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PDF MP925 Data sheet ( Hoja de datos )

Número de pieza MP925
Descripción Power Film Resistors
Fabricantes Caddock 
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No Preview Available ! MP925 Hoja de datos, Descripción, Manual

MP900 and MP9000 Series Kool-Pak®
Power Film Resistors TO-126, TO-220 and TO-247 Style
Page 1 of 2
Low Cost Heat Sink Mountable Design featuring
an Exposed Ceramic Heat Dissipating Mounting Surface
Use your thermal design experience with power semiconductors in TO-126, TO-220,
and TO-247 style power packages to help you get the most out of this unique family of
power resistors. The thermal design issues are the same where power handling
capability is based on the case temperature which is maintained in your design.
MP915 TO-126 Style Power Package
15 Watts at +25°C Case Temperature, derated to zero at +150°C.
Exposed Ceramic Heat Dissipating Mounting Surface.
Resistance Range of 0.020 ohm to 1 K.
Non-Inductive Design.
MP916, MP925, and MP930 TO-220 Style Power Package
Up to 30 Watts at +25°C Case Temperature, derated to zero at +150°C.
Exposed Ceramic Heat Dissipating Mounting Surface.
Resistance Range of 0.010 ohm to 100 K.
Non-Inductive Design.
MP9100 TO-247 Style Power Package
100 Watts at +25°C Case Temperature, derated to zero at +175°C.
Exposed Ceramic Heat Dissipating Mounting Surface.
Resistance Range of 0.050 ohm to 100 ohm.
Non-Inductive Design.
New
Power Resistor
with
Exposed Ceramic
Heat Dissipating
Mounting
Surface.
MP916 Standard Resistance Values:
Tolerance MP916 ±5% Standard (20% is available).
0.010 Ω 5%
0.015 Ω 5%
MP915, MP925, and MP930
Standard Resistance Values:
Tolerance MP915, MP925, and MP930 ±1% Standard - except
as noted. (5% and 20% are available for most resistance values).
0.020 Ω 5%
0.025 Ω 5%
0.030 Ω 5%
0.033 Ω 5%
0.040 Ω 5%
0.050 Ω
0.075 Ω
0.10 Ω
0.15 Ω
0.20 Ω
0.25 Ω
0.30 Ω
0.33 Ω
0.40 Ω
0.50 Ω
0.75 Ω
1.00 Ω
1.50 Ω
2.00 Ω
2.50 Ω
3.00 Ω
3.30 Ω
4.00 Ω
5.00 Ω
7.50 Ω
8.00 Ω
10.0 Ω
12.0 Ω
15.0 Ω
20.0 Ω
25.0 Ω
27.0 Ω
30.0 Ω
33.0 Ω
40.0 Ω
47.0 Ω
50.0 Ω
56.0 Ω
75.0 Ω
100 Ω
120 Ω
150 Ω
200 Ω
250 Ω
300 Ω
330 Ω
400 Ω
470 Ω
500 Ω
560 Ω
750 Ω
1.00 K
1.50 K
2.00 K
2.50 K
3.00 K
3.30 K
4.00 K
5.00 K
7.50 K
10.0 K
15.0 K
20.0 K
25.0 K
30.0 K
33.0 K
40.0 K
47.0 K
50.0 K
56.0 K
68.0 K
75.0 K
82.0 K
100 K
MP9100 Standard Resistance Values:
Tolerance MP9100 ±1% Standard.
0.050 Ω
0.075 Ω
0.10 Ω
0.15 Ω
0.20 Ω
0.25 Ω
0.30 Ω
0.33 Ω
0.40 Ω
0.50 Ω
0.75 Ω
1.00 Ω
1.50 Ω
2.00 Ω
2.50 Ω
3.00 Ω
3.30 Ω
4.00 Ω
5.00 Ω
7.50 Ω
8.00 Ω
10.0 Ω
12.0 Ω
15.0 Ω
20.0 Ω
25.0 Ω
27.0 Ω
30.0 Ω
33.0 Ω
40.0 Ω
47.0 Ω
50.0 Ω
56.0 Ω
75.0 Ω
100 Ω
For custom resistance values and tolerances contact
applications engineering.
Ordering Information:
MP915 - 50.0 - 1%
Model Number:
Tolerance
Resistor Value:
Packaging: MP915, MP916, MP925, MP930
resistors are packaged in plastic shipping tubes,
50 pieces per tube. These resistors are available
in a 50 piece minimum quantity and in full tube
quantity increments (i.e. 50, 100, 150, etc.). The
MP9100 resistors are packaged in plastic shipping
tubes, 25 pieces per tube.
Construction of MP900 and
MP9000 Series:
The MP900 and MP9000 Series Kool-Pak® Power
Film Resistors are constructed with Caddock's
Micronox® resistance film fired onto a flat ceramic
substrate. The terminal attachment and resistance
element geometry are configured to provide
outstanding non-inductive performance. The
ceramic substrate is positioned in the molded
package such that the resistor element and terminal
attachment areas on the substrate are
encapsulated in the molded body with the other side
of the ceramic being exposed flush with the back
mounting surface of the device. This construction is
covered by one or more issued patents, also
patents pending.
Applications Engineering
17271 North Umpqua Hwy.
Roseburg, Oregon 97470-9422
Phone: (541) 496-0700
Fax: (541) 496-0408
© 2004 Caddock Electronics, Inc.
CADDOCK
e-mail: [email protected] • web: www.caddock.com
For Caddock Distributors listed by country see caddock.com/contact/dist.html
Sales and Corporate Office
1717 Chicago Avenue
Riverside, California 92507-2364
Phone: (951) 788-1700
Fax: (951) 369-1151
28_IL102.1004

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