MC10E131FNG Allicdata Electronics
Allicdata Part #:

MC10E131FNGOS-ND

Manufacturer Part#:

MC10E131FNG

Price: $ 7.34
Product Category:

Integrated Circuits (ICs)

Manufacturer: ON Semiconductor
Short Description: IC FF D-TYPE SNGL 4BIT 28PLCC
More Detail: N/A
DataSheet: MC10E131FNG datasheetMC10E131FNG Datasheet/PDF
Quantity: 48
1 +: $ 6.67170
10 +: $ 6.02784
100 +: $ 4.99023
500 +: $ 4.34542
1000 +: $ 3.78473
Stock 48Can Ship Immediately
$ 7.34
Specifications
Max Propagation Delay @ V, Max CL: --
Base Part Number: 10E131
Package / Case: 28-LCC (J-Lead)
Mounting Type: Surface Mount
Operating Temperature: 0°C ~ 85°C (TA)
Current - Quiescent (Iq): 70mA
Voltage - Supply: -4.2 V ~ -5.7 V
Current - Output High, Low: --
Trigger Type: Positive Edge
Series: 10E
Clock Frequency: 1.4GHz
Number of Bits per Element: 4
Number of Elements: 1
Output Type: Differential
Type: D-Type
Function: Set(Preset) and Reset
Part Status: Active
Packaging: Tube 
Description

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Logic - Flip Flops: MC10E131FNG Application Field and Working Principle

Logic-flip-flops are integrated circuit components that store binary information. Different types of logic-flip-flops have different behaviors, requirements and applications. The MC10E131FNG is one type of logic-flip-flop designed with FET technology for high speed and is used for a variety of applications. This article will discuss the MC10E131FNG application field and how it works.

Application Field:

The MC10E131FNG is an edge-triggered static latch that is used in many digital systems, such as digital filters and digital engines. This type of latch is also found in computers, control systems, and telecom equipment. The main advantage of the MC10E131FNG is its high speed, which can process data faster than other logic-flip-flops. Additionally, the MC10E131FNG provides low power consumption because of its FET architecture.

Moreover, the MC10E131FNG is designed to offer precise timing characteristics and enable AC performance verification during the design process. Additionally, this flip-flop has a low working voltage, which makes it suitable for battery-powered applications. Furthermore, this type of latch has TTL-compatible input stages and a low propagation delay. Therefore, the MC10E131FNG is ideal for applications that require precise timing characteristics.

Working Principle:

The MC10E131FNG latch consists of two FETs and a four-input NAND gate. In this flip-flop, two FETs are used to trigger the latch which will store the data when the input is valid, and will retain the data until the next pulse. The four-input NAND gate is used to keep the latch in a state of equilibrium. The data is then stored in the FETs until the next input.

The MC10E131FNG also has an edge-sensitive stabilization circuit. This circuit is used to improve overall stability and reduce the distortion of the output waveform. The circuit itself consists of several transistors in a series connection. When the clock input transitions from low to high, the transistors in the circuit will amplify the signal and stabilize it. The stabilization circuit also ensures that the timing and outputs generated by the flip-flop remain accurate.

Finally, the output stages of the MC10E131FNG latch also contain several transistors. These transistors are used to transfer the data from the flip-flop to the output pin. This process is done quickly and accurately. Additionally, the outputs generate a logic 0 when the output is low and a logic 1 when the output is high.

In summary, the MC10E131FNG is a type of logic-flip-flop designed with FET technology for high speed and is used in many digital systems. Its application field includes computers, control systems, telecom equipment and more. It has benefits like low power consumption, precise timing characteristics and low working voltage. The flip-flop also has an edge-sensitive stabilization circuit and several transistors in the output stages. This allows for accurate and fast data transfer from the flip-flop to the output pin.

The specific data is subject to PDF, and the above content is for reference

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