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PJ5MTX2-S3Leisure Marine Radar

Flir Belgium BVBA
Leisure Marine Radar - FCC ID PJ5MTX2-S3 - Flir Belgium BVBA
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Application Details

Equipment Class
MRD - Marine Radar
Date of Grant
Nov 11, 2002
Application Purpose
Original Equipment
Date of Application
Nov 11, 2002
Equipment Note
Leisure Marine Radar
Frequency Range
9410.00000000 - 9410.00000000
Company
Flir Belgium BVBA
Country
Belgium

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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Operational Description

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Parts List/Tune Up Info

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Schematics

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Test Report

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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

Raymarine Limited. Registered in England. Company No. 1177969 Registered Office: Anchorage Park, Portsmouth PO3 5TD Raymarine Limited Pathfinder Radar scanners FCC ID: PJ5MTX2-S3, PJ5MTX4-S3 & PJ5MTX4-S3 Owner's Handbook Note 1:This Draft Owner's Handbook covers the 2kW Radome Scanner (PJ5MTX2-S3), the 4kW Radome Scanner (PJ5MTX4-S3), the 4kW Open Array Scanner (PJ5MTX5-S3) and the 10kW Open Array Scanner (PJ5MTX9). There is no new FCC application for the 10kW Scanner Unit at this time. Note 2:The information within the handbook is complete and up-to-date, except that the EC Declaration of Conformity will be replaced (except for 10kW) with new versions after assessment of the current CE application. Pathfinder Radar Scanners Owner’s Handbook Document number: 81154_6 Date: 11th March2002 Pathfinder Radar Scannersi Pathfinder Radar Scanners Owners Handbook January 2002 Intended Use The scanner units detailed in this handbook form part of naviga- tional radar systems intended for light marine use. These radar systems are only an aid to navigation. WARNING: The 4D radome scanner connected to an SL70, SL70 PLUS or SL70RC PLUS 7" LCD display unit DOES NOT conform to the EU directive 95/5/EC, therefore such a system cannot be installed on a vessel within the EU . Safety Notices This radar equipment must be installed and operated in accord- ance with the instructions contained in this manual. Failure to do so can result in personal injury and/or navigational inaccuracies. In particular: 1. High Voltage. The scanner unit contains high voltages. Adjust- ments require specialised service procedures and tools only avail- able to qualified service technicians – there are no user serviceable parts or adjustments. The operator should never remove the scanner unit internal covers or attempt to service the equipment. 2. Electromagnetic Energy. The radar scanner transmits electro- magnetic energy. It is important that the radar is turned off when- ever personnel are required to come close to the scanner to perform work on the scanner assembly or associated equipment. It is recommended that the radar scanner is mounted out of range of personnel (above head height). Do not look directly at the antenna at close range as your eyes are the most sensitive part of the body to electromagnetic energy. When properly installed and operated, the use of this radar will conform to the requirements of ANSI/IEEE C95.1-1992 Standard for Safety Levels with Respect to Human Exposure to Radio Fre- quency Electromagnetic Fields, 3 Hz to 300 GHz and NRPB, iiPathfinder Radar Scanners Board Statement on Restrictions on Human Exposure to Static and Time Varying Electromagnetic Fields and Radiation, Doc NRPB, No. 5 (1993). 3. Navigation Aid. This radar unit is only an aid to navigation. Its accuracy can be affected by many factors, including equipment failure or defects, environmental conditions, and improper han- dling or use. It is the user’s responsibility to exercise common prudence and navigational judgements. This radar unit should not be relied upon as a substitute for such prudence and judgement. Raymarine products are supported by a network of Authorized Service Representatives. For information on Raymarine products and services, contact either of the following: United StatesRaymarine Inc. Recreational Products 22 Cotton Road, Unit D Nashua NH 03063-4219, USA Telephone +1 603 881 5200 Fax +1 603 864 4756 www.raymarine.com EuropeRaymarine Limited Anchorage Park Portsmouth Hampshire PO3 5TD England Telephone +44 (0)23 9269 3611 Fax +44 (0)23 9269 4642 www.raymarine.com Copyright © Raymarine Ltd. 2002 The technical and graphical information contained in this hand- book, to the best of our knowledge, was correct as it went to press. However, the Raymarine policy of continuous improvement and updating may change product specifications without prior notice. As a result, unavoidable differences between the product and handbook may occur from time to time, for which liability cannot be accepted by Raymarine. SeaTalk is a registered trademark of Raymarine Limited. HSB and hsb 2 are trademarks of Raymarine Limited. Pathfinder is a trademark of Raymarine Limited. Pathfinder Radar Scannersiii Preface This handbook describes the following Raymarine Pathfinder radar scanners: 2D 18" 2 kW Radome Scanner 4D 24" 4 kW Radome Scanner 5S48" 4 kW Open Array Scanner 7S72" 4 kW Open Array Scanner 9S48" 10 kW Open Array Scanner 11S 72" 10 kW Open Array Scanner These scanner units may be connected to any HSB/hsb 2 display unit. In addition, the 2D radome scanner unit may be connected to an SL70, SL70 PLUS or SL70RC PLUS 7" LCD display. CAUTION: The open array scanners must not be used with the SL70, SL70 PLUS, SL70RC PLUS or Autohelm 7" LCD Display Unit. This may result in damage to the display due to the high power requirements of the open array scanner. The handbook contains very important information on the instal- lation and operation of your new equipment. In order to obtain the best results in operation and performance, please read this hand- book thoroughly. Raymarine’s Technical Support representatives or your local dealer will be available to answer any questions you may have. Display Software Version For full operation of the Pathfinder scanners, the display unit requires an appropriate software version. For new displays, the correct software version is normally already installed in the dis- play unit and is fully compatible with the Pathfinder scanners. Early display units may not have the correct software and will therefore require upgrading. The software version can be confirmed by switching-on the dis- play and checking the version number during the magnetron warm-up sequence. ivPathfinder Radar Scanners Note: If a scanner unit is not connected the version number is only displayed for 10 seconds. Where, necessary Software Upgrade Kits are available from your dealer, distributor or from Raymarine. We recommend that where a repeater d…

