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2AAEG-GFRC418LOW POWER REMOTE TRANSMITTER-MOMENTARILY OPERATED TRANSMITTER

Brehon Agrisystems Inc
LOW POWER REMOTE TRANSMITTER-MOMENTARILY OPERATED TRANSMITTER - FCC ID 2AAEG-GFRC418 - Brehon Agrisystems Inc
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Application Details

Equipment Class
DSC - Part 15 Security/Remote Control Transmitter
Date of Grant
Jul 17, 2013
Application Purpose
Original Equipment
Date of Application
Jul 17, 2013
Equipment Note
LOW POWER REMOTE TRANSMITTER-MOMENTARILY OPERATED TRANSMITTER
Frequency Range
418.00000000 - 418.00000000
Company
Brehon Agrisystems Inc
Country
Canada

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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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

Rev 06131 1 Brehon Agrisystems Inc. is not responsible or liable for indirect, special, or consequential damages arising out of or in connection with the use or performance of the product or other damage with respect to any economic loss, loss of property, loss of revenue or profit, or costs of removal, installation, or reinstallation. G. Force Remote Control Systems INTEGRATED RECEIVER/ENDGATE and HOIST DRIVER CONTROL MANUAL The G. Force Remote Control is designed to provide the ultimate in convenience and safety to perform tasks remotely. It is a radio frequency (RF) controlled device that allows operation of a gate, chute, etc. from a hand held transmitter operated remotely. The Transmitter, which operates at 418 MHz FM, transmits encoded information to the Receiver, which then decodes the information and performs the desired function. When coupled with motor/driver, this system may be used to operate a swinging gate, raise a chute, open a valve, etc. The Transmitter and Receiver are designed to operate within 300' but actual range is dependent on operating environment. Features :  Simplicity of design and quality of engineering.  User selectable security code.  Power On/Off switch on Receiver.  LED Indicator lights.  9v Transmitter Battery  Ease of installation/removal.  All controls can be by either Manual Keypad or Remote Control  Multiple Transmitters can operate a single Receiver.  Multiple Receivers can be operated by a single Transmitter.  Up to 4 different Channels can be operated by one Receiver Manufactured By: Brehon Agrisystems Inc. 102 – 2750 Faithfull Ave. Saskatoon, SK S7K 6M6 (306) 933 2655 phone/fax Email: [email protected] Web: www.brehonag.com Rev 06131 2 Brehon Agrisystems Inc. is not responsible or liable for indirect, special, or consequential damages arising out of or in connection with the use or performance of the product or other damage with respect to any economic loss, loss of property, loss of revenue or profit, or costs of removal, installation, or reinstallation. This device complies with part 15 of the FCC Rules / Industry Canada licence-exempt RSS standard(s). Operation is subject to the following two conditions: (1) This device may not cause harmful interference, and (2) this device must accept any interference received, including interference that may cause undesired operation. Specifications: Transmitter: Power: 9 volt dc battery Frequency: 418 MHz Modulation: FM Indicators: Power/Transmit Red LED Case Size: 2.6” x 4.1” x .9” Weight: .25 lb. Range: 300’+ (depending on environment) Antenna: 