National Instruments cDAQ-9188XT Ethernet Chassis Driver
This manual contains information about using the National Instruments CompactDAQ Extended Temperature rugged eight-slot Ethernet chassis (cDAQXT). NI CompactDAQ (cDAQ) ethernet and wireless chassis deliver the expandability and cDAQ, cDAQXT, cDAQ or cDAQ August 15, - National Instruments announced the NI cDAQXT, an 8-slot NI CompactDAQ Ethernet chassis designed for distributed.
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National Instruments cDAQ-9188XT Ethernet Chassis Driver
Developed in and launched inPXI was introduced as an open industry standard to meet the increasing demands of complex instrumentation systems. PXI is both a high-performance and low-cost deployment platform for applications such as manufacturing test, military and aerospace, machine monitoring, automotive, and industrial test.
Embedded controllers bring the processor physically into the PXI chassis, creating a complete system. These controllers run both standard Windows, Linux and real-time operating systems and feature integrated peripherals like ethernet, USB and serial ports. The links are high-throughput and software-transparent. PC control of PXI enables use the latest desktops, servers, and National Instruments cDAQ-9188XT Ethernet Chassis for applications that require the highest-performance processor, high-speed or long-duration streaming to disk, etc.
National Instruments announces cDAQXT Ethernet chassis
Fiber-optic cabling options are available for long distances up to m and electric isolation. Rack-mount controllers are a high-performance computing option in a convenient 1U form factor.
Additionally, these controllers support RAID configurations, for applications demanding high speed data streaming to disk. Chassis, ranging in size from 4-slots to slots, are available for all different types of applications — portable, benchtop, and rack mount.
Chassis are available with all 3U slots, all 6U slots, or a combination of 3U and 6U slots, and chassis are also available with special features such as DC power supplies and integrated signal conditioning. These timing and triggering buses enable users to develop systems for applications requiring precise synchronization.
NI CompactDAQ 8-Slot Ethernet Chassis
National Instruments cDAQ-9188XT Ethernet Chassis Express also adds a MHz differential clock and differential star triggers to the backplane to offer increased noise immunity and industry-leading synchronization accuracy ps and ps of module-to-module skew, respectively. NI timing and synchronization modules are designed to take advantage of the advanced timing and triggering technology featured in its PXI and PXI Express chassis. The graphical language is named "G" not to be confused with G-code.
It is similar to a function or subroutine in other programming languages. The term Virtual Instrument is a play off of the fact that LabVIEW applications are designed for writing software that simulates the functionality of instruments National Instruments cDAQ-9188XT Ethernet Chassis rather than being a physical instrument on a laboratory bench, they are virtual and exist in software.
The glue that ties everything together, is NI LabVIEW software that enables the user to define or program NI hardware to do acquire, analyze, and present the data they are measuring. LabVIEW is constantly progressing.
C Series Modules Choose from more than 60 NI C Series modules for different measurements including thermocouple, voltage, resistance temperature detector, current, resistance, strain, digital TTL and otheraccelerometer, and microphone. Channel counts on the individual modules range from three to 32 channels to accommodate a wide range of system requirements.
C Series modules combine signal conditioning, connectivity, and data acquisition into a small module for each specific measurement type, which reduces system complexity and increases measurement accuracy. National Instruments cDAQ-9188XT Ethernet Chassis
Troubleshooting Network cDAQ Connectivity Issues - National Instruments
Insert these modules into any C Series chassis to create National Instruments cDAQ-9188XT Ethernet Chassis system that meets your specific application needs. Finally, you can create a mix of channel counts and measurement types within one system by selecting the desired modules and installing them into one of several C Series systems.
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Choose from more than 60 NI C Series measurement modules. Integrated Processor and Storage NI CompactDAQ controllers further the integration of your data acquisition system by combining the processor and data storage with the data acquisition and signal conditioning in a small, rugged form factor.
NI has partnered with Intel to bring the latest industrial processors, such as the dual-core Atom, i7, and Celeron chips, to the data acquisition market. Mechanical Design Instrumentation placement and installation are important parts of a test setup. You can minimize surrounding electrical noise National Instruments cDAQ-9188XT Ethernet Chassis placing instrumentation close to the test subject because the digital signals used by USB, Ethernet, NI National Instruments cDAQ-9188XT Ethernet Chassis can measure many channels in a small, rugged package so that you can place it close to the unit under test.
NI CompactDAQ systems have the advantage of flexibility when it comes to timing engines and go beyond standard synchronization. This makes it possible for programmers to divide all of their analog inputs in up to three different groups known as tasks.
CDAQ and cDAQXT Front Panel - CompactDAQ Chassis Manual - National Instruments
Each task can run at a separate rate, as seen in Figure 3. This is ideal when combining temperature measurements, which are often slow, with higher-speed measurements such as sound and vibration.
The three tasks operate independently, can be addressed from separate loops or threads in a program, and can be started simultaneously. All channels within a single task are automatically synchronized.
National Instruments cDAQ-9188XT CompactDAQ rugged 8-slot ethernet chassis
In the event a multiplexed module is combined in a task with a simultaneous sampling module, the first channel in the multiplexed module is synchronized and the subsequent channels in the multiplexed module scan through in succession. All channels within a single task, simultaneous and multiplexed, are returned at the requested sample rate.
All modules can be placed in a single task if desired. This synchronizes all channels to the same clock.