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規格
| 屬性 | 價值 |
| Brand | Nexperia |
| ShippingRestrictions | Mouser does not presently sell this product in your region. |
| MountingStyle | SMD/SMT |
| Package/Case | SOIC-16 |
| ProductType | Buffers & Line Drivers |
| Subcategory | Logic ICs |
| MinimumOperatingTemperature | - 40 C |
| MaximumOperatingTemperature | + 125 C |
| FactoryPackQuantity:FactoryPackQuantity | 50 |
| SupplyVoltage-Max | 5.5 V |
| SupplyVoltage-Min | 4.5 V |
| UnitWeight | 0.010159 oz |
| NumberofInputLines | 8 Input |
| NumberofOutputLines | 6 Output |
| Polarity | Non-Inverting |
| HighLevelOutputCurrent | - 6 mA |
| LowLevelOutputCurrent | 6 mA |
| LogicType | CMOS |
| LogicFamily | HCT |
| Function | Buffer/Line Driver |
| Height | 1.45 mm (Max) |
| InputSignalType | Single-Ended |
| Length | 10 mm (Max) |
| NumberofChannels | 5 Channel |
| OperatingSupplyVoltage | 4.5 V to 5.5 V |
| OutputType | 3-State |
| PropagationDelayTime | 11 ns |
| Technology | CMOS |
| Width | 4 mm (Max) |
| Part#Aliases | 74HCT365D,652 |
| Pd-PowerDissipation | 500 mW (1/2 W) |
概述
Description
The 74HCT365D is a high-speed CMOS (Complementary Metal-Oxide-Semiconductor) logic device that functions as an 8-bit shift register. It is designed to be compatible with TTL (Transistor-Transistor Logic) levels, making it suitable for interfacing with a variety of digital circuits. This device features both parallel load and serial input capabilities, allowing data to be loaded into the shift register either all at once or bit by bit.
Key features include:
- 8 data bits: It can store 8 bits of data, shifting either left or right.
- Parallel Load: Users can load data simultaneously into the register.
- Shift Operations: It can shift data with clock pulses, facilitating serial data handling.
- Active LOW Control Signals: The device operates with active-low control signals for easy integration.
The 74HCT365D is commonly used in applications such as data storage, signal manipulation, and digital communication systems, owing to its robustness and versatility in digital circuit design.
Key features include:
- 8 data bits: It can store 8 bits of data, shifting either left or right.
- Parallel Load: Users can load data simultaneously into the register.
- Shift Operations: It can shift data with clock pulses, facilitating serial data handling.
- Active LOW Control Signals: The device operates with active-low control signals for easy integration.
The 74HCT365D is commonly used in applications such as data storage, signal manipulation, and digital communication systems, owing to its robustness and versatility in digital circuit design.
Equivalent
The 74HCT365D chip is a dual 4-bit register with tri-state outputs. Equivalent products include:
- 74HC365
- 74HCT374
- 74HC374
- 74HC373
Always verify specifications, as slight variations in voltage levels or speed may exist among these alternatives.
- 74HC365
- 74HCT374
- 74HC374
- 74HC373
Always verify specifications, as slight variations in voltage levels or speed may exist among these alternatives.
Features
The 74HCT365D is a high-speed, 8-bit shift register with parallel input and output capabilities. Key features include:
1. 8-Bit Shift Register: It allows the storage and shifting of 8 bits of data.
2. Parallel Load: Supports loading data in parallel, enabling quicker data setup.
3. Serial Input/Output: Facilitates serial data transfer, making it ideal for communication applications.
4. Active Low Control Inputs: Features an active-low shift/load (SH/LD) control input for shifting or loading operations.
5. Clock Input: Operates with a clock signal to synchronize data shifting.
6. Wide Supply Voltage Range: Compatible with a supply voltage range of 4.5V to 5.5V.
7. Low Power Consumption: Designed for efficient power usage, suitable for battery-operated devices.
8. TTL Compatible: Provides compatibility with TTL logic levels.
These features make the 74HCT365D suitable for a variety of digital applications, including data storage, transfer, and processing in embedded systems.
