Welcome to the Industrial Automation website!

NameDescriptionContent
XING-Automation
E-mail  
Password  
  
Forgot password?
  Register
当前位置:
  • NI PCI-6143 - S Series, High-Speed Analog Input, PCI-Based, Industrial Testing
    ❤ Add to collection
  • NI PCI-6143 - S Series, High-Speed Analog Input, PCI-Based, Industrial Testing

    110V-380V
    5W-130W
    1A-30A
    1 year
    30
    United States, France, Japan, Viet Nam, Australia, Russia, Germany, Italy, Arabia
    The NI PCI-6143 is a versatile and reliable data acquisition device designed for use in the power industry, petrochemical, and general automation applications. With a wide range of features and capabilities, this model is a valuable tool for engineers and technicians working in these industries.

    Key Features:
    1) High-resolution analog input channels: The NI PCI-6143 offers 16 single-ended or 8 differential analog input channels with 16-bit resolution, allowing for precise and accurate measurements of voltage and current signals.
    2) Simultaneous sampling: With a maximum sampling rate of 250 kS/s per channel, users can capture multiple signals simultaneously, ensuring synchronized data acquisition for complex systems.
    3) Flexible trigger options: The device supports both software and hardware trigger modes, enabling users to trigger data acquisition based on specific events or conditions in their applications.
    4) Built-in signal conditioning: The NI PCI-6143 features programmable gain amplifiers and anti-aliasing filters on each channel, simplifying signal conditioning tasks and reducing the need for external components.
    5) Compact form factor: The PCI form factor allows for easy integration into desktop computers, making it suitable for a wide range of industrial and laboratory environments.

    Typical Usage Scenarios:
    1) Power industry: The NI PCI-6143 is ideal for monitoring and controlling voltage and current signals in power generation and distribution systems, enabling engineers to optimize performance and ensure system reliability.
    2) Petrochemical: In petrochemical plants, the device can be used for process monitoring and control, as well as data logging for compliance with industry regulations.
    3) General automation: For automation applications, the NI PCI-6143 provides high-speed data acquisition capabilities for monitoring sensors, actuators, and other critical components in industrial machinery.

    Basic Advantages:
    1) High precision: The 16-bit resolution of the analog input channels ensures accurate and reliable measurements for critical industrial applications.
    2) Versatile connectivity: The device is compatible with a wide range of sensors and signal sources, making it suitable for diverse measurement tasks.
    3) Easy integration: The PCI interface simplifies installation and setup, allowing users to quickly incorporate the device into their existing systems.

    Related Models:
    1) NI PCI-6733
    2) NI PXI-6031E
    3) NI PXIe-4339
    4) NI PXI-6071E
    5) NI PXIe-6375
    6) NI PCI-6123
    7) NI PCI-6723
    8) NI PCle-6353
    9) NI PCMCIA-6062E*
    10) NI PCI-MIO-16E-1

    In conclusion, the NI PCI-6143 is a high-performance data acquisition device that offers exceptional precision, flexibility, and reliability for a variety of industrial applications. With its advanced features and compact design, this model is a valuable asset for engineers and technicians seeking to enhance their data acquisition capabilities in the power industry, petrochemical, and general automation sectors.
    • ¥9145.00
      ¥11137.00
    • Satisfaction:

      Sales: 0

      Review: 0

    Weight:40.550KG
    • Quantity:
    • (Inventory: 7)
Description
The NI PCI-6143 is a versatile and reliable data acquisition device designed for use in the power industry, petrochemical, and general automation applications. With a wide range of features and capabilities, this model is a valuable tool for engineers and technicians working in these industries.

Key Features:
1) High-resolution analog input channels: The NI PCI-6143 offers 16 single-ended or 8 differential analog input channels with 16-bit resolution, allowing for precise and accurate measurements of voltage and current signals.
2) Simultaneous sampling: With a maximum sampling rate of 250 kS/s per channel, users can capture multiple signals simultaneously, ensuring synchronized data acquisition for complex systems.
3) Flexible trigger options: The device supports both software and hardware trigger modes, enabling users to trigger data acquisition based on specific events or conditions in their applications.
4) Built-in signal conditioning: The NI PCI-6143 features programmable gain amplifiers and anti-aliasing filters on each channel, simplifying signal conditioning tasks and reducing the need for external components.
5) Compact form factor: The PCI form factor allows for easy integration into desktop computers, making it suitable for a wide range of industrial and laboratory environments.

