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KQGRMP600PROBE FOR MACHINE TOOLS

Renishaw plc
PROBE FOR MACHINE TOOLS - FCC ID KQGRMP600 - Renishaw plc
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Application Details

Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
Date of Grant
Jul 18, 2007
Application Purpose
Original Equipment
Date of Application
Jul 17, 2007
Equipment Note
PROBE FOR MACHINE TOOLS
Frequency Range
2403.00000000 - 2481.00000000
Company
Renishaw plc
Country
United Kingdom

Documents & Files

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Users Manual

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Block Diagram

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Cover Letter(s)

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External Photos

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ID Label/Location Info

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Internal Photos

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Operational Description

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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

Quick-start guide H-5312-8502-01-B RMP600 © 2007 Renishaw plc. All rights reserved. This document may not be copied or reproduced in whole or in part, or transferred to any other media or language, by any means, without the prior written permission of Renishaw. The publication of material within this document does not imply freedom from the patent rights of Renishaw plc. Disclaimer Considerable effort has been made to ensure that the contents of this document are free from inaccuracies and omissions. However, Renishaw makes no warranties with respect to the contents of this document and specifically disclaims any implied warranties. Renishaw reserves the right to make changes to this document and to the product described herein without obligation to notify any person of such changes. Trademarks RENISHAW® and the probe emblem used in the RENISHAW logo are registered trademarks of Renishaw plc in the UK and other countries. apply innovation, Trigger Logic and RENGAGE are trademarks of Renishaw plc. Adobe® and Acrobat® are either registered trademarks or trademarks of Adobe Systems Incorporated in the United States and/or other countries. All other brand names and product names used in this document are trade names, service marks, trademarks, or registered trademarks of their respective owners. CAUTION: The RMP600 has a glass window. Handle with care if broken to avoid injury. ! Part number: H-5312-8502-01-B Issued: 07.2007  Features of the RMP600, and other similar Renishaw probes, are subject to the following patents and/or patent applications: CN 1732488A CN 1771425A EP 0337669 EP 0390342 EP 0652413 EP 0695926 EP 1185838 EP 1373995 EP 1425550 EP 1457786 EP 1477767 EP 1477768 EP 1576560 EP 1613921 EP 1701234 EP 1734426 EP 872787 B JP 2,945,709 JP 2,994,401 JP 2003-526,170 JP 2004-279,417 JP 2004-522,961 JP 2005-502,035 JP 2006/522931 JP 2006-313567 JP 2006-511860 JP 3,126,797 US 2004-0178771 US 2006/0215614A1 US 5,040,931 US 5,150,529 US 5,279,042 US 5,669,151 US 6,301,796 B1 US 6,776,344 B2 US 6,941,671 B2 US 7145468B2 WO 2006/134360 WO 2007/028964 WO 2006/100508 WO 2006/120403 Patents  EC DECLARATION OF CONFORMITY Renishaw plc declares that the product: Name Description RMP600 Radio machine probe has been manufactured in conformity with the following standards: 61010-1:2001 EN 301 489-17 EN 300 328 EN 50371 and that it complies with the requirements of the following directives (as amended): 1999/5/EC - R&TTE Radio and telecommunications terminal equipment The above information is summarised from the full EC Declaration of Conformity. A copy is available from Renishaw on request. FCC Information to user (FCC Section 15.19) This device complies with Part 15 of the FCC rules. Operation is subject to the following 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. Information to user (FCC Section 15.21) The user is cautioned that any changes or modifications not expressly approved by Renishaw plc or authorised representative could void the user’s authority to operate the equipment. Preliminary information C 5 AA alkaline x 2Lithium thionyl chloride x 2 RS: 596-602, 201-9438 Radio shack: 23-037 Saft: LS 14500 Sonnenschein: SL-760/S Tadrian: TL-5903/S, TL-2100/S Xeno: XL-060F The RMP600 will operate with either 2 x AA alkaline batteries or 2 x lithium thionyl chloride batteries (of the types approved and listed below). 3 Note: Maximum battery life is achieved when lithium thionyl chloride batteries are used. Battery specification 3  M-5000-707 2 1 Fitting the stylus 7 V Take care not to short the battery contacts as this may be a fire hazard. Ensure the contact strips are located securely. 1 2   V Installing the batteries  Reviewing the probe’s settings X > 5 s Key to symbols LED short flash LED long flash 1 2  LED check Switch on method Radio on (omitted if multiple probe mode was selected) or Shank on or Spin on Switch off method (omitted for shank on) Radio off or Spin off or Short time out 12 s or Medium time out 33 s or Long time out 134 s continued on next page 9 Reviewing the probe’s settings Multiple probe mode (omitted for radio-on) (see ‘Multiple probe mode settings’ to view all 16 choices) Mode offMode on or Machine 1 or Machine 2Machine 1 Battery status Battery good or Battery low Probe in standby mode (after 5 s) Auto-reset off Filter off Auto-reset off Filter on 16 ms Enhanced trigger filter setting and auto reset facility Auto-reset off Filter on 8 ms Auto-reset on Filter on 8 ms Auto-reset on Filter on 16 ms or or or or 10 Multiple probe mode settings Multiple probe mode Mode offMode on Machine 1Machine 2Machine Machine  Machine 5Machine Machine 7Machine  Machine 9Machine 10Machine 11Machine 12 Machine 1Machine 1Machine 15Machine 1 Deflect stylus < 4 sec to cycle to next setting Return to mode off 11 Battery status Battery good or Battery low Key to the symbols LED short flash. LED long flash. Deflect the stylus < 4 seconds to move to the next menu option. Deflect the stylus > 4 seconds to move to the next menu. To exit , leave the stylus untouched for >20 seconds. Placing the probe into configuration mode LED check To change the switch off method go to the next page Deflect the stylus and hold deflected until after the battery status has been displayed at the end of the review sequence. 3 X > 5 s 1 2  12 Changing the probe settings Auto-reset off Filter on 16 ms Auto-reset off Filter on 8 ms Auto-reset on Filter on 8 ms Auto-reset on Filter on 16 ms Auto-reset off Filter off To change enhanced trigger filter setting and auto-reset facility NEW SETTINGS COMPLETE To change switch on method Radio on (omitted if multiple probe mode was selected) Shank on Spin on To change switch off method (omitted for shank on) Radio off or Spin off Short time out 12 s Medium time out 33 s Long time out 134 s continued on next page 1 Acquisition mode …

