
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
MP18 224 MHz LP USA MP18 Probe System selectable channel radio transmission Installation and User's Guide 2 PATENTS Features of the MP18 Probe With Channel Selectable Radio Transmission are the subject of the patents and patent applications listed below : EP108521JP326, 001/1992US4, 599, 524 EP501680JP89, 397/1993US4, 636, 960 EP506318JP1, 847, 335US4, 636, 960 EP652413JP1, 942, 442US5, 272, 817 FCC DECLARATION USA FCC ID: KQG RMP3-224 3 FCC DECLARATION (USA) FCC Section 15.19 This device complies with Part 15 of the FCC rules. Operation is subject to the following two conditions: 1. This device may not cause harmfull interference. 2. This device must accept any interference received, including interference that may cause undesired operation. FCC Section 15.105 This equipment has been tested and found to comply with the limits for a Class A digital device, pursuant to Part 15 of the FCC rules. These limits are designed to provide reasonable protection against harmful interference when the equipment is operated in a commercial environment. This equipment generates, uses, and can radiate radio frequency energy and, This product has been tested to the following European Standards I-ETS 300 220 (October 1993) ETS 300 683 (June 1997) if not installed and used in accordance with the instruction manual, may cause harmful interference to radio communications. Operation of this equipment in a residential area is likely to cause harmful interference, in which case you will be required to correct the interference at your own expense. 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. FCC Section 15.27 The user is also cautioned that any peripheral device installed with this equipment such as a computer, must be connected with a high quality shielded cable to insure compliance with FCC limits. 4 GB SAFETY Beware of unexpected movement. The user should remain outside of the full working envelope of probe head/extension/probe combinations. Handle and dispose of batteries according to the manufacturer’s recommendations. Use only the recommended batteries. Do not allow the battery terminals to contact other metallic objects. For instructions regarding the safe cleaning of Renishaw products, refer to the Maintenance section of the relevant product documentation. Remove power before performing any maintenance operations. Refer to the machine supplier’s operating instructions. The unit must be supplied from a 24V DC SELV supply complying with the essential requirements of BS EN 61010 or similar specification. D SICHERHEITSANWEISUNGEN Auf unerwartete Bewegungen achten. Der Anwender soll sich immer auĂźerhalb des MeĂźtasterkopf-Arm-MeĂźtaster-Bereichs aufhalten. Batterien immer gemäß den Anleitungen des Herstellers handhaben und diese vorschriftsmäßig entsorgen. Nur die empfohlenen Batterien verwenden. Die Batterieklemmen nicht in Kontakt mit metallischen Gegenständen bringen. Anleitungen ĂĽber die sichere Reinigung von Renishaw-Produkten sind in Kapitel MAINTENANCE (WARTUNG) in der Produktdokumentation enthalten. Bevor Wartungsarbeiten begonnen werden, muĂź erst die Stromversorgung getrennt werden. Beziehen Sie sich auf die Wartungsanleitungen des Lieferanten. Die Einheit muĂź von einer Schutzkleinspannungsversorgung mit 24V DC gespeist werden, die den wesentlichen Anforderungen von BS EN 61010 oder einer ähnlichen Norm entspricht. DK SIKKERHED Pas pĂĄ uventede bevægelser. Brugeren b¢r holde sig uden for hele sondehovedets/ forlængerens/ sondens arbejdsomrĂĄde. HĂĄndtĂ©r og bortskaf batterier i henhold til producentens anbefalinger. Anvend kun de anbefalede batterier. Lad ikke batteriterminalerne komme i kontakt med andre genstande af metal. Se afsnittet MAINTENANCE (VEDLIGEHOLDELSE) i produktdokumentationen for at fĂĄ instruktioner til sikker reng¢ring af Renishaw-produkter. Afbryd str¢mforsyningen, f¢r der foretages vedligeholdelse. Se maskinleverand¢rens brugervejledning. Enheden skal forsynes fra en 24 V d.c. SELV (Separat ekstra lav spænding) netspænding, der efterlever de vigtige krav i BS EN 61010 eller lignende specifikation. 