

ROHM Semiconductor
BU4069UBF-E2
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BU4069UBF-E2 Description
BU4069UBF-E2 Description
The BU4069UBF-E2 is a 6-channel inverter IC manufactured by ROHM Semiconductor, belonging to the 4000B series. It is designed for surface mount applications and is packaged in a 14-pin SOP package. This IC is classified under the category of Gates and Inverters and is compliant with the RoHS3 standard. Although the product is now obsolete, it was known for its performance benefits and unique features.
BU4069UBF-E2 Features
- Logic Type: Inverter, providing a simple yet effective logic function.
- Max Propagation Delay: 40ns at 15V and 50pF, ensuring fast switching times.
- Voltage Supply Range: 3V to 16V, offering flexibility in power supply requirements.
- Input Logic Levels: Low (1V to 2.5V) and High (4V to 12.5V), accommodating a wide range of input voltages.
- Current Quiescent (Max): 4 µA, contributing to low power consumption.
- Output Current: 3mA for both high and low states, ensuring reliable output levels.
- Moisture Sensitivity Level (MSL): 1 (Unlimited), indicating that the device is not sensitive to moisture.
- Mounting Type: Surface Mount, suitable for modern electronics assembly processes.
- Package: Tape & Reel (TR), facilitating automated assembly and testing.
BU4069UBF-E2 Applications
The BU4069UBF-E2 is ideal for applications where simple logic inversion is required, such as:
- Digital Circuits: For basic logic operations in digital systems.
- Signal Conditioning: To invert signals in communication and control systems.
- Automotive Electronics: In various control modules where signal inversion is necessary.
- Industrial Controls: For logic level conversion in sensor and actuator interfaces.
Conclusion of BU4069UBF-E2
While the BU4069UBF-E2 is now an obsolete product, it was known for its robust performance, flexibility in voltage supply, and low power consumption. Its 6-channel inverter configuration made it a versatile component for various digital and control applications. Although it may no longer be in production, understanding its specifications and capabilities can be beneficial for engineers working with legacy systems or seeking to understand the evolution of inverter ICs.



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