394289
Resistors
RESISTOR,VARIABLE,WIRE WOUND,PRECISION
394289
L-3 Communications Corporation
RESISTOR,VARIABLE,WIRE WOUND,PRECISION
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Technical Characteristics
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Screw Thread Series Designator
un
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Maximum Running Torque
1.50 inch-ounces
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Section Quantity
1
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Screw Thread Quantity Per Inch
32.0
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Tap Location From Ccw Terminal Per Section In Deg Of Effective Electrical Rotation
3000.0 single section and 4575.0 single section and 4170.0 single section and 2400.0 single section and 1800.0 single section and 3900.0 single section and 4380.0 single section and 3600.0 single section and 4665.0 single section
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Body Style
cylindrical bushing mounted
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Ambient Temp In Deg Celsius Per Section At Full Rated Power
25.0 single section
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Function Characteristic Per Section
single section linear
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Fixed Tap Quantity Per Section
9 single section
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Terminal Location
radially positioned over less than half the circumference
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Mounting Method
standard bushing
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Nonturn Device Location
at 9 oclock
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Terminal Type And Quantity
12 tab, solder lug
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Electrical Resistance Per Section
300.000 kilohms single section
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Actuator Travel Control Feature
continuous motion
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Function Conformity Tolerance Per Section
-0.50/+0.50 single section
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Nonturn Device Radius
0.375 inches nominal
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Reliability Indicator
not established
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Actuator Type
single shaft
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Tap Location Tolerance Per Section
-1.0/+1.0 deg angular rotation all sections
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Rotary Actuator Travel In Angular Deg
5400.0 nominal
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Shaft Diameter
0.250 inches nominal
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Resistance Tolerance Per Section In Percent
-5.0/+5.0 single section
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Power Dissipation Rating Per Section In Watts
13.8 free air single section
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Body Length
0.438 inches nominal
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Shaft Style
round
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Body Diameter
0.750 inches nominal
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Screw Thread Diameter
0.500 inches nominal
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Shaft Length
1.000 inches nominal
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Mounting Bushing Length
0.500 inches nominal
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Ambient Temp In Deg Celsius Per Section At Zero Percent Rated Power
85.0 single section
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Maximum Starting Torque
2.00 inch-ounces
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Effective Electrical Rotation In Deg Angular Rotation
5400.0 nominal
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Function Conformity Per Section
single section independent linearity