5 E SEGURIDAD Tener cuidado con los movimientos inesperados. El usuario debe quedarse fuera del grupo operativo completo compuesto por la cabeza de sonda/ extensiĂłn/sonda o cualquier combinaciĂłn de las mismas. Las baterĂas deben ser manejadas y tiradas segĂşn las recomendaciones del fabricante. Usar sĂłlo las baterĂas recomendadas. No permitir que los terminales de las mismas entren en contacto con otros objetos metálicos. Para instrucciones sobre seguridad a la hora de limpiar los productos Renishaw, remitirse a la secciĂłn titulada MAINTENANCE (MANTENIMIENTO) en la documentaciĂłn sobre el producto. Quitar la corriente antes de emprender cualquier operaciĂłn de mantenimiento. Remitirse a las instrucciones de manejo del proveedor de la máquina. La unidad debe de ser alimentada desde un alimentador .V c.c. SELV (TensiĂłn Extra Baja Separada) que cumpla con los requisitos esenciales de BS EN 61010 o una especificaciĂłn similar. F SECURITE Attention aux mouvements brusques. L’utilisateur doit toujours rester en dehors de la zone de sĂ©curitĂ© des installations multiples tĂŞte de palpeur/rallonge/palpeur. Suivre les conseils du fabricant pour manipuler et jeter les batteries. Utiliser uniquement les batteries recommandĂ©es. Veiller Ă ce que les bornes de la batterie n’entrent pas en contact avec d’autres objets mĂ©talliques. Les conseils de nettoyage en toute sĂ©curitĂ© des produits Renishaw figurent dans la section MAINTENANCE de votre documentation. Mettre la machine hors tension avant d’entreprendre toute opĂ©ration de maintenance. Consulter le mode d’emploi du fournisseur de la machine. L’appareil doit ĂŞtre alimentĂ© par un courant continu de 24V SELV (voltage ultra-faible sĂ©parĂ©), conformĂ©ment aux exigences primordiales de la norme BS EN 61010 ou d’une spé…
Text truncated - open the document above for the full version.
1 PATENTS Features of the MP18 Probe With Channel Selectable Radio Transmission are the subject of the patents and patent applications listed below : EP108521JP326, 001/1992US4, 599, 524 EP501680JP89, 397/1993US4, 636, 960 EP506318JP1, 847, 335US4, 636, 960 EP652413JP1, 942, 442US5, 272, 817 FCC DECLARATION USA FCC ID: KQG RMP3-224 2 FCC DECLARATION (USA) FCC Section 15.19 This device complies with Part 15 of the FCC rules. Operation is subject to the following two conditions: 1. This device may not cause harmfull interference. 2. This device must accept any interference received, including interference that may cause undesired operation. FCC Section 15.105 This equipment has been tested and found to comply with the limits for a Class A digital device, pursuant to Part 15 of the FCC rules. These limits are designed to provide reasonable protection against harmful interference when the equipment is operated in a commercial environment. This equipment generates, uses, and can radiate radio frequency energy and, This product has been tested to the following European Standards I-ETS 300 220 (October 1993) ETS 300 683 (June 1997) if not installed and used in accordance with the instruction manual, may cause harmful interference to radio communications. Operation of this equipment in a residential area is likely to cause harmful interference, in which case you will be required to correct the interference at your own expense. 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. FCC Section 15.27 The user is also cautioned that any peripheral device installed with this equipment such as a computer, must be connected with a high quality shielded cable to insure compliance with FCC limits. 