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Block Diagram

1  COMPANY CONFIDENTIAL PAGE 1 OF 3 Document No: PD- 5312 – 9045 Issue: draft Date: 05 February 2007 Document Title: RMP600 system description and functional block diagrams. Summary/Scope: This document provides a description and block diagram as required by FCC regulations. This document describes the RMP600, and has been developed from PD-4113-9058-02 which was a similar document for the RMP60 and RMP60M. Reason for Issue/Nature of change: New Issue. It will be supplied to the FCC as an exhibit for the type approval application for KQG RMP600. Distribution: Author: Job Title: Signed: Date: M Woollett Radio Design Manager Reviewed by: Job Title: Signed: Date: R Umfreville Digital Design Engineer Reviewed by: Job Title: Signed: Date: J Styles RF Design Engineer Approved by: Job Title: Signed: Date: M Woollett Radio Design Manager Form No: QA401 Issue: 1 Date: 10 Aug 93 2 Summary of RMP600 system RMP600 is a point to point touch trigger probe radio transmission system for use on CNC (computer numerically controlled) machine tools. It consists of two components, the RMP600 (Radio Module Probe) and RMI (Radio Machine Interface) which are the two radio stations. Radio details RMP600 uses FHSS (frequency hopping spread spectrum) transmission in the frequency band from 2400 to 2483.5 MHz. There are 79 * 1 channels, each 1 MHz apart. The maximum ERP (emitted radio power) is 1mW (0dBm) and the transmission range is up to 15m. The radio link is bi-directional with half duplex transmission. Both RMP and RMI use a nRF2401 Nordic radio modem. The nRF2401 is a transceiver circuit. When transmitting, the modem uses a synthesiser to generate the desired carrier from the 16MHz clock. The modem then modulates this carrier using the input serial data and then amplifies it for transmission to the antenna via a filter. In receive mode, the signal from the antenna is fed via a filter to a low noise amplifier and then to the built in heterodyne receiver. The receiver circuits generate an intermediate frequency of 2 MHz which is used to down mix the signal. Following the mixing the signal is demodulated and the resulting serial received data is output. RMP600 (see Fig 1) The RMP600 is 62mm diameter, and 90mm long, and has a standard mounting face for fitment to a machine tool shank on one end and a M4 stylus mount on the other. The RMP contains the electronic circuitry needed to process the touch sensor signals and convert them into radio transmissions. The RMP is controlled by the base band processor. The base band processor works with the FPGA to encode and decode the radio messages that are sent to or received from the radio modem. The FPGA contains a correlator which is used to recognise messages addressed to the RMP. The FPGA contains the timing logic required for the radio modem. The microprocessor and the FPGA use the 4MHz clock. There is a radio standby mode of operation during which most of the circuitry is switched off and only the baseband processor runs using the 32768Hz clock. The RMP is battery powered by 2* AA batteries, the total voltage of which must be between 2V and 7.5V. The RMP contains a strain gauge touch trigger sensor similar to the Renishaw MP700 probe module. The signals from the touch sensor are processed by a dedicated ASIC and an associated PIC processor before being fed to the baseband processor. The accelerometer orientation sensor detects changes in orientation and this allows the ASIC to compensate for the effects these would have on the touch sensor. 3 Fig 1 RMP600 Functional Block Diagram Radio Modem Baseband Processor/ PIC Shank Switch Connections & Interface Antenna Touch Sensor FPGA Buffer, Correlator & Timing Logic 16 MHz Clock Power Supply (switch mode) Batteries 2.0V – 7.5V DC 4 MHz Clock 32768Hz Clock Accelerometer Sensor Status Led (3 off Red/ Green/ Blue) ASIC (strain gauge interface) PIC (for ASIC) Spin sensor Connections & Interface

