Description
The NI PCI-6122 Multifunction I/O Device, with part number 779407-01, is a sophisticated piece of equipment crafted by National Instruments. It features an instantaneous-sampling type which is highly efficient for a range of applications. Each of its four analog input channels is capable of a sample rate of 500 kS/s, ensuring quick data acquisition.
Additionally, it is equipped with eight hardware-timed digital I/O lines, enhancing its versatility for various digital operations. The input voltage range of this device can handle from 1.25 V to 10 V with a 16-bit resolution, offering precise measurement capabilities. It also includes two 24-bit counters for comprehensive counting tasks.
The built-in memory of this device is substantial, with 16 MS available, which allows for extensive data storage and retrieval. Its physical dimensions are 12.3 × 4.2 inches without the connectors, making it a compact yet powerful tool for various industrial settings. For connectivity, it uses SCSI-II type 68-pin male I/O connectors, ensuring reliable and secure connections for all I/O operations.
Feature | Specification |
---|---|
Manufacturer | National Instruments |
Part Number | 779407-01 |
Product Name | NI PCI-6122 Multifunction I/O Device |
Sampling Type | Instantaneous-sampling |
Analog Input Channels | 4 |
Sample Rate | 500 kS/s per channel |
Digital I/O Lines | 8 hardware-timed |
Input Voltage Range | 1.25 V to 10 V |
Resolution | 16 bit |
Counters | Two 24 bit counters |
Memory | 16 MS built-in |
Dimensions | 12.3 × 4.2 inches (without connectors) |
Connectors | SCSI-II type 68-pin male I/O connectors |
Question 1: What are the specifications and capabilities of the National Instruments PCI-6122 Multifunction I/O Device, including its sample rate, resolution, and memory capacity?
Answer 1: Applications that require rapid data acquisition and real-time analysis, such as signal processing, dynamic testing, and scientific research experiments, can benefit from the instantaneous-sampling feature of the NI PCI-6122 Multifunction I/O Device.
Question 2: What applications can benefit from the NI PCI-6122 Multifunction I/O Device’s instantaneous-sampling capability and high sample rate on its four analog input channels?
Answer 2: The National Instruments PCI-6122 Multifunction I/O Device, part number 779407-01, is capable of a sample rate of 500 kS/s across its four analog input channels, includes eight hardware-timed digital I/O lines, and offers a substantial memory capacity of 16 MS for data storage and retrieval.
Question 3: What types of applications would benefit most from the high-efficiency instantaneous-sampling and multi-channel sampling rate of 500 kS/s offered by the National Instruments PCI-6122 Multifunction I/O Device?
Answer 3: The National Instruments PCI-6122 Multifunction I/O Device boasts a sample rate of 500 kS/s per channel across its four analog input channels, a high-resolution of 16 bits for precise measurements, and an ample built-in memory capacity of 16 MS for extensive data storage and retrieval.
Question 4: What are the capabilities and specifications of the National Instruments PCI-6122 Multifunction I/O Device, part number 779407-01, regarding its analog input channels, digital I/O lines, and memory capacity?
Answer 4: Applications such as high-speed data acquisition, dynamic signal analysis, and precision measurement systems can benefit from the NI PCI-6122 Multifunction I/O Device’s instantaneous-sampling capability and high sample rate on its four analog input channels.
Question 5: What applications can benefit from the instantaneous-sampling feature of the NI PCI-6122 Multifunction I/O Device?
Answer 5: Applications that would benefit most from the high-efficiency instantaneous-sampling and multi-channel sampling rate of 500 kS/s offered by the National Instruments PCI-6122 Multifunction I/O Device include high-speed data acquisition systems, dynamic signal analysis, vibration analysis, ultrasonic testing, and complex scientific research experiments requiring precise and rapid measurements across multiple channels.