The National Instruments DAQCard-6533 is a Digital I/O Device with part number 777315-01, compatible with PCMCIA connection, supports LabVIEW and other development environments, and operates with 32 digital I/O lines at a


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Description

The National Instruments DAQCard-6533 Digital I/O Device, with part number 777315-01, is a high-performance digital I/O device developed by National Instruments and belonging to the NI-6533 family. It uses NI-DAQ driver software to facilitate configuration and is compatible with development environments such as LabVIEW, LabWindows, and Measurement Studio.

This device supports various operating systems including Windows 2000/XP/NT, offers real-time performance with LabVIEW, and is also compatible with Mac OS X. It allows for programming in languages such as Visual Basic, C, and C++, making it versatile for different software ecosystems.

Designed for use with PCMCIA slots, the DAQCard-6533 boasts a maximum transfer rate of 20 MHz and 80 MB/s, and features 32 digital I/O lines adhering to TTL/CMOS standards and operating at 5 V. With a 16-sample FIFO memory size, it ensures efficient data handling.

The device’s power requirements at the I/O connector are +4.65 to +5.25 VDC at 250 mA, with an overall current requirement of 500 mA, making it a robust option for digital I/O tasks.

Specification Detail
Product Name National Instruments DAQCard-6533 Digital I/O Device
Part Number 777315-01
Manufacturer National Instruments
Device Type Digital I/O Device
Family NI-6533
Driver Software NI-DAQ driver software
Supported Development Environments LabVIEW, LabWindows, Measurement Studio
Compatible Operating Systems Windows 2000/XP/NT, Real-time performance with LabVIEW, Mac OS X
Compatible Programming Languages Visual Basic, C, C++
Connection Type PCMCIA
Maximum Transfer Rate 20 MHz, 80 MB/s
Digital I/O Lines 32 (TTL/CMOS standard, 5 V)
FIFO Memory Size 16-sample
Power Requirements at I/O Connector +4.65 to +5.25 VDC at 250 mA
Current Requirement 500 mA

Q1: What is the maximum transfer rate and memory size of the National Instruments DAQCard-6533 Digital I/O Device, and what are its power requirements at the I/O connector?
A1: The National Instruments DAQCard-6533 Digital I/O Device supports Windows 2000/XP/NT and Mac OS X operating systems, and it can be programmed using Visual Basic, C, and C++ programming languages.

Q2: What are the features and compatibility of the National Instruments DAQCard-6533 Digital I/O Device, and what are its power requirements for efficient operation?
A2: The National Instruments DAQCard-6533 Digital I/O Device, part number 777315-01, features 32 digital I/O lines with TTL/CMOS standards and a maximum transfer rate of 20 MHz and 80 MB/s, along with compatibility with NI-DAQ driver software, development environments like LabVIEW, LabWindows, and Measurement Studio, and programming languages such as Visual Basic, C, and C++. It operates efficiently on a power supply of +4.65 to +

Q3: What are the data transfer capabilities and power requirements of the National Instruments DAQCard-6533 Digital I/O Device?
A3: The National Instruments DAQCard-6533 Digital I/O Device has a maximum transfer rate of 20 MHz and a 16-sample FIFO memory size, with power requirements at the I/O connector being +4.65 to +5.25 VDC at 250 mA.

Q4: What operating systems are supported by the National Instruments DAQCard-6533 Digital I/O Device, and which programming languages can be used to program it?
A4: The National Instruments DAQCard-6533 Digital I/O Device supports Windows 2000/XP/NT and Mac OS X operating systems, and its power requirements at the I/O connector are +4.65 to +5.25 VDC at 250 mA.

Q5: What operating systems are supported by the National Instruments DAQCard-6533 Digital I/O Device, and what are its power requirements at the I/O connector?
A5: The National Instruments DAQCard-6533 Digital I/O Device offers a maximum data transfer rate of 20 MHz and 80 MB/s, and requires a power supply of +4.65 to +5.25 VDC at 250 mA for the I/O connector, with a total current consumption of 500 mA.