
Allicdata Part #: | MAX966ESA-T-ND |
Manufacturer Part#: |
MAX966ESA-T |
Price: | $ 0.00 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | Maxim Integrated |
Short Description: | IC COMPARATOR R-R 8-SOIC |
More Detail: | Comparator General Purpose Open-Drain, Rail-to-Rai... |
DataSheet: | ![]() |
Quantity: | 1000 |
1 +: | 0.00000 |
Current - Output (Typ): | -- |
Base Part Number: | MAX966 |
Supplier Device Package: | 8-SOIC |
Mounting Type: | Surface Mount |
Package / Case: | 8-SOIC (0.154", 3.90mm Width) |
Operating Temperature: | -40°C ~ 85°C |
Hysteresis: | ±1mV |
Propagation Delay (Max): | 20µs |
CMRR, PSRR (Typ): | 56.48dB CMRR, 80dB PSRR |
Current - Quiescent (Max): | 10µA |
Series: | -- |
Current - Input Bias (Max): | 0.05µA @ 5.5V |
Voltage - Input Offset (Max): | 7mV @ 5.5V |
Voltage - Supply, Single/Dual (±): | 1.6 V ~ 5.5 V |
Output Type: | Open-Drain, Rail-to-Rail |
Number of Elements: | 2 |
Type: | General Purpose |
Part Status: | Active |
Packaging: | Tape & Reel (TR) |
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Linear - Comparators
The MAX966ESA-T is a dual rail-to-rail op amp with a wide common-mode range. This device is suitable for use in a variety of applications that require precision performance from low power operation. It has a low input bias current, high capability of operation, and is a stable device. It also features a low quiescent current operation, which makes it a great choice for a wide variety of design requirements.
Application Field
The MAX966ESA-T is mainly used in applications that require precision and low power consumption. Some of the general applications of this device include instrumentation applications, active filters, buffering, precision scaling, and amplifier functions. This device can also be used in more specialized applications such as medical devices, sensors, and photonics systems.
For instrumentation applications, the MAX966ESA-T op amp can be used for measurement and signal conditioning. It can be used to measure DC and low frequency signals with a high degree of accuracy. This device can also be used in active filters, where its rail to rail output feature can be used to optimize the filter design. It can also be used to buffer circuits and provide a high degree of isolation from transients or spikes in the signal.
In precision scaling and calibration circuits, the MAX966ESA-T op amp can be used to ensure an accurate output signal relative to an input signal. For medical devices and sensors, the device can be used to provide a high degree of accuracy and reliability. Finally, the device can be used in photonics systems to provide precise and accurate data translations.
Working Principle
The MAX966ESA-T op amp is a dual rail-to-rail op amp that works on the basic principle of voltage comparison between two input voltages. The device has two inputs and one output. The inputs are designated as A and B and the output is designated as the Output.
The device works by comparing the voltage on input A to that on input B. If the voltage on input A is higher than that on input B, then the device will output a high level digital signal, and if the voltage on input A is lower than that on input B, then the device will output a low level digital signal. The device also has an enable pin that is used to enable or disable the device.
The MAX966ESA-T op amp also has offset voltage and slew rate adjustments. The offset voltage allows the user to adjust the voltage that must be present on each of the inputs in order for the output to switch between high and low levels. The slew rate adjustment sets the rate at which the output voltage changes. These two parameters help to ensure that any signals present on the outputs are accurate and precise.
Conclusion
The MAX966ESA-T op amp is a powerful and precise dual rail-to-rail op amp suitable for a wide variety of applications. The device is capable of high accuracy measurements and signal conditioning, and can be used in instrumentation, active filters, buffering, precision scaling, and amplifier functions. The device also has offset voltage and slew rate adjustments for precise signal output. The low quiescent current and wide common-mode range also make it a great choice for low power applications.
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