SN74ABT843DW
Manufacturer No:
SN74ABT843DW
Manufacturer:
Description:
IC 9BIT BUS-INTFC D 3ST 24-SOIC
Datasheet:
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In Stock : 37
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SN74ABT843DW Specifications
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TypeParameter
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Supplier Device Package24-SOIC
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Package / Case24-SOIC (0.295", 7.50mm Width)
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Mounting TypeSurface Mount
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Operating Temperature-40°C ~ 85°C
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Current - Output High, Low32mA, 64mA
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Delay Time - Propagation4.4ns
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Independent Circuits1
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Voltage - Supply4.5V ~ 5.5V
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Output TypeTri-State
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Circuit9:9
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Logic TypeD-Type Transparent Latch
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PackagingTube
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PackagingBulk
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Product StatusActive
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Series74ABT
The SN74ABT843DW is a dual 9-bit bus transceiver with 3-state outputs integrated circuit chip. Some advantages and application scenarios of this chip are:Advantages: 1. High-speed operation: The SN74ABT843DW chip operates at a high-speed, making it suitable for applications requiring fast data transfer.2. 3-state outputs: The chip has 3-state outputs, which allows multiple chips to be connected together and share a common bus. This feature enables bus sharing and reduces the number of I/O pins required in a system.3. Bidirectional data transfer: The chip facilitates bidirectional data transfer, allowing data to be transmitted in both directions between two buses.4. Voltage translation: The SN74ABT843DW chip can also be used for voltage level translation, as it supports translation between a high-voltage (5V) system and a low-voltage (3.3V) system.Application Scenarios: 1. Data bus interfacing: The chip is commonly used in systems where data needs to be transferred between buses operating at different voltage levels, such as between microcontrollers and memory devices.2. Multi-chip communication: The 3-state outputs of the chip enable multiple chips to communicate over a shared bus. This is useful in applications where multiple devices need to exchange data, such as in networking equipment or data acquisition systems.3. Level shifting: The SN74ABT843DW can be utilized in systems where data needs to be shifted from a high-voltage to a low-voltage domain, or vice versa. This is applicable in mixed-voltage systems where different components operate at different voltage levels.
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