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A User Guide: How to Use the Digital Multimeter - Coursework Example

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"A User Guide: How to Use the Digital Multimeter" paper gives and illustrates briefly an overview of most of the symbols used to make circuit diagrams and their meaning. A glossary at the end of the document gives an alphabetical list of an overview of the abbreviations and terms used in the guide. …
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A User Guide: How to Use the Digital Multimeter
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User guide of a digital Multimeter ID number: Programme: Module: Table of Contents Table of Contents 2 Scope 5 Limitations 6 Graphics and symbols 6 Section one: 6 1.1 How was the data gathered? 6 1.2 Comparison between the analogue multimeter and digital multimeter 6 Section two: 8 Functions of multimeter buttons 8 Section three: 10 How to perform the various functions of multimeter 10 1: How to measure voltage: 10 2: How to measure current 12 3: How to measure resistance 13 Overview of symbols used in design of circuits. 14 Concluding statement 15 References 17 Glossary 18 Appendix 19 Table of Figures Figure 1 Analogue Multimeter (Farnell Element 14, 2013) 6 Figure 2 Digital Multimeter 7 Figure 3, Digital Multimeter (Digital Multimeter, 2012) 8 Figure 4Symbol for voltmeter 9 Figure 5, Symbol for Ammeter 9 Figure 6 Ohmmeter 10 Figure 7, Measuring Voltage 11 Figure 8 Probes of a multimeter 11 Figure 9, Ammeter 12 Figure 10 Measuring resistance 13 Abstract A digital multimeter is a device that can be used to measure current, voltage and resistance among various devices in a circuit. Its effective and efficient use requires a thorough understanding of key concepts of electricity, and that is what this document serves. It explains the key terms that are used while working with the multimeter, how to connect the multimeter to various components to take various measurements, precautions to take while using the device and the device limitations. The guide gives and illustrates briefly an overview of most of the symbols used to make circuit diagrams and their meaning. A glossary at the end of the document gives an alphabetical list of an overview of the abbreviations and terms used in the guide. Introduction The main purpose of this document is to guide users on how to effectively and efficiently use a digital multimeter. Graphics and symbols are used to illustrate key concepts of the guide. A multimeter is a measuring device that is used to measure current, potential difference and resistance. All these functionalities have specific devices for measuring them but a multimeter combines them on a single device. A knob on the multimeter is used to change between these functions. The multimeter is usually used in areas involving DC and AC currents. In this guide, only DC circuits have been put into consideration but key observations about AC counterparts have been mentioned. The main advantage of using digital multimeter as compared to analogue ones is that they are easier to read which reduces interpolation errors and they are more accurate. They are important in circuits and components measuring, testing, troubleshooting and repair. Scope Digital multimeter varies in size, price and capabilities. Size ranges from small hand-held to large ones. Hand-held devices operate on a battery that must be replaced periodically. Large multimeters operate on AC voltages hence there are more accurate but are quite expensive. This user guide will put into focus the hand-held multimeters since they are readily available and can be easily used to demonstrate major capabilities of the device. This guide illustrates how the multimeter measures voltage, current and resistance. Other aspects such as continuity, frequency and capacitance can also be tested but will not be described in this guide. The appendix which is written at the end of the document gives key references which can be used by the user to get the details. Limitations Digital multimeters are limited in various ways during operation. First, they operate on battery power which when low can hinder the performance of the device. This can lead to wrong values being read and the LCD screen being dim. Second, the multimeter is limited in voltage. If increased beyond this limit, the device may be damaged. Graphics and symbols Section one: 1.1 How was the data gathered? The data was collected and gathered by taking measurements of a variety of electronic components such as a resistor, capacitor and a battery. 