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Users Manual

Raymarine Limited. Registered in England. Company No. 1177969 Registered Office: Anchorage Park, Portsmouth PO3 5TD Raymarine Limited Pathfinder Radar Scanners FCC ID: PJ5MTX2-S3, PJ5MTX4-S3 & PJ5MTX5-S3 Owner's Handbook Note 1: This Draft Owner's Handbook covers the 2kW Radome Scanner (PJ5MTX2-S3), the 4kW Radome Scanner (PJ5MTX4-S3), the 4kW Open Array Scanner (PJ5MTX5-S3) and the 10kW Open Array Scanner (PJ5MTX9). There is no new FCC application for the 10kW Scanner Unit at this time. Note 2: The information within the handbook is complete and up-to-date, except that the EC Declarations of Conformity will be replaced (except for 10kW) with new versions after assessment of the current CE application.

Cover Letter(s)

Raymarine Limited. Registered in England. Company no. 1177969 Registered Office: Anchorage Park, Portsmouth PO3 5TD Raymarine Limited Anchorage Park Portsmouth Hampshire PO3 5TD England 023 9269 3611 023 9269 4642 (Fax) Raymarine Inc. 22 Cotton Road, Suite 280 Nashua NH 03063 4219 U.S.A. 603 881-5200 800-539-5539 (Fax) www.raymarine.com BABT Claremont House 34 Molesey Road Hersham, Walton-on-Thames Surrey KT12 4RQ 30 th October, 2002 Gentlemen, FCC ID: PJ5MTX2-S3 The Commission has already given a grant of type acceptance for the Raymarine 'Pathfinder' 2kW, 18" Radome Radar Scanner Unit (FCC ID: PJ5MTX2-8P), when used in combination with a range of specified Display Units. This application for authorization of a new grant has resulted from proposed changes to enhance performance, which affect the characteristics originally reported to the commission. The new Scanner Unit can be connected to any of the same Display Units that are currently in use, to form light marine radar systems (see Annex 1 below). The primary changes are to the magnetron (transmitting device) and to the associated circulator, which now incorporates an isolator and low pass filter (LPF). The purpose of these changes is to improve the Spurious Emissions and Out of Band Emissions of the transmitter in accordance with the requirements of ITU-R M1177. The peak-radiated power remains the same at 2 kW, as do the Pulse Repetition Frequencies (PRF). Of the 8 available Pulse Widths, the two shortest have been increased in width. Removal of the unwanted emissions has been mainly achieved by filtering. The new 2kW Scanner Unit has been fully tested to the appropriate parts of CFR 47 Part 2 and Part 80. The measurement taken data demonstrates that the scanner continues to be compliant with the rules and the performance is within the technical ratings specified by Raymarine (manufacturer). The modifications will be introduced to all new scanner units of this type in production after the grant has been authorized. Sincerely, Chris Bird, Approvals Manager, Raymarine Limited. - 2 - Raytheon Marine Limited. Registered in England. Company no. 1177969 Registered Office: Anchorage Park, Portsmouth, PO3 5TD ANNEX 1 The following Raymarine Display Units are combined with the Raymarine 2D, 2kW 18" Radome Scanner Unit to form operational light marine radar systems. Display Unit Scanner Unit Radar System SL70 PLUS – 7" mono LCD 2D – 2kW, 18" radome SL72 PLUS SL70RC PLUS – 7" mono LCD/Chart 2D SL72RC PLUS SL70M PLUS – 7" mono LCD 2D SL72M PLUS SL70MRC PLUS – 7" mono LCD/Chart 2D SL72MRC PLUS RL70 PLUS – 7" mono LCD/hsb² 2D RL72 PLUS RL70RC PLUS – 7" mono LCD/hsb²/Chart 2D RL72RC PLUS R70 PLUS – 7" CRT/hsb² 2D R72 PLUS R70RC PLUS – 7" CRT/hsb²/Chart 2D R72RC PLUS R80 PLUS – 10" CRT/hsb² 2D R82 PLUS R80RC PLUS – 10" CRT/hsb²/Chart 2D R82RC PLUS SL70C PLUS – 7" Colour LCD 2D SL72C PLUS SL70CRC PLUS – 7" Colour LCD/Chart 2D SL72CRC PLUS RL70C PLUS – 7" Colour LCD/hsb² 2D RL72C PLUS RL70CRC PLUS – 7" Colour LCD/hsb²/Chart 2D RL72CRC PLUS RL80C PLUS – 10" Colour LCD/hsb² 2D RL82C PLUS RL80CRC PLUS – 10" Colour LCD/hsb²/Chart 2D RL82CRC PLUS Key: The allocated designation for each unit or system is shown in bold. hsb² (high speed bus) – allows the connection of one or more repeater display unit Chart – Chartplotter feature built-in