1. 8-Bit Shift Register: It allows the storage and shifting of 8 bits of data.
2. Parallel Load: Supports loading data in parallel, enabling quicker data setup.
3. Serial Input/Output: Facilitates serial data transfer, making it ideal for communication applications.
4. Active Low Control Inputs: Features an active-low shift/load (SH/LD) control input for shifting or loading operations.
5. Clock Input: Operates with a clock signal to synchronize data shifting.
6. Wide Supply Voltage Range: Compatible with a supply voltage range of 4.5V to 5.5V.
7. Low Power Consumption: Designed for efficient power usage, suitable for battery-operated devices.
8. TTL Compatible: Provides compatibility with TTL logic levels.
These features make the 74HCT365D suitable for a variety of digital applications, including data storage, transfer, and processing in embedded systems.
Pinout
The 74HCT365D is a hex D-type flip-flop with a total of 20 pins. It features six D flip-flops that are controlled by a common clock input and a common clear input. The pin configuration is as follows:
- Pin 1-6: D inputs for the six flip-flops (D1 to D6).
- Pin 7: Active-low clear (CLR) input.
- Pin 8: Clock (CLK) input.
- Pin 9: Q outputs for the six flip-flops (Q1 to Q6).
- Pin 10: Not connected (NC).
- Pin 11-16: Additional D inputs (D7 to D12) for the next set of flip-flops.
- Pin 17: Active-low clear (CLR) input for the second group.
- Pin 18: Clock (CLK) input for the second group.
- Pin 19: Q outputs for the second group (Q7 to Q12).
- Pin 20: Ground (GND).
The device is often used for data storage and transfer in digital circuits, functioning effectively in applications requiring synchronized operations.
- Pin 1-6: D inputs for the six flip-flops (D1 to D6).
- Pin 7: Active-low clear (CLR) input.
- Pin 8: Clock (CLK) input.
- Pin 9: Q outputs for the six flip-flops (Q1 to Q6).
- Pin 10: Not connected (NC).
- Pin 11-16: Additional D inputs (D7 to D12) for the next set of flip-flops.
- Pin 17: Active-low clear (CLR) input for the second group.
- Pin 18: Clock (CLK) input for the second group.
- Pin 19: Q outputs for the second group (Q7 to Q12).
- Pin 20: Ground (GND).
The device is often used for data storage and transfer in digital circuits, functioning effectively in applications requiring synchronized operations.
Manufacturer
The manufacturer of the 74HCT365D is Texas Instruments (TI). Texas Instruments is a global technology company that designs and manufactures semiconductors and various integrated circuits, which are essential components in electronic devices. Founded in 1930, TI is headquartered in Dallas, Texas, and is known for its innovations in analog and embedded processing technologies.
The company primarily serves markets such as automotive, industrial, communications, and consumer electronics. TI's products include a wide range of devices like microcontrollers, processors, amplifiers, and data converters. They are a key player in the semiconductor industry, contributing to advancements in technology across various sectors.
The company primarily serves markets such as automotive, industrial, communications, and consumer electronics. TI's products include a wide range of devices like microcontrollers, processors, amplifiers, and data converters. They are a key player in the semiconductor industry, contributing to advancements in technology across various sectors.
Application
The 74HCT365D is a high-speed CMOS octal D-type flip-flop with a 3-state output, commonly used in digital circuits. Its primary application areas include data storage, temporary data holding, and synchronization of digital signals in communication systems. It is utilized in shift registers, data buffers, and memory devices. Additionally, it's effective in applications requiring parallel data processing, like microcontroller interfacing, digital signal processing, and logic circuit design. Its ability to handle various voltage levels makes it suitable for interfacing with both TTL and CMOS logic systems.
Package
The 74HCT365D is available in a dual in-line package (DIP) format, specifically a 16-pin DIP (D package type). It is designed for use in digital logic circuits, offering high-speed performance and low power consumption.