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2ADJKJHS-800SMARINE VHF RADIOTELEPHONE WITH BLUETOOTH

ALPHATRON MARINE USA, INC.
MARINE VHF RADIOTELEPHONE WITH BLUETOOTH - FCC ID 2ADJKJHS-800S - ALPHATRON MARINE USA, INC.
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Application Details

Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
Date of Grant
Dec 02, 2020
Application Purpose
Original Equipment
Date of Application
Dec 02, 2020
Equipment Note
MARINE VHF RADIOTELEPHONE WITH BLUETOOTH
Frequency Range
156.02500000 - 157.42500000
Company
ALPHATRON MARINE USA, INC.
Country
United States

Documents & Files

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Users Manual

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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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RF Exposure Info

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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

JD19X02K 1/9 JHS-800S MARINE VHF RADIOTELEPHONE Quick Operation Manual JD19X02K 2/9 Contents 1. Turning on the Power 2. Changing the channel 3. Changing the transmitting power 4. Changing the channel region (CH SET) 5. Changing to Maintenance Mode 6. TX TIMER 7. DSC Transmission test JD19X02K 3/9 1. Turning on the Power The following explains how to turn on the power for the JHS-800S. The JHS-800S automatically turns on when it is supplied from an external power supply. Also after that, if turning off and on, press down (0.5 - 1 second) the PWR button on the front panel. 2. Changing the channel Setting a 2-digits channel (Incase of the CH70) 2.1 On the regular screen, touch the channel display area or the ten-key icon button to indicate the numeric keypad. 2.2 Touch the [7] and then [0] buttons continuously. 2.3 Setting of the CH70 is finished. JD19X02K 4/9 Setting channel 16 (Priority ch) 2.4 Touch the [ch16] button. Setting of the CH16 is finished. 3. Changing the transmitting power Touch the [25W/1W] button to change the transmitting power between 25 W and 1 W. The showing value is changed each other, and is the current condition. JD19X02K 5/9 4. Changing the channel region (CH SET) Touch [MENU] in the lower left of the screen. Touch [CH OPE] in [MENU]. Normally, this does not need to be edited. Touch [REGION] in [CH OPE]. Touch the desired region button. JD19X02K 6/9 5. Changing to Maintenance Mode To change to the Maintenance Mode the procedure is as follows. JD19X02K 7/9 6. TX TIMER Touch [MENU] > [MAINT MENU] to display the screen at left. Touch [PRIMAL SET] > [SYSTEM SET] to display the screen at left. Touch [SPECIAL] to display the screen at left. Set the TX TIMER condition by touching [+] or [ー], and after transmitting for 5 minutes, the transmission stops automatically. JD19X02K 8/9 7. DSC Transmission test JHS-800S can transmit with unmodulated, 1300Hz, 2100Hz, or Dot modulation by DSC/ATIS function. Using DSC/ATIS function, it needs to start in Maintenance Mode. The maintenance menu is displayed. Touch [SETUP&INFO] to display the screen at left. Touch [TX SET] to display the screen at left. Touch [DSC/ATIS] to display the screen at left. Adjust the DSC/ATIS modulation index so TX TYPE is " DSC 2100Hz " or " DSC 1300Hz ". You can select DSC frequency. ・ UNMODULATED ・ DSC 1300Hz ・ DSC 2100Hz JD19X02K 9/9 Touch [DSC ADJ] to enter the screen at left. Touch [TX] to start transmitting. Transmission output and VSWR are displayed in the lower level. Note: Touch [STOP] to stop transmissions. Touch [CANCEL] to before display a screen. CAUTION: To avoid changing the performance, DO NOT adjust DSC MOD by touching [+] or [ー] button.

