
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
EC Declaration of Conformity Manufacturer: Jotron Electronics AS Kirkestien 1 P. O. Box 54 3280 Tjodalyng NORWAY Type/Model: Tron UAIS TR-2500 Description: Universal Automatic Identification System The equipment complies with the following Directives: MED 96/98/EC as modified by Directive 2002/75/EC EMC 89/336/EEC Harmonized Standards applied in order to verify compliance with the Directive(s): IEC 60945 (2002) IEC 61993-2 (2001) IEC 61162-1 (2000) –2 (1998) IEC 61108-1 (1996) Test reports/Certificate(s) issued by Notified Body: Bundesamt für Seeschiffahrt und Hydrographie Bernard-Nocht-Str. 78 20359 Hamburg GERMANY Notified body 0735 EU Type Examination Certificate no. and date: MED D , BSH-048-04-2004-1 dated: 2004-04-22 Date: 2004.04.22 Signature: Steinar Sæter Managing Director
FCC administration Tjodalyng: 13.05.04 Confidential informations FCC ID: RA9TR2500 Form 731 Confirmation Number: EA464818 We want to keep all information regarding electronic circuit solutions confidential. This will include use of components and close up photos of internal boards. The reason is that we will not give away our development of electronic circuit solutions to the competitors. Best regards, Eirik Storjordet Certification Manager 0,5
FCC administration Tjodalyng: 24.06.04 Confidential informations FCC ID: RA9TR2500 Form 731 Confirmation Number: EA464818 This letter replaces confidential letter dated 13.05.04. We want to keep the schematics and parts list confidential. The reason is that we will not give away our development of electronic circuit solutions to the competitors. Best Regards, Eirik Storjordet Certification Manager 0,5
Tron UAIS TR-2500 External pictures Complete system page 2 Front Module page 3 Front Module page 4 Junction Box with cable page 5 Page 1 Page 2 Page 3 Page 4 Page 5
Tron UAIS TR-2500 Positioning of Labels TR-2500 page 2 Junction Box with cable page 3 Page 1 Page 2 Page 3
Tron UAIS TR-2500 Internal pictures Digital Module page 2 Digital Module page 3 Connector Module page 4 Front Module page 5 Power Module page 6 RF Module page 7 RF Module page 8 Assembled Modules page 8 Modules in box page 9 Adding Front Module page 9 Junction box page 10 Page 1 Page 2 Page 3 Page 4 Page 5 Page 6 Page 7 Page 8 Page 9 Page 10 Page 10
!!!"#$% AMENDMENT RECORD AMDT INCORP. BY DATE PAGE(S) VERSION 1 ES 06.11.2003 50 A 2 ES 20.11.2003 B 3 FIT 7.1.2004 8,9,18,22 ,23,25,48 C (EM4139) 4 GH/ES/FIT 27.02.2004 Cover,1,3,5,6, 14,15,20,21- 24, 31 D (EM4191) 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 #&'()* (+"",-. Page 2 The information in this book has been carefully checked and is believed to be accurate. However, no responsibility is assumed for inaccuracies. CAUTION! This equipment contains CMOS integrated circuits. Observe handling precautions to avoid static discharges which may damage these devices. JOTRON Electronics a.s reserves the right to make changes without further notice to any products or modules described herein to improve reliability, function or design. JOTRON Electronic a.s does not assume any liability arising out of the application or use of the described product. #&'()* (+"",-. Page 3 1 SYSTEM CONFIGURATION................................................................................ 5 2 AIS in an Operational Environment ...................................................................... 5 2.1 Tron UAIS TR-2500 .................................................................................................................. 5 3 EQUIPMENT LIST................................................................................................ 6 3.1 Standard supply 80400 ............................................................................................................. 6 3.2 Optional supply ......................................................................................................................... 6 4 MOUNTING .......................................................................................................... 7 4.1 Antenna Unit ............................................................................................................................. 7 4.1.1 GPS antenna location ...................................................................................................................... 7 4.1.2 VHF antenna location...................................................................................................................... 7 4.1.3 GPS/VHF combined antenna .......................................................................................................... 7 4.2 Cabling ...................................................................................................................................... 9 4.2.1 Cable installation........................................................................................................................... 