3 GB SAFETY Beware of unexpected movement. The user should remain outside of the full working envelope of probe head/extension/probe combinations. Handle and dispose of batteries according to the manufacturer’s recommendations. Use only the recommended batteries. Do not allow the battery terminals to contact other metallic objects. For instructions regarding the safe cleaning of Renishaw products, refer to the Maintenance section of the relevant product documentation. Remove power before performing any maintenance operations. Refer to the machine supplier’s operating instructions. The unit must be supplied from a 24V DC SELV supply complying with the essential requirements of BS EN 61010 or similar specification. D SICHERHEITSANWEISUNGEN Auf unerwartete Bewegungen achten. Der Anwender soll sich immer auĂźerhalb des MeĂźtasterkopf-Arm-MeĂźtaster-Bereichs aufhalten. Batterien immer gemäß den Anleitungen des Herstellers handhaben und diese vorschriftsmäßig entsorgen. Nur die empfohlenen Batterien verwenden. Die Batterieklemmen nicht in Kontakt mit metallischen Gegenständen bringen. Anleitungen ĂĽber die sichere Reinigung von Renishaw-Produkten sind in Kapitel MAINTENANCE (WARTUNG) in der Produktdokumentation enthalten. Bevor Wartungsarbeiten begonnen werden, muĂź erst die Stromversorgung getrennt werden. Beziehen Sie sich auf die Wartungsanleitungen des Lieferanten. Die Einheit muĂź von einer Schutzkleinspannungsversorgung mit 24V DC gespeist werden, die den wesentlichen Anforderungen von BS EN 61010 oder einer ähnlichen Norm entspricht. DK SIKKERHED Pas pĂĄ uventede bevægelser. Brugeren b¢r holde sig uden for hele sondehovedets/ forlængerens/ sondens arbejdsomrĂĄde. HĂĄndtĂ©r og bortskaf batterier i henhold til producentens anbefalinger. Anvend kun de anbefalede batterier. Lad ikke batteriterminalerne komme i kontakt med andre genstande af metal. Se afsnittet MAINTENANCE (VEDLIGEHOLDELSE) i produktdokumentationen for at fĂĄ instruktioner til sikker reng¢ring af Renishaw-produkter. Afbryd str¢mforsyningen, f¢r der foretages vedligeholdelse. Se maskinleverand¢rens brugervejledning. Enheden skal forsynes fra en 24 V d.c. SELV (Separat ekstra lav spænding) netspænding, der efterlever de vigtige krav i BS EN 61010 eller lignende specifikation. 4 E SEGURIDAD Tener cuidado con los movimientos inesperados. El usuario debe quedarse fuera del grupo operativo completo compuesto por la cabeza de sonda/ extensiĂłn/sonda o cualquier combinaciĂłn de las mismas. Las baterĂas deben ser manejadas y tiradas segĂşn las recomendaciones del fabricante. Usar sĂłlo las baterĂas recomendadas. No permitir que los terminales de las mismas entren en contacto con otros objetos metálicos. Para instrucciones sobre seguridad a la hora de limpiar los productos Renishaw, remitirse a la secciĂłn titulada MAINTENANCE (MANTENIMIENTO) en la documentaciĂłn sobre el producto. Quitar la corriente antes de emprender cualquier operaciĂłn de mantenimiento. Remitirse a las instrucciones de manejo del proveedor de la máquina. La unidad debe de ser alimentada desde un alimentador .V c.c. SELV (TensiĂłn Extra Baja Separada) que cumpla con los requisitos esenciales de BS EN 61010 o una especificaciĂłn similar. F SECURITE Attention aux mouvements brusques. L’utilisateur doit toujours rester en dehors de la zone de sĂ©curitĂ© des installations multiples tĂŞte de palpeur/rallonge/palpeur. Suivre les conseils du fabricant pour manipuler et jeter les batteries. Utiliser uniquement les batteries recommandĂ©es. Veiller Ă ce que les bornes de la batterie n’entrent pas en contact avec d’autres objets mĂ©talliques. Les conseils de nettoyage en toute sĂ©curitĂ© des produits Renishaw figurent dans la section MAINTENANCE de votre documentation. Mettre la machine hors tension avant d’entreprendre toute opĂ©ration de maintenance. Consulter le mode d’emploi du fournisseur de la machine. L’appareil doit ĂŞtre alimentĂ© par un courant continu de 24V SELV (voltage ultra-faible sĂ©parĂ©), conformĂ©ment aux exigences primordiales de la norme BS EN 61010 ou d’une spĂ©cification semblable. FINTURVALLISUUTTA Varo äkillistä liikettä. Käyttäjän tulee pysytellä täysin anturin …
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PHOTOGRAPHS OF THE EQUIPMENT : (Taken on completion of all tests) Title : FCC label FCC ID : KQG RMP3-224 FCC Label FCC ID KQGRMP3-224 65 34 PHOTOGRAPHS OF THE EQUIPMENT : (Taken on completion of all tests) Title : Tx, front and rear view.
