The ADC34DSO75
is a 14-bit, 3GSPS, quad channel analog to digital converter (ADC) with built-in event
detection engine and internal capture memory to enable an integerated digital storage
oscilliscope (DSO) feature set. The buffered analog inputs have an internal termination
impedance of 100Ω or 200Ω and enable each ADC to achieve a full power input bandwidth of
3GHz (-3dB).
Each ADC channel has a dedicated event
detection engine to control data capture and storage to on the chip memory for offload via
OSPI. There are a number of event detection modes including absolute high threshold, low
threshold, high and low threshold derived from an aquired baseline, slope based triggering,
and pin based triggering. Each ADC34DSO75 chip has a 256KiB
memory which can be partitioned across the four channels of the ADC. Once an event is
detected, the samples corresponding to the event can be written to the memory. Along with
the event data, an event header (96 bytes per event) is stored in the memory and contains
information about the event captured such as the event mode, voltage at event, and
timestamp. The number of samples to be stored for the events is programmable for each
channel and is based on pre and post event window sizes. The events are timestamp via a
64-bit counter in the event detection engine running at the full sample clock rate. The
device has per channel pins for pin based triggering of events and also event detection
status on the pins. The ADC34DSO75 has two SYSREF outputs to
enable simple mutli-device synchronization schemes.
The device configuration is done using the
CSPI which is just a standard SPI bus. The on-chip memory is read out via an Octal Serial
Peripheral Interface (OSPI). Multiple ADC chips can be daisy chained to enable a single
(OSPI) interface to the host.
The ADC34DSO75
is a 14-bit, 3GSPS, quad channel analog to digital converter (ADC) with built-in event
detection engine and internal capture memory to enable an integerated digital storage
oscilliscope (DSO) feature set. The buffered analog inputs have an internal termination
impedance of 100Ω or 200Ω and enable each ADC to achieve a full power input bandwidth of
3GHz (-3dB).
Each ADC channel has a dedicated event
detection engine to control data capture and storage to on the chip memory for offload via
OSPI. There are a number of event detection modes including absolute high threshold, low
threshold, high and low threshold derived from an aquired baseline, slope based triggering,
and pin based triggering. Each ADC34DSO75 chip has a 256KiB
memory which can be partitioned across the four channels of the ADC. Once an event is
detected, the samples corresponding to the event can be written to the memory. Along with
the event data, an event header (96 bytes per event) is stored in the memory and contains
information about the event captured such as the event mode, voltage at event, and
timestamp. The number of samples to be stored for the events is programmable for each
channel and is based on pre and post event window sizes. The events are timestamp via a
64-bit counter in the event detection engine running at the full sample clock rate. The
device has per channel pins for pin based triggering of events and also event detection
status on the pins. The ADC34DSO75 has two SYSREF outputs to
enable simple mutli-device synchronization schemes.
The device configuration is done using the
CSPI which is just a standard SPI bus. The on-chip memory is read out via an Octal Serial
Peripheral Interface (OSPI). Multiple ADC chips can be daisy chained to enable a single
(OSPI) interface to the host.