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74ABT899DB from PHI,Philips

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74ABT899DB

Manufacturer: PHI

9-bit dual latch transceiver with 8-bit parity generator/checker 3-State

Partnumber Manufacturer Quantity Availability
74ABT899DB PHI 499 In Stock

Description and Introduction

9-bit dual latch transceiver with 8-bit parity generator/checker 3-State The 74ABT899DB is a high-performance BiCMOS 9-bit addressable latch manufactured by Philips Semiconductors (now NXP Semiconductors). It features a 3-state output and is designed for use in high-speed memory addressing and data routing applications. Key specifications include:

- **Technology**: BiCMOS
- **Number of Bits**: 9
- **Output Type**: 3-state
- **Operating Voltage**: 4.5V to 5.5V
- **Operating Temperature Range**: -40°C to +85°C
- **Package**: SSOP (Shrink Small Outline Package)
- **Logic Family**: ABT (Advanced BiCMOS Technology)
- **Propagation Delay**: Typically 4.5 ns
- **Output Current**: ±24 mA
- **Input Capacitance**: 4 pF
- **Power Dissipation**: 500 mW (max)

The device is designed to provide high-speed operation while maintaining low power consumption, making it suitable for high-performance digital systems.

Partnumber Manufacturer Quantity Availability
74ABT899DB PHILIPS 10000 In Stock

Description and Introduction

9-bit dual latch transceiver with 8-bit parity generator/checker 3-State The 74ABT899DB is a 9-bit universal transceiver with parity generator/checker, manufactured by Philips. Here are the key specifications:

- **Logic Type**: Universal Transceiver with Parity Generator/Checker
- **Number of Bits**: 9
- **Supply Voltage**: 4.5V to 5.5V
- **Operating Temperature**: -40°C to +85°C
- **Package**: SSOP (Shrink Small Outline Package)
- **Technology**: ABT (Advanced BiCMOS Technology)
- **Input/Output Type**: 3-State
- **Propagation Delay**: Typically 4.5 ns
- **Output Drive Capability**: 24 mA
- **Input Capacitance**: 4 pF
- **Output Capacitance**: 8 pF
- **Power Dissipation**: Typically 50 mW
- **Features**: Parity generation and checking, 3-state outputs, bidirectional data flow, and high-speed operation.

These specifications are based on the information available in Ic-phoenix technical data files.

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