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Which IC is full adder?
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Which IC is used in full subtractor?
Answer : In a full subtractor circuit, the most commonly used ICs are the **74LS83** or **74LS283**. These are 4-bit binary full adder ICs, but can be adapted for subtraction with proper handling of borrow and ... -bit binary adder ICs) can be adapted for subtraction. Let me know if you'd like more details!...

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How many inputs does a full adder have?
Answer : A full adder has **three inputs**: 1. **A** - The first input bit. 2. **B** - The second input bit. 3. **Carry-in (Cin)** - The carry from the previous addition. These inputs are used to perform ... **Sum (S)** - The result of the addition. - **Carry-out (Cout)** - The carry to the next addition....

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What is a 4-bit full adder?
Answer : A **4-bit full adder** is a digital circuit used to add two 4-bit binary numbers along with a carry-in bit, and produce a sum and a carry-out bit. Here's how it works in simple ... full adder is a circuit used to add 4-bit binary numbers together while managing the carry between each bit addition....

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What is full adder carry?
Answer : A **full adder** is a digital circuit used to add binary numbers. It takes in three inputs: two bits to add, and a carry input (which could come from a previous stage in a multi-bit addition). ... of the bits exceeds the limit of 1 in binary, and that overflow is carried to the next addition stage....

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What is CMOS full adder?
Answer : A **CMOS full adder** is a digital circuit used to perform the addition of two binary numbers, including a carry-in value from a previous addition. It is built using **CMOS ( ... for binary addition in digital circuits, leveraging CMOS technology to achieve low power and high-speed performance....

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What is full wave adder?
Answer : A **full-wave adder** is a type of binary adder that can add two binary numbers and generate a sum and a carry output. It's typically used in digital circuits, particularly in ... building more complex digital systems, such as multi-bit adders used in computers to perform arithmetic operations....

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What is a half and a full adder?
Answer : A **half adder** and a **full adder** are basic digital circuits used to perform binary addition. They are essential building blocks in digital electronics and form the foundation for more ... in arithmetic logic units (ALUs) and are crucial for tasks like binary addition in digital computers....

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What is half and full adder?
Answer : A **half adder** and a **full adder** are basic digital circuits used to perform binary addition. ### **1. Half Adder** A half adder is a circuit that adds two single- ... blocks for more complex arithmetic operations in digital circuits, like binary addition in CPUs or other computing systems!...

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Explain full adder with its logic diagram & truth table.

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Which IC is used for 8 1 mux?
Answer : For an 8-to-1 multiplexer (8:1 MUX), the common IC used is the **74LS157** or **74HC157**, depending on whether you're using standard logic (LS) or high-speed CMOS (HC) logic. The **74LS157** is ... . So, depending on your application and logic family (LS, HC, etc.), you can pick one of these ICs....

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Which pin is active low pin in 74153 IC?
Answer : In the 74153 IC, which is a dual 4-input multiplexer, the **active low** pins are the **Enable** pins (often labeled as **\(\overline{E}\)**). These pins control whether the multiplexer is enabled or not. The ... overline{E_1}\)** (pin 6) and **\(\overline{E_2}\)** (pin 15) are the active low pins....

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Which IC is used for AND gate?
Answer : For an AND gate, the most commonly used IC is the **7408**. This IC contains four independent 2-input AND gates, meaning you can use it to implement multiple AND operations in one ... where AND gates are required. Just make sure to check the datasheet for pin configuration and voltage requirements....

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Which IC is used for NOT gate?
Answer : For a NOT gate (also known as an inverter), you can use various types of ICs. The most commonly used one is from the 7400 series, such as: - **7404**: This IC contains six NOT gates ( ... such as the **74LS04**. These ICs are standard and widely available for basic logic operations like NOT gates....

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Which IC is used in DAC?
Answer : In Digital-to-Analog Converters (DACs), different Integrated Circuits (ICs) can be used depending on the type of DAC and the application. Here are some common ICs used in DACs: 1. **Resistor- ... of IC depends on factors like resolution, speed, and the application in which the DAC is used....

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A 3 φ I.M. has synchronous speed of 250rpm and 4% slip at full load. The rotor has a resistance of 0.02Ω/ph and stand still reactance of 0.15Ω/ph. Calculate i) The speed at which max torque is developed. ii) The ratio of maximum to F. L. torque. iii) The ratio of maximum to starting torque.

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Why is it called ripple adder?
Answer : A **ripple adder** is a type of digital adder used to perform binary addition. It's called a "ripple" adder because of the way the carry bit propagates (or "ripples") through each bit of the adder. ... "ripple" comes from the way the carry bit "ripples" through the adder stages one bit at a time....

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What is carry-in half adder?
Answer : A **half adder** is a basic digital circuit that adds two single-bit binary numbers. It consists of two outputs: 1. **Sum** - the result of the addition. 2. **Carry** - the carry-over, which is generated if ... - Carry-out = (A AND B) OR (Cin AND (A XOR B)) Does this help clarify the difference?...

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What is simple adder?
Answer : A **simple adder** is a basic digital circuit used to add two binary numbers. In its simplest form, it adds two bits (binary digits) at a time. There are two common types ... next. These simple adders are the building blocks for more complex arithmetic circuits in computers and digital systems....

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Why is it called adder?
Answer : The term "adder" in electronics refers to a digital circuit that performs the arithmetic operation of addition. The name "adder" comes from the fact that the circuit is designed specifically to add ... " just reflects the basic function it performs - addition - in the context of digital electronics....

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