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Why is an instrumentation amplifier better than a differential?
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How does an instrumentation amplifier differ from a regular differential amplifier?

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What is a typical application for an instrumentation amplifier?

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What is an instrumentation amplifier?
Answer : An **instrumentation amplifier** is a type of differential amplifier that is specially designed to amplify small differential signals (the difference between two input signals) while rejecting any ... signals, commonly used in situations where accuracy is crucial, and noise rejection is necessary....

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What is the function of an instrumentation amplifier?

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What is the main function of an instrumentation amplifier?

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What is the working principle of an instrumentation amplifier?

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What are the main purposes of an instrumentation amplifier?

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What is the main purpose of an instrumentation amplifier?

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What is the purpose of RG in an instrumentation amplifier?
Answer : In an instrumentation amplifier, **RG** is a **resistor** that plays a critical role in controlling the **gain** of the amplifier. The purpose of RG is to set the amplification ... the gain of the instrumentation amplifier, allowing it to amplify the desired signal while rejecting unwanted noise....

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What are the four applications of an instrumentation amplifier?

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What is the advantage of an instrumentation amplifier?

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What is another name for an instrumentation amplifier?

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Why does instrumentation amplifier has high input impedance?
Answer : An instrumentation amplifier has high input impedance primarily for two main reasons: 1. **Buffering Effect of the Op-Amps**: The instrumentation amplifier typically uses a combination of ... sensor readings, and other systems where small voltages need to be measured accurately without distortion....

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Why is a potential divider better than a variable resistor?

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Why microcontroller is better than microprocessor?
Answer : Microcontrollers are often considered better than microprocessors for certain applications, especially when you're looking for a simple, cost-effective solution for specific tasks. Here's why: ### 1. * ... , sensors, or small embedded devices, a **microcontroller** is typically the better choice....

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Why secondary batteries are better than primary batteries?

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Why LC oscillator is better than RC oscillator?
Answer : An LC oscillator is often considered better than an RC oscillator for certain applications, and here are some reasons why: ### 1. **Higher Frequency Operation**: - **LC Oscillators ... a good choice for low-frequency applications or where simplicity and cost are more important than performance....

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Why Delta is better than Star?
Answer : When comparing Delta and Star Alliance, it's important to clarify that you're comparing two different things: **Delta** is an airline (Delta Air Lines), while **Star Alliance** is an ... you prioritize the convenience of one airline (Delta) or the variety of international choices (Star Alliance)....

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Why Kirchhoff's law is better than Ohm's law?
Answer : Kirchhoff's laws and Ohm's law are both fundamental principles in electrical circuits, but they serve different purposes. Saying one is "better" than the other depends on the context, as both are ... while Kirchhoff's laws help set up the equations that describe the overall behavior of the circuit....

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Why Arduino is better than microcontroller?
Answer : Arduino is often considered "better" than traditional microcontrollers for beginners and hobbyists due to several key reasons. However, it's important to note that the comparison is somewhat based ... are more suited for advanced users or for applications that require deep control and optimization....

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Why is HVDC better than AC?
Answer : High Voltage Direct Current (HVDC) is often considered better than Alternating Current (AC) for certain applications because of several advantages. Here are some key reasons why HVDC can be a ... transmission, **AC** is still dominant in many areas, particularly in local distribution systems....

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Why DC is better than AC in transmission?
Answer : DC (Direct Current) is often considered better than AC (Alternating Current) for certain applications in transmission, especially over long distances. Here's why: 1. **Lower Energy Losses**: ... long-distance transmission, **DC** offers distinct advantages. Does that help clarify the comparison?...

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Why half wave rectifier is better than full wave rectifier?

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How does a differential pair amplifier reject common-mode signals?

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