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DM74LS279N Specifications
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TypeParameter
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Supplier Device Package16-PDIP
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Package / Case16-DIP (0.300", 7.62mm)
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Mounting TypeThrough Hole
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Operating Temperature0°C ~ 70°C
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Current - Output High, Low400µA, 8mA
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Delay Time - Propagation22ns
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Independent Circuits4
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Voltage - Supply4.75V ~ 5.25V
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Output TypeStandard
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Circuit1:1
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Logic TypeS-R Latch
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PackagingTube
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Product StatusObsolete
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Series74LS
The DM74LS279N is a quad set-reset latch integrated circuit chip. It has four independent set-reset latches, each with an active-high set and active-high reset input. Here are some advantages and application scenarios of the DM74LS279N:Advantages: 1. Versatility: The chip provides four independent latches, allowing for multiple latch-based applications in a single package. 2. Simplicity: The set and reset inputs make it easy to control the latch state, simplifying the design and implementation of various circuits. 3. Compatibility: The DM74LS279N is compatible with TTL (Transistor-Transistor Logic) logic levels, making it suitable for interfacing with other TTL-compatible devices. 4. Low power consumption: The chip operates at low power, making it suitable for battery-powered applications.Application Scenarios: 1. Memory circuits: The DM74LS279N can be used in memory circuits to store and retrieve data. Each latch can represent a bit of information, allowing for the storage of multiple bits. 2. Control circuits: The set and reset inputs of the latches can be used to control various aspects of a system. For example, they can be used to enable or disable certain functions or to trigger specific actions. 3. State machines: The latches can be used in state machines to store and transition between different states based on specific conditions or inputs. 4. Data synchronization: The DM74LS279N can be used to synchronize data between different parts of a system. By latching the data at specific points, it ensures that all components receive the same synchronized data.Overall, the DM74LS279N is a versatile integrated circuit chip that can be used in various applications requiring latch-based functionality, such as memory circuits, control circuits, state machines, and data synchronization.
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