
Allicdata Part #: | SY100E452JY-TR-ND |
Manufacturer Part#: |
SY100E452JY-TR |
Price: | $ 0.00 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | Microchip Technology |
Short Description: | IC FF D-TYPE SNGL 5BIT 28PLCC |
More Detail: | N/A |
DataSheet: | ![]() |
Quantity: | 1000 |
1 +: | 0.00000 |
Max Propagation Delay @ V, Max CL: | -- |
Base Part Number: | 100E452 |
Package / Case: | 28-LCC (J-Lead) |
Mounting Type: | Surface Mount |
Operating Temperature: | -40°C ~ 85°C (TA) |
Current - Quiescent (Iq): | 89mA |
Voltage - Supply: | -4.2 V ~ -5.5 V |
Current - Output High, Low: | -- |
Trigger Type: | Positive Edge |
Series: | 100E |
Clock Frequency: | 1.4GHz |
Number of Bits per Element: | 5 |
Number of Elements: | 1 |
Output Type: | Differential |
Type: | D-Type |
Function: | Master Reset |
Part Status: | Obsolete |
Packaging: | Tape & Reel (TR) |
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Logic Flip-Flops are electronic components found in digital systems that buffer, store, or transfer data between two successive clock cycles or times. The SY100E452JY-TR is a type of flip-flop component commonly used in digital systems. This component has two input ports and two output ports, making it an ideal choice for logic applications.
This type of flip-flop uses two logic signals (or data edges) to trigger its operation. The data edges must be two different logic levels. The two input ports are the “trigger” and the “enable” ports. The trigger port is the source data input, while the enable port provides the control signal. Once the trigger input gets a pulse, the output on the enable port gets the same data that was received on the trigger port. This is known as storing the data, and can be done multiple times.
The SY100E452JY-TR flip-flop can also be used to transfer data between two different input ports. When a clock pulse is received on the trigger port, the enable port is switched off, and the data stored on the trigger port is transferred to the output of the enable port. This transfer of data is process is known as data transfer. In addition, this particular flip-flop can also be used to dual-clock data by receiving two different clock pulses on the trigger and enable ports. By doing so, the data can be transferred between the two clock cycles with greater speed.
The SY100E452JY-TR flip-flop is widely used in various applications such as frequency clocks, shift registers, timing circuits, and synchronous counter designs. It is also used in cellular and wireless communication link circuits, FPGAs (Field Programmable Gate Arrays), and automated testing systems. Moreover, this flip-flop is also used to store and transfer data in memory devices, data acquisition systems, and digital logic circuits.
The SY100E452JY-TR flip-flop has several features that make it a good choice for digital systems. Its operating temperature range is -40°C to 105°C, making it suitable for a wide range of applications. It also features very low power consumption, a low trigger voltage level, and a high no-load speed. Furthermore, it is compatible with logic gates, buffers and other logic devices.
The working principle of the SY100E452JY-TR flip-flop involves two data edges. When a data edge is received at the trigger port, the data is stored at that point in time. A second data edge is then applied at the enable port, and the data stored in the trigger port is transferred to the enable port. This data transfer process allows for faster data transmission because the data is not lost in the transition between two different clock cycles. The SY100E452JY-TR flip-flop is also used to dual-clock data, allowing for even faster data transmission.
In conclusion, the SY100E452JY-TR is a type of Logic Flip-Flop used widely in digital systems. It has two input ports and two output ports, making it perfect for logic applications. It is used in a variety of different applications, such as frequency clocks, shift registers, timing circuits and synchronous counter designs. Additionally, this flip-flop features low power consumption, a low trigger voltage level, and a wide operating temperature range. Finally, its working principle involves the use of two data edges to trigger data storage and data transmission.
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