Drives
Drives
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Part
Part Number
Manufacturer
Description
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- Mitsubishi Electric WFR123728
- WFR123728
- Mitsubishi Electric
- Variable Speed/Frequency Drive (VSD/VFD) / Inverter, special version, Rated active power 10HP
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- Mitsubishi Electric WFR130654
- WFR130654
- Mitsubishi Electric
- Variable Speed/Frequency Drive (VSD/VFD) / Inverter, special version, Rated active power 1/2HP
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- Mitsubishi Electric WFR130655
- WFR130655
- Mitsubishi Electric
- Variable Speed/Frequency Drive (VSD/VFD) / Inverter, special version, Rated active power 1HP
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- Mitsubishi Electric WFR130656
- WFR130656
- Mitsubishi Electric
- Variable Speed/Frequency Drive (VSD/VFD) / Inverter, special version, Rated active power 1HP
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- Schneider Electric WISERAIR10BLKUS
- WISERAIR10BLKUS
- Schneider Electric
- Wiser air wifi thermostat, black, us version
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- Schneider Electric WISERAIR10WHTUS
- WISERAIR10WHTUS
- Schneider Electric
- Wiser air wifi thermostat, white, us version
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- Schneider Electric WISERCTPM200
- WISERCTPM200
- Schneider Electric
- Wiser 200 amp panel meter, ct
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- Omron WJ200-001SFE
- WJ200-001SFE
- Omron
- MX2-AB001-E Multi-Function Compact Inverter
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- Omron WJ200-002SFE
- WJ200-002SFE
- Omron
- MX2-AB002-E Multi-function Compact Inverter
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- Omron WJ200-004MF
- WJ200-004MF
- Omron
- MX2 Inverter Drive, 0.4kw, 3.5a, 100vac Single Phase Input, Non Ce
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- Omron WJ200-004SFE
- WJ200-004SFE
- Omron
- MX2-AB004-E, WJ200-0045FE Multi-Function Compact Inverter
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- Omron WJ200-007MF
- WJ200-007MF
- Omron
- MX2 Inverter Drive, 0.75kw, 5a, 100vac Single Phase Input, Non Ce
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- SICK WL27-3F2631S04
- WL27-3F2631S04
- SICK
- Photoelectric Sensor, Retroreflective, 15m Range, Pnp Lo Do, Q6 Connector, Switch On Delay Of 30ms Or 70ms, Higher Switching Frequency
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- Schneider Electric WMB361362
- WMB361362
- Schneider Electric
- Wall mounting bracket
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- Schneider Electric WMB363364
- WMB363364
- Schneider Electric
- Wall mounting bracket
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- Schneider Electric WS5-5.28100
- WS5-5.28100
- Schneider Electric
- Stepper drive, adjusted to 230V.
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- SICK WSE27-3P2410S03
- WSE27-3P2410S03
- SICK
- Photoelectric Sensor, Through Beam, 45m Range, Pnp Lo Do, M12 Connector, Switching Frequency 300 Hz
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- SICK WTB27-3P2461S27
- WTB27-3P2461S27
- SICK
- Photoelectric Sensor, Diffuse, Background Suppression, 100-2000mm Range, Pnp Lo Do, M12 Connector, Range Preset At 600 Mm On An Object With 6 % Remission, Switching Frequency 100 Hz
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- Omron X200-002SFEF2
- X200-002SFEF2
- Omron
- JX-AB002-EF JX-AB002-EF Inverter
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- B&R X20AP3111
- X20AP3111
- B&R
- Power monitoring These modules measure active, reactive and apparent power individually for each of the 3 phases as well as all of them collectively. The power consumption of each phase is also recorded individually and in total. In addition, the modules provide the RMS values for voltage and current on the 3 phases. When measuring the current, the value of the current through the neutral conductor can also be detected and monitored. Measurement of the mains frequency and the phase angle of the 3 phases (current and voltage) complete the power measurement data. Energy management The integrated functions on the modules map the immediate power requirements of the machine in detail as well as record its total power consumption. For the user, all relevant data is prepared and made available in the process image. The ability to measure currents and voltages up to the 31st harmonic enables higher precision recording of RMS values than is generally possible. This allows the modules to easily cope with irregular sine curves and makes them well-suited to renewable energy applications. In these types of applications, for example, being able to accurately measure the frequency at a resolution of 0.01 Hz between 45 and 65 Hz is a great advantage. In general, the modules are suitable for use with 1-phase, 2-phase or 3-phase networks. NetTime timestamp of readout moments For many applications, not only the measured value is important, but also the exact moment when a group of measured values is read out. The module is equipped with a NetTime timestamp function for this that supplies a timestamp for the recorded position and trigger time with microsecond accuracy. The timestamp function is based on synchronized timers. If a timestamp event occurs, the module immediately saves the current NetTime. After the respective data is transferred to the CPU, including this precise moment, the CPU can then evaluate the data using its own NetTime (or system time), if necessary.
