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CFS8DL5821-1security remote transmitter

Ademco Inc.
security remote transmitter - FCC ID CFS8DL5821-1 - Ademco Inc.
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Application Details

Equipment Class
DSC - Part 15 Security/Remote Control Transmitter
Date of Grant
Jan 16, 2006
Application Purpose
Original Equipment
Date of Application
Oct 11, 2005
Equipment Note
security remote transmitter
Frequency Range
345.00000000 - 345.00000000
Company
Ademco Inc.
Country
United States

Documents & Files

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Users Manual

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Block Diagram

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Cover Letter(s)

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External Photos

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ID Label/Location Info

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Internal Photos

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Operational Description

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Schematics

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Test Report

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Test Setup Photos

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Document Text

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

Users Manual

K9947V2 10/05 Rev. A ADEMCO 5821 Temperature Sensor & Flood Detector INSTALLATION AND SETUP GUIDE GENERAL INFORMATION The ADEMCO 5821 Temperature Sensor & Flood Detector is a wireless transmitter used with Honeywell’s ADEMCO alarm systems that support 5800 series devices. The 5821 can be configured to operate as a stand-alone temperature sensor and/or as either a Remote Temperature Sensor or Flood Detector. The 5821 in combination with the ADEMCO T280R temperature probe is ideal for monitoring refrigerators and freezers in restaurants, kitchens and warehouses where food storage is a concern. The 5821 in combination with the ADEMCO 470PB probe can be used to sense floods in basements and other areas where there is a possibility of flooding. The 5821 will send an alarm, via its RF transmitter, to the control when the preset temperature limit is exceeded or when a flood is detected. Temperature monitoring and flood detection is dependent on the operating mode selected. Refer to Table 1 for applicable operating modes. Room temperature is monitored at the device using the 5821’s internal sensor. Refrigerator or Freezer temperature is monitored remotely using the ADEMCO T280R temperature probe. Flood detection is monitored remotely using the ADEMCO 470PB probe with the supplied resistor. A separate 5821 is required for each external probe being used. In refrigerator or freezer applications, when the temperature increases past the high threshold limit and a delay of greater than 30 minutes passes, an alarm is triggered. This preset delay offers greater reliability against false alarms, especially due to open refrigerator or freezer doors. A 3-volt lithium battery powers the 5821. If the battery voltage gets too low, the 5821 sends a low battery signal to the control panel. INSTALLING/REPLACING THE BATTERY Important Notes: • Use 3-volt lithium battery: Duracell DL 123A or Panasonic/Sanyo/Tekcell/Varta CR123A. • Observe polarity. • When replacing the battery, wait at least 30 seconds after removing the old battery, before installing the new one. Install or replace the battery as follows: 1. Remove the transmitter's top cover by inserting the flat blade of a small screwdriver into the pry-off slot at one end of the unit (see Figure 1 for location), and slightly twisting the blade until the cover disengages. 