1.3” Fixed Mini Tuned Security Code: 3^8 selections Safety: Off/Standby Slide Switch Functions: 2 to 9 Button (depending on Model) Receiver: Power In: 12 vdc Power Out: 12 vdc @ 10 amps max Standby: 40mA Security Code: 3^8 selections Power Input: 4’ non-terminated 16ga wires Hoist Inputs: Plug-and-Lock Connector Indicators: Power On Red LED Receive RF Data Yellow LED Channel Active Green LED Options: Latched/Momentary Data Multi-Channel (1-4) Main Power On/Off Switch Manual Switch Control Antenna: 7” Flexible Tuned Case Size: 3.75” x 5” x 19” Rev 06131 3 Brehon Agrisystems Inc. is not responsible or liable for indirect, special, or consequential damages arising out of or in connection with the use or performance of the product or other damage with respect to any economic loss, loss of property, loss of revenue or profit, or costs of removal, installation, or reinstallation. Weight: 5 lb. Electric Cylinder Model ECL2S/12 Force: 540 lb. Speed: .75 in/sec. Stroke 11.8" Full Stroke Closed Length: 18” Pin-to-pin Electrical: 9.5A @ 12v Full Load Duty Cycle: 5% Hoist Driver (Optional) Force: 40 in-lb Torque max Speed: 6 rpm no load Rotation: +/- 80 degrees Electrical: 1A @ 12v Full Load Duty Cycle: 10% Size: 3” x 3.5” x 3.5” Weight: 1 lb. Connector: 4-pin Plug-n-lock Cabling: 30’ of 4 Conductor 18ga. Wire with Fixed Connector both ends Warning: Be sure truck hoist is securely blocked and valve lever activated safely in both directions before beginning installation! Think Safety: Do Not install or operate where Rev 06131 4 Brehon Agrisystems Inc. is not responsible or liable for indirect, special, or consequential damages arising out of or in connection with the use or performance of the product or other damage with respect to any economic loss, loss of property, loss of revenue or profit, or costs of removal, installation, or reinstallation. damage to property or persons may occur. Rev 06131 5 Brehon Agrisystems Inc. is not responsible or liable for indirect, special, or consequential damages arising out of or in connection with the use or performance of the product or other damage with respect to any economic loss, loss of property, loss of revenue or profit, or costs of removal, installation, or reinstallation. INSTALLATION INSTRUCTIONS Connecting Power to Receiver: Using sufficiently heavy gage wire, (not included), connect +12vdc and Ground wires to the wire from the Electric Cylinder marked POWER IN using the crimp connectors supplied. The polarity must be correct as follows: +12v on the BLUE wire, and GROUND on the BROWN wire. Power may be supplied from the fused side of the ACCessories on the ignition switch so that the Receiver is only powered while the vehicle ignition key is on or alternatively, connected using an inline fuse directly to battery power. When the Power ON/Off switch on the bottom of the Receiver is turned on the Red LED indicator light should be ON indicating normal operation. Electric Cylinder Installation: Before mounting the Electric Cylinder on the end gate, determine the correct location for installing the mounting tabs by extending and retracting the cylinder to ensure required stroke. This can be accomplished once power is supplied to the Receiver by pressing the ENDGATE manual switches on the Receiver. Ensure the grain chute operates freely. Position the mounting tabs such that when the grain chute is fully open the cylin…

