Description
The NI USB-7855R Multifunction Reconfigurable I/O Device, manufactured by National Instruments, is a versatile tool for a wide range of applications, compatible with LabVIEW programming software. It features a robust Kintex-7 70T FPGA, which is equipped with 82,000 flip-flops, 41,000 LUTs, and 4,860 kbits, ensuring precise operation with a timing accuracy of ± 100 ppm. With three DMA channels and a clock rate of up to 80 MHz, the device delivers high performance.
Designed to handle complex signals, it provides 1 MHz bandwidth for small signals and 500 kHz for large signals. The device includes 16 analog channels and 48 digital I/O channels, supporting a channel sampling rate of up to 1 MS/s. It operates within an input voltage range of 9 V to 30 V, and is part of the R Series, known for its reliable and scalable I/O solutions. Moreover, the integration with a USB 2.0 bus connector ensures easy connectivity with most computer systems.
Specification | Detail |
---|---|
Product Name | NI USB-7855R Multifunction Reconfigurable I/O Device |
Manufacturer | National Instruments |
Part Numbers | 782915-02, 782915-01 |
Series | R Series |
Bus Connector | USB 2.0 |
Programming Software | LabVIEW |
FPGA | Kintex-7 70T |
FPGA Specifications | 82,000 flip-flops, 41,000 LUTs, 4,860 kbits |
Timing Accuracy | ± 100 ppm |
DMA Channels | 3 |
Clock Rate | Up to 80 MHz |
Bandwidth Characteristics | 1 MHz for small signals, 500 kHz for large signals |
Analog Channels | 16 |
Digital I/O Channels | 48 |
Sampling Rate | Up to 1 MS/s per channel |
Input Voltage Range | 9 |
Question 1: What are the capabilities and specifications of the NI USB-7855R Multifunction Reconfigurable I/O Device, and how does it integrate with LabVIEW programming software?
Answer 1: The NI USB-7855R Multifunction Reconfigurable I/O Device provides a maximum bandwidth of 1 MHz for small signal processing and includes 16 analog channels and 48 digital I/O channels.
Question 2: What are the capabilities and specifications of the NI USB-7855R Multifunction Reconfigurable I/O Device, including its compatibility with LabVIEW, FPGA details, DMA channels, bandwidth, number of channels, sampling rate, and power requirements?
Answer 2: The NI USB-7855R Multifunction Reconfigurable I/O Device is equipped with a Kintex-7 70T FPGA, offering 82,000 flip-flops, 41,000 LUTs, and 4,860 kbits for precise operations with a timing accuracy of ±100 ppm, and it supports high performance with three DMA channels and a clock rate of up to 80 MHz. It can handle 1 MHz bandwidth for small signals and 500 kHz
Question 3: What are the signal bandwidth capabilities of the NI USB-7855R Multifunction Reconfigurable I/O Device, and what types of signals can it handle?
Answer 3: The National Instruments USB-7855R Multifunction Reconfigurable I/O Device is compatible with LabVIEW programming software and boasts a Kintex-7 70T FPGA with 82,000 flip-flops, 41,000 LUTs, and 4,860 kbits, offering precise operation with a timing accuracy of ±100 ppm, three DMA channels, and a clock rate of up to 80 MHz. It also features a bandwidth of 1 MHz for small signals
Question 4: What is the maximum bandwidth provided by the NI USB-7855R Multifunction Reconfigurable I/O Device for small signal processing, and how many analog and digital channels does it include?
Answer 4: The NI USB-7855R Multifunction Reconfigurable I/O Device offers a bandwidth of 1 MHz for small signals and 500 kHz for large signals, enabling it to handle both complex small and large signal types effectively.
Question 5: What are the key features and capabilities of the National Instruments USB-7855R Multifunction Reconfigurable I/O Device, including its compatibility with LabVIEW and FPGA specifications?
Answer 5: The NI USB-7855R Multifunction Reconfigurable I/O Device is compatible with LabVIEW programming software and is powered by a Kintex-7 70T FPGA that includes 82,000 flip-flops, 41,000 LUTs, and 4,860 kbits, offering timing accuracy of ±100 ppm. It boasts three DMA channels with a maximum clock rate of 80 MHz, provides a bandwidth of 1 MHz for small signals and 500 kHz