2. Install a 3-volt lithium battery as shown in Figure 1. TAMPER SUPERVISION The 5821 tamper supervision feature (Loop 4) causes a trouble signal to be sent to the control if the unit’s cover is removed from the base or if an external probe is used and the wire is cut (open) or the probe is shorted. The tamper switch is also used to program the unit’s serial number and loop assignments to the control panel. SETTING THE OPERATING MODE Table 1 provides a list of the various operating modes of the 5821 with the respective Loop and DIP Switch settings for each. Note that Cold Temp Sensing can be used in combination with any of the other operating modes. To use the transmitter to monitor two different conditions, you must program each loop used on the 5821 as its own zone, and you must set the DIP Switches as shown for the combination functions in Table 1. PROGRAMMING THE UNIT Once you have selected an operating mode and have set the DIP Switches accordingly, you must enroll the transmitter in the control panel. When programming the transmitter in the control panel, note that you must program a separate zone for each loop you are using on the transmitter. To program: 1. Enter the control’s Zone Programming mode. 2. Enter the zone number to be programmed. 3. Enter the applicable zone type when prompted (zone types such as 24-Hr. Aux, Waterflow, etc. should be used) depending on the function of the zone and the control panel being used (see the control panel’s instructions for available zone types and definitions). 4. When prompted, enter Input Type 03 (3 on some controls) – Supervised RF Transmitter. 5. When prompted for the serial number, transmit from the detector by pressing the tamper switch. 6. When the serial number is displayed, transmit from the detector again by pressing the tamper switch. The current loop number (4) will begin to flash. 7. Manually change the loop number to the desired loop number for the zone (according to the application—see Table 1). 8. When programming for this zone is complete, program other zones for the transmitter as necessary (each loop requires its own zone. 9. Exit Programming mode when programming is complete, and test the detector. Refer to the Testing section. 2 MOUNTING THE DETECTOR You can mount the 5821 on a wall or ceiling within the protection area. The following notes apply: • The 5821 may be installed in any direction. • When used in-conjunction with the ADEMCO 470PB flood sensor probe, use no more than 48 inches of wire from the 5821 to the flood sensor and connect the termination resistor across the probes terminals. • When used in-conjunction with ADEMCO T280R temperature probe, use the shortest wire possible (less than 96 inches) to improve the signal integrity. • Although the unit can be mounted directly to a surface, we recommend that the mounting plate be used for ease of removal for servicing if necessary. Avoid mounting the detector near heat generating devices (e.g. ovens, heat vents, furnaces, boilers) or to a metal cabinet or surface. Wireless Transmission Path Test A good RF transmission path must be established from the proposed mounting location before permanently installing the detector. To determine that there is good signal reception from the proposed location, perform the test procedure described in TESTING THE DETECTOR section. Once a good RF transmission path is confirmed, mount the detector as follows, referring to Figure 1. 5821-001-V0 LOCKING TA B RELEASE WINDOW COVER PRY-OFF SLOT MOUNTING PLATE HOLES (2) OBSERVE POLARITY LOCKING TAB WIRES MOUNTING PLATE CASE COVER RETAINING HOOKS (3) POST (2) 5821-002-V1 LOOP TERMINALS BATTERY C…

