The ADS8588H is an 8-channel,
integrated data acquisition (DAQ) system based on a 16-bit successive approximation
(SAR) analog-to-digital converter (ADC). All input channels are simultaneously
sampled to achieve a maximum throughput of 500 kSPS per channel. The device features
a complete analog front-end for each channel, including a programmable gain
amplifier (PGA) with a high input impedance of 1 MΩ, an input clamp, low-pass
filter, and an ADC input driver. The device also features a low-drift, precision
reference with a buffer to drive the ADC. A flexible digital interface supporting
serial, parallel, and parallel byte communication enables the device to be used with
a variety of host controllers.
The ADS8588H can be configured to
accept ± 10-V or ± 5-V true bipolar inputs using a single 5-V
supply. The high input impedance allows direct connection with sensors and
transformers, thus eliminating the need for external driver circuits.
The ADS8588H is an 8-channel,
integrated data acquisition (DAQ) system based on a 16-bit successive approximation
(SAR) analog-to-digital converter (ADC). All input channels are simultaneously
sampled to achieve a maximum throughput of 500 kSPS per channel. The device features
a complete analog front-end for each channel, including a programmable gain
amplifier (PGA) with a high input impedance of 1 MΩ, an input clamp, low-pass
filter, and an ADC input driver. The device also features a low-drift, precision
reference with a buffer to drive the ADC. A flexible digital interface supporting
serial, parallel, and parallel byte communication enables the device to be used with
a variety of host controllers.
The ADS8588H can be configured to
accept ± 10-V or ± 5-V true bipolar inputs using a single 5-V
supply. The high input impedance allows direct connection with sensors and
transformers, thus eliminating the need for external driver circuits.