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Analog Meters Analog Meters 1- DC Ammeters : Shunt resistor ammeter : Here, the basic movement is a PMMC “permanent magnet movement coil ” → Galvanometer The coil of movement can carry only very small current.
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Analog Meters Analog Meters 1- DC Ammeters : Shunt resistor ammeter : Here, the basic movement is a PMMC “permanent magnet movement coil ” → Galvanometer.

Dec 26, 2015

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Geoffrey Davis
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Page 1: Analog Meters Analog Meters 1- DC Ammeters : Shunt resistor ammeter : Here, the basic movement is a PMMC “permanent magnet movement coil ” → Galvanometer.

Analog MetersAnalog Meters

1- DC Ammeters :Shunt resistor ammeter :

Here, the basic movement is a PMMC “permanent magnet movement coil ”→ Galvanometer

The coil of movement can carry only very small current.

Page 2: Analog Meters Analog Meters 1- DC Ammeters : Shunt resistor ammeter : Here, the basic movement is a PMMC “permanent magnet movement coil ” → Galvanometer.

In this case when large currents are to be measured it is necessary to by base the major part of the current through a resistance called “shunt resistance”

Page 3: Analog Meters Analog Meters 1- DC Ammeters : Shunt resistor ammeter : Here, the basic movement is a PMMC “permanent magnet movement coil ” → Galvanometer.
Page 4: Analog Meters Analog Meters 1- DC Ammeters : Shunt resistor ammeter : Here, the basic movement is a PMMC “permanent magnet movement coil ” → Galvanometer.
Page 5: Analog Meters Analog Meters 1- DC Ammeters : Shunt resistor ammeter : Here, the basic movement is a PMMC “permanent magnet movement coil ” → Galvanometer.
Page 6: Analog Meters Analog Meters 1- DC Ammeters : Shunt resistor ammeter : Here, the basic movement is a PMMC “permanent magnet movement coil ” → Galvanometer.

Multirange Ammeter:

Several values of shunt resistors and a rotary switch are used to select the desired range of current to measure. A make-before break rotary switch insures that there is a shunt resistor connected at all times.

Page 7: Analog Meters Analog Meters 1- DC Ammeters : Shunt resistor ammeter : Here, the basic movement is a PMMC “permanent magnet movement coil ” → Galvanometer.

a- Aytron Shunt : Is an ammeter that is extended by a number of shunts selected by a “range switch” .(This is called a multi range ammeter)

As can be seen, the resistors are connected in a way that they look in parallel. Here, the switch can be moved to any of the four shunts.

Page 8: Analog Meters Analog Meters 1- DC Ammeters : Shunt resistor ammeter : Here, the basic movement is a PMMC “permanent magnet movement coil ” → Galvanometer.

b- Universal Shunt :

This type eliminates the possibility of having the ammeter without a shunt.

Page 9: Analog Meters Analog Meters 1- DC Ammeters : Shunt resistor ammeter : Here, the basic movement is a PMMC “permanent magnet movement coil ” → Galvanometer.
Page 10: Analog Meters Analog Meters 1- DC Ammeters : Shunt resistor ammeter : Here, the basic movement is a PMMC “permanent magnet movement coil ” → Galvanometer.
Page 11: Analog Meters Analog Meters 1- DC Ammeters : Shunt resistor ammeter : Here, the basic movement is a PMMC “permanent magnet movement coil ” → Galvanometer.
Page 12: Analog Meters Analog Meters 1- DC Ammeters : Shunt resistor ammeter : Here, the basic movement is a PMMC “permanent magnet movement coil ” → Galvanometer.

Notes:

- The larger the current, the value of the shunt resistance may become very small.

- When using an ammeter you have to be aware of the following:1. Observe the correct polarity. reversed polarity causes the movement to deflect against the mechanical stop (which cause some damage to the movement).2. Never connect the ammeter across the element to be measured.

Page 13: Analog Meters Analog Meters 1- DC Ammeters : Shunt resistor ammeter : Here, the basic movement is a PMMC “permanent magnet movement coil ” → Galvanometer.

Here, due to the low resistance of the ammeter, this would draw a damaging high current and destroy the movement.

Therefore, an ammeter must always be connected in series with the element to be measured.

3. When use a multi range ammeter first use the high current range, then decrease as required.

Page 14: Analog Meters Analog Meters 1- DC Ammeters : Shunt resistor ammeter : Here, the basic movement is a PMMC “permanent magnet movement coil ” → Galvanometer.
Page 15: Analog Meters Analog Meters 1- DC Ammeters : Shunt resistor ammeter : Here, the basic movement is a PMMC “permanent magnet movement coil ” → Galvanometer.
Page 16: Analog Meters Analog Meters 1- DC Ammeters : Shunt resistor ammeter : Here, the basic movement is a PMMC “permanent magnet movement coil ” → Galvanometer.
Page 17: Analog Meters Analog Meters 1- DC Ammeters : Shunt resistor ammeter : Here, the basic movement is a PMMC “permanent magnet movement coil ” → Galvanometer.

