Features: ` Optimized for PROFIBUS Networks − Meets the Requirements of EN 50170 − Signaling Rates Up to 40 Mbps − Differential Output Exceeds 2.1 V (54 Load) − Low Bus Capacitance: 10 pF (Max)` Meets the Requirements of TIA/EIA-485-A` ESD Protection Exceeds ±10 kV HBM` Fa...
SN75HVD1176: Features: ` Optimized for PROFIBUS Networks − Meets the Requirements of EN 50170 − Signaling Rates Up to 40 Mbps − Differential Output Exceeds 2.1 V (54 Load) − Low Bus Capa...
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SN65HVD1176, SN75HVD1176 |
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| Supply voltage(2), VCC | −0.5 V to 7 V |
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| Voltage at any bus I/O terminal | −9 V to 14 V |
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| Voltage input, transient pulse, A and B, (through 100 , see Figure 14) | −40 V to 40 V |
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| Voltage input at any D, DE or RE terminal | −0.5 V to 7 V |
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| Receiver output current, IO | −10 mA to 10 mA |
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| Electrostatic discharge | Human Body Model, (HBM)(3) | All pins | 4 kV |
| Bus terminals and GND | 10 kV |
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| Junction temperature, TJ | 150°C |
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These devices SN75HVD1176 are half-duplex differential transceivers, with characteristics optimized for use in PROFIBUS (EN 50170) applications. The driver output differential voltage exceeds the Profibus requirements of 2.1 V with a 54- load. A signaling rate of up to 40 Mbps allows technology growth to high data transfer speeds. The low bus capacitance provides low signal distortion.
The SN65HVD1176 and SN75HVD1176 meet or exceed the requirements of ANSI standard TIA/EIA-485-A (RS-485) for differential data transmission across twisted-pair networks. The driver outputs and receiver inputs are tied together to form a half-duplex bus port, with one-fifth unit load, allowing up to 160 nodes on a single bus. The receiver output stays at logic high when the bus lines are shorted, left open, or when no driver is active. The driver outputs are in high impedance when the supply voltage is below 2.5 V to prevent bus disturbance during power cycling or during live insertion to the bus. An internal current limit protects the transceiver bus pins in short-circuit fault conditions by limiting the output current to a constant value. Thermal shutdown circuitry protects the device SN75HVD1176 against damage due to excessive power dissipation caused by faulty loading and drive conditions.
The SN75HVD1176 is characterized for operation at temperatures from 0°C to 70°C. The SN65HVD1176 is characterized for operation at temperatures from −40°C to 85°C.