External Photos

Raymarine Limited. Registered in England. Company No. 1177969 Registered Office: Anchorage Park, Portsmouth PO3 5TD Raymarine Limited 2kW, 18" Radome Radars FCC ID: PJ5MTX2-S3 External Photographs Raymarine Limited. Registered in England. Company No. 1177969 Registered Office: Anchorage Park, Portsmouth PO3 5TD 2D - 2kW, 18" Radome Scanner Unit Raymarine Limited. Registered in England. Company No. 1177969 Registered Office: Anchorage Park, Portsmouth PO3 5TD 2D - 2kW, 18" Radome Scanner Unit

ID Label/Location Info

Raymarine Limited. Registered in England. Company No. 1177969Registered Office: Anchorage Park, Portsmouth PO3 5TDRaymarine Limited2kW, 18" Radome RadarsFCC ID: PJ5 MTX2 - S3 ID Label Drawings

Internal Photos

Raymarine Limited, Anchorage Park, Portsmouth, England Raymarine Limited Raytheon Pathfinder Series Radar Photographs –Internal FCC ID: PJ5MTX2-S3 2kW, 18" Radome Scanner Unit Raymarine Limited, Anchorage Park, Portsmouth, England 2Kw, 18" Radome Scanner Unit Raymarine Limited, Anchorage Park, Portsmouth, England 2Kw, 18" Radome Scanner Unit Raymarine Limited, Anchorage Park, Portsmouth, England 2kW, 18" Radome Scanner Unit Top view of Core Circulator/ Isolator/ Low Pass Filter Magnetron Low Noise Converter Motor Raymarine Limited, Anchorage Park, Portsmouth, England 2kW, 18" Radome Scanner Unit Under view of core Raymarine Limited, Anchorage Park, Portsmouth, England 2kW, 18" Radome Scanner Unit Underside of Modulator PCB, with screening plate removed Raymarine Limited, Anchorage Park, Portsmouth, England 2kW, 18" Radome Scanner Unit Modulator PCB Raymarine Limited, Anchorage Park, Portsmouth, England 2kW and 4kW Radome Scanner Unit Underside of IF PCB, with screening plate removed Raymarine Limited, Anchorage Park, Portsmouth, England 2kW and 4kW Radome Scanner Unit IF PCB Raymarine Limited, Anchorage Park, Portsmouth, England ‘Pathfinder’ Scanner Unit Low Noise Converter (LNC) and Cover