10 4.3 Transponder unit ..................................................................................................................... 10 4.3.1 Desktop Mounting......................................................................................................................... 10 4.3.2 Roof Mounting .............................................................................................................................. 11 4.3.3 Flush Mounting ............................................................................................................................. 12 4.3.4 19``Rack Tray Mounting............................................................................................................... 13 4.4 Junction Box............................................................................................................................ 14 4.5 Connection cable between Transponder and Junction Box ................................................... 15 5 WIRING .............................................................................................................. 15 5.1 System block diagram............................................................................................................. 15 5.2 Input / Output signals .............................................................................................................. 16 5.2.1 Connections to Junction Box......................................................................................................... 16 5.2.2 Pilot Plug Connector ..................................................................................................................... 18 5.2.3 External Display Connector .......................................................................................................... 18 5.3 Tron UAIS TR-2500 Rear Connections .................................................................................. 18 5.3.1 VHF Antenna Connector............................................................................................................... 18 5.3.2 GPS Antenna Connector ............................................................................................................... 18 5.3.3 24VDC Connector......................................................................................................................... 18 5.3.4 Ground Tag (GND) ....................................................................................................................... 18 5.3.5 Extra I/O Connector ...................................................................................................................... 19 5.3.6 Programming Connector ............................................................................................................... 19 5.3.7 Junction Box Connector ................................................................................................................ 19 5.3.8 LAN Connector ........…
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#&'()* (+"",-. Page 33 8.5 Procom CXL 2-1/l Maritime VHF Antenna with FLG Bracket #&'()* (+"",-. Page 34 8.6 Procom GPS 4 Antenna
#&'()* (+"",-. Page 35 8.7 BNC connector 95299, Suhner 24BNC-50-2-13/133NE 8.8 FME Connector Female 80588, Holund 40100 #&'()* (+"",-. Page 36 8.9 BNC Connector Male 80577, Suhner 11BNC-50-2 / 133NE 8.10 TNC Connector Male 80578 Suhner 11TNC-3-6 / 133NE #&'()* (+"",-. Page 37 8.11 N Connector Male 80581, Suhner 11N-50-7-5 / 133NE 8.12 Pilot plug Connector 80511, AMP 206486-1 and -2 #&'()* (+"",-. Page 38 8.13 24VDC Power Connector 81509, AMP C091AT3261001 #&'()* (+"",-. Page 39 9 GLOSSARY AIS -Automatic Identification System. A shipboard broadcast transponder system in which ships continually transmit their ill, position, course, speed and other data to other nearby ships and shoreline authorities on a common VHF radio channel. ALARM Message by which the navigator signals the occurrence of an event. The alarm is indicated by an audible tone and/or a message (or icon) on the display. ALTITUDE The height of the antenna over mean sea level. AMBIENT Surrounding or encompassing environment. ANTENNA HEIGHT The height (over the waterline) in which the antenna is installed. AUX Auxiliary Port -A communication port on the AIS transponder, which can be used for NMEA or RTCM, input. BAUD Transmission rate unit of measurement for binary coded data (bit per second). BIT Short form of Binary Digit. The smallest element of data in a binary-coded value. bps Bits Per Second. CHARACTER STRING Continuous characters (other than spaces) in a message. CHECKSUM The value sent with a binary-coded message to be checked at the receiving end to verify the integrity of the message. CLICK (KEYBOARD) The audible tone generated when a key is activated CLOCK A precisely-spaced, stable train of pulses generated within an electronic system to synchronize the timing of digital operations