Allicdata Part #: | LTC6102IDD#PBF-ND |
Manufacturer Part#: |
LTC6102IDD#PBF |
Price: | $ 2.82 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | Linear Technology/Analog Devices |
Short Description: | IC OPAMP CURR SENSE 200KHZ 8DFN |
More Detail: | Current Sense Amplifier 1 Circuit 8-DFN (3x3) |
DataSheet: | LTC6102IDD#PBF Datasheet/PDF |
Quantity: | 679 |
1 +: | $ 2.56410 |
25 +: | $ 1.81868 |
100 +: | $ 1.50368 |
Series: | -- |
Packaging: | Tube |
Part Status: | Active |
Amplifier Type: | Current Sense |
Number of Circuits: | 1 |
Output Type: | -- |
Slew Rate: | -- |
Gain Bandwidth Product: | 200kHz |
Current - Input Bias: | 60pA |
Voltage - Input Offset: | 3µV |
Current - Supply: | 420µA |
Current - Output / Channel: | 1mA |
Voltage - Supply, Single/Dual (±): | 4 V ~ 60 V |
Operating Temperature: | -40°C ~ 85°C |
Mounting Type: | Surface Mount |
Package / Case: | 8-WFDFN Exposed Pad |
Supplier Device Package: | 8-DFN (3x3) |
Base Part Number: | LTC6102 |
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The LTC6102IDD#PBF is a low power, high precision bipolar operational amplifier with a wide range of applications. Its low noise and low voltage operation make it suitable for use in applications such as temperature and humidity sensing, medical instruments, and audio equipment. Its low input offset voltage, high gain accuracy, and low output noise make it an ideal choice for motion sensing and instrumentation applications.
The LTC6102IDD#PBF is a bipolar operational amplifier with two differential inputs and one single-ended output. It has an extremely low noise floor of 50μVRMS and a low voltage noise of just 1μV/V. The low voltage noise makes it particulary suitable for instrumentation, motion sensing and medical diagnostic applications. Its maximum gain is 120dB and its low input offset voltage allows for precise readings with multiple amplifiers. Its low power operation means it consumes less power and generates less heat than traditional operational amplifiers.
The key features of the LTC6102IDD#PBF are its low voltage operation and low input offset voltage. This allows for increased accuracy in sensing and measurement applications, as it eliminates the need for external offset correction circuitry. The low input offset voltage also reduces the need for additional circuit elements to provide bias current that would otherwise be required. The low voltage operation also ensures that the amplifier will not be affected by the power supply noise, reducing the risk of erroneous readings.
The LTC6102IDD#PBF also features a wide common-mode input range. This feature is important in applications such as temperature and humidity sensing, as it allows for measurements to occur over a wide range of conditions without the need for additional circuitry or components. Furthermore, the LTC6102IDD#PBF also has high input and output impedance which makes it suitable for use in applications where a high impedance is necessary.
The LTC6102IDD#PBF uses a three-stage current feedback structure to achieve excellent linearity and fast settling time. The internal feedback network is composed of a low impedance bias network, an adjustable gain network and a high impedance output network. This network enables the amplifier to achieve accurate readings over a wide range of conditions. Additionally, its low phase shift at high frequencies makes it suitable for high frequency applications such as audio, video, and radio frequency signal measurements.
The LTC6102IDD#PBF can be used for a wide range of applications including temperature and humidity sensing, audio and video signal processing, telecommunication systems, and medical instruments. Its low power consumption, low input offset voltage, wide range of operation, and excellent linearity make it extremely suitable for these applications. Furthermore, its wide common-mode input range makes it suitable for applications such as temperature and humidity sensing with multiple sensors. The amplifier’s high gain accuracy and low output noise make it perfect for motion sensing and instrumentation applications.
The specific data is subject to PDF, and the above content is for reference
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