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SN74LVTH16373DGGR
+StücklisteIC D-TYPE TRANSP 8:8 48-TSSOP
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HerstellerTexas Instruments
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Herstellerteil #SN74LVTH16373DGGR
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Datenblatt SN74LVTH16373DGGR DataSheet
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Spezifikationen
| Attribut | Wert |
| Series | 74LVTH |
| Part Status | Active |
| Logic Type | D-Type Transparent Latch |
| Circuit | 8:8 |
| Output Type | Tri-State |
| Voltage - Supply | 2.7V ~ 3.6V |
| Independent Circuits | 2 |
| Delay Time - Propagation | 3ns |
| Current - Output High, Low | 32mA, 64mA |
| Operating Temperature | -40°C ~ 85°C |
| Mounting Type | Surface Mount |
| Package / Case | 48-TFSOP (0.240", 6.10mm Width) |
| Supplier Device Package | 48-TSSOP |
| Base Product Number | 74LVTH16373 |
Übersicht
Description
The latch can be enabled to store data when the clock is high, making it ideal for temporary data holding in applications such as data routing and storage. It supports both active-high and active-low control signals, enhancing versatility in circuit design.
This component is packaged in a small footprint, making it easier to integrate into space-constrained designs. Its robust performance and compatibility with TTL logic levels make the SN74LVTH16373DGGR a reliable choice for modern digital systems, including consumer electronics, communication devices, and industrial automation.
Equivalent
1. SN74LVC16373 - Similar functionality with LVC logic levels.
2. SN74LVTH16374 - 16-bit D-type flip-flop variant.
3. 74HC573 - 8-bit transparent latch, though with different logic levels.
4. 74LVTH16374 - Another 16-bit latch with LVTH compatibility.
Always verify specifications for exact compatibility.
Features
1. High-Speed Operation: Capable of operating at clock frequencies up to 200 MHz.
2. Low Voltage: Designed to operate at a voltage range of 2.5V to 3.6V, making it suitable for low-power applications.
3. Octal Latch Configuration: Contains eight latches that can store 16 bits of data.
4. Transparent Mode: The output follows the input when the enable signal is active.
5. 3-State Outputs: Allows for flexible interfacing with other devices by enabling high-impedance states.
6. Low Power Consumption: Ideal for battery-operated and power-sensitive applications.
7. Wide Temperature Range: Operates reliably in environments from -40°C to 85°C.
8. TTL-Compatible: Compatible with standard TTL logic levels, facilitating easy integration into existing designs.
These features make the SN74LVTH16373DGGR suitable for applications in data routing, buffering, and storage.
Pinout
Pin Count and Functions:
- Data Inputs (D0-D15): 16 pins (D0-D15) for data inputs.
- Enable (E): 1 pin to enable or disable the latch.
- Clock (CLK): 1 pin to control the timing of data sampling.
- Output Enable (OE): 1 pin that controls the output state.
- Outputs (Q0-Q15): 16 pins (Q0-Q15) corresponding to the data outputs.
- Ground (GND): 1 pin for the ground connection.
- Supply Voltage (VCC): 1 pin for power supply.
The latches are transparent when the enable signal is high, allowing data to pass from the inputs to the outputs. When the enable signal is low, the last input state is latched and held on the output. This device is commonly used in digital applications requiring temporary data storage.
Manufacturer
TI primarily focuses on designing and manufacturing integrated circuits (ICs) that are used in a wide range of applications, such as automotive, industrial, consumer electronics, and communications. The company is recognized for its innovation in analog and mixed-signal semiconductors and has a strong presence in the global market.
Texas Instruments operates with a commitment to advancing technology and providing solutions that enhance efficiency and performance in electronic devices. Its products are integral to many modern electronic systems, supporting various industries and enabling the development of cutting-edge technology.
Application
1. Data Buffering: Used in data communication to buffer signals and improve signal integrity.
2. Memory Storage: Employed in temporary data storage within microcontrollers and FPGAs.
3. Bus Interfaces: Facilitates connections between different digital circuits, especially in bus architectures.
4. Signal Conditioning: Helps in conditioning signals in high-speed digital systems.
5. Control Logic: Utilized in controlling various digital logic functions in embedded systems.
Overall, it’s ideal for applications requiring high-speed data handling and low power consumption.