within the system. CLOCK OFFSET The differences between the times at the CDU/processor tracking a satellite, the satellite itself, and GPS system time. #&'()* (+"",-. Page 40 COG See COURSE OVER GROUND COURSE OVER GROUND Course made good relative to the sea bed. CURSOR A flashing rectangle superimposed on a character position in the display window, indicating that a character may be entered in that position, or that the existing character may be changed via the keyboard. DEFAULT A condition that the navigator assumes automatically if no other condition is initiated by the operator. DGPS See DIFFERENTIAL GPS. DIFFERENTIAL GPS (OOPS) A method of refining GPS position solution accuracy by modifying the locally computed position solution with correction signals from an external reference GPS CDU (monitor). ECDIS Electronic Chart Display and Information System ETA Estimated Time of Arrival. Calculated on basis of the distance to the destination and the current (or estimated) speed. FATDMA Fixed Access Time Division Multiple Access -Data link access protocol used by base station transponders to allocate transmission slots on the data link. These slots are fixed and will thus not change until the base station transponder is re-configured. FM Frequency Modulation -The method by which a signal offsets the frequency in order to modulate it on a data link. position (latitude, longitude, altitude, and time). See DILUTION OF PRECISION. GFSK Gaussian-Filtered-Shift-Keying -A standardised method of modulating digital data prior to transmission on a data link. GMSK Gaussian-Minimum-Shift-Keying -GFSK using BT -products and modulation index, which optimises the modulated signal. GNSS Global Navigation Satellite System -A common label for satellite navigation systems (such as GPS and GLONASS). GLOBAL POSITIONING SYSTEM (GPS) #&'()* (+"",-. Page 41 The NAVSTAR Global Positioning System, which consists of or- biting satellites, a network of ground control stations, and user positioning and navigation equipment. The system has 24 satellites plus 3 active spare satellites in six orbital planes about 20,200 kilometres above the earth. GLONASS A satellite navigation system developed and operated by Russia. GMT Greenwich Mean Time. See also UNIVERSAL TIME COORDINATED. GPS SYSTEM TIME Time corrected to Universal Time Coordinated (UTC) and used as the time standard by the user segment of the GPS system. HEADING The direction in which the vessel is pointed, expressed as angular distance from north clockwise through 360 degrees. HEADING should not be confused with COURSE. The HEADING is constantly changing as the vessel yaws back and forth across the course due to the effects of sea, wind, and steering error. IEC International Electro-technical Commission. IEC 61162-1 Maritime navigation and radiocommunication equipment and systems – Digital interfaces Single Talker- Multiple listeners: Closely related to NMEA0183 version 2.3, communication at 4800 baud. Definition of both electrical and protocol to be used. IEC 61162-2 Maritime navigation and radiocommunication equipment and systems – Digital interfaces Single Talker- Multiple listeners, High speed transmission: Closely related to NMEA0183HS version 2.3, communication at 34800 baud. Definition of both electrical and protocol to be used. IEC 61993-2 Maritime navigation and radiocommunication equipment and systems – Automatic Information Systems (AIS) Definitions of the sentences used for AIS in addition to those mentioned in IEC 61162-1 and IEC 61162-2. IMO International Maritime Organisation INTERFACE Electronic circui…
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Bundesrepublik Deutschland Federal Republic of Germany Bundesamt für Seeschifffahrt und Hydrographie Federal Maritime and Hydrographic Agency nach DIN EN 45001 akkreditiertes Prüflaboratorium Federal Maritime and Hydrographic Agency Bernhard-Nocht-Str. 78 D-20359 Hamburg Germany DAT-P-086/98-10 Note: Extracts from this test report shall not be copied without permission of the Federal Maritime and Hydrographic Agency Version 1.27 Conformance test report of an AIS system Equipment under test:Jotron Type:TR-2500 Applying test standards: IEC 61993-2 (2001)Sections 14, 16-21 Test Report No.:734.2/0053-1/2003/S3220 Applicant:Jotron Electronics AS PO Box 54 3280 Tjodalyng Norway Hamburg, 15. April. 