PHOTOGRAPHS OF THE EQUIPMENT : (Taken on completion of all tests) Title : FCC label FCC ID : KQG RMP3-224 FCC Label FCC ID KQGRMP3-224 65 34 PHOTOGRAPHS OF THE EQUIPMENT : (Taken on completion of all tests) Title : Tx, front and rear view.
PHOTOGRAPHS OF THE EQUIPMENT : (Taken on completion of all tests) Title : Disassembled unit parts. FCC ID : KQG RMP3-224 Tx 224MHz w/o cover shield Centrifugal Switch PWB FPGA PWB Power-Pic PWB Optic PWB PHOTOGRAPHS OF THE EQUIPMENT : (Taken on completion of all tests) Title : Fpga PWB, top and bottom. FCC ID :KQG RMP3-224 PHOTOGRAPHS OF THE EQUIPMENT : (Taken on completion of all tests) Title : Optic PWB, top and bottom. FCC ID :KQG RMP3-224 PHOTOGRAPHS OF THE EQUIPMENT : (Taken on completion of all tests) Title : Power-Pic PWB, top and bottom. FCC ID :KQG RMP3-224 PHOTOGRAPHS OF THE EQUIPMENT : (Taken on completion of all tests) Title : Centrifugal switch PWB, top and bottom. FCC ID :KQG RMP3-224 PHOTOGRAPHS OF THE EQUIPMENT : (Taken on completion of all tests) Title : Tx 224MHz, top and bottom. Components side w/o cover shield FCC ID :KQG RMP3-224
Issue date:29/03/20MP18 224MHz-FCC ID:KQG RMP3-224,KQG MI16-224 page: 1 TECHNICAL DESCRIPTION FOR MP18 224 MHz VERSION Part Number H-2249-0141 FCC codes: KQG RMP3-224 KQG MI16-224 Issue date:29/03/20MP18 224MHz-FCC ID:KQG RMP3-224,KQG MI16-224 page: 2 I. GENERAL DESCRIPTION The radio probe MP18 made by RENISHAW is a non line-of-sight probing system designed to equip numerical controlled machine tools with in cycle measuring equipment.The installation comprises a probe (RMP3), two antennas (RMM 224) and an interface (MI16). RMM 224 (Aerial) RMM 224 (Aerial) MI16 Shank Transmitter RMP3 MP7 MP18 Issue date:29/03/20MP18 224MHz-FCC ID:KQG RMP3-224,KQG MI16-224 page: 3 II. RADIO PROBE DESCRIPTION A. ANTENNA (RMM 224) The antennas are ¼ wavelength tuned and earth plane units with about 0.5 MHz bandwidth and a good VSWR of 1.2. The base is insulated and the grounding is made by capacitance to the machine body. A common problem has been seen of sympathetic radiators in machines, which lead to signal nulls. Sympathetic radiators are parts of machines which are also ¼ wavelength long or thereabouts; these receive and re-radiate the RF signal which can cause field cancellation and loss of signal.The use of two antennas and corresponding circuitry will correct this problem. B. PROBE (RMP2) 1. GENERAL DESCRIPTION The probe is assembled as a series of 5 PCB’s, one with a RF transmitter module. The other boards contain the reference clock, the tracking probe interface, the set-up module, the switch and the power supply. The method of operation is as follows. Two frequencies are derived from a 4 MHz crystal oscillator at nominally 500 and 1000 Hz, the 500 Hz is transmitted as a time reference to the modulation on the 1000 Hz. In the receiver the 500 Hz is used to synchronise a clock and regenerate a 1000 Hz for demodulation of the signal. On a probe change of state the time since the last 1000 Hz pulse is latched as an 8 bit word giving a resolution of 256. A start bit, a parity bit and a stop bit are added, and the information is sent as phase modulation on each cycle of the 1000 Hz carrier over the next 11 ms to the receiver. This decodes the time interval and adds it to the transmission frame time to give a precise delay from probe change of state to interface output change with an accuracy of around 4μs. The probe status (trigger or reseat) is carried by the fundamental modulation of the 1000 Hz carrier : in phase or antiphase. The low battery status information is sent as a 125 Hz signal. An infrared link exists to set-up the probe channel and its mode. It operates