Text truncated - open the document above for the full version.

Users Manual

K9947V2 10/05 Rev. A ADEMCO 5821 Temperature Sensor & Flood Detector INSTALLATION AND SETUP GUIDE GENERAL INFORMATION The ADEMCO 5821 Temperature Sensor & Flood Detector is a wireless transmitter used with Honeywell’s ADEMCO alarm systems that support 5800 series devices. The 5821 can be configured to operate as a stand-alone temperature sensor and/or as either a Remote Temperature Sensor or Flood Detector. The 5821 in combination with the ADEMCO T280R temperature probe is ideal for monitoring refrigerators and freezers in restaurants, kitchens and warehouses where food storage is a concern. The 5821 in combination with the ADEMCO 470PB probe can be used to sense floods in basements and other areas where there is a possibility of flooding. The 5821 will send an alarm, via its RF transmitter, to the control when the preset temperature limit is exceeded or when a flood is detected. Temperature monitoring and flood detection is dependent on the operating mode selected. Refer to Table 1 for applicable operating modes. Room temperature is monitored at the device using the 5821’s internal sensor. Refrigerator or Freezer temperature is monitored remotely using the ADEMCO T280R temperature probe. Flood detection is monitored remotely using the ADEMCO 470PB probe with the supplied resistor. A separate 5821 is required for each external probe being used. In refrigerator or freezer applications, when the temperature increases past the high threshold limit and a delay of greater than 30 minutes passes, an alarm is triggered. This preset delay offers greater reliability against false alarms, especially due to open refrigerator or freezer doors. A 3-volt lithium battery powers the 5821. If the battery voltage gets too low, the 5821 sends a low battery signal to the control panel. INSTALLING/REPLACING THE BATTERY Important Notes: • Use 3-volt lithium battery: Duracell DL 123A or Panasonic/Sanyo/Tekcell/Varta CR123A. • Observe polarity. • When replacing the battery, wait at least 30 seconds after removing the old battery, before installing the new one. Install or replace the battery as follows: 1. Remove the transmitter's top cover by inserting the flat blade of a small screwdriver into the pry-off slot at one end of the unit (see Figure 1 for location), and slightly twisting the blade until the cover disengages. 2. Install a 3-volt lithium battery as shown in Figure 1. TAMPER SUPERVISION The 5821 tamper supervision feature (Loop 4) causes a trouble signal to be sent to the control if the unit’s cover is removed from the base or if an external probe is used and the wire is cut (open) or the probe is shorted. The tamper switch is also used to program the unit’s serial number and loop assignments to the control panel. SETTING THE OPERATING MODE Table 1 provides a list of the various operating modes of the 5821 with the respective Loop and DIP Switch settings for each. Note that Cold Temp Sensing can be used in combination with any of the other operating modes. To use the transmitter to monitor two different conditions, you must program each loop used on the 5821 as its own zone, and you must set the DIP Switches as shown for the combination functions in Table 1. PROGRAMMING THE UNIT Once you have selected an operating mode and have set the DIP Switches accordingly, you must enroll the transmitter in the control panel. When programming the transmitter in the control panel, note that you must program a separate zone for each loop you are using on the transmitter. To program: 1. Enter the control’s Zone Programming mode. 2. Enter the zone number to be programmed. 3. Enter the applicable zone type when prompted (zone types such as 24-Hr. Aux, Waterflow, etc. should be used) depending on the function of the zone and the control panel being used (see the control panel’s instructions for available zone types and definitions). 4. When prompted, enter Input Type 03 (3 on some controls) – Supervised RF Transmitter. 5. When prompted for the serial number, transmit from the detector by pressing the tamper switch. 6. When the serial number is displayed, transmit from the detector again by pressing the tamper switch. The current loop number (4) will begin to flash. 7. Manually change the loop number to the desired loop number for the zone (according to the application—see Table 1). 8. When programming for this zone is complete, program other zones for the transmitter as necessary (each loop requires its own zone. 9. Exit Programming mode when programming is complete, and test the detector. Refer to the Testing section. 2 MOUNTING THE DETECTOR You can mount the 5821 on a wall or ceiling within the protection area. The following notes apply: • The 5821 may be installed in any direction. • When used in-conjunction with the ADEMCO 470PB flood sensor probe, use no more than 48 inches of wire from the 5821 to the flood sensor and connect the termination resistor across the probes terminals. • When used in-conjunction with ADEMCO T280R temperature probe, use the shortest wire possible (less than 96 inches) to improve the signal integrity. • Although the unit can be mounted directly to a surface, we recommend that the mounting plate be used for ease of removal for servicing if necessary. Avoid mounting the detector near heat generating devices (e.g. ovens, heat vents, furnaces, boilers) or to a metal cabinet or surface. Wireless Transmission Path Test A good RF transmission path must be established from the proposed mounting location before permanently installing the detector. To determine that there is good signal reception from the proposed location, perform the test procedure described in TESTING THE DETECTOR section. Once a good RF transmission path is confirmed, mount the detector as follows, referring to Figure 1. 5821-001-V0 LOCKING TA B RELEASE WINDOW COVER PRY-OFF SLOT MOUNTING PLATE HOLES (2) OBSERVE POLARITY LOCKING TAB WIRES MOUNTING PLATE CASE COVER RETAINING HOOKS (3) POST (2) 5821-002-V1 LOOP TERMINALS BATTERY C…

Text truncated - open the document above for the full version.

Block Diagram

SECTION 2.1033(b) SECTION 2.1033(b) (3) Block Diagram. EXHIBIT 2-2 BLOCK DIAGRAM CFS8DL5821-1 MICRO SW Q1 MOD Q3,Q4 ANT U1 OCS PA FDE Y1 Q2 Q5 .

