GPIB-1014DP

National Instruments

GPIB-1014DP

National Instruments

GPIB-1014DP Image 1

Description

The GPIB-1014DP is a model of data acquisition system manufactured by National Instruments. It is a versatile and reliable device designed for transferring and acquiring data in a wide range of applications. One of the important specifications of the GPIB-1014DP is its part number, which is 776093-01. This unique identifier allows easy identification and compatibility verification for users. In terms of data transfer rate, the GPIB-1014DP offers a high-speed capability. It can achieve a transfer rate of up to 80 kbytes/s, making it suitable for applications that require fast and efficient data communication. A crucial aspect of any electronic device is its power supply. The GPIB-1014DP operates on a 5 VDC power supply. This voltage is commonly available and can be easily sourced, ensuring a convenient power setup for users. Furthermore, the GPIB-1014DP has a specified current requirement. Under typical operating conditions, it consumes 1.1 A of current. However, the device can handle a maximum current of 2.0 A. This information is valuable for users, as it allows them to plan and allocate appropriate power resources for the device. Overall, the GPIB-1014DP from National Instruments is a reliable and efficient data acquisition system. With its high transfer rate, compatible power supply, and manageable current requirement, it proves to be a versatile solution for various data acquisition needs.

The GPIB-1014DP is a model of data acquisition system manufactured by National Instruments. It is a versatile and reliable device designed for transferring and acquiring data in a wide range of applications. One of the important specifications of the GPIB-1014DP is its part number, which is 776093-01. This unique identifier allows easy identification and compatibility verification for users. In terms of data transfer rate, the GPIB-1014DP offers a high-speed capability. It can achieve a transfer rate of up to 80 kbytes/s, making it suitable for applications that require fast and efficient data communication. A crucial aspect of any electronic device is its power supply. The GPIB-1014DP operates on a 5 VDC power supply. This voltage is commonly available and can be easily sourced, ensuring a convenient power setup for users. Furthermore, the GPIB-1014DP has a specified current requirement. Under typical operating conditions, it consumes 1.1 A of current. However, the device can handle a maximum current of 2.0 A. This information is valuable for users, as it allows them to plan and allocate appropriate power resources for the device. Overall, the GPIB-1014DP from National Instruments is a reliable and efficient data acquisition system. With its high transfer rate, compatible power supply, and manageable current requirement, it proves to be a versatile solution for various data acquisition needs.

Made By National Instruments
Model Number GPIB-1014DP
Part Number 776093-01
Transfer Rate 80 kbytes/s
Power Supply 5 VDC
Current Requirement 1.1 A typical to 2.0 A maximum

Distribution Cache Shipping Info and Options

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Question:

What is the model number of the data acquisition system manufactured by National Instruments described in the text?

Answer:

The model number of the data acquisition system is GPIB-1014DP.

Question:

What is the unique identifier or part number for the GPIB-1014DP?

Answer:

The part number for GPIB-1014DP is 776093-01.

Question:

What is the maximum data transfer rate of the GPIB-1014DP?

Answer:

The GPIB-1014DP can achieve a maximum data transfer rate of up to 80 kbytes/s.

Question:

What power supply does the GPIB-1014DP operate on and what current does it consume?

Answer:

The GPIB-1014DP operates on a 5 VDC power supply. It typically consumes 1.1 A of current and can handle a maximum current of 2.0 A.

Question:

What does the GPIB-1014DP offer in terms of data acquisition?

Answer:

The GPIB-1014DP offers a reliable and efficient data acquisition system with high transfer rate, compatible power supply, and manageable current requirement.