Users Manual

MARINE VHF RADIOTELEPHONE Instruction Manual 7ZPJD0714 . Safety Precautions Radio and radar devices are operated by high voltages of anywhere from a few hundred volts up to many hundreds of thousands of volts. Observe the following precautions to prevent the risk of electric shock. Avoid contact with the internal parts of these devices. Only specialized service people should do any maintenance, inspections, or adjustments inside the devices. Falling after receiving an electric shock may lead to extensive secondary injuries, so be sure you have a safe place to stand when working. In the event that someone receives an electric shock, immediately implement emergency procedures, such as cardiopulmonary resuscitation. If you must reach into a device, as in the case of an emergency, you must switch off the devices and ground a terminal in order to discharge the capacitors. After making certain that all the electricity is discharged, only then can you insert your hand into the device. Wearing dry cotton work gloves is another way to reduce risks. One more necessary precaution is to not use both hands at the same time. Although there is no danger with normal use, it is very dangerous if contact is made accidently with the internal parts of these devices. There is a very high risk of death by high voltages of tens of thousands of volts. In some cases, you could be fatally electrocuted by voltages of several hundred volts. If you find an electrocution victim, you must first switch off the machinery that caused the electrocution and ground all circuits. If you are unable to immediately cut off the circuit, do not directly touch the victim. Quickly use a non-conductive material, such as a dry board or cloth, to move the victim away from the device. If someone receives an electric shock, immediately implement emergency procedures, such as cardiopulmonary resuscitation. When a person is electrocuted, the current passes through their heart and may cause ventricular fibrillation or cardiac arrest. Also, if the shock is mild, the victim's breathing may be restored by doing artificial respiration. An electrocution victim becomes very pale, their pulse can be very weak or even stop, and they may lose consciousness and become stiff. CAUTIONS AGAINST HIGH VOLTAGE Precautions for rescuing victims from electrocution ☆Note points for first aid Unless there is impending danger, leave the electrocution victim where he or she is, then begin artificial respiration. Once you begin artificial respiration, you must continue without losing rhythm. (1) Make contact with the victim cautiously, there is a risk that you may get electrocuted. (2) Switch off the machinery and then move the victim away slowly if you must. (3) Inform someone immediately (a hospital or doctor, dial emergency numbers, etc.). (4) Lay the victim on his or her back and loosen any constrictive clothing (a tie, or belt). (5) (a) Check the victim's pulse. (b) Check for a heartbeat by pressing your ear against the victim's chest. (c) Check if the victim is breathing by putting the back of your hand or face near the victim's face. (d) Check the pupils of the eyes. (6) Open the victim's mouth and remove any artificial teeth, cigarette or chewing gum. Leave the mouth opened and flatten the tongue with a towel or by putting something into the mouth to prevent the victim's tongue from obstructing the throat. (If he or she is clenching the teeth and it is difficult to open the mouth, use a spoon or the like to pry open the mouth.) (7) Continually wipe the mouth to prevent the accumulation of saliva. First aid Flow of Cardiopulmonary Resuscitation (CPR) A person is collapsin Check for response. - Call while tapping the shoulder. Breathing Recovery position - Lay the injured or ill person on his/her side and wait for the arrival of the emergency services. Not responding Ask for help. - Make an emergency call. - Ask to bring an AED. Listen to the appeal of the injured or ill person and give the necessary first-aid treatment. Responding Not breathing Give 2 rescue breaths; omittable Note( 1 ) Give CPR. - 30 chest compressions - Give 2 rescue breaths; omittable Note( 1 ) Note( 1 ) Omission of rescue breathing: If there is a fear of infection because the injured or ill person has an intraoral injury, you are hesitant about giving mouth-to-mouth resuscitation, or preparing the mouthpiece for rescue breathing takes too long, omit rescue breathing and proceed to the next step. Open the airway. - Check for breathing. Arrival of an AED - Turn on the power. - Use the AED by following its voice prompts. Fitting of the electrode pads, etc. Automatic electrocardiogram analysis - Do not touch the injured or ill person. Electric shock is needed. Electric shock is not needed. Delivery of electric shock Resume CPR from chest compressions by following the voice prompts of the AED. When the injured or ill person has been handed over to the emergency services or has started moaning or breathing normally, lay him/her on his/her side in a recovery position and wait for the arrival of emergency services. When to stop CPR A person is collapsing. - Secure the safety of the surrounding area. - Prevent secondar y disasters. The AED automatically analyzes the heart rhythm every 2 min. Are you OK? Roll gently in the opposite direction every 30 minutes. Please call an ambulance. Please bring an AED. Specific Procedures for Cardiopulmonary Resuscitation (CPR) 1. Check the scene for safety to prevent secondary disasters a) Do not touch the injured or ill person in panic when an accident has occurred. (Doing so may cause electric shock to the first-aiders.) b) Do not panic and be sure to turn off the power. Then, gently move the injured or ill person to a safe place away from the electrical circuit. 2. Check for responsiveness a) Tap the shoulder of the injured or ill and shout in the ear saying, "Are you OK?" b) If the person opens his/her eyes or there is some response or gesture, determine…

