
Equipment Note
15 watt Analog TV Transmitter
Frequency Range
470.00000000 - 806.00000000
Company
Elettronika S.r.l.
Country
Italy

Documents & Files

Select a file to view

Users Manual

↗

Attestation Statements

↗

Cover Letter(s)

↗

External Photos

↗

ID Label/Location Info

↗

Internal Photos

↗

Operational Description

↗

Parts List/Tune Up Info

↗

Schematics

↗

Test Report

↗
↗
↗
↗
↗
↗
↗

Document Text

Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.

External Photos

PLLCS EXTERNAL CONSTRUCTION PHOTOGRAPHS PLLCS FRONT VIEW PLLCS REAR VIEW

Internal Photos

PLLCS INTERNAL CONSTRUCTION PHOTOGRAPHS PLLCS FRONT TOP VIEW PLLCS TOP VIEW PLLCS TOP RIGHT VIEW PLLCS TOP LEFT VIEW PLLCS LEFT REAR TOP VIEW PLLCS RIGHT REAR TOP VIEW MAIN PC BOARD BOTTOM

Operational Description

March 25, 2005 The Operational Description for the CAV15U is contained in the technical manual. Respectfully, Greg Best President Greg Best Consulting, Inc. 9223 N. Manning Ave. Kansas City, MO 64157 816-792-2913

Parts List/Tune Up Info

February 26, 2005 Federal Communications Commission OET Equipment Authorization Branch Washington DC Dear Sir, This letter is to inform you that the parts list/tune up info for the PLLCS FM transmitter is contained in the user manual which has already been uploaded to the OET website. Sincerely, Greg Best President Greg Best Consulting, Inc. 9223 N. Manning Ave. Kansas City, MO 64157 816-792-2913

Schematics

February 26, 2005 Federal Communications Commission OET Equipment Authorization Branch Washington DC Dear Sir, This letter is to inform you that the schematics for the PLLCS FM transmitter are contained in the user manual which has already been uploaded to the OET website. Sincerely, Greg Best President Greg Best Consulting, Inc. 9223 N. Manning Ave. Kansas City, MO 64157 816-792-2913

Test Report

TEST REPORT ELETTRONIKA S. r. l. CAV15U TV TRANSMITTER TECHNICAL REPORT INTRODUCTION The following information is provided to support the technical performance of the ELETTRONIKA S. r. l. CAV15U TV Transmitter. The information is supplied for broadcast TV service according to applicable portions of FCC rules contained in Part 2, Part 73, and 74. 1. Power Output Measurements as indicated by FCC Rule Part 2.1046. 2. Frequency Measurements as identified by FCC Rule Part 2.1055. 3. Visual Frequency response measurements of the transmitter to be within the window specified by FCC Rule Part 74.750. 4. Occupied BW of aural signal specified by FCC Rule Part 2.1079. 5. Aural frequency response as identified by FCC Rule Part 73.687 6. Measurement of conducted harmonics and spurs +/- 3 MHz outside of channel as specified by FCC Rule Part 74.750 and Part 2 Rule 2.1051. 7. Measurement of cabinet radiation of spurs and harmonics as specified in FCC Rule 2.1053 and 2.1057. 8. Measurements of voltage and current to final amp stage as outlined in FCC Rule 2.1033. Measurements were conducted at transmitter visual power output levels of 15 watts peak of sync and 3.6 watts peak of sync and constitute the range of power for which type certification is sought. The corresponding aural power levels are 1.5 watts and 0.36 watts. Measurements were taken on a unit with visual carrier frequency of 753.25 MHz and an aural carrier frequency of 757.75 MHz. All test equipment was calibrated prior to the use of the equipment by the supplier of the test equipment. RF POWER OUTPUT The equipment was configured as below shown in Figure 1. The loss through the RF output cable, and attenuator was calibrated at the frequency of 753.25 MHz. In this case, the Bird 4391 wattmeter was inserted before the attenuator to permit power measurements to be made. The video generator was configured to produce a signal with 0 IRE video and sync. The audio generator and aural carrier were not energized. The visual portion of the transmitter was energized and the power was increased to the desired output power. The power was read on the Bird wattmeter. The TV demodulator and VM-700 were used to verify that sync compression was not causing distortion of the measurement. The aural carrier was energized and its output level was then raised to meet the precise 10 dB Visual/aural power ratio as observed on the spectrum analyzer. POWER OUTPUT Bird Power Meter reading Bird Power Meter reading at high power= 8.9 watts at low power= 2.2 watts Peak of sync power = 1.68 times Peak of sync power = 1.68 times average power reading with a black average power reading with a black picture and “0” setup picture and “0” setup Peak of sync power = 8.9 x 1.68 Peak of sync power = 2.2 x 1.68 = 15 watts = 3.7 watts TEST EQUIPMENT CONFIGURATION TWO FIELDS SHOWING CORRECT MODULATION DEPTH FOR REFERENCE WHITE & SYNC LEVELS AT 15 WATTS AND AT 3.7 WATTS Power Output = 15 watts Power Output = 3.7 watts