Operational Description

Raymarine Limited 2kW and 4kW Radome Radars FCC ID: PJ5MTX2-S3 & PJ5MTX4-S3 Technical Description Note: This Technical Description covers both the 2kW, 18" Radome Scanner Unit and the 4kW, 24" Radome Scanner Unit. This page has been left intentionally blank Technical Description 1 Technical Description 2kW and 4 kW Radome Scanner Units 1. Overview Scanner configuration 60dBm (maximum) 2/4kW IF Receiver, micro, I/O board Magnetron Low Noise Converter Scanner uplink connection Motor Antenna/Rotary joint assembly Modulator, PSU board Transition D6143-1 Ships power CirculatorLPF Isolator Figure 1: Scanner Block Diagram The following system comprises the functional blocks as shown in the above diagram. The basis of operation is described below. The Modulator, PSU board generates a high voltage pulse of between 75ns and 1.0μs duration dependant upon the range setting and the corresponding IF/Video filter control lines. This pulse begins on the rising edge of a negative going trigger at a pulse repetition frequency (PRF) also defined by the range setting. The resulting pulse is delivered to the magnetron, which converts the energy into an RF pulse at a frequency of 9.41GHz (nominal). The Modulator, PSU board also provides all supply requirements. The RF pulse is routed to an antenna via a 3-port circulator combined with an isolator and LPF (IFC), which propagates microwave energy in only one direction and thereby provides isolation between the transmit source and the low noise converter. A rotary joint is used to maintain continuity between a waveguide output from the circulator and a microstrip input to the antenna. This is achieved via transitions into, and back-out of, a section of coaxial line, which is configured with a 'split' perpendicular to the axis of rotation. The energy is then radiated by the antenna with a narrow azimuth beam shape (5.2° for the 18" antenna and 3.9° for the 24" antenna). The elevation beam width is maintained at approximately 25° in order to illuminate targets during pitch and role of the transmitting vessel. Echoes are returned due to reflections from potential targets such as boats, buoys, land, etc. and in the form of clutter from sea, rain, etc. Technical Description 2 The returned energy is collected by the same antenna used to transmit the original pulse and is routed through the IFC to the low noise converter (LNC). These comparatively low level signals are amplified by a low noise transistor in order to maintain signal/noise performance and are mixed down to an IF frequency of 60MHz (nominal) for further amplification and subsequent detection. The IF receiver board provides further low noise amplification and adjustable gain to maximise the dynamic range (dynamic attenuation control) in the presence of clutter, target and range variations. The IF board also includes a logarithmic detection stage with approximately 50dB dynamic range, which provides a compressed signal output in terms of dB input power versus output Voltage level. Various filtering stages are also employed in the IF Receiver board to provide optimum signal/noise characteristics for the detected pulse and to provide some immunity against the bulk effects of rain. The IF Receiver also provides the interface for the up-link commands to the scanner, including clutter and gain selection, stepper motor control and display synchronisation pulse generation. Receiver configuration (LNC/IF) The basic configuration of the microwave and IF receiver circuitry is as follows: Low Noise Converter (LNC)IF Receiver Board Filter select logic Limiter LNA 90 deg 90 HYB Switched Filter Logarithmic Detector Video Filter Curve Splitter Autotune Receiver LNC Supplies Scanner uplink MBS / STC / Rain / Sea / Gain Generation and Summing Network Lineariser Lineariser D4055-1 Figure 2: Receiver Configuration (LNC/IF) Low Noise Converter/Limiter (LNC) The primary function of the LNC is to provide low noise amplification of the low-level signal returns and mixing to an IF frequency of 60MHz nominal. The low noise amplification is provided by a single low noise FET, with bias conditions, and associated matching set to minimise noise figure and maximise gain and compression levels. Maximum gain is required so as to minimise the noise figure contribution from subsequent stages. The mixing function is carried out in an image reject mixer configuration which Technical Description 3 reduces image noise by 20dB nominal in order to minimise the degradation in overall noise figure. Protection is provided in the form of three limiter diodes, which are configured to become forward biased in the presence of increasing RF power. Note: There are no user / dealer serviceable parts within the LNC due to its high frequency of operation. LNA Limiter 90 degrees Mixer Constant current bias circuitry +5Volts -5Volts Ground μW I/P VCO tune compensation 90 HYB 60MHZIF Tune_V D4056-1 Figure 3: LNC Configuration Stepper Motor Circulator P7 P1 LNC IF Receiver P4 SK1 CN7CN4 CN2 CN1 CN6 Mod/PSU/Motor D4057-2 Magnetron High voltage Figure 4: Scanner Interfaces 2. Modulator/PSU – Interface Description The interfaces to the Modulator/PSU are shown in Figure 4 and the individual signal functions are described below: Technical Description 4 Ships Supply Power Input (CN1) Ref. Signal Name Type State Function CN1-5 +V_SHIP Power input − Ship's power I/P CN1-6 CN1-1 −V_SHIP Power input − Ship's power return CN1-2 Modulator Control/Status (CN2) Ref. Signal Name Type State Function CN2- 18 RADAR_TX_ EN Logic input 1 Enable modulator(magnetron) pulses 0 (default) Disable modulator, regardless of activity on PRI_PLS CN2-9 PW0 Logic input PW0 PW 1 Select course modulator pulse widths as follows: CN2- 11 PW1 Logic input 0 1 Short pulse ranges 1 0 Medium pulse ranges 0 1 Long pulse ranges 1 1 Very long pulse ranges CN2- 16 PW_ADJUS T Analogue input 0-5.0V Analogue voltage adjusts fine transmit pulse width CN2- 13 PTX_ADJUS T Analogue input 0-5.0V Analogue voltage …