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Cover Letter(s)

JRC October 13, 2020 Federal Communications Commission Authorization and Evaluation Division ALPH�TR N Marine Confidentiality Request regarding application for certification of FCC ID: 2ADJKJHS-800S Pursuant to Sections 0.457 and 0.459 of the Commission's Rules, we hereby request confidential t reatment of information accompanying this application as outlined below: Exhibit Type Schematics, block d iagrams, circuit description, parts list, and tuning procedure. The above materials contain trade secrets and proprietary information not customarily released to the public. The public disclosure of these materials may be harmful to the applicant and provide unjustified benefits to its competitors. Bes t Regards, Thomas S. Mccasland Training Manager Alphatron Marine USA 1205 Butler Rd. League City, Texas 77573 [email protected] Alphatron Marine USA 1205 Butler Road League City (TX) 77573 PH: 281-271-4600

External Photos

JD19X02B 1 / 7 External Photos of JHS-800S MARINE VHF RADIOTELEPHONE JD19X02B 2 / 7 Contents 1. JHS-800S MARINE VHF RADIOTELEPHONE 1.1 Front View 1.2 Rear View 1.3 Top View 1.4 Bottom View 1.5 Right Side View 1.6 Left Side View 2. Handset NQW-980 2.1 Top View 2.2 Bottom View 2.3 Side View 2.4 Top View of Cradle (for Handset) 2.5 Side View of Cradle (for Handset) JD19X02B 3 / 7 1. JHS-800S MARINE VHF RADIOTELEPHONE 1.1 Front View 1.2 Rear View JD19X02B 4 / 7 1.3 Top View 1.4 Bottom View JD19X02B 5 / 7 1.5 Right Side View 1.6 Left Side View JD19X02B 6 / 7 2. Handset NQW-980 2.1 Top View 2.2 Bottom View 2.3 Side View JD19X02B 7 / 7 2.4 Top View of Cradle (for Handset) 2.5 Side View of Cradle (for Handset)

ID Label/Location Info

1. FCC ID Name plate FG SENSAUXLANCTRL24 VDCWKRTRX JHS-800S Rear view Name plate 80 25 Attached location JD19X02A 1. INDUSTRY CANADA IC Name plate FG SENSAUXLANCTRL24 VDCWKRTRX JHS-800S Rear view Name plate 80 25 Attached location

