GE VMIVME-3123-4S-008
- Technical Specifications
- Input Channels: It has 16 differential analog input channels, and can also be configured as an 8 - channel option.
- A/D Conversion: Equipped with 16 - bit A/D converters, one for each channel, with a total sampling rate of 1600 kHz, and each channel can reach 100 kHz (200 kHz when channel - paired).
- Input Range: There are bipolar options of ±10V and ±5V, and true unipolar options of +10V and +5V.
- Filter: The low - pass filter is of Bessel type, with a frequency of 240 Hz, which is used for anti - aliasing.
- Data Buffer: The buffer size is software - controllable, ranging from 1 sample to 4 million samples.
- Calibration Accuracy: The offset voltage and drift are ±2.7µV, ±5µV/°C RTI1, and the bias current and drift are ±55 ±1 nA/°C.
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- Function Features
- High – speed Sampling: It has a high – throughput design, which can realize high – speed and accurate analog – to – digital conversion, and is suitable for applications that require real – time acquisition of a large amount of analog data.
- Simultaneous Sampling: Each input is equipped with a dedicated sample – and – hold amplifier, which can realize simultaneous sample – and – hold of 16 channels, ensuring the consistency of data sampling in multi – channel acquisition.
- Digital Calibration: It adopts digital calibration, without the need for channel trimmer. It can be self – calibrated under the control of the host, and uses gain and offset coefficients during signal acquisition to optimize accuracy.
- Trigger Function: It has trigger functions such as internal, external, VME host – trigger, or multi – board synchronous trigger, and also has an input signal transient capture trigger mode and a continuous sampling mode, which can meet different application requirements.
- VME Access: By enabling the address modifier bit in the short I/O register and decoding, it supports non – privileged, supervisory, or both access modes.
- Application Scenarios
- Precision Voltage Monitoring: It can be used to monitor the voltage of various precision power supplies or electrical circuits, and provide accurate voltage data for the system, which is widely used in power electronics and other fields.
- Data Acquisition Systems: It is an important part of data acquisition systems, and can collect analog signals such as current, voltage, and temperature in industrial production processes, scientific research experiments, etc., and convert them into digital signals for subsequent processing and analysis.
- Control Systems: In industrial control systems, it is used to collect feedback signals of controlled objects, such as the current and voltage signals of motors, to help the controller adjust control parameters in real – time and realize precise control of the system.
- Automatic Test Equipment (ATE): In automatic test equipment, it can be used to collect various analog signals in the tested equipment, so as to judge the working status and performance of the equipment, and improve the test efficiency and accuracy.
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