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Parts List/Tune Up Info

Raymarine Limited. Registered in England. Company No. 1177969 Registered Office: Anchorage Park, Portsmouth PO3 5TD Raymarine Limited Pathfinder Radar scanners FCC ID: PJ5MTX2-S3, PJ5MTX4-S3 & PJ5MTX4-S3 Tune-up Procedures There are no Tune-up Procedures associated with the 2kW Radome Scanner (PJ5MTX2-S3), 4kW Radome Scanner (PJ5MTX4-S3) and 4kW Open Array Scanner (PJ5MTX5-S3). Note:For Parts List information refer to the Schematic exhibits.

Schematics

Raymarine Limited. Registered in England. Company No. 1177969 Registered Office: Anchorage Park, Portsmouth PO3 5TD Raymarine Limited 2kW and 4kW Radome Radars FCC ID: PJ5MTX2-S3 & PJ5MTX4-S3 respectively Schematics Index Scanner Interconnect 4473-011 Sht. 1 Modulator/PSU 4473-002 Sht. 1 Modulator/PSU (Top Level) Sht. 2 Power I/P Filter Sht. 3 Main PSU Sht. 4 Modulator Sht. 5 Ships Heading Interface Sht. 6 Stepper Motor Low Noise Converter (LNC) 4346-028 Sht. 1 IF Receiver 4473-004 Sht. 1 IF Receiver (Top Level) Sht. 2 IF Strips Sht. 3 IF Log Det/Video Sht. 4 Scanner Micro Sht. 5 Control Interface Sht. 6 STC Generator N MTR4 normally linked through D6 BAT14-03W SOD323 D12 BAT14-03W SOD323 D13 BAT14-03W SOD323 D7 BAT14-03W SOD323