Cover Letter(s)

Renishaw pic +44 (0) 1453 524524 +44 (0) 1453524901 New Mills, Wotton-under-Edge, En [email protected] apply innovation ™ Gloucestershire GL12 8JR United Kingdom '''1 r::'r\ 50' 'r .f 16 th July 2007 Dear Sir/Madam Subject: Confidentiality request for FCC id: KOGRMP600 We request confidentiality for the schematic and parts list of KOGRMP600. Files concerned: RMP600-Schem.pdf, RMP600-PartsLst.pdf. We do not request confidentiality for any other exhibits. We request confidentiality because: 1. The product contains Renishaw intellectual property and is subject to a patent application. 2. We do not want our competitors to see the schematic circuit diagram details. Yours faithfully ./" Martin Woollett Radio Design Manager Machine Tool Division New Mills, WOllon-under-Edge, 1106260, England Glouceslershire Gl12 BJR ... ~-~~ ...., -

Operational Description

PRODUCT SPECIFICATION Q5)6LQJOH&KLS*+]5DGLR7UDQVFHLYHU Nordic VLSI ASA - Vestre Rosten 81, N-7075 Tiller, Norway - Phone +4772898900 - Fax +4772898989 Revision: 1.0Page 1 of 37March 2003 Single chip 2.4 GHz Transceiver )($785(6$33/,&$7,216 • True single chip GFSK transceiver in a small 24-pin package (QFN24 5x5mm) • Wireless mouse, keyboard, joystick • Keyless entry • Data rate 0 to1Mbps• Wireless data communication • Only 2 external components• Alarm and security systems • Multi channel operation • 125 channels • Channel switching time <200μs. • Support frequency hopping • Home automation • Home automation • Surveillance • Automotive • Data slicer / clock recovery of data• Telemetry • Address and CRC computation• Intelligent sports equipment • DuoCeiver™ for simultaneous dual receiver topology • ShockBurst™ mode for ultra-low power operation and relaxed MCU performance • Industrial sensors • Toys • Power supply range: 1.9 to 3.6 V • Low supply current (TX), typical 10.5mA peak @ -5dBm output power • Low supply current (RX), typical 18mA peak in receive mode • 100% RF tested • No need for external SAW filter • World wide use *(1(5$/'(6&5,37,21 nRF2401 is a single-chip radio transceiver for the world wide 2.4 - 2.5 GHz ISM band. The transceiver consists of a fully integrated frequency synthesizer, a power amplifier, a crystal oscillator and a modulator. Output power and frequency channels are easily programmable by use of the 3-wire serial interface. Current consumption is very low, only 10.5mA at an output power of -5dBm and 18mA in receive mode. Built-in Power Down modes makes power saving easily realizable. 48,&.5()(5(1&('$7$ 3DUDPHWHU9DOXH8QLW Minimum supply voltage1.9V Maximum output power0dBm Maximum data rate1000kbps Supply current in transmit @ -5dBm output power10.5mA Supply current in receive mode18mA Temperature range-40 to +85 ° C Sensitivity-90dBm Supply current in Power Down mode1 μΑ Table 1 nRF2401 quick reference data Q5) PRODUCT SPECIFICATION Q5)6LQJOH&KLS*+]5DGLR7UDQVFHLYHU Nordic VLSI ASA - Vestre Rosten 81, N-7075 Tiller, Norway - Phone +4772898900 - Fax +4772898989 Revision: 1.0Page 2 of 37March 2003 7\SH1XPEHU'HVFULSWLRQ9HUVLRQ NRF2401 IC24 pin QFN 5x5A NRF2401-EVKITEvaluation kit (2 test PCB, 2 configuration PCB, SW)1.0 Table 2 nRF2401 ordering information %/2&.',$*5$0 DVDD VDD=3VVDD=3V XC1 XC2 400Ω IREF VDD_PS=1.8V VSS_PA=0V ANT1 ANT2 22kΩ VSS=0V VSS=0V VSS=3V VSS=0VVSS=0V DATA CS CLK1 3-wire interface PWR_UP VSS=0V CE CLK2 DOUT2 DR2 DR1 Data Channel 