Test Report

FREQUENCY STABILITY MEASUREMENTS Frequency stability versus temperature and line voltage was measured in a controlled environment. For these tests the exciter RF output was fed to a frequency counter that has better than a 1ppm accuracy. The test equipment configuration is shown below. Frequency Stability versus line voltage variation Frequency Stability versus temperature The Variac was adjusted for nominal voltage and the frequency was recorded. Then the variac was adjusted to 85% and 115% of the nominal voltage and the frequency was recorded at each voltage level. The results are tabulated below. LINE VOLTAGE (Volts) Visual Frequency (MHz) Aural Frequency (MHz) 93.5 (85%) 753.249989 757.749989 110 (nominal) 753.250016 757.750016 126.5 (115%) 753.249968 757.749968 For the temperature stability measurements the exciter was placed inside a temperature chamber equipped with temperature controller. The exciter frequency was measured on the frequency counter. Measurements were first recorded at room temperature. The temperature in the chamber was changed to each of the points identified in the table below. The chamber followed a prescribed rate of change to reach each temperature and was then allowed to stabilize at the desired temperature at which time frequency measurements were made. Temperature °C Visual Frequency (MHz) Aural Frequency (MHz) 50 753.250088 757.750088 45 753.250065 757.750065 35 753.250050 757.750050 25 753.250038 757.750038 15 753.250012 757.750012 +5 753.250003 757.750003 -5 753.250016 757.750016 -15 753.250041 757.750041 -25 753.250050 757.750050 -30 753.250096 757.750096 The recorded data indicates that the total shift in frequency was 93 Hz and thus frequency stability requirements of FCC Rule 2.1055 were met. Exciter Frequency Counter Variac AC Input AC OutputRF Output Exciter Frequency Counter Temperature Chamber RF Output

Test Report

VISUAL TRANSMITTER FREQUENCY RESPONSE MEASUREMENTS The test equipment configuration of Figure 1 was used with the video generator supplying the video input waveform. For this test, the aural carrier was left energized. A variable frequency sine wave of input video waveform was used. The modulation output was increased until the maximum excursion reached reference white and 10 IRE. The RF sideband output level was measured for the sidebands below and above the visual carrier. The frequency response was plotted. Spectrum plots for both 15.0 Watt and 3.7Watt power output conditions are displayed to confirm that the radiated envelope meets the requirements as outline in Part 74 Rule 750. POWER OUTPUT =15 WATTS POWER OUTPUT =3.7 WATTS