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- B&R X20AP3121
- X20AP3121
- B&R
- Power monitoring These modules measure active, reactive and apparent power individually for each of the 3 phases as well as all of them collectively. The power consumption of each phase is also recorded individually and in total. In addition, the modules provide the RMS values for voltage and current on the 3 phases. When measuring the current, the value of the current through the neutral conductor can also be detected and monitored. Measurement of the mains frequency and the phase angle of the 3 phases (current and voltage) complete the power measurement data. Energy management The integrated functions on the modules map the immediate power requirements of the machine in detail as well as record its total power consumption. For the user, all relevant data is prepared and made available in the process image. The ability to measure currents and voltages up to the 31st harmonic enables higher precision recording of RMS values than is generally possible. This allows the modules to easily cope with irregular sine curves and makes them well-suited to renewable energy applications. In these types of applications, for example, being able to accurately measure the frequency at a resolution of 0.01 Hz between 45 and 65 Hz is a great advantage. In general, the modules are suitable for use with 1-phase, 2-phase or 3-phase networks. NetTime timestamp of readout moments For many applications, not only the measured value is important, but also the exact moment when a group of measured values is read out. The module is equipped with a NetTime timestamp function for this that supplies a timestamp for the recorded position and trigger time with microsecond accuracy. The timestamp function is based on synchronized timers. If a timestamp event occurs, the module immediately saves the current NetTime. After the respective data is transferred to the CPU, including this precise moment, the CPU can then evaluate the data using its own NetTime (or system time), if necessary.
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- B&R X20AP3122
- X20AP3122
- B&R
- Power monitoring These modules measure active, reactive and apparent power individually for each of the 3 phases as well as all of them collectively. The power consumption of each phase is also recorded individually and in total. In addition, the modules provide the RMS values for voltage and current on the 3 phases. When measuring the current, the value of the current through the neutral conductor can also be detected and monitored. Measurement of the mains frequency and the phase angle of the 3 phases (current and voltage) complete the power measurement data. Energy management The integrated functions on the modules map the immediate power requirements of the machine in detail as well as record its total power consumption. For the user, all relevant data is prepared and made available in the process image. The ability to measure currents and voltages up to the 31st harmonic enables higher precision recording of RMS values than is generally possible. This allows the modules to easily cope with irregular sine curves and makes them well-suited to renewable energy applications. In these types of applications, for example, being able to accurately measure the frequency at a resolution of 0.01 Hz between 45 and 65 Hz is a great advantage. In general, the modules are suitable for use with 1-phase, 2-phase or 3-phase networks. NetTime timestamp of readout moments For many applications, not only the measured value is important, but also the exact moment when a group of measured values is read out. The module is equipped with a NetTime timestamp function for this that supplies a timestamp for the recorded position and trigger time with microsecond accuracy. The timestamp function is based on synchronized timers. If a timestamp event occurs, the module immediately saves the current NetTime. After the respective data is transferred to the CPU, including this precise moment, the CPU can then evaluate the data using its own NetTime (or system time), if necessary.