1.2 Comparison between the analogue multimeter and digital multimeter Figure 1 Analogue Multimeter (Farnell Element 14, 2013) An analogue multimeter has a moving coil element. It has several ranges that are used to measure different quantities. Switching between the various ranges is done by the use of a rotary selector switch. Some sample ranges include: Current :0-1 A 0-5A Voltage: 0-10V 0-150V Resistance: 0-10 Ω Figure 2 Digital Multimeter (Electrapk, 2013) A digital multimeter on the other hand has an LCD screen for displaying results and a function selector knob. The range is determined by the multimeter automatically. Input terminals are used for the measurement of voltage, resistance and capacitance. (Analogue and Digital Multimeters, 2012) Section two: Functions of multimeter buttons A digital multimeter has a single knob and three input terminals as shown in the image below. Figure 3, Digital Multimeter (Digital Multimeter, 2012) The knob is used to select among the various functionalities of the device. The terminals are connected to the two probes that are attached to the circuit or component being measured. 1: Basic features All multimeter are provided with the following meters: 1.1 Voltmeter for voltage: (Hewes, 2013) Figure 4Symbol for voltmeter Voltmeter-A measuring device used to measure the potential difference between two points in a circuit. This voltage could either be DC or AC voltage in a circuit. 1.2 Ammeter for current: (Hewes, 2013) Figure 5, Symbol for Ammeter Ammeter-A measuring device used to measure the current in a circuit. DC current is current from a source like a battery.AC means alternating current and this is the current from the mains supply. 1.3 Ohmmeter for resistance: (Hewes, 2013) Figure 6 Ohmmeter Ohmmeter-A measuring device that is used to measure the resistence through a component. 2: Additional features Depending on the digital multimeter in question, additional features are included such as Capacitance meter: For measuring capacitance in capacitors Inductance meter: This is mainly combined within an LCR meters. L for inductance, C for capacitance and R for Resistance. Frequency meter: This is a meter for measuring frequency of AC voltages. It’s calibrated in Hertz (Hz). Diode meter: Tests diodes. This meter normally tests the resistance of the diode in both forward and reverse direction. Section three: How to perform the various functions of multimeter 1: How to measure voltage: Voltage is the potential difference between two points in a circuit. It’s given in volts (V) and is usually measured using a voltmeter. In order to determine the voltage of a component, First determine whether the component uses DC or AC voltage. Set the knob on the multimeter such that the notch on the knob lies on the voltage (V) section. Figure 7, Measuring Voltage Set the range to maximum value since the voltage is not known beforehand. Make sure to connect the meter in parallel to the circuit. Connect the two probes to the device to measure voltage. Figure 8 Probes of a multimeter The voltage measurement will be indicated on the LCD screen of the multimeter. 2: How to measure current Current refers to the flow of charges through a conductor in a circuit. Charges usually move from the positive node of a battery in DC current to the negative node. Current is measured using a device known as an ammeter and is usually given in amperes (A). To measure current using a multimeter, Determine whether the circuit is DC or AC Adjust the knob on the multimeter such that its notch is on the current section. Figure 9, Ammeter Connect the multimeter probes to the circuit in series. Current passes through the multimeter without being altered since the multimeter has a very low resistance. In this setup the multimeter acts like an ammeter and displays the current reading on the screen in Amperes (A). 3: How to measure resistance Resistance is the hindrance to the flow of charges in a circuit. As charges flow in a conductor, molecules in the conductor interfere with the flow. Resistance is given in Ohms and is measured using a device known as an Ohmmeter. To measure resistance using a multimeter, Power off the circuit and remove the component. Adjust the knob on the multimeter such that its notch is on the resistance section. Figure 10 Measuring resistance Connect the in series to that component and get the reading. Multimeter measure the resistance by passing current through the component and determining the voltage produced. The multimeter should not be connected to the circuit while the power supply is on as it may be damaged. Common mistakes while using the Multimeter 1. No measurement reading Make sure the terminals are connected correctly; for voltage the terminal are connected in parallel, and for current the terminal are connected in series. 