![SY100S321JZ Allicdata Electronics](https://files.allicdata.com/upload/common/default.jpg)
Allicdata Part #: | SY100S321JZ-ND |
Manufacturer Part#: |
SY100S321JZ |
Price: | $ 0.00 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | Microchip Technology |
Short Description: | IC INVERTER 9CH 9-INP 28PLCC |
More Detail: | Inverter IC 9 Channel 28-PLCC (11.5x11.5) |
DataSheet: | ![]() |
Quantity: | 1000 |
1 +: | 0.00000 |
Current - Output High, Low: | -- |
Base Part Number: | 100S321 |
Package / Case: | 28-LCC (J-Lead) |
Supplier Device Package: | 28-PLCC (11.5x11.5) |
Mounting Type: | Surface Mount |
Operating Temperature: | 0°C ~ 85°C |
Max Propagation Delay @ V, Max CL: | 700ps @ -5V, - |
Logic Level - High: | -- |
Logic Level - Low: | -- |
Series: | 100S |
Voltage - Supply: | -4.2 V ~ -5.5 V |
Features: | -- |
Number of Inputs: | 9 |
Number of Circuits: | 9 |
Logic Type: | Inverter |
Part Status: | Discontinued at Digi-Key |
Packaging: | Tube |
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Logic gates and inverters are important building blocks of digital circuits. The SY100S321JZ is a CMOS Logic gate and inverter. This device is designed to be used in applications where high-speed, high-current and extremely low power dissipation are required. It is ideal for medium to high-speed switching applications such as high-speed logic gates, flip-flops, transistors, and so on.
The SY100S321JZ has two logic gates and an inverter to provide complete control over logic inputs and outputs. The two logic gates are the AND and the OR gate, and the inverter is an inverting AND. Each of these three components has its own output. The information from the logic gates and inverter is used to perform various logic operations or to create digital combinations for a logic circuit. This device can also be used for high-speed switching applications, where speed and low-power dissipation is required.
The SY100S321JZ can be used in applications ranging from basic digital circuits to system-level design. In digital circuits, it can be used to create and process logic inputs, create logical combinations, and to combine multiple logical operations. In system-level applications, it can be used to create custom integrated circuits and control functions. In addition, it is often used in low power logic circuits, where speed, power and low power are important factors.
The working principle of the SY100S321JZ is based on the complementary metal-oxide-semiconductor (CMOS) technology. This technology relies on the use of two transistors to enable and disable current flow through a circuit in a bidirectional manner. This allows for precision control over the output voltage. The two transistors, the PMOS (positive metal-oxide-semiconductor) and the NMOS (negative metal-oxide-semiconductor) each have input and output connections and control gates. The input and output connections of the two transistors are connected to the logic gate and inverter.
The output produced by the logic gate and inverter is determined by the logic level of the input. When the input is high, the PMOS transistor conducts, allowing current to flow through the circuit and creating an output voltage. Conversely, when the input is low, the NMOS transistor conducts, blocking the current from flowing and creating an output voltage. The output voltage stays constant as long as the input voltage stays the same. This is known as static logic.
The power consumption of the SY100S321JZ is extremely low, making it ideal for low-power applications such as PLCs (programmable logic controllers). It requires very little power to operate and can be used in many applications, even in harsh environments or those with limited power sources. This makes it a great choice for cost-sensitive applications.
In conclusion, the SY100S321JZ is an important device used in digital circuits and system-level designs. It provides complete control over logic inputs and outputs and can be used in applications where high-speed switching and low power dissipation are required. The device utilizes CMOS technology to enable current flow and control the output voltage, resulting in low power consumption.
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