The ADC16DX370 device is a monolithic dual-channel high performance analog-to-digital
converter capable of converting analog input signals into 16-bit digital words with a sampling rate
of 370 MSPS. This converter uses a differential pipelined architecture with integrated input buffer
to provide excellent dynamic performance while maintaining low power consumption.
The integrated input buffer eliminates charge kickback noise coming from the internal
switched capacitor sampling circuits and eases the system-level design of the driving amplifier,
anti-aliasing filter, and impedance matching. An input sampling clock divider provides integer
divide ratios with configurable phase selection to simplify system clocking. An integrated
low-noise voltage reference eases board level design without requiring external decoupling
capacitors. The output digital data is provided through a JESD204B subclass 1 interface from a
56-pin, 8-mm × 8-mm WQFN package. A SPI is available to configure the device that is compatible
with 1.2-V to 3-V logic.
The ADC16DX370 device is a monolithic dual-channel high performance analog-to-digital
converter capable of converting analog input signals into 16-bit digital words with a sampling rate
of 370 MSPS. This converter uses a differential pipelined architecture with integrated input buffer
to provide excellent dynamic performance while maintaining low power consumption.
The integrated input buffer eliminates charge kickback noise coming from the internal
switched capacitor sampling circuits and eases the system-level design of the driving amplifier,
anti-aliasing filter, and impedance matching. An input sampling clock divider provides integer
divide ratios with configurable phase selection to simplify system clocking. An integrated
low-noise voltage reference eases board level design without requiring external decoupling
capacitors. The output digital data is provided through a JESD204B subclass 1 interface from a
56-pin, 8-mm × 8-mm WQFN package. A SPI is available to configure the device that is compatible
with 1.2-V to 3-V logic.