Schematics

4kW Open Array Scanner Unit - Mod/PSU PCB PCBPART NUMBERDESCRIPTIONQty perCCT designators 4357-0243036-199-AH/S Bracket1BRKT1 4357-02415096H/S Clip2CLIP1, CLIP2 4357-02407299CONNECTOR PicoFlex2x91CN2 4357-02407371Molex-39-30-10801CN3 4357-02407349Molex-KK-1x4-RA1CN5 4357-02407307CONNECTOR MOLEX_MINIFITJR_1X21CN6 4357-02407370CONNECTOR PicoFlexx2x51CN7 4357-02407369Wago-733-3681CN8 4357-02407368Molex-KK-1x3-RA1CN9 4357-024-Wago-256-404/4061CN10 4357-02493041000PCAPACITOR 1n24C1, C2, C3, C4, C6, C7, C8, C9,C10, C11, C12, C13, C14, C15,C16, C80, C92, C102, C140, C141, C159, C215, C252 4357-024930147PCAPACITOR 47p2C202, C509 4357-02493BDHXXX4N7CAPACITOR 4n75C23, C24, C27, C129, C130 4357-02493070U1CAPACITOR 100n52C25, C26, C28, C32, C41, C66, C69, C70, C71, C72, C73, C74, C74, C76, C77, C81, C82, C83, C96, C101, C104, C105, C106, C107, C108, C116, C117, C118, C124, C135, C137, C145, C158, C160, C191, C192, C193, C195, C206, C217, C218, C219, C226, C227, C235, C237, C238, C239, C241, C242, C243, C246, C251 4357-0249301470PCAPACITOR 470p10C34, C35, C36, C37, C38, C89, C90, C91, C196, C209 4357-02403083CAPACITOR 2n22C39, C40 4357-02403132CAPACITOR 680u4C44, C47, C133, C172 4357-02403083CAPACITOR 2n21C103 4357-02493BDHXXX2N2CAPACITOR 2n21C229 4357-02403134CAPACITOR 1000u2C123, C110 4357-02403135CAPACITOR 220u5C111,C136, C149, C150, C151, C152, C155,C213 1 PCBPART NUMBERDESCRIPTIONQty perCCT designators 4357-02403093CAPACITOR 100n2C120, C121 4357-0249300220PCAPACITOR 220p5C127, C128, C199, C220, C262 4357-02493040U01CAPACITOR 10n17C42, C45, C48, C55, C56, C57, C75, C84, C85, C87, C100, C122, C132, C203, C204, C210 4357-024930433NCAPACITOR 33n2C88, C134 4357-02493BDHBXX330PCAPACITOR 330p1C139 4357-0249306105X7RCAPACITOR 1u10 C62, C64, C65, C114, C115, C143, C144, C245, C249 4357-02403151CAPACITOR 47n5C51, C52, C53, C146, C154 4357-02493HEFEXX4U7CAPACITOR 4u74C142, C147, C207, C208 4357-02493HEHEXX1UCAPACITOR 1u1C148 4357-02403135CAPACITO 220u3C149, C150, C151 4357-02403090CAPACITOR 1n1C153 4357-02403148CAPACITOR 47p2C156, C157 4357-024930122PCAPACITOR 22p1C200 4357-02493060U47CAPACITOR 470n1c79 4357-02403121CAPACITOR 33p1C222 4357-02403138CAPACITOR 4n71C228 4357-02403128CAPACITOR 2u21C232 4357-02403149CAPACITOR 100u1C234 4357-02403162CAPACITOR 220p2C263, C264 4357-02403122CAPACITOR 4n71C67 4357-024932410UCAPACITOR 10u1C60 4357-02403152CAPACITOR 100n1C94 4357-02403134CAPACITOR 1000u2C110, C123, 4357-02403093CAPACITOR 1u1C113 4357-024930133PCAPACITOR 33p1C194 4357-0249300150PCAPACITOR 150p1C199 4357-02493070U1CAPACITOR 100n1C216 4357-0249324100UCAPACITOR 100u2C65, C66 4357-024W-LINKW-L1C221 4357-0249203BZX12VDIODE BZX84C12V5D1, D12, D13, D14, D34 4357-0249200UF1A200VDIODE MURS120T32D29, D54 4357-024920010BQ060DIODE 10BQ0607D19, D21, D23, D61, D62, D64, D65 2 PCBPART NUMBERDESCRIPTIONQty perCCT designators 4357-0249200BAV99DIODE BAV992D38, D22 4357-0249200BAS19DIODE BAS198D8, D9, D10, D26, D40, D60, D63, D66 4357-02402087DIODE UF1802D27, D28 4357-02402082DIODE