2004 Federal Maritime and Hydrographic Agency by orderby order BartelsPreuss Test engineerhead of laboratory Bundesamt für Seeschifffahrt und Hydrographie Federal Maritime and Hydrographic Agency Test Report No.. 734.2/0053-1/2004 / S3220Date: 15.04.2004page 3 of 226 Bundesamt für Seeschifffahrt und Hydrographie Federal Maritime and Hydrographic Agency Test Report No.. 734.2/0053-1/2004 / S3220Date: 15.04.2004page 4 of 226 General Applicant:Jotron Electronics AS PO Box 54, 3280 Tjodalyng, Norway Equipment under test: Type:TR-2500 Manufacturer: Jotron Electronics AS PO Box 54, 3280 Tjodalyng, Norway Place of test:BSH test laboratory Hamburg, Room 916 Start of test:28. November, 2003 End of test:01. April, 2004 Test standards 1 : IEC 61993-2 (2001) Maritime navigation and radiocommunication equipment and systems- Automatic Identification Systems Part 2: Class A shipborne equipment of the Universal Automatic Identification System (AIS) – Operational and performance requirements, Methods of testing and required test results IEC 61162-1/ -2 Maritime navigation and radiocommunication equipment and systems Digital Interfaces Part 1: single talker and multiple listeners (2000) Part 2: single talker and multiple listeners, high speed transmission (1998) Summary Test No. ReferenceSectionResult (passed/ not passed / not applicable / not tested) 2IEC 61993-214 Operational testsPassed 3IEC 61993-215 Physical testsNot included 4IEC 61993-216 Specific tests of link layerPassed 5IEC 61993-217 Specific tests of network layerPassed 6IEC 61993-218 Specific tests of transport layerPassed 7IEC 61993-219 Specific presentation interface testsPassed 8IEC 61993-220 DSC functionality testsPassed 9IEC 61993-221 Long range functionality testsPassed 1 Numbers listed in the titles of the test sections of this report refer to the respective sections of IEC 61993-2 if not stated otherwise. Bundesamt für Seeschifffahrt und Hydrographie Federal Maritime and Hydrographic Agency Test Report No.. 734.2/0053-1/2004 / S3220Date: 15.04.2004page 5 of 226 GENERAL ..................................................................................................................................................................... 3 SUMMARY.................................................................................................................................................................... 4 1GENERAL ........................................................................................................................................................... 9 1.1E QUIPMENT HISTORY........................................................................................................................................ 9 1.1.1EUT system no 1 ..................................................................................................................................... 9 1.1.2EUT system no 2 ..................................................................................................................................... 9 1.1.3EUT system no 3 ................................................................................................................................... 11 1.1.4EUT system no 4 ................................................................................................................................... 12 1.1.5EUT system no 5 ................................................................................................................................... 13 1.1.6EUT system no 6 ................................................................................................................................... 14 1.2T EST ENVIRONMENT........................................................................................................................................ 16 1.2.1Test environment no 1........................................................................................................................... 16 1.2.2Test environment no 2........................................................................................................................... 16 1.3C OMPOSITION.................................................................................................................................................. 17 1.4R EMARKS........................................................................................................................................................ 18 1.5T EST NOTES..................................................................................................................................................... 18 1.5.1General problems ................................................................................................................................. 19 1.64.3 M ANUALS................................................................................................................................................. 21 1.6.1Operating and Installation ................................................................................................................... 21 1.6.2Interface documentation ....................................................................................................................... 23 214 OPERATIONAL TESTS..........................…