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ID Label/Location Info

FCC IC Label Belt Clip Transmitter Case Back Exterior Surface Transmitter Case Label Location

Operational Description

Radiometrix Ltd, TXM Data Sheet page 2 Brief description The TXM is designed to work with the matching SILRX receiver. With the addition of simple antenna the pair may be used to transfer serial data up to 200m. The range of the radio link is very variable and depends upon many factors, principally, the type of antenna employed and the operating environment. The 200m quoted range is a reliable operating distance over open ground using 1/4 whip antenna at both ends of the link at 1.5m above ground. Smaller antenna, interference or obstacles (e.g. building etc.) will reduce the reliable working range (down to 30m in extreme cases). Increased antenna height, slow data or a larger receive antenna will increase the range (our best is 3km). Pin Description pin 1 RF GND This pin should be connected to the ground plane against which the integral antenna radiates. It is internally connected to pin 4. pin 2 RF OUT Connects to the integral antenna. Output impedance is 50Ω. pin 3 Vcc Positive supply , supply voltages from +6V to +9V may be used. pin 4 Vss 0V connection for the modulation and supply. pin 5 DATA IN Should be driven directly by a CMOS logic device running on the same supply voltage as the module. figure 1: TXM’s block diagram figure 2: mechanical dimensions Radiometrix Ltd, TXM Data Sheet page 4 Performance data TXM-418-10 and TXM-433-10 Absolute Maximum Ratings: Supply voltage Vcc pin 3 -0.7 to + 6V Modulation input pin 5 -0.7 to + 13V Operating temperature -10°C to + 55°C Storage temperature -40°C to + 100°C Performance Data: ambient temperature: 20 °C supply voltage: 3.0V, unless noted otherwise test circuit: figure 4 Parameter Min Typical Max Units Notes Operating supply range (Vcc) 2.7 3.2 4 V - Supply current,Vcc = 2.7V 3.0 6.0 13.0 mA - Vcc = 4.0V 5.0 10.0 17.0 mA - Conducted power in to 50 Ω, Vcc = 2.7V - -5 - dBm 1 Vcc = 3.6V - 0 - dBm 1 Transmit frequency (Frf) 433.92 MHz - Initial frequency accuracy -85 0 +85 kHz - Overall frequency accuracy -95 0 +95 kHz 1 Spurious radiation 2 FM deviation (+/-) 15 25 40 kHz 3 Modulation Bandwidth (-3dB) analogue DC - 20 kHz 3 Modulation digital pulse width 50 - - μs 4 Notes 1. Supply 2V to 3.6V, temp -10°C to +55°C. 2. <-54 dBm in bands 41-68, 87.5-118, 162-230 & 470-862 MHz <-36 dBm else where below 1GHz , <-30dBm above 1GHz 3. Standard modulation: 2kHz square wave, 0 to Vcc 4. High or Low pulse. Radiometrix Ltd, TXM Data Sheet page 5 The TXM-UHF transmitter requires only a data modulation input, supply, ground and an antenna. Power supply requirements • The module will operate over the range 6V to 9V and is typically powered by either 9 Volt 'PP3'. • The module is not reverse polarity protected. Reverse supply voltages higher than 2V will cause damage and must therefor be externally protected against. Modulation requirements • The TXM-UHF transmitter has a DC to 10kHz modulation bandwidth and will accept direct analogue (AFSK) or digital data. A modulation low-pass filter (10kHz @ -6dB, 1st order) is use internally. • Although the modulation bandwidth of the transmitter extends down to DC as does the AF output of the receivers, it is not possible to pass data with a DC component due to frequency errors & drifts between the transmitter and receiver. Frequency differences between the transmitter and receiver will produce a DC offset error which causes the data slicer in the receiver module to give errors on long high or low pulses which exceed the maximum pulse width, see the receiver's data sheet for more detailed information. figure 4: TXM 10kbps version test circuit figure 5: Typical performance curves Radiometrix Ltd, TXM Data Sheet page 6 • Data Input, pin 5, is normally driven directly by CMOS logic levels from a data encoder IC. There is a wide range of encoder/decoder IC’s available which may be used with the modules: MM57C200, 57410 National Semiconductor UM3750 UMC HT12 series Holtek MC14026 Motorola AS2787 Austria Systeme International GmbH • The encoder normally being run on the same supply voltage as the transmitter. Analogue drive eg. 2 tone FSK, is also possible, the pk to pk level should be between 5V and 9V peak to peak and must not drive pin 5 below 0V. There will be some 2nd harmonic distortion due to the varactor modulator (typ. <15%), this may be reduced if necessary by predistortion of the analogue waveform Antenna requirements Three types of integral antenna are recommended and approved for use with the module: A) Helical: Wire coil, connected directly to pin 2, open circuit at other end. This antenna is very efficient given it's small size (20mm x 4mm dia.). The helical is a high Q antenna, trim the wire length or expand the coil for optimum results. The helical de-tunes badly with proximity to other conductive objects. B) Loop, A loop of PCB track tuned by a fixed or variable capacitor to ground at the 'hot' end and fed from pin 2 at a point 20% from the ground end. Loops have high immunity to proximity de-tuning. C) Whip This is a wire, rod ,PCB track or combination connected directly to pin 2 of the module. Optimum total length is 17cm (1/4 wave @ 418MHz) Keep he open circuit (hot) end well away from metal components to prevent serious de-tuning. Whips are ground plane sensitive and will benefit from internal 1/4 wave earthed radial(s) if the product is small and plastic cased Antenna selection chart A B C helical loop whip Ultimate performance ** * *** Easy of design set-up ** * *** Size *** ** * Immunity proximity effects ** *** * Range open ground to similar antenna 80m 50m 120m The antenna choice and position directly controls the system range. Keep it clear of other metal in the system, particularly the 'hot' end. The best position by far, is sticking out the top of the product. This is often not desirable for practical/ergonomic reasons thus a compromise may need to be reached. If an internal antenna must be used try to keep it away from other metal components, particularly large ones like transformers, bat…