BYV27-2001D33 4357-0249203BZX84C5V1DIODE BZX84C5V11D39 4357-02402074DIODE BZV85-C181D41 4357-0249200BAV70DIODE BAV702D52, D53 4357-02402077DIODE UX-FOB2D56, D57 4357-02402078DIODE UF54042D58, D59 4357-02415249FERRITE BL01RN1-A622FB1, FB3 4357-02415347HEATSINK SW50-22HT1, HT2 4357-0243036-172HEATSINK 3036-1721HT3 4357-02407350JUMPER MOTOR-ON1JP1 4357-024-LABEL2LABEL1, LABEL2 4357-02415185INDUCTOR 100uH3L6, L7, L8 4357-0249600L1BEAD_L16L2, L3, L5, L9, L10, L13 4357-0249400PC357DOPTO PC357-D4OP1, OP2, OP3, OP4 4357-0243015-185-C/D3015-1851PCB 4357-02405052TRANSISTOR STP60N05FI7Q1, Q5, Q9, Q13, Q14, Q15, Q16 4357-02405045TRANSISTOR IRF540/IRFP28071Q21 4357-0249500BC846TRANSISTOR BC8466Q3, Q7, Q11, Q22, Q29, Q39 4357-0249500BC807TRANSISTOR BC8071Q23 4357-0249500BC856TRANSISTOR BC8564Q2, Q6, Q10, Q25 4357-0249500IMT1TRANSISTOR IMT12Q24, Q26 4357-0249500IMX1TRANSISTOR IMX16Q17, Q27, Q34, Q38, Q40, Q43 4357-02495002N2222ATRANSISTOR 2N2222A3Q20, Q28, Q44 4357-02495003904TRANSISTOR 2N39043Q35, Q36, Q37 4357-02405056TRANSISTOR IRFP4501Q41 4357-02495003906TRANSISTOR 2N39063Q4, Q8, Q12 4357-02495001MZ1TRANSISTOR 1MZ12Q18, Q19 4357-02426008RIV-SCREW7RIV1, RIV2, RIV3, RIV4, RIV5, RIV6, RIV7 4357-02401205THERMISTOR PTH9M04BC222TS2F3331RT1 4357-02491072KEVMVARIABLE RESISTOR 2K1RV1 4357-02491031KRESISTOR 1K01R3 4357-02491061K8RESISTOR NF/1K81R178 3 PCBPART NUMBERDESCRIPTIONQty perCCT designators 4357-024910615KRESISTOR 15K2R7, R255 4357-024910647KRESISTOR 47K9 R14, R46, R52, R193, R260, R264, R265, R266, R360 4357-0249106100KRESISTOR 100K12R28, R33, R34, R47, R113, R114, R115, R128, R176, R286, R345, R350 4357-024910647RRESISTOR 47R19R75, R76, R81, R82, R87, R88, R129, R135, R136, R137, R138, R139, R140, R154, R155, R167, R186, R317, R318 4357-02491064K7RESISTOR 4K728R25, R37, R38, R39, R44, R45, R53, R54, R55, R61, R62, R63, R74, R77, R80, R83, R86, R89, R110, R127, R130, R142, R164, R196, R254, R358, R361, R624, R628, R631, R0 4357-02491062K2RESISTOR 2K211R21, R48, R60, R72, R73, R78, R79, R84, R85, R94, R296 4357-024910310KRESISTOR 10K39R22, R32, R40, R57, R59, R64, R65, R66, R104, R108, R132, R133, R166, R188, R195, R197, R201, R267, R268, R269, R270, R271, R272, R273, R274, R275, R280, R281, R284, R287, R288, R298, R304, R305, R306, R312, R355, R362 4357-024910622RRESISTOR 22R3R141, R144, R313 4357-0249103100RRESISTOR 100R16R20, R93, R96, R98, R143, R146, R156, R157, R158, R159, R198, R199, R203, R257, R283, R293 4357-0249106470RRESISTOR 470R5R30, R100, R101, R103, R145 4357-024910310RRESISTOR 10R10R8, R9, R95, R97, R99, R116, R119, R147, R352, R356 4357-02491031KRESISTOR 1K029R10, R15, R16, R17, R18, R42, R58, R106, R117, R124, R148, R149, R150, R151, R152, R153, R171, R194, R259, R262, R276, R277, R285, R297, R308, R343, R344, R347, R351 4357-0249106220RRESISTOR 220R6R23, R29. R49, R50, R51, R160 4357-02491035K6RESISTOR 5K66R24, R27, R43, R162, R311, R349 4357-02491033K3RESISTOR 3K37R31, R41, R70, R109, R112, R163, R309 4 PCBPART NUMBERDESCRIPTIONQty perC…

