사양
| 속성 | 가치 |
| Package / Case | Tape & Reel (TR),Cut Tape (CT),Bulk |
| Series | Automotive, AEC-Q100, 74LVC |
| Part Status | Active |
| Logic Type | Buffer, Non-Inverting |
| Number of Elements | 1 |
| Number of Bits per Element | 1 |
| Output Type | 3-State |
| Current - Output High Low | 24mA, 24mA |
| Voltage - Supply | 1.65V ~ 5.5V |
| Operating Temperature | -40°C ~ 125°C (TA) |
| Mounting Type | Surface Mount |
개요
Description
The CLVC1G125QDBVRQ1 is a single bus buffer gate that belongs to Texas Instruments' automotive catalog, designed for high-speed and low-power applications. This device is part of the company's logic family, which typically operates with a voltage range of 1.65 V to 5.5 V, making it versatile for various power supply levels. It features a 3-state output, controlled by an enable input, allowing for easy interface with different logic levels and minimizing power consumption when in the high-impedance state.
It is qualified for automotive applications, meeting the AEC-Q100 standards, which ensures reliability in demanding environments. Its low propagation delay and high noise immunity make it suitable for modern digital systems. The QDBVRQ1 suffix indicates specific package and quality level details, typically referring to a small outline package, making it ideal for space-constrained applications like automotive electronics, industrial systems, and consumer electronics. Overall, the CLVC1G125QDBVRQ1 offers robustness and performance for designers seeking efficient signal buffering solutions in automotive and other high-reliability environments.
It is qualified for automotive applications, meeting the AEC-Q100 standards, which ensures reliability in demanding environments. Its low propagation delay and high noise immunity make it suitable for modern digital systems. The QDBVRQ1 suffix indicates specific package and quality level details, typically referring to a small outline package, making it ideal for space-constrained applications like automotive electronics, industrial systems, and consumer electronics. Overall, the CLVC1G125QDBVRQ1 offers robustness and performance for designers seeking efficient signal buffering solutions in automotive and other high-reliability environments.
Equivalent
The CLVC1G125QDBVRQ1 is a single buffer/driver with 3-state output from Texas Instruments. Equivalent products include:
1. SN74LVC1G125 by Texas Instruments
2. 74LVC1G125 by Nexperia
3. MC74VHC1G125 by ON Semiconductor
4. 74AHC1G125 by Diodes Incorporated
These alternatives offer similar functionality, such as voltage level translation and buffering, and are available in similar package options like SOT-23 or SC-70. Always check specific datasheets for detailed compatibility.
1. SN74LVC1G125 by Texas Instruments
2. 74LVC1G125 by Nexperia
3. MC74VHC1G125 by ON Semiconductor
4. 74AHC1G125 by Diodes Incorporated
These alternatives offer similar functionality, such as voltage level translation and buffering, and are available in similar package options like SOT-23 or SC-70. Always check specific datasheets for detailed compatibility.
Features
The CLVC1G125QDBVRQ1 is a single bus buffer gate from Texas Instruments, designed for automotive applications. Key features include:
1. Voltage Range: Operates within a supply voltage range of 1.65 V to 5.5 V, making it versatile for various automotive systems.
2. High-Impedance State: It has a 3-state output, which allows for connection to multiple outputs without interference.
3. Low Power Consumption: Features low static power consumption, which is crucial for automotive applications to enhance battery life and efficiency.
4. High-Speed Operation: Supports high-speed signal processing, ensuring quick and reliable data transfer within the system.
5. Input and Output Protection: Offers over-voltage tolerant inputs and outputs, providing robustness against voltage spikes.
6. Automotive Grade: AEC-Q100 qualified, which ensures it meets rigorous automotive quality and reliability standards.
7. Package Options: Available in compact packages suitable for space-constrained applications.
These features make the CLVC1G125QDBVRQ1 particularly suitable for use in automotive applications that require reliable and efficient logic level shifting and buffering.
1. Voltage Range: Operates within a supply voltage range of 1.65 V to 5.5 V, making it versatile for various automotive systems.
2. High-Impedance State: It has a 3-state output, which allows for connection to multiple outputs without interference.
3. Low Power Consumption: Features low static power consumption, which is crucial for automotive applications to enhance battery life and efficiency.
4. High-Speed Operation: Supports high-speed signal processing, ensuring quick and reliable data transfer within the system.
5. Input and Output Protection: Offers over-voltage tolerant inputs and outputs, providing robustness against voltage spikes.
6. Automotive Grade: AEC-Q100 qualified, which ensures it meets rigorous automotive quality and reliability standards.
7. Package Options: Available in compact packages suitable for space-constrained applications.
These features make the CLVC1G125QDBVRQ1 particularly suitable for use in automotive applications that require reliable and efficient logic level shifting and buffering.
Pinout
The CLVC1G125QDBVRQ1 is a single buffer/driver with 3-state output, part of the Texas Instruments automotive-qualified logic family. It typically comes in a 5-pin SOT-23 package. The pin functions are as follows:
1. VCC - Power supply pin.
2. GND - Ground pin.
3. A (Input) - This is the input pin where the signal is fed into the buffer.
4. OE (Output Enable) - Active-high control pin; when high, the output is enabled, and when low, the output is in a high-impedance state.
5. Y (Output) - Buffered output pin, which replicates the input signal when enabled.
This device is used for signal buffering and driving, with the ability to place the output in a high-impedance state, which is useful in applications requiring multiple signal lines to be connected to a common node. It supports 1.65 V to 5.5 V operation, making it suitable for both 3.3 V and 5 V systems.
1. VCC - Power supply pin.
2. GND - Ground pin.
3. A (Input) - This is the input pin where the signal is fed into the buffer.
4. OE (Output Enable) - Active-high control pin; when high, the output is enabled, and when low, the output is in a high-impedance state.
5. Y (Output) - Buffered output pin, which replicates the input signal when enabled.
This device is used for signal buffering and driving, with the ability to place the output in a high-impedance state, which is useful in applications requiring multiple signal lines to be connected to a common node. It supports 1.65 V to 5.5 V operation, making it suitable for both 3.3 V and 5 V systems.
Manufacturer
The CLVC1G125QDBVRQ1 is manufactured by Texas Instruments (TI). Texas Instruments is a global semiconductor company that designs and produces a wide array of electronic components and integrated circuits. TI is known for its innovations in the field of analog and embedded processing technologies, which are essential in a variety of electronic applications. The company serves numerous industries, including automotive, industrial, consumer electronics, and communications equipment, among others. TI's products are integral in enhancing the functionality and efficiency of various electronic devices.
Application
The CLVC1G125QDBVRQ1 is a single buffer gate with 3-state output, commonly used in applications requiring signal buffering and voltage level translation. It is particularly suited for automotive and industrial applications due to its AEC-Q100 qualification, ensuring reliability in harsh environments. The device is ideal for interfacing between circuits of different voltage levels, improving signal integrity, and driving capacitive loads. Additionally, its low power consumption makes it suitable for battery-operated devices and power-sensitive applications.
Package
The CLVC1G125QDBVRQ1 is a logic gate IC from Texas Instruments, and it comes in a SOT-23 package. This package type is small and suitable for surface-mount technology, commonly used in compact electronic devices.