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IC SN65LBC174A16DWR Texas Instruments 16SOIC
- Product No.:2022218161951
SLLS446C − OCTOBER 2000
− REVISED MAY 2003
1
POST OFFICE BOX 655303
•
DALLAS, TEXAS 75265
D
Designed for TIA/EIA-485, TIA/EIA-422 and
ISO 8482 Applications
D
Signaling Rates
†
up to 30 Mbps
D
Propagation Delay Times < 11 ns
D
Low Standby Power Consumption
1.5 mA Max
D
Output ESD Protection Exceeds 13 kV
D
Driver Positive- and Negative-Current
Limiting
D
Power-Up and Power-Down Glitch-Free for
Line Insertion Applications
D
Thermal Shutdown Protection
D
Industry Standard Pin-Out, Compatible
With SN75174, MC3487, DS96174, LTC487,
and MAX3042
description
The SN65LBC174A and SN75LBC174A are quadruple differential line drivers with 3-state outputs, designed
for TIA/EIA-485 (RS-485), TIA/EIA-422 (RS-422), and ISO 8482 applications.
These devices are optimized for balanced multipoint bus transmission at signalling rates up to 30 million bits
per second. The transmission media may be printed-circuit board traces, backplanes, or cables. The ultimate
rate
and distance of data transfer is dependent upon the attenuation characteristics of the media and the noise
SLLS446C − OCTOBER 2000
− REVISED MAY 2003
1
POST OFFICE BOX 655303
•
DALLAS, TEXAS 75265
D
Designed for TIA/EIA-485, TIA/EIA-422 and
ISO 8482 Applications
D
Signaling Rates
†
up to 30 Mbps
D
Propagation Delay Times < 11 ns
D
Low Standby Power Consumption
1.5 mA Max
D
Output ESD Protection Exceeds 13 kV
D
Driver Positive- and Negative-Current
Limiting
D
Power-Up and Power-Down Glitch-Free for
Line Insertion Applications
D
Thermal Shutdown Protection
D
Industry Standard Pin-Out, Compatible
With SN75174, MC3487, DS96174, LTC487,
and MAX3042
description
The SN65LBC174A and SN75LBC174A are quadruple differential line drivers with 3-state outputs, designed
for TIA/EIA-485 (RS-485), TIA/EIA-422 (RS-422), and ISO 8482 applications.
These devices are optimized for balanced multipoint bus transmission at signalling rates up to 30 million bits
per second. The transmission media may be printed-circuit board traces, backplanes, or cables. The ultimate
rate
and distance of data transfer is dependent upon the attenuation characteristics of the media and the noise
SLLS446C − OCTOBER 2000
− REVISED MAY 2003
1
POST OFFICE BOX 655303
•
DALLAS, TEXAS 75265
D
Designed for TIA/EIA-485, TIA/EIA-422 and
ISO 8482 Applications
D
Signaling Rates
†
up to 30 Mbps
D
Propagation Delay Times < 11 ns
D
Low Standby Power Consumption
1.5 mA Max
D
Output ESD Protection Exceeds 13 kV
D
Driver Positive- and Negative-Current
Limiting
D
Power-Up and Power-Down Glitch-Free for
Line Insertion Applications
D
Thermal Shutdown Protection
D
Industry Standard Pin-Out, Compatible
With SN75174, MC3487, DS96174, LTC487,
and MAX3042
description
The SN65LBC174A and SN75LBC174A are quadruple differential line drivers with 3-state outputs, designed
for TIA/EIA-485 (RS-485), TIA/EIA-422 (RS-422), and ISO 8482 applications.
These devices are optimized for balanced multipoint bus transmission at signalling rates up to 30 million bits
per second. The transmission media may be printed-circuit board traces, backplanes, or cables. The ultimate
rate
and distance of data transfer is dependent upon the attenuation characteristics of the media and the noise
coupling to the environmentISO 8482 Applications
D
Signaling Rates
†
up to 30 Mbps
D
Propagation Delay Times < 11 ns
D
Low Standby Power Consumption
1.5 mA Max
D
Output ESD Protection Exceeds 13 kV
D
Driver Positive- and Negative-Current
Limiting
D
Power-Up and Power-Down Glitch-Free for
Line Insertion Applications
D
Thermal Shutdown Protection
D
Industry Standard Pin-Out, Compatible
With SN75174, MC3487, DS96174, LTC487,
and MAX3042
description
The SN65LBC174A and SN75LBC174A are quadruple differential line drivers with 3-state outputs, designed
for TIA/EIA-485 (RS-485), TIA/EIA-422 (RS-422), and ISO 8482 applications.
These devices are optimized for balanced multipoint bus transmission at signalling rates up to 30 million bits
per second. The transmission media may be printed-circuit board traces, backplanes, or cables. The ultimate
rate
and distance of data transfer is dependent upon the attenuation characteristics of the media and the noise
coupling to the environment
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