Test Report

OCCUPIED BANDWIDTH MEASUREMENTS The test equipment was configured as in Figure 1. The aural carrier was energized and increased in power until the desired Visual to Aural power ratio of 10 dB was met. The aural input signal was a 15 kHz sine wave taken from the audio generator. The aural deviation was increased until the desired level (85% of 25 kHz = 21.25 kHz) was indicated on the modulation analyzer. The output spectrum was observed on the spectrum analyzer noting the requirements as identified in FCC Rule Part 2.1079. As can be observed, the output spectrum meets these requirements. OCCUPIED BANDWIDTH—POWER OUTPUT = 15 watts (Scan width = 200 kHz) OCCUPIED BANDWIDTH—POWER OUTPUT = 3.7 Watts (Scan width = 200 kHz)

Test Report

AURAL FREQUENCY RESPONSE The equipment configuration of Figure 1 was used. The visual and aural carriers were energized and the aural carrier was modulated by an audio frequency generator. A reference level was set at 200 Hz and the audio generator level was adjusted to achieve 25 kHz deviation at each modulating frequency. The following table of audio response was obtained by dividing the output audio level by the input level. This table is plotted on the graph shown below. Frequency Response (dB) 100Hz -0.1 200Hz 0.0 500Hz 0.3 1kHz 0.8 2kHz 2.8 5kHz 8.3 10kHz 13.7 13kHz 15.5 15kHz 16.5 AURAL FREQUENCY RESPONSE GRAPH WITH LIMITS The red line is the plotted results.

Test Report

CONDUCTED SPURIOUS AND HARMONICS The following photographs indicate the spurious performance (> +/- 3 MHz) from the designated TV channel. As can be seen from the photos (one taken at 15 Watts and the other taken at 3.7 Watts), the spurious levels are below 60 dB relative to the peak of sync of the visual carrier. The top center of the screen indicates the true peak of sync value when the vertical interval portion of the picture is present. These photos indicate the desired 10 dB visual to aural power ratio as the scale per division is 10 dB. POWER OUTPUT = 15 Watts POWER OUTPUT = 3.7 Watts CONDUCTED HARMONIC OUTPUTS The following data indicates the harmonic performance of the CAV15U. No harmonics were visible. Photographs of the spectrum evaluating all harmonics are shown below. The pictures indicate that the harmonic levels are well below 60 dB. POWER OUTPUT = 15 Watts POWER OUTPUT = 3.7 Watts Both photographs indicate the fundamental frequency at 753 MHz. The values indicate that the required performance of -60 dB is met.