2 Data Channel 1 Frequency Synthesiser PA LNA IF BPF DEMOD Clock Recovery, DataSlicer ADDR Decode FIFO In/Out CRC Code/Decode DuoCeiver TM ShockBurst TM GFSK Filter Figure 1 nRF2401 with external components. PRODUCT SPECIFICATION Q5)6LQJOH&KLS*+]5DGLR7UDQVFHLYHU Nordic VLSI ASA - Vestre Rosten 81, N-7075 Tiller, Norway - Phone +4772898900 - Fax +4772898989 Revision: 1.0Page 3 of 37March 2003 3,1)81&7,216 3LQ 1DPH 3LQIXQFWLRQ 'HVFULSWLRQ 1CEDigital InputChip Enable Activates RX or TX mode 2DR2Digital OutputRX Data Ready at Data Channel 2 (ShockBurst™ only) 3CLK2Digital I/OClock Output/Input for RX Data Channel 2 4DOUT2Digital OutputRX Data Channel 2 5CSDigital InputChip Select Activates Configuration Mode 6DR1Digital OutputRX Data Ready at Data Channel 1 (ShockBurst™ only) 7CLK1Digital I/OClock Input (TX) & Output/Input (RX) for Data Channel 1 3-wire interface 8DATADigital I/ORX Data Channel 1/TX Data Input/ 3-wire interface 9DVDDPowerPositive Digital Supply output for decoupling purposes 10VSSPowerGround (0V) 11XC2Analog OutputCrystal Pin 2 12XC1Analog InputCrystal Pin 1 13VDD_PAPower OutputPower Supply (+1.8V) to Power Amplifier 14ANT1RFAntenna interface 1 15ANT2RFAntenna interface 2 16VSS_PAPowerGround (0V) 17VDDPowerPower Supply (+3V DC) 18VSSPowerGround (0V) 19IREFAnalog InputReference current 20VSSPowerGround (0V) 21VDDPowerPower Supply (+3V DC) 22VSSPowerGround (0V) 23PWR_UPDigital InputPower Up 24VDDPowerPower Supply (+3V DC) Table 3 nRF2401 pin function 3,1$66,*10(17 DOUT2 VDD DATA Q5) QFN24 5x5 DVDD VDD PWR_UP VSS ANT2 VSS VSS_PA CLK1 CE 2322 21 24 987 4 3 2 1 18 17 16 6 5 VDD_PA ANT1 14 IREF VSS 2019 1112 13 15 10 CS XC2XC1 DR1 DR2 CLK2 VDDVSS Figure 2. nRF2401 pin assignment (top view) for a QFN24 5x5 package. PRODUCT SPECIFICATION Q5)6LQJOH&KLS*+]5DGLR7UDQVFHLYHU Nordic VLSI ASA - Vestre Rosten 81, N-7075 Tiller, Norway - Phone +4772898900 - Fax +4772898989 Revision: 1.0Page 4 of 37March 2003 (/(&75,&$/63(&,),&$7,216 Conditions: VDD = +3V, VSS = 0V, T A = - 40ºC to + 85ºC 6\PERO 3DUDPHWHU FRQGLWLRQ 1RWHV 0LQ 7\S 0D[ 8QLWV 2SHUDWLQJFRQGLWLRQV VDDSupply voltage1.93.03.6V TEMPOperating Temperature-40+27+85ºC 'LJLWDOLQSXWSLQ V IH HIGH level input voltageVDD- 0.3VDDV V IL LOW level input voltageVss0.3V 'LJLWDORXWSXWSLQ V OH HIGH level output voltage (I OH =-0.5mA)VDD- 0.3VDDV V OL LOW level output voltage (I OL =0.5mA)Vss0.3V *HQHUDO5)FRQGLWLRQV f OP Operating frequency1)24002524MHz f XTAL Crystal frequency2)420MHz ∆f Frequency deviation±156kHz R GFSK Data rate ShockBurst™>01000kbps R GFSK Data rate Direct Mode3)2501000kbps F CHANNEL Channel spacing1MHz 7UDQVPLWWHURSHUDWLRQ P RF Maximum Output Power4)0+4dBm P RFC RF Power Control Range1620dB P RFCR RF Power Control Range Resolution±3dB P BW 20dB Bandwidth for Modulated Carrier1000kHz P RF2 2 nd Adjacent Channel Transmit Power 2MHz-20dBm P RF3 3 rd Adjacent Channel Transmit Power 3MHz-40dBm I VDD Supply current @ 0dBm output power5)13mA I VDD Supply current @ -20dBm output power5)8.8mA I VDD Average Supply current @ -5dBm output power, ShockBurst™ 6)0.8mA I VDD Average Supply current in stand-by mode7)12 μA I VDD Average Supply current in power down1 μA 5HFHLYHURSHUDWLRQ I VDD Supply current one channel 250kbps18mA I VDD Supply current one channel 1000kbps19mA I VDD Supply current two channels 250kbps23mA I VDD Supply current two channels 1000kbps25mA RX SENS Sensitivity at 0.1…