Cover Letter(s)

Federal Communications Commission Honeywell International Inc. Equipment Approval Services Radio Engineering PO BOX 358315 160 Eileen Way Pittsburgh, PA 15251 5315 Syosset, NY 11791 October, 08, 2005 Subject: Application for Certification of Honeywell’s Security Device type 5821-1 FCC ID: CFS8DL5821-1 Dear Sir or Madam: Please find up-loaded (e-filed) a copy of this letter, a 731 application form, and 159 (payment) form for submittal of this product. The following exhibits were also uploaded to your site: • functional description (EXHIBIT 1) • circuit description (EXHIBIT 2-1) • block diagram (EXHIBIT 2-2) • schematic (EXHIBIT 2-3) • duty cycle / timing calculation (EXHIBIT 3-1) • timing diagram (EXHIBIT 3-2) • external and internal photos (EXHIBIT 4-1 thru 4-5) • product test report (EXHIBIT 5-1 thru 5-4 & EXHIBIT 6) • users manual (EXHIBIT 7) • label (EXHIBIT 8) This is for the certification of Honeywell’s 5821-1 transmitter under FCC rules and regulations Part 15. If you have any questions or require additional information, please contact me at 516-921-6704 Ext. 6920 Regards, Greg Barbato for Ken Addy Director Radio Engineering

External Photos

EXHIBIT 4-1 EXTERNAL PHOTOS CFS8DL5821-1 SECTION 2.1093 (c) SECTION 2.1093 (c) Photos (external ) Showing all faces of the device. External photos shall show the overall appearance, and the antenna used with the device (if any).

External Photos

EXHIBIT 4-2 EXTERNAL PHOTOS CFS8DL5821-1 SECTION 2.1093 (c) SECTION 2.1093 (c) Photos (external ) Showing all faces of the device. External photos shall show the overall appearance, and the antenna used with the device (if any).

ID Label/Location Info

EXHIBIT 8 FCC PART 15 LABEL CFS8DL5821-1 SECTION 2.1033 (c) SECTION 2.1033 (c) and Part 15.21 SECTION 2.1033 (c) Label and label location - A photo showing the identification label clearly (you must be able to see the name and FCC ID number), and the location on the device. In lieu of a photo for this, you may submit a engineer’s drawing. Part 15.21 Statement - for all intentional and unintentional radiators is also printed on the label.

ID Label/Location Info

EXHIBIT 8 FCC PART 15 LABEL CFS8DL5821-1 SECTION 2.1033 (c) SECTION 2.1033 (c) and Part 15.21 SECTION 2.1033 (c) Label and label location - A photo showing the identification label clearly (you must be able to see the name and FCC ID number), and the location on the device. In lieu of a photo for this, you may submit a engineer’s drawing. Part 15.21 Statement - for all intentional and unintentional radiators is also printed on the label.

ID Label/Location Info

EXHIBIT 8 FCC PART 15 LABEL CFS8DL5821-1 SECTION 2.1033 (c) SECTION 2.1033 (c) and Part 15.21 SECTION 2.1033 (c) Label and label location - A photo showing the identification label clearly (you must be able to see the name and FCC ID number), and the location on the device. In lieu of a photo for this, you may submit a engineer’s drawing. Part 15.21 Statement - for all intentional and unintentional radiators is also printed on the label.

Internal Photos

EXHIBIT 4-3 INTERNAL PHOTOS CFS8DL5821-1 SECTION 2.1093 (c) SECTION 2.1093 (c) Photos (internal ) - showing all faces of the device and all circuitry. Internal photos shall show the component placement on the chassis and the chassis assembly. If components are covered by an insulator, provide a photo with the cover on, and one with the cover removed, and the controls available to the user.

Internal Photos

EXHIBIT 4-4 INTERNAL PHOTOS CFS8DL5821-1 SECTION 2.1093 (c) SECTION 2.1093 (c) Photos (internal ) - showing all faces of the device and all circuitry. Internal photos shall show the component placement on the chassis and the chassis assembly. If components are covered by an insulator, provide a photo with the cover on, and one with the cover removed, and the controls available to the user.

Internal Photos

EXHIBIT 4-5 INTERNAL PHOTOS CFS8DL5821-1 SECTION 2.1093 (c) SECTION 2.1093 (c) Photos (internal ) - showing all faces of the device and all circuitry. Internal photos shall show the component placement on the chassis and the chassis assembly. If components are covered by an insulator, provide a photo with the cover on, and one with the cover removed, and the controls available to the user.