Typical Usage Scenarios:
1) Power industry: The NI PCI-6143 is ideal for monitoring and controlling voltage and current signals in power generation and distribution systems, enabling engineers to optimize performance and ensure system reliability.
2) Petrochemical: In petrochemical plants, the device can be used for process monitoring and control, as well as data logging for compliance with industry regulations.
3) General automation: For automation applications, the NI PCI-6143 provides high-speed data acquisition capabilities for monitoring sensors, actuators, and other critical components in industrial machinery.

Basic Advantages:
1) High precision: The 16-bit resolution of the analog input channels ensures accurate and reliable measurements for critical industrial applications.
2) Versatile connectivity: The device is compatible with a wide range of sensors and signal sources, making it suitable for diverse measurement tasks.
3) Easy integration: The PCI interface simplifies installation and setup, allowing users to quickly incorporate the device into their existing systems.

Related Models:
1) NI PCI-6733
2) NI PXI-6031E
3) NI PXIe-4339
4) NI PXI-6071E
5) NI PXIe-6375
6) NI PCI-6123
7) NI PCI-6723
8) NI PCle-6353
9) NI PCMCIA-6062E*
10) NI PCI-MIO-16E-1

In conclusion, the NI PCI-6143 is a high-performance data acquisition device that offers exceptional precision, flexibility, and reliability for a variety of industrial applications. With its advanced features and compact design, this model is a valuable asset for engineers and technicians seeking to enhance their data acquisition capabilities in the power industry, petrochemical, and general automation sectors.

NI PCI-6143 - S Series, High-Speed Analog Input, PCI-Based, Industrial Testing

Brand ImageThe NI PCI-6143 is a versatile and reliable data acquisition device designed for use in the power industry, petrochemical, and general automation applications. With a wide range of features and capabilities, this model is a valuable tool for engineers and technicians working in these industries.

Key Features:
1) High-resolution analog input channels: The NI PCI-6143 offers 16 single-ended or 8 differential analog input channels with 16-bit resolution, allowing for precise and accurate measurements of voltage and current signals.
2) Simultaneous sampling: With a maximum sampling rate of 250 kS/s per channel, users can capture multiple signals simultaneously, ensuring synchronized data acquisition for complex systems.
3) Flexible trigger options: The device supports both software and hardware trigger modes, enabling users to trigger data acquisition based on specific events or conditions in their applications.
4) Built-in signal conditioning: The NI PCI-6143 features programmable gain amplifiers and anti-aliasing filters on each channel, simplifying signal conditioning tasks and reducing the need for external components.
5) Compact form factor: The PCI form factor allows for easy integration into desktop computers, making it suitable for a wide range of industrial and laboratory environments.

Typical Usage Scenarios:
1) Power industry: The NI PCI-6143 is ideal for monitoring and controlling voltage and current signals in power generation and distribution systems, enabling engineers to optimize performance and ensure system reliability.
2) Petrochemical: In petrochemical plants, the device can be used for process monitoring and control, as well as data logging for compliance with industry regulations.
3) General automation: For automation applications, the NI PCI-6143 provides high-speed data acquisition capabilities for monitoring sensors, actuators, and other critical components in industrial machinery.

Basic Advantages:
1) High precision: The 16-bit resolution of the analog input channels ensures accurate and reliable measurements for critical industrial applications.
2) Versatile connectivity: The device is compatible with a wide range of sensors and signal sources, making it suitable for diverse measurement tasks.
3) Easy integration: The PCI interface simplifies installation and setup, allowing users to quickly incorporate the device into their existing systems.

Related Models:
1) NI PCI-6733
2) NI PXI-6031E
3) NI PXIe-4339
4) NI PXI-6071E
5) NI PXIe-6375
6) NI PCI-6123
7) NI PCI-6723
8) NI PCle-6353
9) NI PCMCIA-6062E*
10) NI PCI-MIO-16E-1