Internal Photos

JD19X02E 1 / 10 Internal Photos of JHS-800S MARINE VHF RADIOTELEPHONE JD19X02E 2 / 10 Contents 1. JHS-800S MARINE VHF RADIOTELEPHOHE 1.1 CBD-2800 (PS UNIT) 1.2 CCK-2800 (DIST SW UNIT) 1.3 CCK-2801 (POWER SW UNIT) 1.4 CDE-2800 (CONNECTOR UNIT) 1.5 CDJ-2800 (CONTROL UNIT) 1.6 CMN-2800 (RF UNIT) 2. Inside of Front Panel 3. Inside of Rear Case (Front View) 4. Inside of Rear Case (Top View) JD19X02E 3 / 10 1. JHS-800S MARINE VHF RADIOTELEPHONE 1.1 CBD-2800 (PS UNIT) Parts side S older side JD19X02E 4 / 10 1.2 CCK-2800 (DIST SW UNIT) Parts side Solder side JD19X02E 5 / 10 1.3 CCK-2801 (POWER SW UNIT) Parts side Solder side JD19X02E 6 / 10 1.4 CDE-2800 (CONNECTOR UNIT) Parts side Solder side JD19X02E 7 / 10 1.5CDJ-2800 (CONTROL UNIT) Parts side Solder side JD19X02E 8 / 10 1.6 CMN-2800 (RF UNIT) Parts side Solder side JD19X02E 9 / 10 2. Inside of Front Panel 3. Inside of Rear Case (Front View) JD19X02E 10 / 10 4. Inside of Rear Case (Top View)

RF Exposure Info

J D19X02G 1/1 RF emission: Theoretical value of the safety distance from the VHF antenna for the JHS-800S 1. Specifications Maximum output: RF power 25W Antenna gain: 0dBd, 3dB(Marine dB) Antenna pattern: Omni-direction in a horizontal plane Frequency: 156.0MHz – 162.5MHz Modulation: Frequency modulation 2. Calculation [ ] () [ ]m limitRF PowernAntennaGai md807.0100 14 10 4 25000log10315.2 =÷ × = × × = ++ ππ Power density : [] 2 /01cmmW.RFlimit= (OET Bulletin No. 65) Duty cycle : 100% Safety distance: 0.81[m] or more FCC ID: 2ADJKJHS-800S

