Welcome to the Industrial Automation website!

NameDescriptionContent
XING-Automation
E-mail  
Password  
  
Forgot password?
  Register
当前位置:
  • GE IS230TBAI1CH02 Analog Input Terminal Board
    ❤ Add to collection
  • GE IS230TBAI1CH02 Analog Input Terminal Board

    110V-380V
    5W-130W
    1A-30A
    1 year
    30
    United States, France, Japan, Viet Nam, Australia, Russia, Germany, Italy, Arabia

    GE IS230TBAI1CH02 Analog Input Terminal Board

    • ¥21722.00
      ¥20757.00
    • Satisfaction:

      Sales: 0

      Review: 0

    Weight:3.460KG
    • Quantity:
    • (Inventory: 78)
Description

GE IS230TBAI1CH02 Analog Input Terminal Board


GE IS230TBAI1CH02 Analog Input Terminal Board

Part Number IS230TBAI1CH02 Manufacturer General Electric Country of Manufacture As Per GE Manufacturing Policy Series Mark VI/VIe Function Module Availability In StockIS230TBAI1CH02 is an analog input terminal board developed by GE. It is a part of Mark VIe control system. The Analog Input terminal board (TBAI) is a versatile component designed to facilitate analog input and output functionalities within the system. 

Its compatibility with both simplex and TMR configurations further enhances system resilience and redundancy, ensuring continuous operation and performance optimization. Analog Inputs Quantity: TBAI supports up to 10 analog inputs, accommodating various transmitter types including two-wire, three-wire, four-wire, or externally powered transmitters. Flexibility: These inputs offer flexibility in accommodating different transmitter configurations, ensuring compatibility with diverse sensor setups. Analog Outputs Quantity: TBAI features two analog outputs, configurable for either 0-20 mA or 0-200 mA current output ranges. 

Customizable: Users have the flexibility to configure the output range according to specific system requirements, enhancing adaptability and versatility. Noise Suppression Circuitry Protection: Both inputs and outputs are equipped with noise suppression circuitry, safeguarding against surge and high-frequency noise. This feature ensures reliable and accurate signal transmission, even in challenging operating environments. Connectivity Options Connectors: TBAI provides three DC-37 pin connectors for connection to the I/O processors, offering flexibility in system configuration. 

Simplex or TMR Configuration: Connections can be simplex, utilizing a single connector (JR1), or Triple Modular Redundant (TMR), utilizing all three connectors. Cabling Options: Connections may be established through cables or directly to the electronics, providing flexibility in installation and setup. TMR Operation Signal Distribution: In TMR applications, input signals are distributed to the three connectors corresponding to the R, S, and T controls, ensuring redundancy and fault tolerance. Output Operation: TMR outputs function by combining the current of the three connected output drivers, with the total current measured using a shunt on the TBAI. Regulation: The TBAI regulates the total current signal presented to the electronics, ensuring precise control and regulation to the commanded setpoint. Configuration Jumpers J1A through J8A: These jumpers determine whether the input is configured for current input or voltage input. The specific configuration is selected based on the desired input type./li> Jumpers J1B through J8B: These jumpers dictate whether the return is connected to common or left open, providing flexibility in grounding configurations. Jumpers J9A and J10A: These jumpers offer a choice between 1 mA or 20 mA input current, allowing users to customize the input current according to specific requirements. Jumpers J9B and J10B: Similar to J1B through J8B, these jumpers determine whether the return is connected to common or left open, providing additional flexibility in grounding configurations for specific input currents. Jumper J0: Jumper J0 is responsible for setting output 1 to either 20 mA or 200 mA, enabling users to configure the output current based on their application needs. 

Additional Configuration: Beyond jumper settings, all other configurations, particularly those related to VAIC (Voltage Analog Input Card) or PAIC (Programmable Analog Input Card), are performed using specialized tools available in the toolbox. These tools provide comprehensive options for fine-tuning and customizing the terminal board's operation to suit specific application requirements. Features Number of Channels: Each terminal board supports 12 channels, comprising 10 Analog Inputs (AI) and 2 Analog Outputs (AO), offering extensive connectivity options. Input Span for Transmitters: Transmitters are compatible with input spans ranging from 1-5 V DC, translating to a 4-20 mA current input, ensuring versatility in signal processing and interpretation. Outputs: The terminal board delivers 24 V outputs with a current capacity of 21 mA per connection, ensuring sufficient power for connected devices. Maximum Lead Resistance: A maximum lead resistance of 15 ohms ensures reliable signal transmission over distances of up to 300 meters (984 feet), catering to installations across large industrial environments. 

Fault Detection: The terminal board features built-in fault detection mechanisms to monitor total output current, enhancing system reliability and performance. Hardware Compatibility: Hardware compatibility is ensured through the monitoring of connector ID chips, mitigating the risk of compatibility issues and ensuring seamless integration within the system architecture.

Features 

 Single-Slot Module 

 SNP/SNP-X Protocol (master, slave) 

 CCM Protocol (master, slave, peer) 

 RTU Modbus Protocol (slave only) 

 Supports connection to MS-DOS or Windows

 programming and configuration software package (monitor only) 

 12 Mhz, 80C186 Microprocessor 

 Two RS-422/RS-485 or RS-232 Serial Ports 

 CCM, RTU and SNP/SNP-X Available on Either or Both Ports 

 Simultaneous Communications on Both Ports (up to 9.6 Kbps, or 19.2 Kbps individually) 

 High Performance Access to PLC Memory 

 Three Status LEDs 

 Reset pushbutton 

 Soft Switch Configuration (no switches or jumpers) 

 No Battery Required

  • 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