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The 1797-TB3S terminal base from Allen Bradley’s Flex I/O 1797 series features a comprehensive terminal setup. It utilizes spring clamp technology With 52 terminals organized into two rows of 18 and one row of 16.
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| Manufacturer | Allen Bradley |
|---|---|
| Category | PLCs |
| Product Line | Flex I/O 1797 |
| Part Number | 1797-TB3S |
| Weight | 3.00 lbs (1.36 kg) |
| Product | Terminal Base |
| Number of Terminals | 52 Terminals |
| Terminal Rows | 2 Rows of 18, 1 Row of 16 |
| Terminal Type | Spring Clamp |
| Compatibility | FLEX Ex I/O Systems |
| Isolation Voltage | Channel-to-Channel (Determined by Installed Module) |
| Operational Temperature | -4 to 158 degrees Fahrenheit |
| Storage Temperature | -40 to 185 degrees Fahrenheit |
| Relative Humidity (Non-Condensing) | 5 to 95% |
| Tested Operating Shock | 15 g |
The 1797-TB3S terminal base is a critical component in the Allen Bradley Flex I/O 1797 series, intended for efficient connectivity and operational reliability. This product supports 52 terminals distributed across two rows of 18 terminals and one row of 16 terminals. It employs spring clamp technology to ensure secure and reliable connections.
Designed for compatibility with FLEX Ex I/O systems, the 1797-TB3S facilitates integration within various automation environments. The isolation voltage for channel connections is determined by the module that is installed, allowing for flexibility based on application needs. The unit’s construction is optimized for a wide operational temperature range, functioning effectively from -4 to 158 degrees Fahrenheit. For storage, it remains effective at temperatures from -40 to 185 degrees Fahrenheit.
This terminal base is built for durability, demonstrated by its capability to operate in relative humidity conditions between 5% and 95% without condensation issues. Additionally, the unit has been tested to withstand operational shocks up to 15 g, ensuring dependable performance even in dynamic settings. The approximate weight of the 1797-TB3S terminal base is 200 grams, making it a manageable component within industrial applications.