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Operational Description

1  COMPANY CONFIDENTIAL PAGE 1 OF 3 Document No: PD- 5312 – 9045 Issue: draft Date: 05 February 2007 Document Title: RMP600 system description and functional block diagrams. Summary/Scope: This document provides a description and block diagram as required by FCC regulations. This document describes the RMP600, and has been developed from PD-4113-9058-02 which was a similar document for the RMP60 and RMP60M. Reason for Issue/Nature of change: New Issue. It will be supplied to the FCC as an exhibit for the type approval application for KQG RMP600. Distribution: Author: Job Title: Signed: Date: M Woollett Radio Design Manager Reviewed by: Job Title: Signed: Date: R Umfreville Digital Design Engineer Reviewed by: Job Title: Signed: Date: J Styles RF Design Engineer Approved by: Job Title: Signed: Date: M Woollett Radio Design Manager Form No: QA401 Issue: 1 Date: 10 Aug 93 2 Summary of RMP600 system RMP600 is a point to point touch trigger probe radio transmission system for use on CNC (computer numerically controlled) machine tools. It consists of two components, the RMP600 (Radio Module Probe) and RMI (Radio Machine Interface) which are the two radio stations. Radio details RMP600 uses FHSS (frequency hopping spread spectrum) transmission in the frequency band from 2400 to 2483.5 MHz. There are 79 * 1 channels, each 1 MHz apart. The maximum ERP (emitted radio power) is 1mW (0dBm) and the transmission range is up to 15m. The radio link is bi-directional with half duplex transmission. Both RMP and RMI use a nRF2401 Nordic radio modem. The nRF2401 is a transceiver circuit. When transmitting, the modem uses a synthesiser to generate the desired carrier from the 16MHz clock. The modem then modulates this carrier using the input serial data and then amplifies it for transmission to the antenna via a filter. In receive mode, the signal from the antenna is fed via a filter to a low noise amplifier and then to the built in heterodyne receiver. The receiver circuits generate an intermediate frequency of 2 MHz which is used to down mix the signal. Following the mixing the signal is demodulated and the resulting serial received data is output. RMP600 (see Fig 1) The RMP600 is 62mm diameter, and 90mm long, and has a standard mounting face for fitment to a machine tool shank on one end and a M4 stylus mount on the other. The RMP contains the electronic circuitry needed to process the touch sensor signals and convert them into radio transmissions. The RMP is controlled by the base band processor. The base band processor works with the FPGA to encode and decode the radio messages that are sent to or received from the radio modem. The FPGA contains a correlator which is used to recognise messages addressed to the RMP. The FPGA contains the timing logic required for the radio modem. The microprocessor and the FPGA use the 4MHz clock. There is a radio standby mode of operation during which most of the circuitry is switched off and only the baseband processor runs using the 32768Hz clock. The RMP is battery powered by 2* AA batteries, the total voltage of which must be between 2V and 7.5V. The RMP contains a strain gauge touch trigger sensor similar to the Renishaw MP700 probe module. The signals from the touch sensor are processed by a dedicated ASIC and an associated PIC processor before being fed to the baseband processor. The accelerometer orientation sensor detects changes in orientation and this allows the ASIC to compensate for the effects these would have on the touch sensor. 3 Fig 1 RMP600 Functional Block Diagram Radio Modem Baseband Processor/ PIC Shank Switch Connections & Interface Antenna Touch Sensor FPGA Buffer, Correlator & Timing Logic 16 MHz Clock Power Supply (switch mode) Batteries 2.0V – 7.5V DC 4 MHz Clock 32768Hz Clock Accelerometer Sensor Status Led (3 off Red/ Green/ Blue) ASIC (strain gauge interface) PIC (for ASIC) Spin sensor Connections & Interface