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- B&R X20AP3131
- X20AP3131
- B&R
- Power monitoring These modules measure active, reactive and apparent power individually for each of the 3 phases as well as all of them collectively. The power consumption of each phase is also recorded individually and in total. In addition, the modules provide the RMS values for voltage and current on the 3 phases. When measuring the current, the value of the current through the neutral conductor can also be detected and monitored. Measurement of the mains frequency and the phase angle of the 3 phases (current and voltage) complete the power measurement data. Energy management The integrated functions on the modules map the immediate power requirements of the machine in detail as well as record its total power consumption. For the user, all relevant data is prepared and made available in the process image. The ability to measure currents and voltages up to the 31st harmonic enables higher precision recording of RMS values than is generally possible. This allows the modules to easily cope with irregular sine curves and makes them well-suited to renewable energy applications. In these types of applications, for example, being able to accurately measure the frequency at a resolution of 0.01 Hz between 45 and 65 Hz is a great advantage. In general, the modules are suitable for use with 1-phase, 2-phase or 3-phase networks. NetTime timestamp of readout moments For many applications, not only the measured value is important, but also the exact moment when a group of measured values is read out. The module is equipped with a NetTime timestamp function for this that supplies a timestamp for the recorded position and trigger time with microsecond accuracy. The timestamp function is based on synchronized timers. If a timestamp event occurs, the module immediately saves the current NetTime. After the respective data is transferred to the CPU, including this precise moment, the CPU can then evaluate the data using its own NetTime (or system time), if necessary.
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- B&R X20AP3132
- X20AP3132
- B&R
- Power monitoring These modules measure active, reactive and apparent power individually for each of the 3 phases as well as all of them collectively. The power consumption of each phase is also recorded individually and in total. In addition, the modules provide the RMS values for voltage and current on the 3 phases. When measuring the current, the value of the current through the neutral conductor can also be detected and monitored. Measurement of the mains frequency and the phase angle of the 3 phases (current and voltage) complete the power measurement data. Energy management The integrated functions on the modules map the immediate power requirements of the machine in detail as well as record its total power consumption. For the user, all relevant data is prepared and made available in the process image. The ability to measure currents and voltages up to the 31st harmonic enables higher precision recording of RMS values than is generally possible. This allows the modules to easily cope with irregular sine curves and makes them well-suited to renewable energy applications. In these types of applications, for example, being able to accurately measure the frequency at a resolution of 0.01 Hz between 45 and 65 Hz is a great advantage. In general, the modules are suitable for use with 1-phase, 2-phase or 3-phase networks. NetTime timestamp of readout moments For many applications, not only the measured value is important, but also the exact moment when a group of measured values is read out. The module is equipped with a NetTime timestamp function for this that supplies a timestamp for the recorded position and trigger time with microsecond accuracy. The timestamp function is based on synchronized timers. If a timestamp event occurs, the module immediately saves the current NetTime. After the respective data is transferred to the CPU, including this precise moment, the CPU can then evaluate the data using its own NetTime (or system time), if necessary.
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- B&R X20AP3161
- X20AP3161
- B&R
- Power monitoring These modules measure active, reactive and apparent power individually for each of the 3 phases as well as all of them collectively. The power consumption of each phase is also recorded individually and in total. In addition, the modules provide the RMS values for voltage and current on the 3 phases. When measuring the current, the value of the current through the neutral conductor can also be detected and monitored. Measurement of the mains frequency and the phase angle of the 3 phases (current and voltage) complete the power measurement data. Energy management The integrated functions on the modules map the immediate power requirements of the machine in detail as well as record its total power consumption. For the user, all relevant data is prepared and made available in the process image. The ability to measure currents and voltages up to the 31st harmonic enables higher precision recording of RMS values than is generally possible. This allows the modules to easily cope with irregular sine curves and makes them well-suited to renewable energy applications. In these types of applications, for example, being able to accurately measure the frequency at a resolution of 0.01 Hz between 45 and 65 Hz is a great advantage. In general, the modules are suitable for use with 1-phase, 2-phase or 3-phase networks. NetTime timestamp of readout moments For many applications, not only the measured value is important, but also the exact moment when a group of measured values is read out. The module is equipped with a NetTime timestamp function for this that supplies a timestamp for the recorded position and trigger time with microsecond accuracy. The timestamp function is based on synchronized timers. If a timestamp event occurs, the module immediately saves the current NetTime. After the respective data is transferred to the CPU, including this precise moment, the CPU can then evaluate the data using its own NetTime (or system time), if necessary.