LT1991CMS#PBF Allicdata Electronics
Allicdata Part #:

LT1991CMS#PBF-ND

Manufacturer Part#:

LT1991CMS#PBF

Price: $ 1.97
Product Category:

Integrated Circuits (ICs)

Manufacturer: Linear Technology/Analog Devices
Short Description: IC OPAMP PGA 560KHZ RRO 10MSOP
More Detail: Programmable Gain Amplifier 1 Circuit Rail-to-Rail...
DataSheet: LT1991CMS#PBF datasheetLT1991CMS#PBF Datasheet/PDF
Quantity: 5901
1 +: $ 1.78920
25 +: $ 1.18994
100 +: $ 1.06029
Stock 5901Can Ship Immediately
$ 1.97
Specifications
Current - Input Bias: 2.5nA
Base Part Number: LT1991
Supplier Device Package: 10-MSOP
Package / Case: 10-TFSOP, 10-MSOP (0.118", 3.00mm Width)
Mounting Type: Surface Mount
Operating Temperature: 0°C ~ 70°C
Voltage - Supply, Single/Dual (±): 2.7 V ~ 36 V, ±1.35 V ~ 18 V
Current - Output / Channel: 21mA
Current - Supply: 130µA
Voltage - Input Offset: 25µV
Series: --
-3db Bandwidth: 110kHz
Gain Bandwidth Product: 560kHz
Slew Rate: 0.12 V/µs
Output Type: Rail-to-Rail
Number of Circuits: 1
Amplifier Type: Programmable Gain
Part Status: Active
Packaging: Tube 
Description

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The LT1991CMS#PBF is a precision, low-power, low-voltage amplifier architecture with a wide range of linear applications. Its wide dynamic range allows it to maintain desired performance through a variety of operating conditions. Its low-power consumption and small package size makes it an excellent choice for portable instrumentation and medical instrumentation. It is designed to interface directly with digital voltages, providing stable and accurate readings in a wide range of applications.

The LT1991CMS#PBF offers several benefits in the application field of instrumentation, such as precision gain control and high-impedance inputs for high-speed, low-noise circuit designs. The combination of amplifier performance, small size, and low power consumption makes it an ideal solution for portable and medical instrumentation.

In instrumentation, the LT1991CMS#PBF can be used to buffer signals and condition input signals for analog-to-digital converters, allowing for improved dynamic range and better performance of downstream circuits. It is also useful for increasing amplifier gains, providing that the gains are kept within the specified range. This amplifier can be used in a wide variety of applications, including high-speed data acquisition, precision instrumentation, and medical instrumentation.

The LT1991CMS#PBF is an Operational Amplifier (Op Amp). An Op Amp is an amplifier that amplifies the difference between two input signals. The LT1991CMS#PBF is a dual-channel buffer amplifier, meaning that it accepts two output signals and amplifies the difference between the two signals. By doing this, the buffer amplifier increases the amplifier gain and reduces the noise in the signal.

The LT1991CMS#PBF offers a low-voltage solution to instrumentation and medical instrumentation. This low-voltage solution is a result of its low-power consumption and small package size. The LT1991CMS#PBF is configured in a small 8-pin DIP, saving users both time and money during the design and implementation process. This low-voltage solution provides the flexibility needed for a wide range of instrumentation and medical instrumentation applications, from high-speed data acquisition to low-level signal conditioning.

The LT1991CMS#PBF offers a wide range of amplifier options for instrumentation and medical instrumentation applications. These amplifier options range from wide-range gain control (up to 64 dB) to low-noise operation at higher gains (down to 3 dB). The low-noise operation is highly advantageous in medical instrumentation applications where high accuracy readings are critical. Finally, its high-impedance inputs allow users to take full advantage of its dynamic range no matter the applied signal.

In summary, the LT1991CMS#PBF is a low-power, low-voltage amplifier architecture with a wide dynamic range, small package size, and low-power consumption. Its wide range of amplifier options and low-noise operation make it an excellent choice for instrumentation and medical instrumentation applications. It is widely used in portable and medical instrumentation, high-speed data acquisition, and precision instrumentation. Its wide dynamic range and high-impedance inputs offer a wide range of opportunities for flexible, low-noise circuit designs.

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

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