Test Report

EMITECH ATLANTIQUE 15, rue de la Claie Z.I. Angers-Beaucouzé 49070 BEAUCOUZÉ Tél. 02 41 73 26 27 Fax 02 41 73 26 40 e-mail : [email protected] R.C.S. ANGERS 95 B 543 SIRET 344 545 645 00055 SIEGE SOCIAL : EMITECH S.A. 3, rue des Coudriers – Z.A. de l’Observatoire – 78180 MONTIGNY-LE-BRETONNEUX – Tél. 01 30 57 55 55 – Fax 01 30 43 74 48 S.A. AU CAPITAL DE 480 000 € - R.C. VERSAILLES B 344 545 645 – SIRET 344 545 645 000 22 – CODE APE 742 C RA-24-07100829-2/A Ed. 0 RADIO test report according to standard: FCC Part 15.247 Equipment under test: PROBE RMP600 FCC ID: KQGRMP600 Company: RENISHAW SAS DISTRIBUTION: Mr CRESSON Company: RENISHAW SAS Number of pages: 35 including 4 annexes Technical Verification Ed. Date ModifiedWritten by Quality Approval pages Name Visa Name Visa 0 26-Apr-07 Creation L. BERTHAUD Duplication of this document is only permitted for an integral photographic facsimile. It includes the number of pages referenced here above. This document is the result of testing a specimen or a sample of the product submitted. It does not imply an assessment of the conformity of the whole manufactured products of the tested sample. EMITECH ATLANTIQUE RA-24-07100829-2/A Ed. 0 PAGE: 2 RA-24-07100829-2-A-SB PRODUCT: PROBE Reference / model : RMP600 Serial number : 5N9832 MANUFACTURER: RENISHAW PLC (United Kingdom) COMPANY SUBMITTING THE PRODUCT: Company : RENISHAW SAS Address: 15, rue Albert Einstein Champs-sur-Marne 77447 MARNE LA VALLEE CEDEX 2 FRANCE Responsible : Mr CRESSON DATE(S) OF TEST: 03 and 06 April 2007 TESTING LOCATION: EMITECH ATLANTIQUE laboratory at ANGERS (49) FRANCE EMITECH ATLANTIQUE open area test site in LA POUEZE (49) FRANCE Registration Number by FCC: 101696/FRN: 0006 6490 08 TESTED BY: L. BERTHAUD EMITECH ATLANTIQUE RA-24-07100829-2/A Ed. 0 PAGE: 3 RA-24-07100829-2-A-SB CONTENTS TITLE PAGE 1. INTRODUCTION.......................................................................................................................... 4 2. PRODUCT DESCRIPTION .........................................................................................................4 3. NORMATIVE REFERENCE....................................................................................................... 4 4. TEST METHODOLOGY .............................................................................................................5 5. ADD ATTACHMENTS FILES .................................................................................................... 5 6. TESTS AND CONCLUSIONS ..................................................................................................... 6 7. PEAK OUTPUT POWER............................................................................................................. 7 8. RADIATED EMISSION OF TRANSMITTER .......................................................................... 9 9. BAND EDGE COMPLIANCE ................................................................................................... 12 CURVE N°: 1................................................................................................................................. 13 CURVE N°: 2................................................................................................................................. 14 ANNEX 1: CHANNEL SEPARATION AND OCCUPIED POWER BANDWIDTH .............. 