Determine the output Q in each of the following logic diagram 1. A=1, B=1, C=1, D=0, then Q=? 2. A=0, B=0, C=1, D=1, then Q=? A=1- A=0- B=1 B=0 AND Q=? AND Q=? OR OR D-0) AND C=1 C=1 – D=0 D=1 AND
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- (c) Figure Q3(c)(i) shows a register and Figure Q3(c)(ii) shows the input waveforms (CLOCK and Data in) to the circuit. A1 A9 A10 A2 Function generator A3 A11 A12 AS A13 A6 A14 A7 A15 Data in Bop.7) ip.r 82p.7) Logic analyser U1 U2 U3 U4 UO 6. 1. 6 1 6 INVERTER 3 CLK 3 CLK oCLK CLK 5 K K 5 K K 4027 Clock Function generator Figure Q3(c)(i) (i) Determine the type of register as shown in Figure Q3(c)(i).(b) Figure Q2(b) shows input waveforms of A, B and C. Draw the logic circuit that will generate the output waveform X. A Inputs B Output X Figure Q2(b) : Input and output waveformsUSE DIGITAL LOGIC AND DESIGN Part 1: In Figure_4; we have 4-bit Comparator using 2-bit Comparators block. You have to satisfy given condition by applying all data on figure 4. At the end, given condition should produce HIGH output and other two should be LOW. A3 A2 A1 A0 = 1101 and B3 B2 B1 B0 = 1110 Figure_4 Part 2: The serial data-input waveform (Data in) and data-select inputs (S0 and S1) are shown in Figure_5. Determine the data-output waveforms from D0 through D3. Figure_5 Part 3: Decoder can be useful when we have to decode some specific numbers from their equivalent code. Figure 6 has a concept of 3 to 8 line decoder from which you have to generate output waveform from D0 to D7 with proper relationship to input. Figure_6 Part 4: The data-input and…
- ii) For the circuit shown in Figure B9, a. Find logic functions for Y and Z. b. Simplify function Z using Boolean algebra. Y Figure B9 ABAnalyze the logic function of the circuit A₁ B₁ CH D -S₁H.W :- 1) A four logic-signal A,B,C,D are being used to represent a 4-bit binary number with A as the LSB and D as the MSB. The binary inputs are fed to a logic circuit that produces a logic 1 (HIGH) output only when the binary number is greater than 01102-610. Design this circuit. 2) repeat problem 1 for the output will be 0 (LOW) when the binary input is less than 01112-710- Saleem Lateef
- The numbers from 0-9 and a no characters is the Basic 1 digit seven segment display * .can show False True In a (CA) method of 7 segments, the anodes of all the LED segments are * "connected to the logic "O False True Some times may run out of pins on your Arduino board and need to not extend it * .with shift registers True FalseImplement the circuit (draw the schematic) using the different implementation methods for the 4 logic functions b3M2, b2M2, b1M2 et b0M2: b2M2: With a 16 to 1 multiplexer b1M2: With an 8 to 1 multiplexer. bOM2: With a decoder and an OR logic gate. OOOO 0 D D OD 0 D 1 1 1 1 1 1 1 1 OOOOHHH D 1 1 1 0 D D 0 1 1 1 1 OOHHOHHOCHHOOHH 0 0 1 0 1 1 0 1 CHOHO 0 0 1 D 1 0 CHOHOHOHO. 1 0 1 1 1 0 1 b3 M2 0 ONOC 1 0 0 OOOHPCHAT 0 0 0 1 d 0 1 d d 1 1 d 62 M2 0 HOHOC al 0 0 0 FREETROOT d 1 d d 0 0 d b1 M2 0 HOL 0 0 1 0 1 d 1 0 PPO d d HOD 0 d b0 M2 0 1 0 1 1 0 1 0 d 0 0 d d 0 1 dQ1/ Draw the logic circuit after simplify the circuit show below using K. map: A Y. C- Add filo B.
- 2. Explain which of the following instructions are invalid? State the invalidation reason and give the correct form for invalid instructions: a. MOV DL,AX b. MOV ES,CX c. MOV [BX],[2000] d. MOV BX,[AX] e. MOV CL,[BL+200] f. MOV 1234,DX g. MOV CH,[BX+SI+300] h. MOV DS,[SI+DI-5] i. MOV [4500],1234 j. MOV 200,[300]answere fast please question from DIGITAL LOGIC DESIGN TOPIC : Designing Combinational Logic You are designing a water level circuit using 74ALS151 (8 to 1 Multiplexer IC)* When input is 0000 that means tank is empty.* When input is 1111 that means tank is full.* When input is below 5, that means water level is low.* So, make a circuit using 74ALS151 Multiplexer IC that shows a "low water" indicator light(by setting an output L to 1) when the water level drops below level 5.Design a logic circuit for decoder that accepts 3-bit input and displays alphabet “048” at the seven- segment as illustrated at Figure 1 (a). The input-output mapping shown in Table 1 (a). Refer Figure 1(b) and Figure 1(c) for seven-segment display format showing arrangements of segments using common anode connection. Show each steps clearly to produce the expressions and required design. [Rekabentuk litar logik untuk penyahkod yang menerima input 3-bit dan paparkan abjad "048" di tujuh-segmen seperti digambarkan pada Rajah 1(a). Pemetaan masukan-keluaran ditunjukkan dalam Jadual 1(a). Rujuk Rajah 1(b) and Rajah 1(c) untuk format paparan tujuh-segmen yang menunjukkan susunan segmen menngunakan sambungan 'common anode'. Tunjukkan setiap langkah dengan jelas untuk menghasilkan ungkapan dan reka bentuk yang dikehendaki.] Xs X6 X7 DECODER Figure 1(a) [Rajah 1(a)] a b с d e f g a 80123456789 Figure 1(c) [Rajah 1(c)] g Figure 1 (b) [Rajah 1(b)] b с DP