KH338B
Resistors
RESISTOR,VARIABLE,WIRE WOUND,PRECISION
KH338B
RESISTOR,VARIABLE,WIRE WOUND,PRECISION
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Technical Characteristics
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Section Quantity
1
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Shaft Runout
0.002 inches
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Screw Thread Quantity Per Inch
32.0
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Actuator Travel Control Feature
stops
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Fragility Factor
moderately rugged
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Shaft End Play
0.005 inches
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Terminal Location
longitudinally positioned on the circumference
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Function Conformity Tolerance Per Section
-0.10/+0.10 single section
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Body Style
cylindrical bushing mounted
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Shaft Diameter
0.2497 inches maximum
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Electrical Resistance Per Section
100.0 ohms single section
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Overall Diameter
2.406 inches nominal
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Temp Coefficient Of Resistance Wire Per Section In Ppm Per Deg Celsius
-20.0/+20.0 single section
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Power Dissipation Rating Per Section In Watts
5.0 free air single section
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Mounting Bushing Length
0.312 inches nominal
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Rotary Actuator Travel In Angular Deg
3600.0 maximum
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Effective Electrical Rotation In Deg Angular Rotation
3600.0 minimum
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Function Characteristic Per Section
single section linear
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Nonturn Device Location
at 6 oclock
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Shaft Length
0.875 inches nominal
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Features Provided
humidity proof
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Mounting Method
standard bushing
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Maximum Stop Torque
1000.00 inch-ounces
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Nonturn Device Radius
0.562 inches nominal
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Lateral Runout
0.003 inches
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Screw Thread Series Designator
unef
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Reliability Indicator
not established
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Actuator Type
single shaft
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Pilot Diameter Runout
0.002 inches
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Shaft Radial Play
0.002 inches
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Resistance Tolerance Per Section In Percent
-2.0/+2.0 single section
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Mechanical Backlash In Deg Angular Rotation
10.0
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Ambient Temp In Deg Celsius Per Section At Full Rated Power
40.0 single section
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Maximum Starting Torque
15.00 centimeter-grams
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Body Diameter
1.840 inches nominal
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Terminal Type And Quantity
3 tab, solder lug
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Shaft Style
round
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Body Length
2.062 inches nominal
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Maximum Running Torque
15.00 centimeter-grams
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Ambient Temp In Deg Celsius Per Section At Zero Percent Rated Power
150.0 single section
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Screw Thread Diameter
0.375 inches nominal
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Shaft Bearing Type
sleeve
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Function Conformity Per Section
single section independent linearity