TXQB1120 GE Molded Case Circuit Breaker
Product Description
P/N: TXQB1120 Description / Specifications
Description The General Electric TXQB1120 is a molded case circuit breaker from the TXQB series, designed for reliable electrical protection. This single-pole (1P), single-phase (1PH) breaker operates at 120V and has a current rating of 20A. It features an impressive interrupting capacity of 65kA at 120V. With UL listing, it ensures compliance with safety standards. Technical Specifications Brand General Electric Category Circuit Breaker Part Number TXQB1120 Subcategory Load Center Circuit Breaker Family Q-Line Type TXQB Voltage 120 Amperage 20 AIC Rating 65kA@120V Functions LI - Long-Time and Instantaneous Poles 1 Phase 1 Protection Thermal Magnetic Connection Bolt-On Information About TXQB1120 The TXQB1120 from General Electric is a robust molded case circuit breaker, part of the Q-Line family, specifically the TXQB type. This circuit breaker is designed for single-phase (1PH) applications and operates at a voltage of 120V with an amperage rating of 20A. It provides superior protection with an impressive interrupting capacity (AIC) rating of 65kA at 120V, making it suitable for high fault current scenarios. The TXQB1120 features thermal magnetic protection with LI functions, offering Long-Time and Instantaneous trip capabilities to safeguard against overloads and short circuits effectively. It is constructed as a single-pole (1P) unit, ensuring simplicity and reliability in its design. The connection style is bolt-on, which facilitates a secure and straightforward installation process. This circuit breaker combines high performance with ease of use, making it an excellent choice for various electrical protection needs in residential, commercial, and industrial settings.
These are the overall steps to configuring a FIP system: 90±30 FOLDER
The Network Configuration Tool predefines the macrocycle, the timeslots, and the set of TVAs associated with each I/O module in each I/O rack. For most applications, these predefined exchanges should not be altered.
2. Use the Network Configuration Tool to configure the FIP network by creating network segments and identifying devices.
3. With the Network Configuration Tool, create an association to each GE Fanuc PLC, FIP Remote I/O Scanner, and FIP Bus Interface Unit.
4. With the Network Configuration Tool, create an association in the Hardware Configuration Tool to configure the devices on the network, such as remote I/O racks and other devices that will be exchanging data with the Series 90-70 PLC.
5. With the Network Configuration Tool, edit the MPS exchanges of the devices on the network. This includes assigning producers and consumers for variables, defining application variables and COMVs, and optionally, selecting time slots.
6. Using the Network Configuration Tool, build the binary configuration files.
7. With the Hardware Configuration Tool, configure the PLC CPU and Bus Controller. Assign the TVAs and COMVs that are produced/consumed by the FIP Bus Controller to memory in the PLC CPU. Also, assign each a CPU scan set. 8. Store the resulting IOCFG and CPUCFG files to the PLC using the Hardware Configuration Tool. The FIP Bus Controller Configuration File(s), Remote I/O Nest File(s), Scan Set File, Name Resolution File, and other relevant files can also be stored
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