Operational Description

EXHIBIT 1-1 CFS8DL5821-1 Functional Description The 5821-1 is a battery powered, portable transmitter that is part of a wireless alarm system. It is used in conjunction with a receiver (5881) to indicate an alarm when activated. RF transmissions are initiated by a change in state of the loop and/or temperature. In addition, the 5821-1 sends a regular supervision or check-in RF message, no more often than once per hour. The RF messages are transmitted at a frequency of 345MHz +/- 82KHz using an off-keyed AM modulation method.

Operational Description

EXHIBIT 2-1 CFS8DL5821-1 CIRCUIT DESCRIPTION The 5821-1 is a 345 MHz. Transmitter. Transistor Q1 Etc., switches Oscillator Q2 ON. Oscillator Q2 Etc., FDE is SAW Resonator YL1 Transistors Q3 & Q4 Etc., act as the Modulator for the PA Q5 Etc., who's output is matched to the Antenna ANT. by C15 and C16.

Operational Description

EXHIBIT 3-1 TIMING / DUTY CYCLE CALCULATION CFS8DL5821-1 Section 15.255(b) Section 15.255(b), when the radiated emission limits are expressed in terms of the average value of the emission, and pulsed operation is employed, the measurement field strength shall be determined by averaging over one complete pulse train, including blanking intervals, as long as the pulse train does not exceed 0.1 seconds. The exact method of calculating the average field strength shall be submitted with any application for certification. 5821-1 Duty Cycle Calculation Message protocol, timing and duty cycle calculation: The data output is phase-encoded Manchester that has inherent 50% duty cycle and consists of 64 bits per word sent at a nominal data rate of 3.7 kb/s (3.2kb/s min to 4.2kb/s max). Therefore the duty cycle is calculation is as follows: The word format consists of 64 bits, The duration of each bit is 312.5 uSec max. The duty cycle over a 100 mSec measuring period is calculated as follows: Duty cycle = Actual RF transmission ON time / 100 mSec Actual transmission ON time = 64 bits X 50% X 312.5 uSec = 10 mSec Therefore duty cycle = 10 / 100 mSec = .10 = 10%, and peak to average field strength is 20 db. Total on-air time for a supervision transmission is: 64 X 312.5 uSec + (5 X 150 mSec) = 0.77 seconds The group of six transmissions is repeated twice, with the second group delayed from the first by a max time of 2 seconds. The worst case on-air time is 1.54 + 2 = 3.54 seconds Summary: - Duty cycle = 10% On airtime = 3.54 seconds

Operational Description

EXHIBIT 3-2 TIMING DIAGRAM CFS8DL5821-1 Section 15.255(b) Section 15.255(b), when the radiated emission limits are expressed in terms of the average value of the emission, and pulsed operation is employed, the measurement field strength shall be determined by averaging over one complete pulse train, including blanking intervals, as long as the pulse train does not exceed 0.1 seconds. The exact method of calculating the average field strength shall be submitted with any application for certification. SEE THE NEXT PAGE

Test Report

EXHIBIT 5-1 CFS8DL5821-1 Report of Measurements. Measurements were made at Ademco 's Measurement Facility at 160 Eileen Way , Syosset , NY 11791 , FCC Registration number : 90421. Measurements were made in accordance with the procedures and reporting requirements of ANSI C63.4-1992. The Test Set-Up (C63.4 section 10.1.3) is shown in the attached drawing. The sequence of testing (C63.4 section 10.1.7) for radiated emissions is as follows: A preliminary scan was conducted with the receiver antenna close to the EUT in order to identify the emission characteristics of the EUT (C63.4 section 8.3.1.1). The antenna and EUT were then placed at the proper separation with the EUT positioned on a non-conducting turntable. The EUT was rotated on the turntable to maximize the received signal strength, then the receiver antenna height was varied to further maximize the received reading. Thereafter, the device was again rotated to a peak output position and the antenna height was re-adjusted for maximum received signal. This procedure was re-iterated until there was no further increase in signal level. This procedure was performed with the EUT rotating in three orthogonal planes (C63.4 section 13.1.4.1) to generate a final maximum reading which is recorded on the radiated emissions result sheet. Similar measurements were made on the receiver to ensure compliance as an unintentional radiator. See Exhibit 6 for list of test equipment (C63.4 section 10.1.4). Note, Spectrum Analyzer resolution bandwidths set as follows; (Video Bandwidth set greater than RBW) - For occupied bandwidth measurements, RBW = 100kHz, (This is in accordance with the minimum RBW allowed by C63.4, which requires RBW greater than 5% of the FCC required occupied bandwidth spec of 0.25% of center frequency). - For radiated emissions below 1 GHz, the RBW = 100kHz. Detector function set to peak. - For radiated emissions above 1 GHz, the RBW = 1MHz. Detector function set to peak. OCCUPIED BANDWIDTH is shown on attached plot. RADIATED EMISSIONS are recorded on attached sheet.