in the following modes: • Start by rotation and stop by rotation • Start by rotation and stop by time out • Start and stop by a shank switch • Optical start and stop • Optical start and stop by time out 2. POWER SUPPLY PCB One PP3 battery supply a voltage of 9V to the input of a step-down switching regulator. Issue date:29/03/20MP18 224MHz-FCC ID:KQG RMP3-224,KQG MI16-224 page: 4 3. LOGIC AND INTERFACE PCB This unit has a probe contact tracking interface and a high voltage generator, which together enhance the reseat performance of the probe. A FPGA (Field Programmable Gate Arrays) contains the following logic: • Probe contact debounce • Clock divider • 8 bits counter • Parity generator • Shift register • Phase inverter generator. The modulation frequencies are generated from a Walsh generator (stepped sine wave synthesis, using the shift register as ring counters). The 1000 Hz is phase modulated by inverting the output of the ring counter. In the same way a 125 Hz sine wave is generated when the batteries are below 6.5 V. The sine waves are combined in a low pass filter and sent to the transmitter. A PIC (Programmable controller) is used to control the programming of the mode and the channel by the infrared link. 4. TRANSMITTER 224 MHz The transmitter operates at a nominal 224 MHz, the precise frequency set by 40 synthesised channels, spaced at 25 KHz intervals. The first channel is set to 224,500 MHz and the last to 225,475. The reference clock for the synthesiser (UMA 1017) is 8 MHz. The output of the internal phase comparator controls the frequency of a voltage-controlled oscillator (VCO) with a varicap diode. C. INTERFACE ( MI16) 1. DESCRIPTION The interface comprises a double receiver allowing diversity reception. Each receiver uses a double conversion system with a common local oscillator. The logic selects the strongest signal automatically. Three switched capacitor filters are used to separate the frequencies of the demodulated signal, a highpass for the 1000 Hz, and bandpass for the 500 Hz and 125 Hz. The 500 Hz is used in a phase locked loop ( PLL ) frequency multiplier to generate a 250 KHz reference clock. The VCO voltage in the PLL is held during the reception of a word to reduce the residual FM, and hence the timing errors. Issue date:29/03/20MP18 224MHz-FCC ID:KQG RMP3-224,KQG MI16-224 page: 5 A FPGA ( Field Programmable Gate Arrays ) contains the following logic: • Clock divider to generate a second 500 Hz frequency for the PLL phase comparator • 1000 Hz decoder • Down counter to generate the additional part of the delay • Parity check • Error detection • Status bit generation The IF detector has a signal strength output which is fed to a bar graph driver to give a visual indication of signal strength. An error output is created if the received RF is too low. An amplitude comparator detects the 125 Hz presence and generates a low battery bit. The front panel displays: • The channel number • The probe mode • The status mode • The received signal strength • The low battery information 2. RECEIVER MODULE • A circuit SA601 includes a low noise amplifier (LNA) and a mixer. The output of the LNA is mixed with a synthesised signal around 412 MHz to deliver an IF signal at 21.4 MHz. • The synthesiser used is a UMA 1017. The first local oscillator delivers a frequency of 203.100 MHz for the first channel and 204,075 MHz for the la…
