Number of Channels:16 Resolution:16-bit Sampling Rate:Up to 1 MHz Input Range:-40 V to +40 V Power Supply:DC 5 V or 12 V Data Transfer Speed:10 MBytes/s Operating Temperature:-40"C to +85"C Storage Temperature:-40"C to +125"C Dimensions:115 mm x 84 mm x 25 mm Weight:120 g The GE/VMIC VMIVME-3122-020 ADC boasts a cutting-edge 16-bit resolution, ensuring exceptionally precise data conversion for critical industrial processes. Its variable sampling rate, reaching up to 200 kS/s, caters to a wide range of application needs, from high-speed data acquisition to slower, yet still demanding, control scenarios. With a versatile input range of -2V to +2V, 5V, and 10V, this ADC can handle a broad spectrum of signal types without compromise.
The ultra-fast conversion time of less than 1 minimizes latency, making it ideal for real-time control systems where every microsecond counts. Designed for robust operation in harsh environments, the VMIVME-3122-020 can withstand temperatures ranging from -40"C to +85"C, and operates efficiently under humidity conditions from 0% to 95% without condensation. Its durable construction ensures longevity and reliability in industrial settings. The modular design of the VMIVME-3122-020 allows for easy integration into existing systems, with its compact form factor facilitating space-saving installation. It supports both 12VDC and 24VDC supply voltages, offering flexibility in power source options. For optimal performance, our engineering team recommends careful consideration of the ADC operating conditions and compatibility with other components in the system. GE/VMIC provides comprehensive technical support and documentation to ensure seamless integration and maintenance.
The GE/FANUC VMIVME-3122-020 is a high-performance 16-bit Analog-to-Digital Converter (ADC) designed for critical applications requiring precise data acquisition and conversion within the industrial control environment. Its robust design ensures reliable performance in demanding conditions, making it an ideal choice for system integrators and engineers seeking precision and efficiency.
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