15 ANNEX 2: NUMBER OF HOPPING CHANNELS AND AVERAGE TIME OF OCCUPANCY ON ANY FREQUENCY ....................................................................................... 21 ANNEX 3: PHOTOS OF THE EQUIPMENT UNDER TEST ................................................... 31 ANNEX 4: TEST SET UP ............................................................................................................... 34 EMITECH ATLANTIQUE RA-24-07100829-2/A Ed. 0 PAGE: 4 RA-24-07100829-2-A-SB 1. INTRODUCTION This document presents the result of RADIO test carried out on the following equipment: PROBE RMP600 in accordance with normative reference. 2. PRODUCT DESCRIPTION ITU Emission code: 1M00F7D Class: A (commercial, industrial or business environment) Utilization: measuring probe for machine tools Antenna type: incorporated antenna Operating frequency range: from 2403 MHz to 2481 MHz Number of channels: 79 Channel spacing: 1 MHz Frequency generation: | SAW Resonator | Crystal ~ Synthetiser Modulation: Frequency Hopping Spread Spectrum (FHSS) | Amplitude | Digital ~ Frequency | Phase Power source: Alkaline batteries LR6 (2 × 1.5 V) or Lithium batteries LS14500 (2 × 3.6 V) Power level, frequency range and channels characteristics are not user adjustable. The details pictures of the product and the circuit boards are joined with this file. 3. NORMATIVE REFERENCE The standards and testing methods related throughout this report are those listed below. They are applied on the whole test report even though the extensions (version, date and amendment) are not repeated. FCC Part 15 (2006) Code of Federal Regulations Title 47 - Telecommunication Chapter 1 - Federal Communications Commission Part 15 - Radio frequency devices Subpart C - Intentional Radiators ANSI C63.4 (2003) Methods of Measurement of Radio-Noise Emissions from Low- voltage Electrical and Electronics Equipment in the range of 9 kHz to 40 GHz. Public Notice DA 00-705 Filing and Measurement Guideline for Frequency Hopping Spread Spectrum Systems. EMITECH ATLANTIQUE RA-24-07100829-2/A Ed. 0 PAGE: 5 RA-24-07100829-2-A-SB 4. TEST METHODOLOGY Radio performance tests procedures given in part 15: Paragraph 33: frequency range of radiated measurements Paragraph 35: measurement detector functions and bandwidths Paragraph 203: antenna requirement Paragraph 205: restricted bands of operation Paragraph 209: radiated emission limits; general requirements Paragraph 247: operation within the bands 2400-2483.5 MHz 5. ADD ATTACHMENTS FILES SSynopticS SBlock diagramS SExternal photos and Product labelingS SAssembly of componentsS SInternal photosS SLayout pcbS S…

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Test Setup Photos

ANNEX 4: TEST SET UP

Contact Information

Applicant

Richard Warren(Product Compliance & Quality Analyst)
[email protected]441453524524Fax: 441453524201

Test Firm

EMITECH AngersOliver Roy
[email protected]33-241-732-627Fax: 33-241-732-640

Technical Specifications

#Rule PartsFrequency RangePower Output
115C2.40 GHz - 2.48 GHz1.00 mW
Confidentiality
Long Term
Grant Notes
POWER LISTED IS CONDUCTED. This device and its antenna(s) must not be co-located or operating in conjunction with any other antenna or transmitter. End-users must be provided with specific operating instructions for satisfying RF exposure compliance.

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