Category: Integrated Circuit (IC)
Use: Operational Amplifier
Characteristics: - Low power consumption - High voltage gain - Rail-to-rail input and output - Wide supply voltage range - Low input offset voltage - Low input bias current
Package: PDIP-8 (Plastic Dual In-Line Package)
Essence: The LMC6082AIN/NOPB is a dual operational amplifier designed for low power applications. It offers high performance with low power consumption, making it suitable for various electronic circuits.
Packaging/Quantity: The LMC6082AIN/NOPB is available in a tube packaging with 50 units per tube.
The LMC6082AIN/NOPB has a total of 8 pins arranged as follows:
___________
V+ --| |-- V-
-| |-
IN+ --| |-- OUT
-| |-
IN- --| |-- NC
-| |-
NC --| |-- NC
-|___________|-
Low Power Consumption: The LMC6082AIN/NOPB operates at low power levels, making it suitable for battery-powered devices and energy-efficient applications.
High Voltage Gain: It provides a high voltage gain, allowing for accurate amplification of weak signals.
Rail-to-Rail Input and Output: The operational amplifier supports input and output signals that can swing close to the supply rails, maximizing the dynamic range.
Wide Supply Voltage Range: It can operate from ±1.5V to ±15V, providing flexibility in various power supply configurations.
Low Input Offset Voltage: The amplifier has a low input offset voltage, minimizing errors in signal amplification.
Low Input Bias Current: It exhibits low input bias current, reducing the impact of input loading on the circuit.
Advantages: - Low power consumption - High voltage gain - Rail-to-rail input and output - Wide supply voltage range - Low input offset voltage - Low input bias current
Disadvantages: - Limited gain bandwidth product (1MHz) - Moderate slew rate (0.6V/µs)
The LMC6082AIN/NOPB is based on the operational amplifier architecture. It utilizes differential inputs and a high-gain amplifier stage to amplify the input signal. The rail-to-rail input and output capability allows for maximum utilization of the available supply voltage range. The low power consumption and low input bias current make it suitable for battery-powered and low-power applications.
The LMC6082AIN/NOPB can be used in various applications, including: 1. Audio amplifiers 2. Sensor signal conditioning 3. Battery-powered devices 4. Portable instrumentation 5. Active filters 6. Signal amplification in communication systems
These alternative models offer different trade-offs in terms of performance, power consumption, and cost, allowing designers to choose the most suitable option for their specific application.
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Question: What is the maximum supply voltage for LMC6082AIN/NOPB?
Answer: The maximum supply voltage for LMC6082AIN/NOPB is 15V.
Question: What is the typical input offset voltage of LMC6082AIN/NOPB?
Answer: The typical input offset voltage of LMC6082AIN/NOPB is 0.5mV.
Question: Can LMC6082AIN/NOPB operate in single-supply applications?
Answer: Yes, LMC6082AIN/NOPB can operate in single-supply applications.
Question: What is the maximum input bias current for LMC6082AIN/NOPB?
Answer: The maximum input bias current for LMC6082AIN/NOPB is 250nA.
Question: Is LMC6082AIN/NOPB suitable for precision instrumentation applications?
Answer: Yes, LMC6082AIN/NOPB is suitable for precision instrumentation applications.
Question: What is the unity-gain bandwidth of LMC6082AIN/NOPB?
Answer: The unity-gain bandwidth of LMC6082AIN/NOPB is 1.3MHz.
Question: Does LMC6082AIN/NOPB have built-in EMI filtering?
Answer: No, LMC6082AIN/NOPB does not have built-in EMI filtering.
Question: Can LMC6082AIN/NOPB be used in low-power applications?
Answer: Yes, LMC6082AIN/NOPB can be used in low-power applications.
Question: What is the temperature range for LMC6082AIN/NOPB?
Answer: The temperature range for LMC6082AIN/NOPB is -40°C to 125°C.
Question: Is LMC6082AIN/NOPB RoHS compliant?
Answer: Yes, LMC6082AIN/NOPB is RoHS compliant.