HCPL-092J
HCPL-092J is High Speed Digital Isolators manufactured by Broadcom.
- Part of the HCPL-9000 comparator family.
- Part of the HCPL-9000 comparator family.
HCPL-9000/-0900, -9030/-0930, HCPL-9031/-0931, -900J/-090J, HCPL-901J/-091J, -902J/-092J
High Speed Digital Isolators
Data Sheet
Description
The HCPL-90xx and HCPL-09xx CMOS digital isolators feature high speed performance and excellent transient immunity specifications. The symmetric magnetic coupling barrier gives these devices a typical pulse width distortion of 2 ns, a typical propagation delay skew of 4 ns and 100 Mbaud data rate, making them the industry’s fastest digital isolators.
The single channel digital isolators (HCPL-9000/-0900) feature an active-low logic output enable. The dual channel digital isolators are configured as unidirectional (HCPL9030/-0930) and bidirectional (HCPL-9031/-0931), operating in full-duplex mode, making them ideal for digital fieldbus applications.
The quad channel digital isolators are configured as unidirectional (HCPL-900J/-090J), two channels in one direction and two channels in opposite direction (HCPL901J/-091J), and one channel in one direction and three channels in opposite direction (HCPL-902J/-092J). This high channel density makes them ideally suited to isolating data conversion devices, parallel buses, and peripheral interfaces.
They are available in 8-pin PDIP, 8-pin Gull Wing, 8-pin SOIC packages, and 16-pin SOIC narrow-body and widebody packages. They are specified over the temperature range of
- 40°C to +100°C.
Features
- +3.3V and +5V TTL/CMOS patible
- 3 ns max. pulse width distortion
- 6 ns max. propagation delay skew
- 15 ns max. propagation delay
- High speed: 100 MBd
- 15 k V/µs min. mon mode rejection
- Tri-state output (HCPL-9000/-0900)
- 2500V RMS isolation
- UL1577 and IEC 61010-1 approved
Applications
- Digital fieldbus isolation
- Multiplexed data transmission
- puter peripheral interface
- High speed digital systems
- Isolated data interfaces
- Logic level shifting
CAUTION! Take normal static precautions in handling and assembly of this ponent to prevent damage and/or degradation...