
5962-9076503QFA
ActiveQUADRUPLE LOW-POWER DIFFERENTIAL LINE DRIVER
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5962-9076503QFA
ActiveQUADRUPLE LOW-POWER DIFFERENTIAL LINE DRIVER
Deep-Dive with AI
Technical Specifications
Parameters and characteristics for this part
| Specification | 5962-9076503QFA |
|---|---|
| null | |
Pricing
Prices provided here are for design reference only. For realtime values and availability, please visit the distributors directly
| Distributor | Package | Quantity | $ | |
|---|---|---|---|---|
| Digikey | Bulk | 5 | $ 63.24 | |
| Texas Instruments | TUBE | 1 | $ 77.03 | |
| 100 | $ 68.47 | |||
| 250 | $ 56.29 | |||
| 1000 | $ 50.35 | |||
Description
General part information
SN55LBC172 Series
The SN55LBC172 is a monolithic quadruple differential line driver with 3-state outputs. This device is designed to meet the requirements of the Electronics Industry Association (EIA) standard RS-485. The SN55LBC172 is optimized for balanced multipoint bus transmission at data rates up to and exceeding 10 million bits per second. The driver features wide positive and negative common-mode output voltage ranges, current limiting, and thermal-shutdown circuitry, making it suitable for party-line applications in noisy environments. The device is designed using the LinBiCMOS™ process, facilitating ultralow power consumption and inherent robustness.
The SN55LBC172 provides positive- and negative-current limiting and thermal shutdown for protection from line fault conditions on the transmission bus line. This device offers optimum performance when used with the SN55LBC173M quadruple line receiver.
The SN55LBC172 is a monolithic quadruple differential line driver with 3-state outputs. This device is designed to meet the requirements of the Electronics Industry Association (EIA) standard RS-485. The SN55LBC172 is optimized for balanced multipoint bus transmission at data rates up to and exceeding 10 million bits per second. The driver features wide positive and negative common-mode output voltage ranges, current limiting, and thermal-shutdown circuitry, making it suitable for party-line applications in noisy environments. The device is designed using the LinBiCMOS™ process, facilitating ultralow power consumption and inherent robustness.
Documents
Technical documentation and resources