Description
The National Instruments PXIe-7820R PXI Digital Reconfigurable I/O Module, with a part number of 783484-01, is equipped with an impressive 202,800 flip-flops and 600 DSP48 slices, indicating a robust capacity for digital signal processing tasks.
It boasts a substantial 11,700 kbits of embedded block RAM, facilitating complex data handling and storage operations, and features 128 digital I/O lines alongside 16 DMA channels, which highlights its high data throughput capabilities.
Connectivity is provided via four 68-pin female high density VHDCI I/O connectors, ensuring a wide range of interfacing options. Weighing just 0.403 lb and measuring 6.3 x 3.9 inches in size, this module is both lightweight and compact.
Designed to operate reliably within a temperature range of 0 °C to 55 °C and to be stored between -40 °C to 71 °C, it is suitable for various industrial environments. Moreover, it can withstand an operating random vibration of 0.3 grms and a non-operating random vibration of 2.4 grms, both within a frequency range of 5 to 500 Hz, underscoring its durability and robustness for demanding applications.
Specification | Detail |
---|---|
Product Name | National Instruments PXIe-7820R PXI Digital Reconfigurable I/O Module |
Part Number | 783484-01 |
Flip-flops | 202,800 |
DSP48 Slices | 600 |
Embedded Block RAM | 11,700 kbits |
Digital I/O Lines | 128 |
DMA Channels | 16 |
I/O Connectors | 4 68-pin female high density VHDCI |
Weight | 0.403 lb |
Dimensions | 6.3 x 3.9 in. |
Operating Temperature Range | 0 °C to 55 °C |
Storage Temperature Range | -40 °C to 71 °C |
Operating Random Vibration | 0.3 grms (5 to 500 Hz) |
Non-operating Random Vibration | 2.4 grms (5 to 500 Hz) |
Question 1: What are the dimensions and weight of the National Instruments PXIe-7820R PXI Digital Reconfigurable I/O Module, and within what temperature range does it operate reliably?
Answer 1: The National Instruments PXIe-7820R PXI Digital Reconfigurable I/O Module measures 6.3 x 3.9 inches, weighs 0.403 lb, and operates reliably within a temperature range of 0 °C to 55 °C.
Question 2: What digital signal processing capabilities does the National Instruments PXIe-7820R PXI Digital Reconfigurable I/O Module offer in terms of flip-flops, DSP48 slices, and embedded block RAM?
Answer 2: The National Instruments PXIe-7820R PXI Digital Reconfigurable I/O Module is a highly capable device featuring 202,800 flip-flops and 600 DSP48 slices for advanced digital signal processing, 11,700 kbits of embedded block RAM for complex data handling, and 128 digital I/O lines with 16 DMA channels for high data throughput. It is also physically compact and lightweight, with dimensions of 6.3 x 3.9 inches and a weight
Question 3: Given its specifications, such as 202,800 flip-flops and 600 DSP48 slices, how suitable is the National Instruments PXIe-7820R PXI Digital Reconfigurable I/O Module (part number 783484-01) for intensive digital signal processing tasks in various industrial environments?
Answer 3: The National Instruments PXIe-7820R PXI Digital Reconfigurable I/O Module offers digital signal processing capabilities that include 202,800 flip-flops, 600 DSP48 slices, and 11,700 kbits of embedded block RAM.
Question 4: What are the digital signal processing capabilities and interfacing options of the National Instruments PXIe-7820R PXI Digital Reconfigurable I/O Module, as denoted by its number of flip-flops, DSP48 slices, and type of connectors?
Answer 4: The National Instruments PXIe-7820R PXI Digital Reconfigurable I/O Module boasts digital signal processing capabilities with 202,800 flip-flops and 600 DSP48 slices, and offers interfacing options through four 68-pin female high-density VHDCI I/O connectors.
Question 5: What are the capabilities and physical characteristics of the National Instruments PXIe-7820R PXI Digital Reconfigurable I/O Module, and how does it ensure durability in industrial environments?
Answer 5: The National Instruments PXIe-7820R PXI Digital Reconfigurable I/O Module, with its 202,800 flip-flops and 600 DSP48 slices, is highly suitable for intensive digital signal processing tasks in various industrial environments, as these specifications indicate significant processing power and versatility, and its robust design ensures reliability in a wide range of temperatures and conditions.