All schematic design has been done on Ki Cad. It is an open-source software tool for the creation of electronic schematic diagrams and Printed circuit board (PCB). KiCad represents the ideal tool for projects oriented towards the creation of electronic hardware with an open-source flavour. KiCad is characterised by an interesting work-flow in which schematic components and footprints are actually two separate entities. The KiCad work-flow is comprised of two main tasks: making the schematic and laying
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ECE6130-Advanced VLSI Systems ** FreePDK 45nm Cadence virtuoso: Intro & Schematics ** Last Updated: 1/25/13 – Boris Alexandrov Setting Up Cadence Note: These instructions presume a basic level of Unix knowledge. 1. Logging into the ECE Linux machines Cadence at Georgia Tech is available on the Linux machines in Klaus 1448. You can log into these machines using your GTID and Password for authentication. If this is your first time using the Unix environment‚ please go through the following
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between the electrical and mechanical components of the line following mobile robot. 4. To be able to see a functional real time application of logic gates and related circuitry. II. ELECTRONIC DESIGN AND INVENTORY A. Schematic and Board Design Figure 1. Schematic of the Sensor Circuit Note: The photo transistor was later replaced with a light dependent resistor (LDR). Figure 2. Board Design of the Sensor Circuit Actual Board Size: 50 mm x 20 mm Note: During construction
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to pin 4. The remaining I/O pins for the ten LEDs and the other switch are decided by the student. See Appendix A for the Eagle schematic for the LED flasher circuit. Construction and Wiring Requirements • • Draw and label a circuit schematic showing all of the components and wiring connections before you start wiring the circuit. You will create your circuit schematic using the Eagle CAD software program. The breadboard wiring and components will follow proper bread boarding practices as discussed
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5.7 Necessity of D.C. Motor Starter At starting‚ when the motor is stationary‚ there is no back e.m.f. in the armature. Consequently‚ if the motor is directly switched on to the mains‚ the armature will draw a heavy current (Ia = V/Ra) because of small armature resistance. As an example‚ 5 H.P.‚ 220 V shunt motor has a full-load current of 20 A and an armature resistance of about 0.5 . If this motor is directly switched on to supply‚ it would take an armature current of 220/0.5 = 440 A which
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Report on Recycling of backwash and RO reject water Content: Objective Rationale Implementation Details Schematic diagram Process Outcome Conclusions & Recommendations Illustration Objective: To recycle the backwash and RO reject water. Rationale: To recycle backwash and RO reject water for better utilization of water and help in its conservation. Implementation Details: Location: Naagulapalem Plant type:
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relationship of voltage‚ load and speed to each other. Materials/Equipments: Power supply 8 50W bulb Connecting wires Digital multimeter D.C. Motor D.C. Generator Tachometer Receptacle board Schematic Diagram: Procedure: 1. Construct the circuit based on the given schematic diagram. Find first the common terminals to be used. Make sure that the professor had checked the connections before supplying voltage. 2. Drive the power supply until 200V is to be supply. 3. Start
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GUARDIAN GUARDIAN : Bridge Navigation Watch Alarm System (B N W A S) Installation Guidelines & Commissioning First Line Fault Finding Wiring & Schematic Diagrams C-VIGIL Ltd : marine‚ Digital House‚ Foxwood Road‚ Chesterfield‚ Derbyshire S41 9RF‚ UK. Switchboard: +44 (0)8432 898 464 Dir Tel: +44 (0)1246 269 469 -:- Dir Fax: +44 (0)1246 351 288 E: info@bridge-watch.co.uk -:- W: www.bridge-watch.co.uk Company Registration No: 04407624 -:- VAT No: 804 6004 68 -:- ISO 9001 No: GB2001654 M
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|Page 4 | |Objectives |Pages 4-5 | |Schematics |Page 5 | |Solutions |Page
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RMIT UNIVERSITY SCHOOL OF ELECTRICAL AND COMPUTER ENGINEERING EEET-2257 : DESIGN 2 LAB 1 : SCHEMATIC CAPTURE AND SIMULATION WITHIN ALTIUM AIM The primary aim of this laboratory class is to gain familiarity with the following concepts: 1. Schematic capture of electronic circuits using Altium. 2. Simulation of the time domain and frequency domain responses of electronic circuits using Altium (DXP). REFERENCES A. S. Sedra‚ K. C. Smith‚ Microelectronic Circuits‚ 6th Edition‚ Oxford University
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