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Issue date:29/03/20MP18 224MHz-FCC ID:KQG RMP3-224,KQG MI16-224 page: 1 TECHNICAL DESCRIPTION FOR MP18 224 MHz VERSION Part Number H-2249-0141 FCC codes: KQG RMP3-224 KQG MI16-224 Issue date:29/03/20MP18 224MHz-FCC ID:KQG RMP3-224,KQG MI16-224 page: 2 I. GENERAL DESCRIPTION The radio probe MP18 made by RENISHAW is a non line-of-sight probing system designed to equip numerical controlled machine tools with in cycle measuring equipment.The installation comprises a probe (RMP3), two antennas (RMM 224) and an interface (MI16). RMM 224 (Aerial) RMM 224 (Aerial) MI16 Shank Transmitter RMP3 MP7 MP18 Issue date:29/03/20MP18 224MHz-FCC ID:KQG RMP3-224,KQG MI16-224 page: 3 II. RADIO PROBE DESCRIPTION A. ANTENNA (RMM 224) The antennas are ¼ wavelength tuned and earth plane units with about 0.5 MHz bandwidth and a good VSWR of 1.2. The base is insulated and the grounding is made by capacitance to the machine body. A common problem has been seen of sympathetic radiators in machines, which lead to signal nulls. Sympathetic radiators are parts of machines which are also ¼ wavelength long or thereabouts; these receive and re-radiate the RF signal which can cause field cancellation and loss of signal.The use of two antennas and corresponding circuitry will correct this problem. B. PROBE (RMP2) 1. GENERAL DESCRIPTION The probe is assembled as a series of 5 PCB’s, one with a RF transmitter module. The other boards contain the reference clock, the tracking probe interface, the set-up module, the switch and the power supply. The method of operation is as follows. Two frequencies are derived from a 4 MHz crystal oscillator at nominally 500 and 1000 Hz, the 500 Hz is transmitted as a time reference to the modulation on the 1000 Hz. In the receiver the 500 Hz is used to synchronise a clock and regenerate a 1000 Hz for demodulation of the signal. On a probe change of state the time since the last 1000 Hz pulse is latched as an 8 bit word giving a resolution of 256. A start bit, a parity bit and a stop bit are added, and the information is sent as phase modulation on each cycle of the 1000 Hz carrier over the next 11 ms to the receiver. This decodes the time interval and adds it to the transmission frame time to give a precise delay from probe change of state to interface output change with an accuracy of around 4μs. The probe status (trigger or reseat) is carried by the fundamental modulation of the 1000 Hz carrier : in phase or antiphase. The low battery status information is sent as a 125 Hz signal. An infrared link exists to set-up the probe channel and its mode. It operates in the following modes: • Start by rotation and stop by rotation • Start by rotation and stop by time out • Start and stop by a shank switch • Optical start and stop • Optical start and stop by time out 2. POWER SUPPLY PCB One PP3 battery supply a voltage of 9V to the input of a step-down switching regulator. Issue date:29/03/20MP18 224MHz-FCC ID:KQG RMP3-224,KQG MI16-224 page: 4 3. LOGIC AND INTERFACE PCB This unit has a probe contact tracking interface and a high voltage generator, which together enhance the reseat performance of the probe. A FPGA (Field Programmable Gate Arrays) contains the following logic: • Probe contact debounce • Clock divider • 8 bits counter • Parity generator • Shift register • Phase inverter generator. The modulation frequencies are generated from a Walsh generator (stepped sine wave synthesis, using the shift register as ring counters). The 1000 Hz is phase modulated by inverting the output of the ring counter. In the same way a 125 Hz sine wave is generated when the batteries are below 6.5 V. The sine waves are combined in a low pass filter and sent to the transmitter. A PIC (Programmable controller) is used to control the programming of the mode and the channel by the infrared link. 4. TRANSMITTER 224 MHz The transmitter operates at a nominal 224 MHz, the precise frequency set by 40 synthesised