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Test report no. 03/502/4 page 2 of 30 Contents: 1 GENERAL INFORMATION 3 1.1 Test Laboratory 3 1.2 Client Information 3 1.3 Manufacturer 3 2 TEST INFORMATION 4 2.1 Test Item 4 2.2 Test Environment 4 2.2.1 Normal Test Conditions 4 2.3 Test Period 4 2.4 Standards and Regulations 4 2.5 Test Engineers 4 2.6 Additional information 4 2.6.1 Test Methods 4 2.6.2 Test Equipment 4 3 TEST REPORT SUMMARY 5 3.1 Abbreviations 5 4 OTHER COMMENTS 6 4.1 General: 6 4.2 EUT (Equipment Under Test) 6 4.3 List of ports 6 4.4 RF disturbance tests 6 4.5 RF immunity tests 6 4.6 Performance Criteria, IEC 60945 6 4.6.1 Performance criteria A 6 4.6.2 Performance criteria B 6 4.6.3 Performance criteria C 6 5 EMISSION MEASUREMENTS 7 5.1 Radiated emissions from Enclosure Port, IEC 60945 Clause 9.3 7 5.2 Conducted Emission at 24 V Power Ports, IEC 60945 Clause 9.2 8 6 IMMUNITY TO ELECTROMAGNETIC ENVIRONMENT 9 6.1 Immunity to radiated radio frequencies, IEC 60945 Clause 10.4, EN 61000-4-3 9 6.2 Electrostatic Discharge (ESD) Immunity Test at Enclosure port IEC 61000-4-2 10 6.3 Immunity to conducted radio frequency disturbance, IEC 60945 Clause 10.3, IEC 61000-4-6. 11 6.4 Electrical Fast Transient/Burst (EFT/B) Immunity Test. EN 61000-4-4 12 6.5 Power supply failure i.e. voltage interruption Clause 10.8 IEC 609451 13 7 TEST EQUIPMENT AND ANCILLARIES USED FOR TESTS 14 8 PICTURE OF TEST SET UP. 15 9 FREQUENCY PLOT 16 Test report no. 03/502/4 page 3 of 30 1 GENERAL INFORMATION 1.1 Test Laboratory Name : Nemko Comlab AS Address : Gåsevikveien 8, P.O.Box 96 N-2027 Kjeller, Norway Telephone : +47 64 84 57 00 Fax : +47 64 84 57 05 E-mail : [email protected] Managing Director: Kjell G. Haga Nemko Comlab is granted accreditation by Norwegian Accreditation under the registration TEST 031 1.2 Client Information Name : Jotron Electronics AS Address : PO Box 54 N-3280 Tjodalyng Telephone : +47 33 13 97 14 Fax : +47 33 12 67 80 Contact: Name : Eirik Storjordet E-mail : [email protected] 1.3 Manufacturer Name : Jotron Electronics AS Address : Kirkestien 1 N-3280 Tjodalyng Telephone : +47 33 13 97 14 Fax : +47 33 12 67 80 Test report no. 03/502/4 page 4 of 30 2 TEST INFORMATION 2.1 Test Item Name : UIAS Transponder Model/version : TR-2500 Hardware identity: Remarks The tested equipment is UAIS transponder with junction box and port for VHF and GPS. 2.2 Test Environment 2.2.1 Normal Test Conditions Temperature: 20.4 – 21.4°C Relative humidity: 19.7 – 22.5 % Normal test voltage: 230 V AC Main frequency: 50 Hz The values are the limits registered during the test period. 2.3 Test Period Test item received date: 6.01.2004 Test period: 6-8.01.2004 2.4 Standards and Regulations IEC 60945 Fourth Edition 2002-08 Maritime navigation and radiocommunication equipment and systems- General requirements- Methods of testing and required test results 2.5 Test Engineers Egil Hauger, Per Magne Tveiten. 2.6 Additional information 2.6.1 Test Methods Described in relevant basic standards. 2.6.2 Test Equipment List of used test equipment, see page no. 14. Test report no. 03/502/4 page 5 of 30 3 TEST REPORT SUMMARY 3.1 Abbreviations P Passed, the equipment fulfils the requirement F Failed, the equipment does not fulfil the requirement NA Not applicable, the requirement is not applicable NT Not tested, the test is not performed even though the requirement is relevant Test Summary Basic Standard Port Measurement Result (Pass/Fail) IEC 60945 Clause 9.3 Enclosure Radiated Emissions 150 kHz - 2000 MHz P IEC 60945 Clause 9.2 24 V DC power Conducted Emissions 0.01 - 30 MHz P IEC 60945 Clause 10.4 / IEC 61000-4-3 (1995) Enclosure Radiated, radio-frequency electromagnetic field - Immunity test P IEC 61000-4-2 (1995) Enclosure Electrostatic discharge (ESD) immunity test P IEC 60945 Clause 10.3 / IEC 61000-4-6 (1996) 24 V DC and Signal port RF common mode, induced by radio-frequency fields - Immunity test Multilead, VHF antanna coax and GPS coax P IEC 61000-4-4 (1995) Signal port Electrical fast transient/burst (EFT/B) immunity test. Multilead, VHF antanna coax and GPS coax P IEC 61000-4-4 (1995) DC Electrical fast transient/burst (EFT/B) immunity test DC not mandatory in IEC 60945 P IEC 60945 Caluse 10.8 DC Power Failure i.e. voltage interruption, 60 seconds P Test report no. 03/502/4 page 6 of 30 4 OTHER COMMENTS 4.1 General: The RF field tests are performed in a 10 meter semi anechoic room. 4.2 EUT (Equipment Under Test) EUT is an UAIS transponder with junction box and antenna port for VHF and GPS. EUT size is 244x108x124 mm. 4.3 List of ports Signal ports: VHF antenna port, GPS antenna port and communication port RS-422. Power ports: 24 V 4.4 RF disturbance tests During the RF field emission test the EUT was rotated in the test chamber and measured with the test antenna both vertical and horizontal. 4.5 RF immunity tests The RF field immunity tests are performed at 3 meter distance with absorbers on the floor between the transmitting antenna and the EUT. A log periodic antenna is used in the frequency range 80 - 1000 MHz, and horn antenna is used above 1 GHz. During the RF field immunity test the EUT was rotated in the test chamber and exposed for both vertical and horizontal field. 