Test Report

849 NW STATE ROAD 45 PHONE: 352.472.5500 NEWBERRY, FL 32669 USA EMAIL: [email protected] WEB: HTTP://WWW.TIMCOENGR.COM An IIA Company FCC CFR 47 Part 80 & ISED RSS-182 Test Report APPLICANT ALPHATRON MARINE USA, INC. ADDRESS 1205 BUTLER ROAD FCC ID 2ADJKJHS-800S IC 12477A-JHS800S MODEL NUMBER JHS-800S PRODUCT DESCRIPTION MARINE VHF RADIOTELEPHONE DATE SAMPLE RECEIVED 10/30/2019 FINAL TEST DATE 10/30/2019 TESTED BY Tim Royer TEST RESULTS ☒ PASS ☐ FAIL Report Number Report Version Description Issue Date 2920AUT19TestReport_ Rev1 Initial Issue 7/23/2020 Rev2 Revised pages 3,26, 28,29 THE ATTACHED REPORT SHALL NOT BE REPRODUCED EXCEPT IN FULL WITHOUT THE WRITTEN APPROVAL OF TIMCO ENGINEERING, INC. TABLE OF CONTENTS GENERAL REMARKS ........................................................................................................ 2 TESTING INFORMATION ......................................................................................................... 3 RESULTS SUMMARY ........................................................................................................ 4 TECHNICAL DATA ........................................................................................................... 5 RF POWER OUTPUT ........................................................................................................ 6 TEST DATA: MEASUREMENT TABLE ......................................................................................... 6 MODULATION CHARACTERISTICS .................................................................................. 7 TEST DATA: 16K0F3E BANDWIDTH CALCULATION ...................................................................... 7 AUDIO FREQUENCY RESPONSE ....................................................................................... 8 TEST DATA: 0. 1 – 5 KHZ AUDIO INPUT PLOT ............................................................................ 8 AUDIO LOW PASS FILTER ............................................................................................... 9 TEST DATA: 1 – 30 KHZ AUDIO INPUT PLOT ............................................................................. 9 AUDIO INPUT VERSUS MODULATION ........................................................................... 10 TEST DATA: MODULATION LIMITING PLOT ............................................................................... 10 OCCUPIED BANDWIDTH ............................................................................................... 11 TEST DATA: VOICE ........................................................................................................... 12 TEST DATA: DSC-ATIS .................................................................................................... 13 TEST DATA: 156.025MHZ LOW POWER ................................................................................. 14 TEST DATA: 156.025MHZ HIGH POWER ................................................................................ 15 TEST DATA: 156.525MHZ LOW POWER ................................................................................. 16 TEST DATA: 156.525MHZ HIGH POWER ................................................................................ 17 TEST DATA: 156.8MHZ LOW POWER .................................................................................... 18 TEST DATA: 156.8MHZ HIGH POWER.................................................................................... 19 TEST DATA: 157.425MHZ LOW POWER ................................................................................. 20 TEST DATA: 157.425MHZ HIGH POWER ................................................................................ 21 SPURIOUS EMISSIONS AT ANTENNA TERMINALS (CONDUCTED) ................................. 22 TEST DATA: HIGH POWER LOW END OF BAND ............................................................................ 23 TEST DATA: LOW POWER LOW END OF BAND ............................................................................. 23 TEST DATA: HIGH POWER HIGH END OF BAND ........................................................................... 24 TEST DATA: LOW POWER HIGH END OF BAND ............................................................................ 24 FIELD STRENGTH OF SPURIOUS EMISSIONS ................................................................ 25 TEST DATA: HIGH POWER LOW END OF BAND ............................................................................ 26 TEST DATA: HIGH POWER MIDDLE OF BAND .............................................................................. 26 TEST DATA: HIGH POWER HIGH END OF BAND ........................................................................... 26 FREQUENCY STABILITY ................................................................................................ 27 TEST DATA: MEASUREMENT TABLE ....................................................................................... 28 TEST DATA: MEASUREMENT PLOT ......................................................................................... 29 STATEMENT OF MEASUREMENT UNCERTAINTY ............................................................. 30 EMC EQUIPMENT LIST .................................................................................................. 31 Applicant: ALPHATRON MARINE USA, INC. FCC ID: 2ADJKJHS-800S IC: 12477A-JHS800S Report: 2920AUT19TestReport _Rev2 Page 2 of 31 GENERAL REMARKS Summary The device under test does: ☒ Fulfill the general approval requirements as identified in this test report and was selected by the customer. ☐ Not fulfill the general approval requirements as identified in this test report Attestations This equipment has been tested in accordance with the standards identified in this test report. To the best of my knowledge and belief, these tests were performed using the measurement procedures described in this report. All instrumentation and accessories used to test products for compliance to the indicat…

