can be used as a XBee router module. Fig. 3.32 Parameters configuration of ZigBee router 3.4.3.2 Arduino coding 3.4.3.2.1 Remote unit coding Fig. 3.33 Remote sensor coding The diagram above illustrates the coding statements written using the Arduino programming software. Each code line is described in the fig 3.33. The wireless sensor node uses the above code to efficiently detect the water level and transmit the data to the control unit via ZigBee 3.4.3.2.2 Motor control unit Fig. 3.34 Arduino
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SC197 DF Gate Error SC101 Exposure Lamp Error SC198 Memory Address Error SC107 Scanner Lamp Regulator Malfunction SC199 DF Scanning Finish Error SC120 Scanner Home Position Error 1 HP Sensor Abnormal-Stays Off SC201: Polygon Motor Error SC121 Scanner Home Position Error 2 HP Sensor Abnormal-Stays On SC221 Scan Length Detection Error SC122 Scanner Home Position Error 3 SC123 Scanner Home position Error 4 SC220 Laser Synchronization Detection Error SC230 BCU Received
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objective of this research project is to measure the mechanics of laryngoscopy‚ so that an advanced training mannequin can be developed. This summer an instrumented laryngoscope has been developed which uses a 6-axis force/torque sensor and a magnetic position/orientation sensor to quantify the interactions between the laryngoscope and the patient. Experienced physicians as well as residents in training have used this device on an existing mannequin‚ and the force and motion trajectories have been visualized
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We see certain wearable technologies in clothing as fully integrated‚ stand-alone offerings while others are enablers of others such as sensors. Wearable sensors must be flexible‚ durable‚ multifunctional and washable to be used in clothing. Most wearable sensors made of pouring a liquid polymer insulator over nanowires attached to a silicon plate. Sensors get integrated into clothing or can be in direct contact with the human skin. This research evaluates wearable technology in clothing including
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Step 3: Putting the circuit in a box . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 5 Step 4: The Sensor Part . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 9 Step 5: Installing the Device .
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Lecture-13 Prepared under QIP-CD Cell Project Internal Combustion Engines Ujjwal K Saha‚ Ph.D. Department of Mechanical Engineering Indian Institute of Technology Guwahati 1 Gasoline Injection In a multi-cylinder engine with a carburetor‚ it is difficult to obtain a uniform mixture in each cylinder. The various cylinders receive the airgasoline mixture in varying quantities and richness. This problem is called the maldistribution and can be solved by the port injection system by having the
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for ARM 7 TDMI microprocessor. +/- 9 v: for ECG sensor circuit. For temperature sensor circuit‚ I am using LM35 its Precision Centigrade Temperature Sensor. LM35 series are precision integrated-circuit temperature sensors‚ whose output voltage is linearly proportional to Celsius temperature.LM35 is rated to operate over a −55° to +150°C temperature range. This is a 3 pin IC input‚ output and ground pin. 3.1.4 Electrocardiograph sensor: For ECG I am using IC AD624AD it’s a precision
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CENTRIPETAL FORCE ON A PENDULUM OBJECTIVE To measure centripetal force exerted on a pendulum using the force sensor bob and in so doing compare this value determined by force calculations based on the height of the pendulum. THEORY Newton’s laws of motion are the basis for this experiment. Newton’s first law of motion states that a body in motion will remain in motion unless acted upon by an external force. Newton’s second law of motion states that the rate of momentum of a body is dependent on
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and the acceleration down the plane? Equipment: * Ticker Timer (AC 50Hz ) * Incline (wood) * Meter ruler * Dynamic Trolley ( Mass: 380.55 ± 0.01g ) * Carbonated paper * Power Source (2W) * Data Logger * Motion Sensor * Tennis Ball Method for ticker tape experiment: 1. We setup the equipment effectively as shown below in the diagram. 2. We then connected the ticker timer to the power source. 3. We had a person holding the car in place at the top
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project first the sensors will send the information regarding field to the microcontroller. It will send the information to the remote location receiver by using RF transmitter then the receiver will receive the details of agricultural field and will control. There are three receiver sections‚ in this first the soil sensor will see the fertility of the field and it is given to the pumping motor in the receiver section by using microcontroller. The second one is temperature sensor and it is given
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