Abbildungen dienen nur als Referenz
SN74LVTH125DR
+StücklisteIC BUFF NON-INVERT 3.6V 14-SOIC
-
HerstellerTexas Instruments
-
Herstellerteil #SN74LVTH125DR
-
Datenblatt SN74LVTH125DR DataSheet
-
Auf Lager7030
365 Tage Qualitätsgarantie
7*24 Stunden-Servicegarantie
90-Tage Kundendienstgarantie
Originalproduktgarantie
Spezifikationen
| Attribut | Wert |
| Series | 74LVTH |
| Part Status | Active |
| Logic Type | Buffer, Non-Inverting |
| Number of Elements | 4 |
| Number of Bits per Element | 1 |
| Output Type | 3-State |
| Current - Output High, Low | 32mA, 64mA |
| Voltage - Supply | 2.7V ~ 3.6V |
| Operating Temperature | -40°C ~ 85°C (TA) |
| Mounting Type | Surface Mount |
| Package / Case | 14-SOIC (0.154", 3.90mm Width) |
| Supplier Device Package | 14-SOIC |
| Base Product Number | 74LVTH125 |
Übersicht
Description
Key features of the SN74LVTH125DR include:
1. Voltage Range: Operates at a supply voltage range of 2.7V to 3.6V.
2. 3-State Outputs: Allows outputs to be in one of three states: high, low, or high impedance, facilitating easy connection to shared bus lines.
3. Current Drive: Provides high output drive capability, typically ±32 mA, allowing it to drive heavy loads.
4. Low Power Consumption: Optimized for low power operation while maintaining high-speed performance.
5. Protection Features: Includes over-voltage tolerant inputs and outputs, making it robust in mixed-voltage applications.
The SN74LVTH125DR is commonly used in applications requiring buffering and isolation, such as data buses, memory interfaces, and other digital circuits.
Equivalent
Features
1. High-Speed Performance: It provides fast signal buffering with low propagation delay, suitable for high-speed applications.
2. 3-State Outputs: Allows multiple outputs to connect to a common bus without interference, offering flexible design options.
3. Drive Capability: Can drive up to 12mA of current, making it suitable for driving LEDs and other loads directly.
4. Low Power Consumption: Designed for low power operation, making it ideal for battery-powered devices.
5. Wide Operating Temperature Range: Suitable for industrial applications with a range from -40°C to 85°C.
6. Latch-Up Performance: Excellent latch-up immunity, typically better than 100mA, ensuring reliable operation.
7. Package: Available in a small-outline package (SOIC) for space-constrained applications.
Overall, the SN74LVTH125DR is a versatile and reliable choice for buffer/driver applications in both commercial and industrial environments.
Pinout
Here is a concise pin configuration for the SN74LVTH125DR:
1. OE1 (Output Enable 1)
2. A1 (Input 1)
3. Y1 (Output 1)
4. OE2 (Output Enable 2)
5. A2 (Input 2)
6. Y2 (Output 2)
7. GND (Ground)
8. Y3 (Output 3)
9. A3 (Input 3)
10. OE3 (Output Enable 3)
11. Y4 (Output 4)
12. A4 (Input 4)
13. OE4 (Output Enable 4)
14. VCC (Power Supply)
The 3-state outputs allow multiple outputs to connect to a common bus line, and the device is part of the LVT family, optimized for low-voltage applications with high-speed operation.
Manufacturer
TI is known for its innovation in analog and embedded processing technologies, which are used in various applications across diverse industries, such as automotive, industrial, consumer electronics, and communications. The company focuses on developing technologies that help engineers and designers create products with better performance and efficiency.
In addition to its product manufacturing, TI invests significantly in research and development to drive technological advancements and maintain its competitive edge in the semiconductor market. With a strong global presence, Texas Instruments operates numerous facilities worldwide and serves a broad customer base, including some of the leading electronics companies.
Application
1. Data Bus Isolation: Providing isolation between data buses to prevent interference and maintain signal integrity.
2. Signal Boosting: Enhancing signal strength for driving multiple loads or long transmission lines.
3. Memory and Processor Interfaces: Acting as an intermediary between microprocessors or memory units and other peripherals.
4. Level Shifting: Facilitating voltage level translation in mixed-voltage systems.
5. Multiplexing/Demultiplexing: Efficiently managing data flow in complex circuits.
Its robust design and performance make it suitable for use in computers, communication devices, and industrial equipment.