channels, spaced at 25 KHz intervals. The first channel is set to 224,500 MHz and the last to 225,475. The reference clock for the synthesiser (UMA 1017) is 8 MHz. The output of the internal phase comparator controls the frequency of a voltage-controlled oscillator (VCO) with a varicap diode. C. INTERFACE ( MI16) 1. DESCRIPTION The interface comprises a double receiver allowing diversity reception. Each receiver uses a double conversion system with a common local oscillator. The logic selects the strongest signal automatically. Three switched capacitor filters are used to separate the frequencies of the demodulated signal, a highpass for the 1000 Hz, and bandpass for the 500 Hz and 125 Hz. The 500 Hz is used in a phase locked loop ( PLL ) frequency multiplier to generate a 250 KHz reference clock. The VCO voltage in the PLL is held during the reception of a word to reduce the residual FM, and hence the timing errors. Issue date:29/03/20MP18 224MHz-FCC ID:KQG RMP3-224,KQG MI16-224 page: 5 A FPGA ( Field Programmable Gate Arrays ) contains the following logic: • Clock divider to generate a second 500 Hz frequency for the PLL phase comparator • 1000 Hz decoder • Down counter to generate the additional part of the delay • Parity check • Error detection • Status bit generation The IF detector has a signal strength output which is fed to a bar graph driver to give a visual indication of signal strength. An error output is created if the received RF is too low. An amplitude comparator detects the 125 Hz presence and generates a low battery bit. The front panel displays: • The channel number • The probe mode • The status mode • The received signal strength • The low battery information 2. RECEIVER MODULE • A circuit SA601 includes a low noise amplifier (LNA) and a mixer. The output of the LNA is mixed with a synthesised signal around 412 MHz to deliver an IF signal at 21.4 MHz. • The synthesiser used is a UMA 1017. The first local oscillator delivers a frequency of 203.100 MHz for the first channel and 204,075 MHz for the la…
Text truncated - open the document above for the full version.
FCC ID: KQG RMP3-224 A-2249-0250-01-A FCC ID: KQG RMP3-224 A-2249-0680-01-A FCC ID: KQG RMP3-224 FCC ID: KQG RMP3-224 FCC ID: KQG RMP3-224 FCC ID: KQG RMP3-224 FCC ID: KQG RMP3-224 FCC ID: KQG RMP3-224 FCC ID: KQG RMP3-224 FCC ID: KQG RMP3-224 FCC ID: KQG RMP3-224 A-2249-0680-01-A TITLE: COMPACT RADIO 224 MHz TX PWB FCC ID: KQG RMP3-224 A-2249-0680-01-A TITLE: COMPACT RADIO 224 MHz TX PWB
FCC ID: KQG RMP3-224 C-2249-0680-01-A Attenuator 224 MHz FCC ID: KQG RMP3-224 FCC ID: KQG RMP3-224 FCC ID: KQG RMP3-224 FCC ID: KQG RMP3-224 FCC ID: KQG RMP3-224 FCC ID: KQG RMP3-224
RMP3 LAYOUT Title: Tx 224 MHz PWB top and bottom FCC ID : KQG RMP3-224 RMP3 LAYOUT Title: FPGA PWB top and bottom FCC ID : KQG RMP3-224 RMP3 LAYOUT Title: Power/Pic PWB top and bottom FCC ID : KQG RMP3-224 RMP3 LAYOUT Title: Optic PWB top and bottom FCC ID : KQG RMP3-224 RMP3 LAYOUT Title: Centrifugal switch PWB top and bottom FCC ID : KQG RMP3-224
FCC ID: KQG RMP3-224 A-2249-0680-01-A 224MHZ FCC ID: KQG RMP3-224 FCC ID: KQG RMP3-224 FCC ID: KQG RMP3-224 FCC ID: KQG RMP3-224