Test Report

CABINET RADIATION The transmitter and test equipment were configured as shown below including the angles of measurement with respect to the transmitter cabinet. The photo on the subsequent page also shows one view of the physical set-up of the test equipment and equipment under test. The transmitter was operated at 15 watts peak sync power with a 10 dB visual/aural ratio with the video input signal being a Modulated Stairstep signal. The free space path loss and antenna gain characteristics were obtained at the fundamental frequency and at each of the harmonics of the visual carrier frequency in order to accurately assess the level of the signal radiated from the cabinet. Radiation from the cabinet was measured with 4 different physical rotation angles: 0, 90, 180, and 270 degrees (0 degrees being the front of the cabinet). All spectral components above the spectrum analyzer noise floor radiated from the cabinet were recorded. The values are tabulated in the table on the next page following the photos. TEST EQUIPMENT CONFIGURATION Spectrum Analyzer CAV15U XMTR Dummy Load Receiving Antenna CAV15U 0° Front 90° 180° 270° PHYSICAL CABINET RADIATION TEST CONFIGURATION This photograph shows the actual laboratory environment in which the cabinet radiation tests were conducted. The antenna and Unit Under Test is shown in the photograph. The transmitter was rotated 90 degrees for each of the measurement orientations. The results indicate that all radiated harmonics meet the FCC requirement of 60 dB as outlined in FCC rule 2.1053 and 2.1057. CABINET RADIATION DATA Cabinet Radiation for CAV15U Frequency Measured FS FS (Voltage) Equivalent Radiated Power Power Relative to P out of 15 watts MHZ dBuV/m V/m watts dBm dB 753.25 80 0.01 72.7E-6 -4.0 -46 ALL others <28 0.000025 2.51E-9 -56 -98 Note: 28 dBμV was the noise floor of the spectrum analyzer used for the measurements. VOLTAGES AND CURRENTS TO FINAL AMPLIFIERS Final amplifier DC voltage and current measurements were made with the transmitter operating at 15 Watts power output and at 3.7 watts power output. A video input signal of sync and 0 IRE “setup” level was used. The aural carrier was energized and adjusted for the proper 10 dB Visual to Aural power ratio. Voltage and current measurements were made at the transmitter. Peak Output Power = 15 Watts Voltage = 26.5 volts Total DC Current = 4.6 amps Final amplifier DC power input = 26.5 x 4.6 = 122 watts Peak Output Power = 3.7 Watts Voltage = 26.5 volts Total DC Current = 4.5 amps Final amplifier DC power input = 26.5 x 4.5 = 119 watts EQUIPMENT LIST The following test equipment was used in the various test equipment configurations or to create calibration of equipment at various frequencies. All equipment was known to be in good working order and the equipment was within the calibration period. Type Manufacturer Model Date of Calibration Calibration Expired Spectrum Analyzer Advantest R3132 11/11/04 11/11/05 Signal Generator Platform Tektronix TG2000 5/15/04 5/15/05 Video Measurement Set Tektronix VM700A 1/09/05 1/09/06 TV Test Receiver Rohde&Schwarz EFA 5/15/04 5/15/05 Selective Modulation Analyzer Rohde&Schwarz FMAS 4/02/04 4/02/05 Wattmeter BIRD 4391 4/02/04 4/02/05 Thermal detector CAREL IR32c 5/15/01 5/15/05 Humidity detector CAREL S90HP 5/15/01 5/15/05 Thermal Chamber COTER N/A Attenuator Elettronika N/A Dummy Load 100W Elettronika N/A Receiving Antenna ETS-Lindgren 3140B Receiving Antenna Aaronia-AG HyperLOG

Contact Information

Applicant

Francesco Paparella(Design Omologation and Compliance Mgr)
[email protected]+39080626755Fax: +39080629262

Technical Contact

Greg Best Consulting, Inc.Greg Best
[email protected]816-792-2913

9223 N. Manning Avenue · Kansas City, Missouri · United States

Technical Specifications

#Rule PartsFrequency RangePower OutputEmissionTolerance
274470 MHz - 806 MHz1.5 W250KF3E1000 Hz

Other Applications from Elettronika S.r.l.

1000 W ATSC Transmitter - FCC ID PHLTXUD1000A - Elettronika S.r.l.
PHLTXUD1000A

1000 W ATSC Transmitter

Jul 07, 2010

Equipment Class

TBC - Licensed Broadcast Station Transmitter
3000 Watt ATSC Transmitter - FCC ID PHLTXUD3000A - Elettronika S.r.l.
PHLTXUD3000A

3000 Watt ATSC Transmitter

Jun 17, 2010

Equipment Class

TBC - Licensed Broadcast Station Transmitter
2000 Watt ATSC Transmitter - FCC ID PHLTXUD2000A - Elettronika S.r.l.
PHLTXUD2000A

2000 Watt ATSC Transmitter

Jun 09, 2010

Equipment Class

TBC - Licensed Broadcast Station Transmitter
30 Watt FM Broadcast Transmitter - FCC ID PHLMIZAR30 - Elettronika S.r.l.
PHLMIZAR30

30 Watt FM Broadcast Transmitter

Jul 01, 2008

Equipment Class

TBC - Licensed Broadcast Station Transmitter
300 Watt FM Broadcast Transmitter - FCC ID PHLMIZAR300 - Elettronika S.r.l.
PHLMIZAR300

300 Watt FM Broadcast Transmitter

Jul 01, 2008

Equipment Class

TBC - Licensed Broadcast Station Transmitter