In conclusion, the NI PCI-6143 is a high-performance data acquisition device that offers exceptional precision, flexibility, and reliability for a variety of industrial applications. With its advanced features and compact design, this model is a valuable asset for engineers and technicians seeking to enhance their data acquisition capabilities in the power industry, petrochemical, and general automation sectors.
Industrial Image
  • User name Member Level Quantity Specification Purchase Date
  • Satisfaction :
No evaluation information
  • Advantest R6144 Programmable DC Voltage/Current Source (Calibration Source) Calibration and Maintenance
  • Aerotech UNIDEX 100/U100i single axis motion controller
  • Aerotech Ndrive MP Ultra Compact PWM Digital Servo Driver
  • Aerotech Ndrive HPe 10/20/30 High Performance PWM Digital Servo Drive
  • Aerotech Ndrive HLe maintenance replacement
  • Aerotech Ndrive CP maintenance replacement
  • Aerotech Ndrive Linear Drive Selection
  • Aerotech NDrive HL linear drive maintenance replacement
  • Aerotech NDrive HP 10/20/30 Maintenance and Replacement
  • Aerotech NDrive CP10 Servo Drive Guide
  • SIGMATEK TAE1941 Display Unit Replacement and Troubleshooting
  • SIGMATEK TAE151 Replacement and Troubleshooting
  • SIGMATEK AKM Servo Motor Replacement and Troubleshooting Guide
  • SIGMATEK S-DIAS Control System Replacement and Upgrade Guide
  • SIGMATEK ETT Series HMI Replacement and Selection Guide
  • SIGMATEK DIAS Drive 310-23 servo amplifier
  • SIGMATEK CCP 521 C-DIAS processor module
  • Megmeet L6 electric drive troubleshooting
  • Sysmex XN-1000/2000 Technical Guide
  • Sysmex XN-L blood analyzer maintenance and troubleshooting
  • Troubleshooting and Maintenance of Sysmex XN-9000
  • LTI Motion ServoOne PROFIBUS/PROFINET Troubleshooting and Replacement
  • Micro Innovation MICRO GF1 Touch Screen Troubleshooting and Replacement
  • Troubleshooting and Replacement of Micro Innovation WINbloc Distributed I/O System
  • MICRO PANEL GS-2 Troubleshooting and Debugging
  • LTi Synchronous Motor LST/LSH Replacement Selection Guide
  • Fault diagnosis of LTi CDE/CDB3000
  • Maintenance and troubleshooting of ENOTEC SILOTEC 8000 silo analyzer
  • ENOTEC ENSITU 7000 Oxygen Analyzer
  • ENOTEC COMTEC 6000 ATEX GasEx Analyzer Maintenance, Calibration, and Troubleshooting Guide
  • ENOTEC Analyzer Family Selection Guide
  • ENOTEC OXITEC 500E Oxygen Analyzer
  • KUKA KR CS Box-2 Compact Controller for Four Axis SCARA Robot
  • KUKA KR C5 slim-2 Robot Controller
  • KUKA KR C5 micro KSS troubleshooting
  • KUKA KR C5 micro debugging and troubleshooting
  • KUKA KR C5 Controller Assembly and Troubleshooting
  • KUKA KR C5 Cabinet Assembly and Troubleshooting
  • KUKA KR C4 Smallsize-2 Debugging Guide
  • KUKA KR C4 Midsize Assembly Guide
  • ENOTEC OXITEC 5000 Oxygen Analyzer Maintenance Guide
  • KUKA KR C4 extended assembly and debugging
  • KUKA KR C4 compact assembly and debugging
  • KUKA Sunrise Cabinet Med Medical Collaborative Robot Special Control Cabinet
  • KUKA Sunrise Cabinet Next Generation Small Control Cabinet
  • KUKA KR C4 Smallsize-2 family's smallest control cabinet
  • KUKA KR C4 Midsize Fault Diagnosis
  • KUKA KR C4 extended is a high-power multi axis control cabinet
  • Troubleshooting and Maintenance of KUKA KR C4 Control Cabinet
  • Troubleshooting and Maintenance of KUKA KR C4 Compact Control Cabinet
  • KUKA KR15 DELTA-2 V2 Robot Installation and Debugging
  • KUKA TITAN-2 Ultra Assembly and Maintenance Guide
  • KUKA KR SCARA-2 CS Assembly, Debugging, and Operation Guide
  • Troubleshooting KUKA SCARA X
  • Troubleshooting of KUKA KR FORTEC-2 ultra
  • Troubleshooting of KUKA KR FORTEC-2
  • Troubleshooting KUKA KR 1000 Titan
  • Troubleshooting of KUKA KR 600 FORTEC
  • KUKA KR 500 MT FORTEC Maintenance and Inspection
  • KUKA KR 360 FORTEC Inspection and Maintenance Guide
  • Troubleshooting KUKA Sunrise Cabinet Med
  • KUKA KR SCARA HO Assembly and Maintenance
  • KUKA QUANTEC-2 PA maintenance troubleshooting
  • KUKA QUANTEC-2 K/P Maintenance Troubleshooting Guide
  • KUKA QUANTEC-2 HO Maintenance Guide
  • KUKA KR QUANTEC-2 HC Maintenance and Rescue Guide