EMITECH ATLANTIQUE RA-02-33183/01DATE: 28-Jun-02PAGE: 2 / 10 RIA-02-33183-01-A.doc EQUIPMENT UNDER TEST type:RMP3-224 serial number:V40810 MANUFACTURER:RENISHAW METROLOGY LTD COORDINATES OF THE COMPANY SUBMITTING THE EQUIPMENT: Company:RENISHAW METROLOGY LTD Address:New Mills, Wotton Under Edge Gloucestershire GL 12 8JR ENGLAND Responsible:Mr WOOLLETT DATE (S) OF THE TEST: 21 and 22 May 2002 LOCALITY OF THE TEST: EMITECH ATLANTIQUE open area test site in LA POUEZE (49) FRANCE TESTED BY:D. GRATON EMITECH ATLANTIQUE RA-02-33183/01DATE: 28-Jun-02PAGE: 3 / 10 RIA-02-33183-01-A.doc CONTENTS TITLEPAGE 1. INTRODUCTION ....................................................................................................................... 4 2. PRODUCT DESCRIPTION....................................................................................................... 4 3. NORMATIVE REFERENCE .................................................................................................... 4 4. TEST METHODOLOGY........................................................................................................... 5 5. RELATED SUBMITTAL GRANT ........................................................................................... 5 6. TEST UNIT CONFIGURATION .............................................................................................. 5 7. TESTS AND CONCLUSIONS .................................................................................................. 6 8. RADIATED EMISSION LIMITS; GENERAL REQUIREMENTS ..................................... 7 9. PHOTOGRAPHIES OF THE EQUIPMENT UNDER TEST................................................ 9 EMITECH ATLANTIQUE RA-02-33183/01DATE: 28-Jun-02PAGE: 4 / 10 RIA-02-33183-01-A.doc 1. INTRODUCTION This document presents the result of E.M.C. test carried out on the following equipment: RMP3-224 in accordance with normative reference. 2. PRODUCT DESCRIPTION ITU Emission code: 7K00F7D Classe:A (paragraph FCC part 15.3) Utilization:probe for machine tools telemetry, transmitter Antenna type: internal antenna Operating frequency range: from 224.500 MHz to 225.475 MHz No of channels:40 Channel spacing: 25 kHz Frequency generation: SAW Resonator Crystal Synthetiser Modulation: Amplitude Digital Frequency Phase Frequency deviation: 3.5 kHz Power source: 9 Vdc (battery) 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 FCC Part 15 (2000)Code of Federal Regulations Title 47 - Telecommunication Chapter 1 - Federal Communications Commission Part 15 - Radio frequency devices Subpart C - Intentional Radiators EMITECH ATLANTIQUE RA-02-33183/01DATE: 28-Jun-02PAGE: 5 / 10 RIA-02-33183-01-A.doc 4. TEST METHODOLOGY Radio performance tests procedures given in part 15: Paragraph 209: radiated emission limits; general requirements Paragraph 33: frequency range of radiated measurements Paragraph 35: measurement detector functions and bandwidths 5. RELATED SUBMITTAL GRANT The telemetry sensor RMP3-224 is used with the receiver MI16-224 (FCC ID: KQG MI16-224). 6. TEST UNIT CONFIGURATION JOINED DOCUMENTATIONS SynopticRMP3 224 SYNOPTIC.pdf Block diagramRMP3 224 BREAK DOWN.pdf External photos and Product labelingRMP3 224 EXTERNAL PHOTOS.pdf Assembly of componentsRMP3 224 CAB.pdf Internal photosRMP3 224 INTERNAL PHOTOS.pdf Layout pcbRMP3 224 LAYOUT.pdf Bil of materialsRMP3 224 PART LIST.pdf SchematicsRMP3 224 SCHEMA.pdf Product descriptionRMP3 224 TECH…
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15, RUE ALBERT EINSTEIN · MARNE LA VALLEE · France
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 224.5 MHz - 225.475 MHz | - |
The RUP60 is a radio probe capable of ultrasonic thickness measurement of parallel-sided metal components where access is restricted to a single side.
Equipment Class
DTS - Digital Transmission SystemThe Renishaw RMP400S is a radio transmission probe capable of both touch trigger and scanning measurement.
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
RMI-QE Radio Machine Interface
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
Radio Machine Probe
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
Radio Tool Setter
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter