12226 Simpson, 12226 Datasheet - Page 9

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12226

Manufacturer Part Number
12226
Description
Analog Multimeters 270-5 VOM HIGH A
Manufacturer
Simpson
Datasheet

Specifications of 12226

Accuracy
+/- 1.75 %
Lead Free Status / Rohs Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
12226-5150-00FR
Manufacturer:
3M
Quantity:
2 000
4.19
Note: The OHMS scale reads from right to left for increasing values of resistance.
e.
Make sure that the OHMS range being used will not damage any of the semicon-
ductors (refer to Table 1-1, item 8, Section 1).
If there is a “forward” and “backward” resistance such as in diodes, the resistance
should be relatively low in one direction (for forward polarity) and higher in the
opposite direction.
Rotate the function switch between the two DC positions to reverse polarity. This
will determine if there is a difference between the resistance in the two directions.
To check a semiconductor in or out of a circuit (forward and reverse bias resis-
tance measurements) consider the following before making the measurement:
a.
b.
c.
NOTE: The resistance of diodes will measure differently from one resistance
range to another on the same VOM with the function switch in a given position.
For example, a diode which measures 80 ohms on the R x 1 range may measure
300 ohms on the R x 100 range. The difference in values is a result of the diode
characteristics and is not indicative of any fault in the VOM.
To determine the actual resistance value, multiply the reading by the factor at
the switch position. (K on the OHMS scale equals one thousand.)
Resistance Measurement of Semiconductors
The polarity of the internal ohmmeter battery voltage at the (+) positive jack is
identical to the function switch, polarity setting, and opposite to the (-) com-
mon jack.
Make sure that the OHMS range being used will not damage any of the
semiconductors (refer to Table 1-1, item 8, Section 1).
If the semiconductor is a silicon diode or conventional silicon transistor, pre-
cautions are not normally required.
If the semiconductor material is germanium, check the ratings of the device
and refer to Table 1-1, item 8.
24
4. OUTPUT VOLTAGE (AC):
5. DC MICROAMPERES:
6. DC MILLIAMPERES:
7. DC AMPERES:
NOTE: The 10A range is not internally fused.
8.
9. *ACCURACY:
10. DECIBELS:
11. BATTERIES:
12. FUSES:
13. TEST LEADS:
14. SIZE:
15. WEIGHT:
16. ***RATED CIRCUIT-TO
*Accuracies specified are for the 270 in a horizontal position.
Ranges:
Range:
Voltage Drop:
Ranges:
Voltage Drop (Approx.):
Range:
Voltage Drop (Approx.):
DC Voltage Ranges:
DC Current
0-50µA Range:
Other Ranges:
**AC Voltage Ranges:
Frequency Response:
Resistance Ranges:
R x 1:
R x 100:
R x 10,000:
Ranges:
Reference Level:
-GROUND VOLTAGE:
R
R
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5 .
2
X
0-2.5-10-50-250 (limited to 350 VDC)
0-50µA
250 mV
0-1-10-100-500 mA
250 mV, 255 mV, 300 mV, 500 mV
0-10A
255 mV
5
V
0
m
77°F
1.25% of F.S.
.75% F.S.
1.25% of F.S.
2% of F.S.
Referenced to 100 Hz (Figures 4-2 and 4-4)
1.5% of Arc
1° of Arc
1° of Arc
-20 to +10 dB, -8 +22dB, +6 to +36 dB, +20 to
+50 dB
W/zero power level equal to 1 mW across
a 600
1.5V, D Size, NEDA 13F 9V, NEDA 1604
F1: 1A, 250V, type 3AG, quick-acting Littlefuse
Type 312001, F2: 2A, 600V (Bussman Type
BBS or Littlefuse Type BLS)
1 red, 1 black, 48” long.
5-1/2” x 7” x 3 1/8” (13.34 x 17.78 x 7.94 cm)
1
0
A
0
3 lbs. (1.359 kg)
1000V AC/DC Max.
9
line.
R
1
1
1
0
2
5 .
2 .
2 -
X
0
V
5
0
0
m
1
0
0
0 ,
A
0
0
0
R
0
1
9
7
2 -
2
V
5
X
0
µ
0
0 ,
A
67°-87°F
1.75% of F.S.
1.25% of F.S.
1.75% of F.S.
3% of F.S.
1.75° of Arc
1.25° of Arc
1.25° of Arc
1
M
0
0
0
0 ,
0
0