LTC2376CMS-16#TRPBF - 16-Bit, 250ksps SAR ADC
The LTC2376CMS-16#TRPBF is a high-performance, 16-bit successive approximation register (SAR) analog-to-digital converter (ADC) from Analog Devices Inc. This precision ADC offers a maximum sampling rate of 250 kilosamples per second (ksps), making it an ideal choice for high-speed data acquisition systems where accuracy and speed are critical.
Key Features
- Resolution: 16 bits
- Sampling Rate: Up to 250ksps
- Input Type: Differential
- Supply Voltage: Single 5V
- Interface: SPI-compatible serial
- INL (Integral Nonlinearity): ±2 LSB (typical)
- DNL (Differential Nonlinearity): ±1 LSB (maximum)
- Power Dissipation: 18mW (typical at 250ksps)
With its differential input, the LTC2376CMS-16#TRPBF provides excellent noise rejection and maintains high accuracy in a wide range of application environments. The device operates from a single 5V supply, minimizing power consumption and simplifying power supply design.
The ADC features an SPI-compatible serial interface that allows easy communication with microcontrollers, DSPs, and FPGAs. It ensures a straightforward integration into digital systems, facilitating rapid development and deployment of complex electronic systems.
The LTC2376CMS-16#TRPBF boasts an impressive integral nonlinearity (INL) of ±2 LSB and a differential nonlinearity (DNL) of ±1 LSB, ensuring precise data conversion with minimal error. This accuracy, combined with the high sampling rate, makes this ADC suitable for a wide range of applications, including medical instrumentation, industrial process control, and high-speed data acquisition systems.
The device comes in a compact 16-lead MSOP package, offering a space-saving solution for designs where board real estate is at a premium. Its robust design and high reliability make it an excellent choice for demanding applications that require long-term stability and performance.
Overall, the LTC2376CMS-16#TRPBF from Analog Devices Inc. is a top-tier ADC solution that delivers high-speed, high-accuracy data conversion for advanced digital systems.