74ABT623D,623
Manufacturer No:
74ABT623D,623
Manufacturer:
Description:
IC TXRX NON-INVERT 5.5V 20SO
Datasheet:
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74ABT623D,623 Specifications
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TypeParameter
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Supplier Device Package20-SO
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Package / Case20-SOIC (0.295", 7.50mm Width)
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Mounting TypeSurface Mount
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Operating Temperature-40°C ~ 85°C (TA)
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Voltage - Supply4.5V ~ 5.5V
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Current - Output High, Low32mA, 64mA
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Output Type3-State
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Input Type-
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Number of Bits per Element8
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Number of Elements1
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Logic TypeTransceiver, Non-Inverting
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PackagingTape & Reel (TR)
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Product StatusObsolete
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Series74ABT
The 74ABT623D and 623 are both 8-bit transparent latches with 3-state outputs, designed for use as memory address registers, I/O ports, or for other microprocessor-related applications. Some advantages of these chips are:1. High-speed operation: With a propagation delay of 5.5ns, the 74ABT623D and 623 offer fast data transfer for high-speed applications.2. Low power consumption: By utilizing advanced CMOS technology, these chips have low power consumption and high noise immunity.3. 3-state outputs: The 3-state outputs provide flexibile control over data transfer, allowing multiple devices to share a bus without interfering with each other.4. TTL logic compatibility: The 74ABT623D and 623 are both TTL-compatible, which means they can be easily integrated into existing TTL-based systems.Some application scenarios where these chips can be used are:1. Memory address registers: The 74ABT623D and 623 can be used as address latches for DRAM or SRAM, as well as for other memory devices.2. I/O port expansion: These chips can be used to expand the number of input/output ports for microprocessors, reducing the need for multiple chips.3. Data bus buffering: By inserting these chips between a microprocessor and peripheral devices, data can be transferred more efficiently and with less risk of interference.4. Digital signal processing: The high-speed operation and low power consumption of these chips makes them suitable for use in digital signal processing applications, where fast and reliable data transfer is crucial.
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