Description
The product with the Part Number 784145-01
falls under the Category of PXI R Series
. Specifically, this model is the PXIe-7856R
, which is engineered with a FPGA of the Kintex-7 160T
type. This model is well-equipped with Analog Inputs and Analog Outputs, each numbering 8
, providing a balanced interface for various analog signals.
In addition to analog capabilities, this device boasts Digital I/Os totaling 48
, facilitating extensive digital connectivity and interactions. The Sampling Rate is set at 1 MS/s
, ensuring timely data acquisition and processing. Connectivity is further enhanced by I/O Connectors, which include Two 68-pin VHDCI
connectors, allowing for robust and reliable physical connections.
Each channel is further refined with DAC per Channel, stating Yes, Dedicated
, indicating individualized digital-to-analog conversion capabilities for enhanced precision. The Digital I/O Connector Logic supports 2 LVTTL, LVCMOS (Default 3.3 V)
, providing versatile digital logic level compatibility. The Maximum Frequency varies with the connectors, where Connector 0
operates at 10 MHz
, and Connector 1
at 80 MHz
, allowing for a range of frequency-based applications.
For analog input processing, this model supports multiple Analog Input Modes, listed as DIFF, NRSE, RSE
, offering flexibility in signal measurements. The Resolution of this device is 16 bits
, ensuring high-fidelity signal representation. The Conversion Time is impressively quick at 1 µs
, facilitating rapid data handling. Lastly, the Coupling method is DC
, suitable
Specification | Detail |
---|---|
Part Number | 784145-01 |
Category | PXI R Series |
Model | PXIe-7856R |
FPGA | Kintex-7 160T |
Analog Inputs | 8 |
Analog Outputs | 8 |
Digital I/Os | 48 |
Sampling Rate | 1 MS/s |
I/O Connectors | Two 68-pin VHDCI |
DAC per Channel | Yes, Dedicated |
Digital I/O Connector Logic | 2 LVTTL, LVCMOS (Default 3.3 V) |
Maximum Frequency | Connector 0: 10 MHz, Connector 1: 80 MHz |
Analog Input Modes | DIFF, NRSE, RSE |
Resolution | 16 bits |
Conversion Time | 1 µs |
Coupling | DC |