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Test Report

Timco Engineering, Inc., an IIA Company 849 NW State Road 45, Newberry, Florida 32669 (352) 472-5500 / [email protected] Page 1 of 42 This test report shall not be reproduced except in full without the written and signed permission of Timco Engineering Inc. (IIA). Timco Test Report # TR_2920CUT19_IEC 62388 DSC Revision: 2 Issue Date: November 17, 2020 Final Test Date: November 16, 2020 An IIA Company Test Report – IEC 62238 Prepared For: ALPHATRON MARINE USA, INC Approved for Release By: Signature: Name & Title: Bruno Clavier, General Manager Date of Signature (YYYY-MM-DD): 2020-11-17 This test report shall not be reproduced except in full without the written and signed permission of Timco Engineering Inc. (IIA). This test report relates only to the items tested as identified and is not valid for any subsequent changes or modifications made to the equipment under test. Timco Engineering, Inc., an IIA Company 849 NW State Road 45, Newberry, Florida 32669 (352) 472-5500 / [email protected] Page 2 of 42 This test report shall not be reproduced except in full without the written and signed permission of Timco Engineering Inc. (IIA). Table of Contents 1. CUSTOMER INFORMATION ..................................................................................................................................................... 4 1.1 TEST RESULT SUMMARY........................................................................................................................................................................ 4 2. LOCATION OF TESTING ............................................................................................................................................................ 6 2.1 TESTING WAS PERFORMED, REVIEWED BY: ........................................................................................................................................... 6 3. TEST SAMPLE(S) (EUT/DUT) .................................................................................................................................................... 7 3.1 DESCRIPTION OF THE EUT ................................................................................................................................................................ 7 3.2 CONFIGURATION OF EUT................................................................................................................................................................. 8 3.3 TEST SETUP OF EUT ....................................................................................................................................................................... 8 4. TEST METHODS & APPLICABLE REGULATORY LIMITS .............................................................................................................. 9 5. MEASUREMENT UNCERTAINTY ............................................................................................................................................... 9 6. ENVIRONMENTAL CONDITIONS .............................................................................................................................................. 9 7. LIST OF TEST EQUIPMENT AND TEST FACILITY ....................................................................................................................... 10 8. SENSITIVITY OF THE MODULATOR, INCLUDING MICROPHONE ............................................................................................. 12 TEST DATA: N/A ............................................................................................................................................................................... 12 9. FREQUENCY ERROR............................................................................................................................................................... 14 TEST DATA: MEASUREMENT TABLE ...................................................................................................................................................... 14 TEST DATA: MEASUREMENT PLOT ........................................................................................................................................................ 15 10. CARRIER POWER ................................................................................................................................................................... 16 TEST DATA: ............................................................................................................................................................................................ 16 11. FREQUENCY DEVIATION ........................................................................................................................................................ 17 TEST DATA: ............................................................................................................................................................................................ 17 12. AUDIOFREQUENCY RESPONSE .............................................................................................................................................. 18 TEST DATA: 0.1 – 5 KHZ AUDIO INPUT PLOT ......................................................................................................................................... 18 13. AUDIOFREQUENCY HARMONIC DISTORTION OF THE EMISSION ........................................................................................... 19 TEST DATA: N/A ............................................................................................................................................................................... 19 14. ADJACENT CHANNEL POWER ................................................................................................................................................ 20 ADJACENT CHANNEL POWER TEST DATA / SPECTRUM PLOTS ...................................................................................…

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Test Setup Photos

TEST SETUP PHOTOGRAPHS Applicant: Alphatron Marine USA, Inc. FCC ID: 2ADJKJHS-800S IC: 12477A-JHS800S Conducted Measurements: Table Setup TEST SETUP PHOTOGRAPHS Field Strength of Spurious Emissions 30 MHz to 200 MHz (Biconical Antenna) TEST SETUP PHOTOGRAPHS Field Strength of Spurious Emissions 200 MHz to 1 GHz (Log Periodic Antenna) TEST SETUP PHOTOGRAPHS Field Strength of Spurious Emissions 1 – 18 GHz (Dual Ridge Waveguide Antenna)

Contact Information

Applicant

Thomas Scot McCasland(Training Manager)
[email protected]2812714600Fax: 2812714800

Test Firm

Timco Engineering, Inc.Bruno Clavier
[email protected]352-472-5500Fax: 352 472 2030

Technical Specifications

#Rule PartsFrequency RangePower OutputEmissionTolerance
28156.025 MHz - 157.425 MHz25 W12K0G2B347 Hz
Confidentiality
Long Term
Grant Notes
Output power listed is the manufacturers rated output power at antenna port. The antenna(s) used for this transmitter must be installed to provide a separation distance of at least xx cm from all persons described in this filing. Users and installers must be provided with antenna installation instructions and transmitter operating conditions for satisfying RF exposure compliance The radio has DSC. EF: This device may contain functions that are not operational in U.S Territories except as noted in the filing. This grant has extended frequencies as noted in the filing and Section 2.927(b) applies to this authorization. Radio has DSC.

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