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POWER RESISTORS
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(M)SQ(H, M, P, T, U, Z) Series: Cement Box
INTRODUCTION
CHARACTERISTICS
Cement-Box type resistors offer a choice of resistive
elements inside a white flameproof cement box. In
addition to being flameproof, these resistors are also
non-corrosive and humidity proof. The available
resistive elements are:
Test Items
Wirewound
Resistance
Temp. Coeff.
Spec.
Typical
Condition
JIS.C.5202.2.5.2
<1¿= 300ppm
¿
>1 = 200ppm
Metal Oxide
Resistance
Temp. Coeff.
Typical
°
°
-55 C ~ +200 C
°
+200ppm/ C
SQ
- Standard wire wound (all welded construction)
- Metal oxide core
MSQ
°
°
40 C 95 @ RH
Moisture Load
Life Cycle Test
+3%
(low inductance, high resistance)
- Non-Inductively wound
1,000hrs
NSQ
Standard
Tolerance
°
-25 C
J = +5%, K = +10%
(Ayrton-Perry Method, all welded construction)
- Fiber Glass Core
GSQ
500V
750V
2W, 3W, 5W, 7W
10W
Maximum
Working Voltage*
PART NUMBER EXAMPLE
MSQM 5W - 47K - J
1000V
15W, 20W, 25W
1000V, 1 min
Dielectric
Insulation
Resistance
+2% + 0.05
2
>10 M¿
500Vdc, 1 min
TEMPERATURE RISE
DERATING CURVE
25 C
70 C
155 C
2~ 10W
275 C
100
80
60
40
20
0
Short Term
Overload
Load Life
250
200
150
100
50
+(2% + 0.05
)
1000V, 1 min
¿
20W
15W
10W
7W
°
70 C for 1000 hours
+(5% + 0.05¿)
+5% + 0.05¿
15& 20W
5W
°
40 C, 90% RH,
Humidity
2& 3W
1000 hours
°
230 C, 5 sec.
Solderability
Resistance to
Solder Heat
95% coverage min.
-50
0
50
100
150
200
250
300
0
Ambient Temperature ( C)
0
20 40
60 80 100 120
Load Factor (%)
°
260 C, 10 sec.
+(2% + 0.05
)
¿
SPECIFICATIONS
*Maximum Voltage per value to be determined by Ohms Law but not to exceed noted voltage.
Resistance Range
SQ_ MSQ_
Series
SQP
d
P (SQH Series)
W
6±1
H
L
Dd
0.6±0.05
H
SQP1W
6±1
14±1
0.01 - 75 1.0 - 33K
SQP2W
SQP3W
SQP5W
SQP7W
SQP10W
SQP15W
SQP20W
SQP25W
7±1
7±1
8±1
18±1.5 0.65±0.05
22±1.5 0.8±0.05
22±1.5 0.8±0.05
35±1.5 0.8±0.05
48±1.5 0.8±0.05
48±1.5 0.8±0.05
60±1.5 0.8±0.05
60±1.5 0.8±0.05
0.01- 100 1.0- 33K
0.01- 300 1.0- 100K
0.01- 300 1.0- 100K
0.1- 600 1.0- 100K
0.1- 1.2K 1.0- 100K
0.5- 1.5K
L
W
35±3
8±1
SQT
10±1
10±1
10±1
12.5±1
14±1
14±1
W
9±1
5±1
10±1
10±1
L
35±3
0.8±0.05
9±1
H
SQM
9±1
t
T
W
W
11.5±1
13.5±1
13.5±1
H
0.5- 1.5K
0.5- 1.5K
H
L
T
SQ_
MSQ_
SQT5W
SQT7W
SQT10W
10±1
10±1
10±1
W
9±1
22±1.5
35±1.5
48±1.5
T
1.5±0.5
0.1- 600 1.0- 100K
0.1- 1.2K 1.0- 100K
0.5- 1.5K
4.0
min
9±1
3.0±0.5
9±1
3.0±0.5
SQZ
P1
0.8±0.05
P±1
P
SQ_
MSQ_
H
P
5
P2
SQM2W
11± 1
11± 1
13±1
13±1
13±1
16±1
16±1
W
20.5±1.5
20.5±1.5
25±1.5
39±1.5
51±1.5
35±1.5
35±1.5
H
7±1
0.01-100 1.0 -33K
0.01-100 1.0- 33K
0.01-300 1.0- 100K
0.1- 500 1.0- 100K
0.1- 600 1.0- 75K
0.1- 360 1.0- 100K
0.1- 600
4.5
0.4
SQM3W
7±1
5
H1
SQM5W
9±1
5
SQM7W
9±1
5
H
SQM10W
SQMX10W
SQMX12.5W
9±1
5
L
12±1
12±1
L
7.5
7.5
P
W
SQH
10.5
±0.05
SQ_
MSQ_
H1
10.5±1
P1
4.5~7.5
7±1
P2
W
1.6±0.2
1.6±0.2
1.6±0.2
SQZ5W
SQZ7W
SQZ10W
SQZ15W
SQZ20W
SQZ25W
SQH
10±1
10±1
10±1
12±1
12±1
12±1
10±1
10±1
12±1
12±1
12±1
12±1
27±1.5
35±1.5
48±1.5
48±1.5
62±1.5
62±1.5
15±1
0.01- 300 1.0- 50K
0.1- 600 1.0- 50K
0.1- 600 1.0- 50K
0.1- 1K
L
4±0.5
P
20±1 10.5±1
7±1
32±1 10.5±1
10.5
±0.05
10±1 3±0.2
10±1 3±0.2
3±0.2
H
32±1
42±1
42±1
15±1
15±1
15±1
5
0.1- 1K
Termination
±3
10±1
0.1- 1K
SQU
5W to 10W specifications are the same as SQP5W to 10W
6.4
T
1.65f
6.2
P
2.4f
SQ_
MSQ_
W
H
L
P
H1
T
Diagram
±0.1
±0.1
SQU10W
SQU15W
SQU20W
SQU30W
SQU40W
10 ±1
9 ±1
48±1
48±1
63±1
75±1
90±1
35±1
32±1
44±1
55±1
70±1
18±1 0.4
21±1 0.4
21±1 0.4
32±1 0.8
32±1 0.8
A
A
A
B
B
0.1-270 271-50K
1-470 471-150K
1-560 561-150K
1-820 821-150K
1-1K 1.1K-150K
12.5 ±1 11.5±1
12.5 ±1 13.5 ±1
19 ±1 19 ±1
19 ±1 19 ±1
H1
H1
H
H
W
W
Diagram B
L
Diagram A
C2DC01
REV 2009.1.6
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