  • KUKA KR QUANTEC-2 Maintenance Troubleshooting Guide
  • KUKA KR QUANTEC PA series heavy-duty palletizing robot
  • KUKA KR IONTEC-2 Debugging and Maintenance Guide
  • KUKA KR IONTEC ultra series six axis heavy-duty industrial robot
  • KUKA KR IONTEC HO Maintenance Troubleshooting Guide
  • KUKA KR CYBERTECH-3 HW maintenance troubleshooting
  • KUKA KR CYBERTECH-3 maintenance troubleshooting
  • KUKA KR8 R2100-2 arc HW maintenance troubleshooting
  • KUKA KR CYBERTECH nano-2 maintenance troubleshooting
  • KUKA KR 20 R1810 HO maintenance troubleshooting
  • KUKA CYBERTECH maintenance troubleshooting
  • KUKA KR CYBERTECH CR maintenance troubleshooting
  • KUKA KR AGILUS-3 ultra maintenance troubleshooting
  • KUKA KR 300 R2700-2 C-F maintenance troubleshooting
  • KUKA KR 20 R1820-2 E Maintenance Troubleshooting and Replacement Practice
  • KUKA AGILUS-3 troubleshooting
  • KUKA KR AGILUS-2 maintenance troubleshooting
  • KUKA KR 1000 titan PA troubleshooting
  • KUKA KR 700 PA maintenance troubleshooting
  • KUKA KR18 R1450-3 PP Operation and Maintenance Essentials
  • KUKA KR12 SCARA Operations Essentials
  • KUKA KR4 R600 Operation and Maintenance Essentials
  • KUKA KR 3 AGILUS Operation and Maintenance Safety Essentials
  • KUKA LBR iiwa CR Cleanroom Troubleshooting and Maintenance
  • Troubleshooting and Maintenance of KUKA KR AGILUS sixx
  • KUKA KR60 SCARA CS Maintenance Guide
  • KUKA KR 23 SCARA-2 Robot Installation and Maintenance Detailed Explanation
  • KUKA KR 20 SCARA CS Robot Selection and Maintenance Guide
  • KUKA KR 15 DELTA-2 Robot Installation and Maintenance
  • KUKA KR 13 SCARA-2 CS Detailed Explanation
  • KUKA KR 3 D1200 Robot Operation and Maintenance
  • KUKA KR 3 D1200 HM Robot Operation and Maintenance Guide
  • KUKA LBR Med Medical Robot Integration Guide
  • KUKA iiwa Robot Safety Operation and Maintenance
  • KUKA LBR iiwa CR Operations and Troubleshooting
  • Lauer PCS Series Operation Console Configuration Guide
  • Installation and Maintenance Guide for KUKA LBR iisy Series Collaborative Robots
  • KUKA LBR iisy 3 R760 Collaborative Robot Debugging Guide
  • KUKA LBR iico Robot Installation and Debugging Technical Guide
  • Lauer Starline LCA 300/320/325 Text Display Application Guide
  • Lauer PCS 950 Operation Console Application Guide
  • Lauer EPC series industrial computer configuration
  • Bonfiglioli Precision Planetary Gearbox Selection and Application Guide
  • Installation and heat dissipation of Bonfiglioli Vectron cold plate frequency converter
  • Bonfiglioli Vectron EM-RES-02 Expansion Module Installation and Configuration Guide
  • Bonfiglioli Vectron EM-RES-01 Expansion Module Rotary Transformer Interface Configuration Guide
  • Bonfiglioli Vectron EM-IO-04 module KTY temperature measurement and digital port configuration
  • Bonfiglioli Vectron EM-IO-03 Expansion Module Dual Analog Output and PTC Configuration
  • Installation of Bonfiglioli Vectron EM-IO-02 Expansion Module and PTC Temperature Monitoring Configuration
  • Bonfiglioli Vectron EM-IO-01 Expansion Module Installation and System Bus Configuration Guide
  • Bonfiglioli F series gearbox spare parts identification and replacement guide
  • Installation, maintenance, and troubleshooting of Bonfiglioli HF series reducers for hoisting applications
  • Bonfiglioli 300 series reducer installation, maintenance, and troubleshooting guide
  • Selection and integration guide for Bonfiglioli R3 series planetary gearboxes in primary crushing equipment
  • Bonfiglioli C-series ATEX gearbox selection and explosion-proof application guide
  • Bonfiglioli Vectron EM-ENC-05 Full Function Expansion Module Integration Guide
  • Bonfiglioli Vectron EM-ENC-04 Multi functional Expansion Module Complete Configuration Guide
  • Bonfiglioli Vectron EM-ENC-03 Second Encoder Interface and System Bus Expansion Guide
  • Bonfiglioli Vectron EM-ENC-02 Expansion Module Integration and Encoder Interface Guide
  • Bonfiglioli Vectron CM-CAN CANopen Communication Configuration and DS402 Control Guide
  • Bonfiglioli Vectron EM-SYS System Bus Networking and Virtual Link Configuration Guide
  • Bonfiglioli Vectron CM-PDP Profibus DP Configuration and Debugging Guide