• Part: LTC2498
  • Description: 24-Bit 8-/16-Channel ADC
  • Manufacturer: Linear Technology
  • Size: 1.05 MB
Download LTC2498 Datasheet PDF
Linear Technology
LTC2498
LTC2498 is 24-Bit 8-/16-Channel ADC manufactured by Linear Technology.
Features n Up to 8 Differential or 16 Single-Ended Inputs n Easy Drive™ Technology Enables Rail-to-Rail Inputs with Zero Differential Input Current n Directly Digitizes High Impedance Sensors with Full Accuracy n 600n V RMS Noise n Integrated High Accuracy Temperature Sensor n GND to VCC Input/Reference mon Mode Range n Programmable 50Hz, 60Hz or Simultaneous 50Hz/60Hz Rejection Mode n2ppm INL, No Missing Codes n1ppm Offset and 15ppm Full-Scale Error n2x Speed Mode (15Hz Using Internal Oscillator) n No Latency: Digital Filter Settles in a Single Cycle, Even After a New Channel Is Selected n Single Supply 2.7V to 5.5V Operation (0.8m W) n Internal Oscillator n Tiny QFN 5mm × 7mm Package Applications n Direct Sensor Digitizer n Direct Temperature Measurement n Instrumentation n Industrial Process Control LTC2498 24-Bit 8-/16-Channel ΔS ADC with Easy Drive Input Current Cancellation Description The LTC®2498 is a 16-channel (8-differential) 24-bit No Latency DS™ ADC with Easy Drive technology. The patented sampling scheme eliminates dynamic input current errors and the shortings of on-chip buffering through automatic cancellation of differential input current. This allows large external source impedances, and rail-to-rail input signals to be directly digitized while maintaining exceptional DC accuracy. The LTC2498 includes a high accuracy temperature sensor and an integrated oscillator. This device can be configured to measure an external signal (from binations of 16 analog input channels operating in single ended or differential modes) or its internal temperature sensor. The integrated temperature sensor offers 1/30th °C resolution and 2°C absolute accuracy. The LTC2498 allows a wide mon mode input range (0V to VCC), independent of the reference voltage. Any bination of single-ended or differential inputs can be selected and the first conversion after a new channel is selected is valid. Access to the multiplexer output enables optional...