LM4050QCIM3-8.2/NOPB belongs to the category of voltage references.
This product is primarily used as a precision voltage reference in various electronic circuits.
The LM4050QCIM3-8.2/NOPB is packaged in a SOT-23 package. It is typically sold in reels or tubes containing a specified quantity of units.
The LM4050QCIM3-8.2/NOPB has three pins:
The LM4050QCIM3-8.2/NOPB is based on bandgap voltage reference technology. It utilizes a combination of bipolar and CMOS transistor structures to generate a precise reference voltage. This voltage is then buffered and made available at the output pin (VOUT) for use in various circuits.
The LM4050QCIM3-8.2/NOPB finds application in a wide range of electronic systems, including but not limited to: - Precision analog-to-digital converters (ADCs) - Digital-to-analog converters (DACs) - Voltage regulators - Battery management systems - Test and measurement equipment - Industrial control systems
These alternative models offer similar functionality and can be considered as substitutes for the LM4050QCIM3-8.2/NOPB in various applications.
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What is the LM4050QCIM3-8.2/NOPB?
The LM4050QCIM3-8.2/NOPB is a precision voltage reference diode that provides a stable 8.2V output.
What are the typical applications of the LM4050QCIM3-8.2/NOPB?
It is commonly used in precision voltage and current sources, data acquisition systems, and industrial control systems.
How accurate is the output voltage of the LM4050QCIM3-8.2/NOPB?
The LM4050QCIM3-8.2/NOPB has a typical initial accuracy of ±0.5%.
Can the LM4050QCIM3-8.2/NOPB operate in harsh environments?
Yes, it is designed to operate reliably in harsh industrial and automotive environments.
What is the temperature range for the LM4050QCIM3-8.2/NOPB?
It can operate within a temperature range of -40°C to 125°C.
Is the LM4050QCIM3-8.2/NOPB available in a surface-mount package?
Yes, it is available in a SOT-23 package, making it suitable for compact designs.
Does the LM4050QCIM3-8.2/NOPB require external components for operation?
No, it does not require any external components for its basic operation.
Can the LM4050QCIM3-8.2/NOPB be used in battery-powered applications?
Yes, it is suitable for battery-powered applications due to its low power consumption.
What is the long-term stability of the LM4050QCIM3-8.2/NOPB?
It has excellent long-term stability, typically aging at 15ppm per 1000 hours.
Are there any specific PCB layout considerations for using the LM4050QCIM3-8.2/NOPB?
Care should be taken to minimize noise and thermal gradients around the device for optimal performance.