Test Report

5821 OCCUPIED BANDWIDTH (459 KHz) Transistor – N10-55GN

Test Report

EXHIBIT 6 TEST EQUIPMENT USED CFS8DL5890-1 Section 15.231 and ANSI C63.4 Section 15.231, per C63.4 section 10.1.4. This is a list of all test equipment used. Test Equipment list 1. Antenna: BICONOLOG S/N: 00029290 Cal. on: 09/14/04 Cal. due: 09/14/05 2. Spectrum Analyzer H. P. 8563E S/N:3246A00232 Cal. on: 08/23/04 Cal. due: 08/23/05

Test Report

HONEYWELL SECURITY & CUSTOM ELECTRONICS 165 EILEEN WA Y SYOSSET, NY 11791EXHIBIT 5-3 FCC ID # CFS8DL5821-1 Date : 8/15/2005 Tested by :Y. Mohammed Approved by :K.Addy Test Sample (model) : 5821 - RF Transistor N10-80GN Test method: ANSI C63.4 - 1992 Test specification: FCC Part 15, Sub-part C Notes: (1) Fo = 345MHz. (2) Detector = Peak (3) Frequency range scanned to 4 GHz. Emissions not reported were more than 20dB below the specified unit. [(Meter reading + Cable/Amp factor + Antenna factor) / 20 )] (4) Conv. Reading = 10 (5) Corr. Reading = Conv. Reading X Duty Cycle (6) Six Highest Emissions Recorded Freq. (MHz) Antenna Polarity (V/H) Meter Reading (dB uV) Cable/Amp Factor (dB) Antenna Factor (dB/M) Conv. Reading (uV/M) Duty Cycle (%) Corr. Reading (uV/M) Limit @ 3M (uV/M) 30 CABLE "A"BICONILOG729 345H75.201.214.7836224.310.0%3622.47292 690H30.001.819.10350.810.0%35.1729 1035H38.002.222.701396.410.0%139.6500 1380H42.002.524.962971.710.0%297.2500 1725H39.002.827.552934.310.0%293.4729 2070H38.003.029.523357.410.0%335.7729 2415H28.003.331.131322.810.0%132.3729 2760 H 28.003.7 31.501445.410.0%144.5729 3105H28.004.131.611532.910.0%153.3729 3450H32.004.432.222697.710.0%269.8729 4000 CABLE "A"BICONILOG

Test Setup Photos

EXHIBIT 5-2 PICTURE OF THE TEST SETUP CFS8DL5821-1 SECTION 2.1093 (c) SECTION 2.1093 (c) Photo of the test setup shall be provided.

Contact Information

Applicant

Christian Fouth(Sr. Wireless Certification Engineer)
[email protected]15406566372Fax: 17639544816

Technical Contact

Honeywell International Inc.Ken L Addy
[email protected]516-921-6704

165 Eileen Way · Syosset, New York · United States

Non-Technical Contact

Honeywell International Inc.Ken L Addy
[email protected]516-921-6704

Test Firm

Honeywell International Inc.Kenneth Addy
[email protected]516-921-6704Fax: 516-921-7182

Technical Specifications

#Rule PartsFrequency RangePower Output
115.231345 MHz - 345 MHz-

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