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Test Report

Test Report Serial No.: 130613-T1230-E-15O Report Issue Date: 6/17/2013 Measurement Date(s): May 22-June 13, 2013 Report Revision No.: Revision 1.1 FCC Rule Part(s): 47 CFR §2; §15.231 FCC Test Firm Reg. No.: Accredited IC Standard(s): RSS-210 RSS-Gen IC Test Site No.: IC 3874A-1 Test Lab Certificate No. 2470.01 Applicant: Brehon Agrisystems Inc. FCC ID: 2AAEG-GFRC418 IC: 11133A-GFRC418 DUT Model: GFRC418 DUT Type: Radio Remote Control Tx Freq.: 418 MHz 2012 Celltech Labs Inc. This document is not to be reproduced in whole or in part without the prior written permission of Celltech Labs Inc. Page 1 of 17 Compliance Test Report RF MEASUREMENT REPORT FCC & IC Name CELLTECH LABS INCORPORATED Test Lab Information Address 21-364 Lougheed Road, Kelowna, British Columbia V1X 7R8 Canada FCC Accredited (ISO 17025 - A2LA Test Lab Certificate No. 2470.01) Test Lab Registration No.(s) IC 3874A-1 Name Brehon Agrisystems Inc. Applicant Information Address 102-2750 Faithfull Ave., Saskatoon, SK, S7K 6M6 FCC 47 CFR Part 2; 15.231, 15B IC RSS-210 Issue 8; RSS-Gen Issue 3 Standard(s) & Procedure(s) ANSI C63.4-2003 FCC Part 15 Periodic Operational Devices (DSC) Device Classification(s) IC Low-power Licence-exempt Momentarily Operated Devices (Category 1) Application Type FCC/IC New Certification FCC ID: 2AAEG-GFRC418 Device Identifier(s) IC: 11133A-GFRC418 Device Under Test (DUT) Remote control momentarily operated transmitter. Device Model(s) Tested GFRC418 This wireless device has demonstrated compliance with the applicable technical standards as indicated in the measurement report and was tested in accordance with the measurement procedures specified in FCC 47 CFR Rule Part 2 and Rule Part 15.231; Industry Canada RSS-210, RSS-Gen; and ANSI C63.4-2003. I attest to the accuracy of data. All measurements were performed by me or were made under my supervision and are correct to the best of my knowledge and belief. I assume full responsibility for the completeness of these measurements and vouch for the qualifications of all persons taking them. Test Report Approved By Glen Westwell 6/17/2013 Celltech Labs Inc. Test Report Serial No.: 130613-T1230-E-15O Report Issue Date: 6/17/2013 Measurement Date(s): May 22-June 13, 2013 Report Revision No.: Revision 1.1 FCC Rule Part(s): 47 CFR §2; §15.231 FCC Test Firm Reg. No.: Accredited IC Standard(s): RSS-210 RSS-Gen IC Test Site No.: IC 3874A-1 Test Lab Certificate No. 2470.01 Applicant: Brehon Agrisystems Inc. FCC ID: 2AAEG-GFRC418 IC: 11133A-GFRC418 DUT Model: GFRC418 DUT Type: Radio Remote Control Tx Freq.: 418 MHz 2012 Celltech Labs Inc. This document is not to be reproduced in whole or in part without the prior written permission of Celltech Labs Inc. Page 2 of 17 TABLE OF CONTENTS 1.0 REFERENCES .................................................................................................................................................... 4 1.1 Normative References ......................................................................................................................................... 4 2.0 PASS/FAIL CRITERIA......................................................................................................................................... 4 3.0 FACILITIES AND ACCREDITATIONS ................................................................................................................ 5 4.0 GENERAL INFORMATION ................................................................................................................................. 5 4.1 DUT Description & Specifications........................................................................................................................ 5 5.0 DEVICE OPERATION ......................................................................................................................................... 6 6.0 FIELD STRENGTH OF THE FUNDAMENTAL AND SPURIOUS EMISSIONS.................................................. 7 6.1 References .......................................................................................................................................................... 7 6.2 Limits ................................................................................................................................................................... 7 6.3 Environmental conditions .................................................................................................................................... 7 6.4 Equipment list ...................................................................................................................................................... 8 6.5 Test Measurement Configuration. ....................................................................................................................... 9 7.0 CALCULATION OF DUTY CYCLE.................................................................................................................... 12 8.0 OCCUPIED BANDWIDTH ................................................................................................................................. 13 8.1 References ........................................................................................................................................................ 13 8.2 Limits ................................................................................................................................................................. 13 8.3 Environmental conditions .................................................................................................................................. 13 8.4 Setup drawing.................................................................................................................................................... 13 8.5 Test Data: .......................................................................................................................................................... 14 9.0 SETUP P…

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Contact Information

Applicant

Garth Brehon(President)
[email protected]306 933 2655Fax: 306 933 2655

Test Firm

Celltech Labs Inc.Ben Hewson
[email protected]250-765-7650Fax: 250-765-7645

Technical Specifications

#Rule PartsFrequency RangePower Output
115.231418 MHz - 418 MHz-
Confidentiality
Long Term

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LOW POWER REMOTE TRANSMITTER-MOMENTARILY OPERATED TRANSMITTER

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Equipment Class

DSC - Part 15 Security/Remote Control Transmitter