SY100EL51ZG-TR Allicdata Electronics
Allicdata Part #:

SY100EL51ZG-TR-ND

Manufacturer Part#:

SY100EL51ZG-TR

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: Microchip Technology
Short Description: IC FF D-TYPE SNGL 1BIT 8SOIC
More Detail: N/A
DataSheet: SY100EL51ZG-TR datasheetSY100EL51ZG-TR Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Max Propagation Delay @ V, Max CL: --
Base Part Number: 100EL51
Package / Case: 8-SOIC (0.154", 3.90mm Width)
Mounting Type: Surface Mount
Operating Temperature: -40°C ~ 85°C (TA)
Current - Quiescent (Iq): 29mA
Voltage - Supply: -4.2 V ~ -5.5 V
Current - Output High, Low: --
Trigger Type: Positive, Negative
Series: 100EL
Clock Frequency: 2.8GHz
Number of Bits per Element: 1
Number of Elements: 1
Output Type: Differential
Type: D-Type
Function: Reset
Part Status: Obsolete
Packaging: Tape & Reel (TR) 
Description

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Logic Flip Flops play an irreplaceable role in the construction of high-speed digital systems. SY100EL51ZG-TR is designed by Toshiba and it is mainly used in high-speed applications where operation speed and power supply current are important factors. This device is based on a dynamically controlled flip-flop and is manufactured with a superior process geometry to facilitate significant improvements in fighting static noise. It is also provided with mode selection to enable low standby current consumption.

The SY100EL51ZG-TR is a load-enabled, dual-input NAND gate designed to operate both as a latch and as a flip-flop. It is a voltage-controlled device, meaning that the inputs on the flip-flop can be controlled by either positive or negative voltage. The positive voltage enables the latch, while the negative voltage is used to reset it. Additionally, the SY100EL51ZG-TR has two enable inputs, one for reset and one for the set. When the reset enable is pulled low, the output of the flip-flop is reset to zero and the reset enable line must go high before the flip-flop can be released again. The set enable is used to send a positive pulse to the flip-flop, setting it to one. The reset and set lines can be used either to initialize the flip-flop and create a sequence of events or to detect a change in voltage.

The SY100EL51ZG-TR can be used in several different applications because of its versatile operating principle. It has been used mainly in the design of logic circuits, such as counters, shift registers, and memoryAddress circuitry. It can also be used as a logic-level detector or trigger in circuits or as a control flip-flop in a synchronous control system. Furthermore, this flip-flop can be used to control multiplexing, demultiplexing, and in other digital data processing systems. Its low power consumption also makes it well-suited for applications that require a high-speed clock signal.

The SY100EL51ZG-TR is most commonly used in digital logic circuits. It is able to operate faster than many other flip-flops due to its improved dynamics and enhanced noise immunity. The flip-flop is designed such that it will reset very quickly without any hesitation or change in clock speed. The outputs of the flip-flop can be used to create a sequence of events, detect changes in voltage, or control multiplexing and demultiplexing. Additionally, due to its low power consumption, the SY100EL51ZG-TR is useful in applications that require a high-speed clock signal.

The SY100EL51ZG-TR is a versatile logic flip-flop that can be used in many different applications. It is designed with enhanced noise immunity and fast response to enable high-speed operation with low power consumption. It can be used to create a sequence of events, detect changes in voltage, or control multiplexing and demultiplexing. Additionally, it is most commonly used in the design of logic circuits, such as counters, shift registers, and memory address circuitry. Given its versatility and low power consumption, the SY100EL51ZG-TR could prove to be an especially useful logic flip-flop in many modern digital systems.

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

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