The NI SHB12x-6RJ50 is a shielded InfiniBand 12x Cable with a 73-pin connector compatible with PXIe-4480 and PXIe-4481 modules, featuring six RJ50


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Description

The SHB12x-6RJ50 InfiniBand 12x Cable is a specialized interconnect solution, identified by its part number SHB12x-6RJ50, optimized for use with the PXIe-4480 and PXIe-4481 analog data acquisition modules. Featuring a robust 73-pin InfiniBand connector, this cable ensures a secure and reliable connection to the compatible DAQ modules. It is equipped with six RJ50 connectors, each housing 10 pins, to facilitate a variety of signal configurations.

Particularly noteworthy is the pin assignment on the RJ50 connectors; the second and third pins are dedicated to transmitting positive and negative analog input signals, respectively, while the remaining pins can carry excitation ground (EX GND) and positive excitation (EX+) signals, enhancing the cable’s versatility. Furthermore, the SHB12x-6RJ50 cable is shielded, offering added protection against electrical noise and interference commonly found in industrial settings, thereby preserving signal integrity and ensuring accurate data transmission.

Specification Detail
Part Number SHB12x-6RJ50
Product Type InfiniBand 12x Cable
Compatible Modules PXIe-4480, PXIe-4481
InfiniBand Connector 73-pin
RJ50 Connectors 6 connectors, 10 pins each
RJ50 Pin Usage Positive analog and negative analog input signals on the second and third pin; EX GND and EX+ signals on other pins
Cable Shielding Yes, designed for noisy environments

Q1: What is the role of the second and third pins on the RJ50 connectors of the SHB12x-6RJ50 InfiniBand 12x Cable?
A1: The second and third pins on the RJ50 connectors of the SHB12x-6RJ50 InfiniBand 12x Cable are dedicated to transmitting positive and negative analog input signals, respectively.

Q2: What unique features of the SHB12x-6RJ50 InfiniBand 12x Cable make it suitable for use with the PXIe-4480 and PXIe-4481 analog data acquisition modules?
A2: The second and third pins on the RJ50 connectors of the SHB12x-6RJ50 InfiniBand 12x Cable are dedicated to transmitting positive and negative analog input signals, respectively, and its shielding enhances performance in industrial environments by providing added protection against electrical noise and interference, thereby maintaining signal integrity and ensuring accurate data transmission.

Q3: What are the specific functionalities of the second and third pins on the RJ50 connectors of the SHB12x-6RJ50 InfiniBand 12x Cable, and how does the cable’s shielding contribute to its performance in industrial environments?
A3: The second and third pins on the RJ50 connectors of the SHB12x-6RJ50 InfiniBand 12x Cable are dedicated to transmitting positive and negative analog input signals, respectively, and the cable’s shielding provides added protection against electrical noise and interference prevalent in industrial environments, thus preserving signal integrity and ensuring accurate data transmission.

Q4: What is the function of the second and third pins on the RJ50 connectors of the SHB12x-6RJ50 InfiniBand 12x Cable, and how does the cable’s shielding contribute to its performance in industrial settings?
A4: The second and third pins on the RJ50 connectors of the SHB12x-6RJ50 InfiniBand 12x Cable are specifically designated for transmitting positive and negative analog input signals, respectively, and the cable’s shielding enhances its performance in industrial environments by offering protection against electrical noise and interference, thus preserving signal integrity and ensuring accurate data transmission.

Q5: What are the specific functions of the second and third pins on the RJ50 connectors of the SHB12x-6RJ50 InfiniBand 12x Cable, and how does its shielding enhance performance in industrial environments?
A5: The SHB12x-6RJ50 InfiniBand 12x Cable is uniquely suitable for use with the PXIe-4480 and PXIe-4481 analog data acquisition modules due to its robust 73-pin InfiniBand connector, six RJ50 connectors for various signal configurations, dedicated pin assignments for positive and negative analog input signals, as well as excitation ground and positive excitation signals, and its shielding that protects against electrical noise and interference, ensuring accurate