13
QPL Precision Resistors
MSI
QPL QPL STYLE RESISTANCE TOLERANCE POWER VOLTAGE SIMILAR
SIZE Case Size TERMINATION CHAR. MIN. MAX. % (WATTS) (VOLTS DC) STYLE/TYPE
01 RM0502 W, T, D K, M 5.60 Ω 1 MΩ 1, 2, 5, 10 0.020 40 MSR81
B, G, C, U WA81
02 RM0505 W, T, D K, M 5.60 Ω 1 MΩ 1, 2, 5, 10 0.050 40 MSR82
B, G, C, U WA82
03 RM1005 W, T, D K, M 5.60 Ω 1 MΩ 1, 2, 5, 10 0.100 40 MSR83
B, G, C, U WA83
04 RM1505 W, T, D K, M 5.60 Ω 4.75 MΩ 1, 2, 5, 10 0.150 40 MSR80
B, G, C, U WA80
05 RM2208 W, T, D K, M 5.60 Ω 15 MΩ 1, 2, 5, 10 0.225 40 MSR85
B, G, C, U WA85
06 RM0705 W, T, D K, M 5.60 Ω 1 MΩ 1, 2, 5, 10 0.100 50 MSR86
B, G, C, U WA86
07 RM1206 W, T, D K, M 5.60 Ω 5.62 MΩ 1, 2, 5, 10 0.250 100 MSR92
B, G, C, U WA87
08 RM2010 W, T, D K, M 5.60 Ω 15 MΩ 1, 2, 5, 10 0.8001 150 MSR88
B, C, U WA88
09 RM2512 W, T, D K, M 5.60 Ω 15 MΩ 1, 2, 5, 10 1.0001 200 MSR89
B, C, U WA89
10 RM1010 W, T, D K, M 5.60 Ω 5.62 MΩ 1, 2, 5, 10 0.5001 75 MSR90
B, G, C, U WA90
11 RM0402 W, D K, M 5.60 Ω 1 MΩ 1, 2, 5, 10 0.040 25 MSR20
B, G, C, U WA20
12 RM0603 W, D K, M 5.60 Ω 1 MΩ 1, 2, 5, 10 0.070 50 MSR93
B, G, C, U WA93
13 RM0302 W, D K, M 5.60 Ω 1 MΩ 1, 2, 5, 10 0.040 15 MSR98
B, G, C, U MWA98
1. Mounted to a ceramic board.
MADE IN AMERICA
8034 Rev A 0604
POWER DERATING CURVE
0
20
30
40
50
60
70
80
90
100
110
10
10
20
30
40
50
60
70
80
90
100
110
120
130
140
150
160
170
180
TEMPERATURE (˚C)
PERCENT OF RATED POWER
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Electrical Performance Characteristics
___________________________________________________________
MIL-PRF-55342 Test MIL-PRF-55342 Requirement MSI Typical
______________________________________________________________
Short Term Overload ±0.25% ±0.03%
High Temperature Exposure ±0.50% ±0.05%
Thermal Shock ±0.50% ±0.07%
Low Temperature Operation ±0.25% ±0.05%
Resistance to Bonding Exposure / Soldering Heat ±0.25% ±0.09%
Moisture Resistance ±0.50% ±0.06%
Stability (Life 70°C 2,000Hrs) ±0.50% ±0.04%
Stability (Life 70°C 10,000Hrs) ±2.00% ±0.07%
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Operating temperature range from -55°C to +150°C
Power rating at 70°C derated linearly to 0% power at 150°C.
(P=E2/R)