MAX4461HETT+T Allicdata Electronics
Allicdata Part #:

MAX4461HETT+TCT-ND

Manufacturer Part#:

MAX4461HETT+T

Price: $ 3.25
Product Category:

Integrated Circuits (ICs)

Manufacturer: Maxim Integrated
Short Description: IC OPAMP INSTR 2.5MHZ RRO 6TDFN
More Detail: Instrumentation Amplifier 1 Circuit Rail-to-Rail 6...
DataSheet: MAX4461HETT+T datasheetMAX4461HETT+T Datasheet/PDF
Quantity: 1989
1 +: $ 2.94840
10 +: $ 2.77956
25 +: $ 2.22340
50 +: $ 2.11226
100 +: $ 1.94550
250 +: $ 1.84542
500 +: $ 1.41186
Stock 1989Can Ship Immediately
$ 3.25
Specifications
Current - Input Bias: 1pA
Supplier Device Package: 6-TDFN-EP (3x3)
Package / Case: 6-WDFN Exposed Pad
Mounting Type: Surface Mount
Operating Temperature: -40°C ~ 85°C
Voltage - Supply, Single/Dual (±): 2.85 V ~ 5.25 V
Current - Output / Channel: 150mA
Current - Supply: 800µA
Voltage - Input Offset: 100µV
Series: --
-3db Bandwidth: 25kHz
Gain Bandwidth Product: 2.5MHz
Slew Rate: 0.25 V/µs
Output Type: Rail-to-Rail
Number of Circuits: 1
Amplifier Type: Instrumentation
Part Status: Active
Packaging: Strip
Description

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MAX4461HETT+T is a high-performance, low-power, low-voltage, rail-to-rail amplifier typically used in instrumentation and precision-level sensing applications. With its dual-channel operation and 200uV offset voltage, it is ideal for applications where power consumption is a major factor. It offers superior accuracy, low noise and low drift, making it ideal for low voltage operation. The dual-channel operational amplifier features fast settling time, low-input bias current, high CMRR and low input offset voltage.

The simple construction of the MAX4461HETT+T is a big advantage, since most of its components are monolithic integrated circuitry with integrated resistors and capacitors that are integrated into a single chip package. The microchips are designed to allow a wide range of input voltage range, and can operate at up to 24V for both inputs. They can be driven with fairly large current loads, depending on the application.

The field of instrumentation and precision-level sensing is a broad area, with many applications, including medical, industrial and sensing industrial applications. MAX4461HETT+T are often used in these applications to provide reliable and accurate output with minimal power consumption and low-voltage requirements. The dual-channel, low-voltage, rail-to-rail amplifier is an ideal tool for this purpose.

The working principle of MAX4461HETT+T is based on the use of a differential amplifier stage. The differential amplifier is a circuit where two separate input signals are compared, and the differences between them are amplified and presented as the output. The input stage of the MAX4461HETT+T is a differential amplifier that is used to provide the required input voltage. The differential amplifier is used to detect any small differences between the two signals, and amplifies them accordingly. The output of the differential amplifier is then sent to the next stage, where the amplifying process occurs.

The amplifying stage of the MAX4461HETT+T is a BiCMOS amplifier with a high degree of stability, low input bias current and minimal power consumption. The BiCMOS amplifier is an ideal choice for low voltage applications since it provides a very stable output. The final output stage of the MAX4461HETT+T is a rail-to-rail output stage, which gives an output that is much larger than the differential amplifier stage. This output is then sent to the output stage, where the signal is further conditioned and amplified.

In summary, the MAX4461HETT+T is an ideal amplifier for applications where precision, power and low-voltage operation are important. The dual-channel, low-voltage, rail-to-rail amplifier features fast settling time, low-input bias current, high CMRR, and low input offset voltage. The high performance and stability that this device offers make it a preferred choice for instrumentation and precision-level sensing applications. This device is ideal for applications where accurate and reliable output is desired with minimal power consumption and low-voltage requirements.

The specific data is subject to PDF, and the above content is for reference

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