2. Also check the inputs source. Also make sure you are in the correct measurement mode. 3. Not working: make sure the fuse are not blown Overview of symbols used in design of circuits. Table 1 Symbols Symbol Description Resistor-this is an electrical device that hinders the flow of current. AC/DC source-This could be a battery or a wall socket Direct Current-This is current generated by a battery Connecting Wires-This are the conductors connecting components in a circuit. Written Statement Digital voltmeters have a central knob which has various functionalities depending on the manufacturer. The knob gives the range of measurement and also assists to switch between the various functions. For instance, if the knob points to 20V DC, this means the maximum voltage that can be measured is 20V.This is ideal for most circuits but other options are available such as 2V and 200mV. This is the typical working of a switched range multimeter (Philips, 1999) A modified version of a multimeter is the auto ranging multimeter. In this, the user selects between AC and DC values. After switching to this, the multimeter adjusts the range automatically in order indicate a meaningful reading. This kind of multimeter is expensive compared to the switched range multimeter but it’s much easier to use. A digital multimeter has two probes and three sockets. The black probe is usually connected to the socket marked COM while the red probe connects to the VΩmA socket. The third socket is the 10A socket that’s not usually used. Safety reasons dictate that the multimeter should not be connected to the AC power source. Concluding statement Digital multimeter plays a handy device that assists technicians in troubleshooting and testing electrical installations. To measure a given quantity, the device is appropriately connected as above discussed and then the range can be adjusted to give a better precision of the results. This is usually the case with switched range multimeters that have their ranges adjusted manually. The other version is the auto ranging multimeter that is able to automatically adjust the range to reasonable ranges. This guide has explained how the various quantities can be measured and some of the precautions to be taken while measuring. Effective and efficient use of the digital multimeter is a key requirement for engineers that have to be observed. Digital multimeter is one of the tools required by engineers in their day to day working making the understanding of their operation a fundamental requirement. References Access Communications Pty Ltd. (2011). Power Supply Units Abbreviations. Retrieved from Access Communications Pty Ltd: http://www.accesscomms.com.au/reference/polarity.htm Analogue and Digital Multimeters. (2012). Retrieved from Bright Hub Engineering: http://www.brighthubengineering.com/diy-electronics-devices/94131-digital-and-analog-multimeters-which-is-best-to-use/ Digital Multimeter. (2012). Retrieved from http://www.google.co.ke/imgres?imgurl=http://media.onsugar.com/files/2011/01/01/5/89/898472/c6ad4c6e7afa83f7_digital_multimeter.jpg&imgrefurl=http://hometools.onsugar.com/Digital-Multimeter-13149930&h=541&w=440&sz=57&tbnid=oc7pi5go6bg41M:&tbnh=91&tbnw=74& Gregorec, J. (2003, Jan 1). How to use Digital Meters. Retrieved from Electrical Construction and Maintenance Magazine: http://ecmweb.com/basics/how-use-digital-multimeters Philips, W. (1999). Using a multimeter. Retrieved from Design Electronics: http://www.doctronics.co.uk/meter.htm#measure Glossary AC-Alternating Current-This is current from the mains electricity. Ammeter- a device used to measure current Ampere-SI unit for current DC-Direct Current-Current from a steady voltage source e.g. battery Meter-A device used to measure some given quantity. Ohmmeter-Device used to measure resistance of component. Ohms- Units for giving the resistance of a component Voltmeter – device used to measure the potential difference in a circuit. Volt- Unit used to express voltage in a component or circuit. Appendix Below is a list of some useful resources that have been mentioned in this guide that can be used to gather more information about digital multimeters. 1. Switched range and auto ranging multimeters. http://www.doctronics.co.uk/meter.htm#measure 2. Measuring capacitance, frequency and continuity in circuits using digital multimeters http://ecmweb.com/basics/how-use-digital-multimeters 3. Instructions for Digital Multimeters http://www.ehow.com/way_5562917_instructions-digital-multimeters.html Read More
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