adder|adders in English

noun

[ad·der || 'ædə]

common European viper; any of a number of venomous or nonvenomous snakes resembling the viper; person or thing that adds; electronic circuit that sums two numbers in a computer (Computers)

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1. Implementation of Full Adder using Half Adders 2 Half Adders and a OR gate is required to implement a Full Adder

2. 4-bit Full adder ‘n’ bit adder can be made using ‘n’ full Adders in series

3. This way, 4-bit adder can be made using 4 full Adders.

4. A multiplicity of adders (53) is electronically controlled by an adder-control signal.

5. An accumulation adder has n unit accumulative adders arranged to correspond to the n groups.

6. For the adder allowances shown in Table # above, distinctions are made between primary and secondary types of adders

7. • Half or full adders, i.e. basic adder cells for one denomination (EXCLUSIVE-OR circuits H 03 K 19/21)

8. For the adder allowances shown in Table 3 above, distinctions are made between ‧primary‧ and ‧secondary‧ types of adders.

9. It is designed using the full Adders connected in cascade form such that the output carry of each full-adder is joined to the input carry of the subsequent full adder

10. For the adder allowances shown in Table 3 above, distinctions are made between ‘primary’ and ‘secondary’ types of adders.

11. • Half adders; Full adders consisting of two cascaded half adders

12. For the adder allowances shown in Qualifying Products Table 25 above, distinctions are made for ‘Primary’ and ‘Secondary’ types of adders.

13. For the adder allowances shown in Qualifying Products Table 25 above, distinctions are made for "Primary" and "Secondary" types of adders.

14. A full adder can also be constructed from two half adders by connecting A and B to the input of one half adder, then taking its sum-output S as one of the inputs to the second half adder and Cin as its other input, and finally the carry outputs from the two half-adders are connected to an OR gate.

15. For the adder allowances shown in Qualifying Products Table 25 above, distinctions are made for “Primary” and “Secondary” types of adders.

16. The full adder is usually a component in a cascade of adders, which add 8, 16, 32, etc. bit binary numbers.

17. Till now, we have already read (in the previous articles) about designing and uses of the basic form of Adders and subtractors such as Half Adder, Full Adder, Half Subtractor, and Full Subtractor.

18. These full Adders can be used for adding ‘n’ bit number sif ‘n’ number of full Adders are connected in a cascaded setup with c out connected to the C in of the next full adder

19. In this tutorial, we are going to learn about the N-bit Parallel Adders (4-bit Binary Adder and Subtractor) in Digital Electronics

20. Binary Adders: Half Adders and Full Adders In this set of slides, we present the two basic types of Adders: 1

21. Adder, any of several groups of venomous snakes of the viper family, Viperidae, and the Australo-Papuan death Adders, viperlike members of Elapidae, the cobra family

22. What does Adders mean? Information and translations of Adders in the most comprehensive …

23. To overcome the above limitation faced with Half Adders, Full Adders are implemented

24. 11: Adders CMOS VLSI Design Slide 13 Carry-Ripple Adder qSimplest design: cascade full Adders – Critical path goes from Cin to Cout – Design full adder to have fast carry delay C in C out B 1 A 1 B 2 A 2 B 3 A 3 B 4 A 4 S 4 S 3 S 2 S 1 C 3 C 2 C 1

25. Adder circuit