On completion of this experiment, you should be able to use Quartus II to: (1) create...
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On completion of this experiment, you should be able to use Quartus II to: (1) create a Chemical Storage System design using schematic capture and VHDL design entry in modular form and (ii) perform functional simulation. As shown in Figure 6.1 the chemical storage tank has three level sensors LSI, LS2 and LS3. It has one high pressure tap (HPT) and one low pressure tap (LPT) to fill in the chemicals, a seven-segment LED display to display the status of the chemical level in the tank and a siren which will be activated continuously when the tank is empty. The chemical is constantly consumed by the production floor. LSI 1 0 0 To production line 1 0 1 1 0 LPT 0 Other combination HPT "oo" In this experiment we need to design the chemical storage controller. The status of the Seven-segment display, HPT and LPT valves are shown in Table 6.1 according to the level of chemical sense in the three level sensors. The partitioning of the Chemical Storage Controller is shown in Figure 6.3. You need to design the LevelDetector module in schematic design and the Display Driver in VHDL entry method. Use an appropriate logic gate to realize the correct Siren output. > 2² 23 LS2 LS3 HPT LPT Level 1 0 0 1 0 1 0 1 0 1 0 1 0 Figure 6.1 Chemical Storage Tank Full Half Critical Chemical Storage Controller QLSI Empty N.A. Table 6.1 CLS2 CLS3 7-segment display character F H C E Blank On completion of this experiment, you should be able to use Quartus II to: (1) create a Chemical Storage System design using schematic capture and VHDL design entry in modular form and (ii) perform functional simulation. As shown in Figure 6.1 the chemical storage tank has three level sensors LSI, LS2 and LS3. It has one high pressure tap (HPT) and one low pressure tap (LPT) to fill in the chemicals, a seven-segment LED display to display the status of the chemical level in the tank and a siren which will be activated continuously when the tank is empty. The chemical is constantly consumed by the production floor. LSI 1 0 0 To production line 1 0 1 1 0 LPT 0 Other combination HPT "oo" In this experiment we need to design the chemical storage controller. The status of the Seven-segment display, HPT and LPT valves are shown in Table 6.1 according to the level of chemical sense in the three level sensors. The partitioning of the Chemical Storage Controller is shown in Figure 6.3. You need to design the LevelDetector module in schematic design and the Display Driver in VHDL entry method. Use an appropriate logic gate to realize the correct Siren output. > 2² 23 LS2 LS3 HPT LPT Level 1 0 0 1 0 1 0 1 0 1 0 1 0 Figure 6.1 Chemical Storage Tank Full Half Critical Chemical Storage Controller QLSI Empty N.A. Table 6.1 CLS2 CLS3 7-segment display character F H C E Blank
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Related Book For
Financial Analysis with Microsoft Excel
ISBN: 978-1285432274
7th edition
Authors: Timothy R. Mayes, Todd M. Shank
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