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Test Report

TEST REPORT EMC DEPARTMENT RAYMARINE LTD Test of: Raymarine Ltd. Pathfinder RL72RC PLUS To: FCC Part 80: 1998 and FCC Part 2:1998 (Leisure Marine Radar Equipment) Test Report Serial No. 555/1000 This Test Report is issued under the authority of: Chris Bird, Approvals Manager Checked By: P. Pitt Tested By: P.Bowen Issue Date: 29 th October, 2002 Test Dates: 12 th September 2002 to 24 th October 2002 RAYMARINE LTD. TEST REPORT No. 555/1000 EMC Department Page 2 of 80 Issue Date: 29-10-2002 Test of: Raymarine Ltd. Pathfinder RL72RC PLUS FCC Part 80:1998 and FCC Part 2: 1998 Table of Contents 1. Client Information.......................................................................3 2. Equipment Under Test................................................................4 3. Test Specification, Methods and Procedures....................................6 4. Deviations from the Test Specification............................................7 6. Operation of the EUT during testing...............................................8 7. Measurements, Examinations and derived results...........................12 8. Measurement Uncertainty...........................................................23 Appendix A. Test Equipment used....................................................24 Appendix B. Measurement Methods................................................. 26 Appendix C. Test Configuration Drawings..........................................28 Appendix D. Graphical Test Results..................................................32 RAYMARINE LTD. TEST REPORT No. 555/1000 EMC Department Page 3 of 72 Issue Date: 29-10-2002 Test of: Raymarine Ltd. Pathfinder RL72RC PLUS FCC Part 80:1998 and FCC Part 2: 1998 1. Client Information Company Name Raymarine Ltd. Address: Robinson Way Anchorage Park Portsmouth Hampshire PO3 5TD England, U.K. Contact Name: Mr. C. Bird, Approvals Manager RAYMARINE LTD. TEST REPORT No. 555/1000 EMC Department Page 4 of 72 Issue Date: 29-10-2002 Test of: Raymarine Ltd. Pathfinder RL72RC PLUS FCC Part 80:1998 and FCC Part 2: 1998 2. Equipment Under Test (EUT) 2.1. Identification of Equipment Under Test (EUT) Brand Name: Raymarine Model Name or Number: ‘Pathfinder’ RL72RC PLUS (Comprised of a Scanner with micropatch antenna and a Display Unit/Chartplotter) Unique Type Identification: 2D 2kW Scanner with 18” patch antenna M92650 RL70RC Plus Display/Chartplotter E52032 Serial Number: Scanner Unit: EMC110 Display/Chartplotter: EMC201 Country of Manufacture: England, U.K. FCC ID Number: PJ5MTX2-S3 Date of Receipt: 2 nd September, 2002 2.2. Description of EUT The equipment under test is an X-band marine radar intended for use on leisure craft and small workboats, and is comprised of: Scanner Unit: 2kW X-band transmitter with 18 inch microstrip patch array antenna. Display Unit: 7 inch mono LCD with chart reader and with Seatalk, NMEA and hsb² interface ports. 2.3. Modifications incorporated in EUT The EUT has not been modified from what is described by the Model Name and Unique Type Identification stated above. RAYMARINE LTD. TEST REPORT No. 555/1000 EMC Department Page 5 of 72 Issue Date: 29-10-2002 Test of: Raymarine Ltd. Pathfinder RL72RC PLUS FCC Part 80:1998 and FCC Part 2: 1998 2.4. Additional information related to Testing Power Supply Requirement: Nominal 12-24V DC supply Intended Operating Environment: Leisure Marine & Small Workboats Weight: Scanner: 6.5kg (14.3lbs) Display 1.2kg (2.6lbs) Dimensions: Scanner: 468mm dia x 227mm height Display: : w 223mm x h 205mm x d 75mm Interface Ports: Power and 2 x NMEA in Seatalk NMEA out hsb² 2.5. Support Equipment No support equipment was required to exercise the EUT during testing. RAYMARINE LTD. TEST REPORT No. 555/1000 EMC Department Page 6 of 72 Issue Date: 29-10-2002 Test of: Raymarine Ltd. Pathfinder RL72RC PLUS FCC Part 80:1998 and FCC Part 2: 1998 3. Test Specification, Methods and Procedures 3.1. Test Specification Reference: FCC Part 80: 1998 and FCC Part 2:1998 Title: Code of Federal Regulations, Part 80 (47CFR): 1998 Stations in the maritime services Code of Federal Regulations, Part 2 (47CFR): 1998 Frequency Allocations and radio treaty matters; general rules and regulations Comments: The test facility used for the radiated emissions portions of these tests is an alternative test site as described in ANSI C63.4-2001, being a 3m test range within a semi-anechoic chamber and meeting the NSA +/-4dB criterion with antenna height scanning from 1 – 4 metres. Purpose of Test: To determine, for the purposes of certification, whether the equipment complied with the requirements of the specification following transmitter design changes to comply with ITU-R M1177, which is effective from January 1 st 2003. 3.2. Methods and Procedures The methods and procedures used were as detailed in: ANSI C63.2-1996 Title: American National Standard for E…

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Contact Information

Applicant

Roy C Ediss(Approvals Engineer)
[email protected]+441329246895Fax: +44(0)1329246700

Technical Contact

Raymarine LimitedChris J Bird
[email protected]+44 239 269 3611

Anchorage Park · Portsmouth · United Kingdom

Non-Technical Contact

Raymarine LimitedChris J Bird
[email protected]+44 239 269 3611

Technical Specifications

#Rule PartsFrequency RangePower OutputEmission
1809.41 GHz - 9.41 GHz2000 W53M2P0N
Grant Notes
The antenna(s) used for this transmitter must be fixed-mounted on outdoor permanent structures. RF exposure compliance is addressed at the time of licensing, as required by the responsible FCC Bureau(s), including antenna co-location requirements of �1.1307(b)(3).

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