Overview
The OP496GS-REEL7 is a micropower, rail-to-rail input and output operational amplifier produced by Analog Devices Inc. This quad operational amplifier is designed for low-power applications and features a compact 14-SOIC package. It is suitable for a wide range of applications requiring low power consumption and high performance.
Key Specifications
Parameter | Symbol | Conditions | Min | Typ | Max | Unit |
---|---|---|---|---|---|---|
Supply Voltage | VS | 3 | 12 | V | ||
Input Offset Voltage | VOS | 0°C ≤ TA ≤ 125°C | 35 | 650 | µV | |
Input Bias Current | IB | –40°C ≤ TA ≤ +125°C | ±10 | ±50 | nA | |
Input Offset Current | IOS | –40°C ≤ TA ≤ +125°C | ±1 | ±8 | nA | |
Common-Mode Rejection Ratio | CMRR | 0 V ≤ VCM ≤ 12 V, –40°C ≤ TA ≤ +125°C | 65 dB | |||
Large Signal Voltage Gain | AVO | RL = 100 kΩ, 0.30 V ≤ VOUT ≤ 4.7 V, –40°C ≤ TA ≤ +125°C | 150 | 200 | V/mV | |
Output Voltage Swing High | VOH | IL = 100 µA | 4.85 V | |||
Output Voltage Swing Low | VOL | IL = –100 µA | 70 mV | |||
Supply Current per Amplifier | ISY | VOUT = 2.5 V, RL = ∞, 0°C ≤ TA ≤ 125°C | 40 | 80 | µA | |
Slew Rate | SR | RL = 100 kΩ | 0.3 | V/µs | ||
Gain Bandwidth Product | GBP | 450 | kHz | |||
Operating Temperature Range | –40°C | 125°C |
Key Features
- Rail-to-Rail Input and Output: The OP496GS-REEL7 features rail-to-rail input and output, allowing it to operate effectively across the entire supply voltage range.
- Low Power Consumption: With a supply current per amplifier of 40 µA to 80 µA, this amplifier is suitable for battery-powered and low-power applications.
- High Accuracy: It offers low input offset voltage (35 µV to 650 µV) and low input bias current (±10 nA to ±50 nA), ensuring high accuracy in various applications.
- Compact Packaging: The 14-SOIC package makes it ideal for space-constrained designs.
- Wide Operating Temperature Range: The amplifier operates over a temperature range of –40°C to 125°C, making it suitable for a variety of environmental conditions.
- High Common-Mode Rejection Ratio (CMRR): A CMRR of 65 dB ensures good noise rejection and stability in the presence of common-mode signals.
Applications
- Portable and Battery-Powered Devices: The low power consumption makes it ideal for use in battery-powered devices such as handheld instruments and portable medical equipment.
- Automotive Systems: The wide operating temperature range and robust performance make it suitable for automotive applications.
- Industrial Control Systems: It can be used in various industrial control systems where low power and high accuracy are required.
- Medical Devices: The high accuracy and low noise characteristics make it suitable for medical devices such as patient monitoring systems.
- Sensor Interfaces: It can be used to interface with various sensors due to its rail-to-rail input and output capabilities.
Q & A
- What is the supply voltage range for the OP496GS-REEL7?
The supply voltage range for the OP496GS-REEL7 is from 3 V to 12 V.
- What is the input offset voltage of the OP496GS-REEL7?
The input offset voltage of the OP496GS-REEL7 is between 35 µV and 650 µV.
- What is the slew rate of the OP496GS-REEL7?
The slew rate of the OP496GS-REEL7 is 0.3 V/µs.
- What is the gain bandwidth product of the OP496GS-REEL7?
The gain bandwidth product of the OP496GS-REEL7 is 450 kHz.
- What is the operating temperature range for the OP496GS-REEL7?
The operating temperature range for the OP496GS-REEL7 is from –40°C to 125°C.
- What is the package type for the OP496GS-REEL7?
The OP496GS-REEL7 comes in a 14-SOIC package.
- Is the OP496GS-REEL7 RoHS compliant?
Some versions of the OP496GS are RoHS compliant, but specific versions like OP496GS-REEL7 may not be. It is important to check the specific part number for RoHS compliance.
- What is the common-mode rejection ratio (CMRR) of the OP496GS-REEL7?
The CMRR of the OP496GS-REEL7 is 65 dB.
- What is the output current capability of the OP496GS-REEL7?
The output current capability of the OP496GS-REEL7 is ±4 mA.
- What are some typical applications for the OP496GS-REEL7?
The OP496GS-REEL7 is typically used in portable and battery-powered devices, automotive systems, industrial control systems, medical devices, and sensor interfaces.