
Allicdata Part #: | 296-26496-5-ND |
Manufacturer Part#: |
SN74HCT273PW |
Price: | $ 0.40 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | Texas Instruments |
Short Description: | IC FF D-TYPE SNGL 8BIT 20TSSOP |
More Detail: | N/A |
DataSheet: | ![]() |
Quantity: | 687 |
1 +: | $ 0.35910 |
10 +: | $ 0.30933 |
100 +: | $ 0.23108 |
500 +: | $ 0.18157 |
1000 +: | $ 0.14030 |
Max Propagation Delay @ V, Max CL: | 29ns @ 5.5V, 50pF |
Base Part Number: | 74HCT273 |
Package / Case: | 20-TSSOP (0.173", 4.40mm Width) |
Mounting Type: | Surface Mount |
Operating Temperature: | -40°C ~ 85°C (TA) |
Input Capacitance: | 3pF |
Current - Quiescent (Iq): | 8µA |
Voltage - Supply: | 4.5 V ~ 5.5 V |
Current - Output High, Low: | 4mA, 4mA |
Trigger Type: | Positive Edge |
Series: | 74HCT |
Clock Frequency: | 37MHz |
Number of Bits per Element: | 8 |
Number of Elements: | 1 |
Output Type: | Non-Inverted |
Type: | D-Type |
Function: | Master Reset |
Part Status: | Active |
Packaging: | Tube |
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Logic - Flip Flops combine two elements, a bi-stable circuit and a gate . The switching state of a Flip Flop can be either "high" or "low" and is used as a basic element in computer memory and other digital circuits. The SN74HCT273PW is an example of a Flip Flop, specifically a positive-edge triggered dual D-type Flip Flop. It offers even faster speed performance than many of its predecessors and is an important component used in many different types of circuits.
The SN74HCT273PW is composed of two sections, each containing two complementary data inputs and four outputs. The outputs are buffered, meaning they can provide an active output level when input voltage levels approach the upper or lower supply voltage levels. This provides higher noise immunity than standard TTL based data sheets.
The active inputs of the SN74HCT273PW are E1 and E2. These are used to control the operation of each section independently. When E1 or E2 is in logic “high” state, the data inputs D1 and D2 are passed into the respective Flip Flop and any potential data is accepted. When the data is accepted, the outputs Q1 and Q2 are set accordingly. If the switching edges of E1 and E2 are not overlapping during the triggering, each of the sections will remain in their original state.
The SN74HCT273PW is in fact a combination of two Flip Flop sections, each of which can store one bit of data. The output of each section can be used as the clock for the other section. This Flip Flop is also suitable for bus conversion applications, since one of the sections operates at a higher speed than the other one. The SN74HCT273PW also contains a special power down mode, which helps preserve power when the Flip Flop isn\'t in use.
One of the most common applications of the SN74HCT273PW Flip Flop is in synchronous digital systems. These systems are dependent on being able to store and recall data. The Flip Flop offers a reliable way to do this. The Flip Flop is also used in logic designs, particularly in finite state machines (FSM), as it can accept and store multiple input levels, making it easier to control the FSM states.
Another major application is in the synchronous control of actuators. Actuators, such as motors and drives, require a certain level of precision in order to ensure they operate correctly. Synchronous control ensures that the exact level of voltage is applied to the actuator in order to guarantee accuracy and efficiency. The Flip Flop helps in this regard, as it enables the storage of the required voltages.
Finally, the Flip Flop may also be used as a building block in programmable logic controllers (PLC) or automated performance systems. The SN74HCT273PW stores binary information, which is then used to regulate the operations of integrated systems. This allows for data to be stored, modified and recalled with great precision.
Overall, the SN74HCT273PW is a powerful and reliable Flip Flop, offering a range of applications in digital systems. Its dual section design also makes it well suited to bus conversion and synchronous control systems, while its fast speed performance ensures accuracy even in high speed applications. Thanks to its versatile design, this component has become an essential part of many circuits.
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