B.

Page 18: Analog Meters Analog Meters 1- DC Ammeters : Shunt resistor ammeter : Here, the basic movement is a PMMC “permanent magnet movement coil ” → Galvanometer.

Voltmeter sensitivity :

This sensitivity is known as “ohms-per-volt” rating the voltmeter .

Page 19: Analog Meters Analog Meters 1- DC Ammeters : Shunt resistor ammeter : Here, the basic movement is a PMMC “permanent magnet movement coil ” → Galvanometer.
Page 20: Analog Meters Analog Meters 1- DC Ammeters : Shunt resistor ammeter : Here, the basic movement is a PMMC “permanent magnet movement coil ” → Galvanometer.
Page 21: Analog Meters Analog Meters 1- DC Ammeters : Shunt resistor ammeter : Here, the basic movement is a PMMC “permanent magnet movement coil ” → Galvanometer.
Page 22: Analog Meters Analog Meters 1- DC Ammeters : Shunt resistor ammeter : Here, the basic movement is a PMMC “permanent magnet movement coil ” → Galvanometer.
Page 23: Analog Meters Analog Meters 1- DC Ammeters : Shunt resistor ammeter : Here, the basic movement is a PMMC “permanent magnet movement coil ” → Galvanometer.

When using a voltmeter :1. observe the correct polarity

2. place the voltmeter across the element that its voltage to be measured

3. when using a multi range voltmeter always use the highest voltage range first

4. always be aware of the loading effect.

Page 24: Analog Meters Analog Meters 1- DC Ammeters : Shunt resistor ammeter : Here, the basic movement is a PMMC “permanent magnet movement coil ” → Galvanometer.
Page 25: Analog Meters Analog Meters 1- DC Ammeters : Shunt resistor ammeter : Here, the basic movement is a PMMC “permanent magnet movement coil ” → Galvanometer.
Page 26: Analog Meters Analog Meters 1- DC Ammeters : Shunt resistor ammeter : Here, the basic movement is a PMMC “permanent magnet movement coil ” → Galvanometer.

 

Page 27: Analog Meters Analog Meters 1- DC Ammeters : Shunt resistor ammeter : Here, the basic movement is a PMMC “permanent magnet movement coil ” → Galvanometer.
Page 28: Analog Meters Analog Meters 1- DC Ammeters : Shunt resistor ammeter : Here, the basic movement is a PMMC “permanent magnet movement coil ” → Galvanometer.
Page 29: Analog Meters Analog Meters 1- DC Ammeters : Shunt resistor ammeter : Here, the basic movement is a PMMC “permanent magnet movement coil ” → Galvanometer.

b. Shunt type Ohmmeter:This type ohmmeter is good for low resistance measurement

Page 30: Analog Meters Analog Meters 1- DC Ammeters : Shunt resistor ammeter : Here, the basic movement is a PMMC “permanent magnet movement coil ” → Galvanometer.
Page 31: Analog Meters Analog Meters 1- DC Ammeters : Shunt resistor ammeter : Here, the basic movement is a PMMC “permanent magnet movement coil ” → Galvanometer.
Page 32: Analog Meters Analog Meters 1- DC Ammeters : Shunt resistor ammeter : Here, the basic movement is a PMMC “permanent magnet movement coil ” → Galvanometer.
Page 33: Analog Meters Analog Meters 1- DC Ammeters : Shunt resistor ammeter : Here, the basic movement is a PMMC “permanent magnet movement coil ” → Galvanometer.
Page 34: Analog Meters Analog Meters 1- DC Ammeters : Shunt resistor ammeter : Here, the basic movement is a PMMC “permanent magnet movement coil ” → Galvanometer.
Page 35: Analog Meters Analog Meters 1- DC Ammeters : Shunt resistor ammeter : Here, the basic movement is a PMMC “permanent magnet movement coil ” → Galvanometer.
Page 36: Analog Meters Analog Meters 1- DC Ammeters : Shunt resistor ammeter : Here, the basic movement is a PMMC “permanent magnet movement coil ” → Galvanometer.

Voltmeters, Ammeters and Ohmmeters :

All of these devices use the d’Arsonval movement the

difference between them is the setting of the circuit they use

Hence, the multimeter is the combination of an ammeter voltmeter and an ohmmeter

Page 37: Analog Meters Analog Meters 1- DC Ammeters : Shunt resistor ammeter : Here, the basic movement is a PMMC “permanent magnet movement coil ” → Galvanometer.
Page 38: Analog Meters Analog Meters 1- DC Ammeters : Shunt resistor ammeter : Here, the basic movement is a PMMC “permanent magnet movement coil ” → Galvanometer.
Page 39: Analog Meters Analog Meters 1- DC Ammeters : Shunt resistor ammeter : Here, the basic movement is a PMMC “permanent magnet movement coil ” → Galvanometer.

Ohmmeter calibration :A rough calibration of an ohmmeter may be performed by

measuring a standard resistance and noting the reading

Do this similar standard procedure with different resistance values , This will allow one to obtain an indication of the correct measurements