4.6 Performance Criteria, IEC 60945 4.6.1 Performance criteria A The EUT shall continue to operate as intended during and after the test. No degradation or loss of function is allowed, as defined in the relevant equipment standard and in the technical specification published by the manufacturer. 4.6.2 Performance criteria B The EUT shall continue to operate as intended after the test. No degradation of performance or loss of function is allowed, as defined in the relevant equipment standard an in the technical specification published by the manufacturer. During the test, degradation or loss of function or performance which is self-recoverable is however, allowed, but no change of actual operating state or stored data is allowed. 4.6.3 Performance criteria C Temporary degradation or l…
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Test report no. 03/502/5 page 2 of 35 1 GENERAL INFORMATION 4 1.1 Test Laboratory ..............................................................................................................................4 1.2 Client Information ...........................................................................................................................4 1.3 Manufacturer ..................................................................................................................................4 2 TEST INFORMATION 5 2.1 Test Item ........................................................................................................................................5 2.2 Test Environment ...........................................................................................................................6 2.2.1 Normal Test Conditions .................................................................................................................6 2.3 Test Period.....................................................................................................................................6 2.4 Standards and Regulations............................................................................................................6 2.5 Test Engineer.................................................................................................................................6 2.6 Additional Information ....................................................................................................................6 2.6.1 Selection Criteria............................................................................................................................6 2.6.2 Test Equipment ..............................................................................................................................6 2.7 Abbreviations .................................................................................................................................7 2.8 Test Summary................................................................................................................................7 2.9 Other Comments............................................................................................................................8 3 TEST RESULTS 9 3.1 Transmitter Measurements ............................................................................................................9 3.1.1 Frequency Error .............................................................................................................................9 3.1.2 Carrier Power ref.........................................................................................................................10 3.1.3 Carrier Power ...............................................................................................................................11 3.1.4 Modulation Spectrum 25kHz channel mode ................................................................................12 3.1.5 Modulation Spectrum 12.5kHz channel mode .............................................................................12 3.1.6 Transmitter Attack Time...............................................................................................................13 3.1.7 Transmitter Release Time............................................................................................................14 3…
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| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 3 | 8 | 156.525 MHz - 156.525 MHz | 12.5 W | 14K2G2B | 100 Hz |

VHF Receiver 156.300-162.000MHz for coast stations and offshore installations requiring high quality FM voice and digital selective calling (DSC)
Equipment Class
CXX - Communications Rcvr for use w/ licensed Tx and CBs
VHF AM Transceiver
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
VHF AM Receiver
Equipment Class
CXX - Communications Rcvr for use w/ licensed Tx and CBs
Tron TR20 GMDSS
Equipment Class
GHH - Part 80 VHF Hand Held Transmitter (GMDSS)