U Series, Rotary Potentiometers, Rheostats

Results:
48
Manufacturer
Series
Resistance (Ohms)
Number of Gangs
Actuator Diameter
Bushing Thread
Termination Style
Actuator Type
Tolerance
Built in Switch
Actuator Length
Number of Turns
Mounting Type
Temperature Coefficient
Rotation
Power (Watts)
Resistive Material
Features
Taper
Adjustment Type
Results remaining48
Applied Filters:
U
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ImageProduct DetailPriceAvailabilityECAD ModelFeaturesMounting TypeResistive MaterialTaperToleranceNumber of TurnsTermination StyleActuator DiameterTemperature CoefficientBushing ThreadSeriesPower (Watts)Actuator TypeResistance (Ohms)Built in SwitchNumber of GangsAdjustment TypeRotationActuator Length
RUS75R
POT 75 OHM 1000W WIREWOUND LIN
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Panel Mount
Wirewound
Linear
±10%
1
Solder Lug
0.375" (9.53mm)
-
-
U
1000W
Flatted
75
None
1
User Defined
335°
2.000" (50.80mm)
RUS10R
POT 10 OHM 1000W WIREWOUND LIN
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Panel Mount
Wirewound
Linear
±10%
1
Solder Lug
0.375" (9.53mm)
-
-
U
1000W
Flatted
10
None
1
User Defined
335°
2.000" (50.80mm)
RUS50RE
POT 50 OHM 1000W WIREWOUND LIN
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Panel Mount
Wirewound
Linear
±10%
1
Solder Lug
0.375" (9.53mm)
-
-
U
1000W
Flatted
50
None
1
User Defined
335°
2.000" (50.80mm)
RUS2R0
POT 2 OHM 1000W WIREWOUND LINEAR
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Panel Mount
Wirewound
Linear
±10%
1
Solder Lug
0.375" (9.53mm)
-
-
U
1000W
Flatted
2
None
1
User Defined
335°
2.000" (50.80mm)
RUS10RE
POT 10 OHM 1000W WIREWOUND LIN
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Panel Mount
Wirewound
Linear
±10%
1
Solder Lug
0.375" (9.53mm)
-
-
U
1000W
Flatted
10
None
1
User Defined
335°
2.000" (50.80mm)
RUS300E
POT 300 OHM 1000W WIREWOUND LIN
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Panel Mount
Wirewound
Linear
±10%
1
Solder Lug
0.375" (9.53mm)
-
-
U
1000W
Flatted
300
None
1
User Defined
335°
2.000" (50.80mm)
RUS225E
POT 225 OHM 1000W WIREWOUND LIN
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Panel Mount
Wirewound
Linear
±10%
1
Solder Lug
0.375" (9.53mm)
-
-
U
1000W
Flatted
225
None
1
User Defined
335°
2.000" (50.80mm)
RUS750E
POT 750 OHM 1000W WIREWOUND LIN
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Panel Mount
Wirewound
Linear
±10%
1
Solder Lug
0.375" (9.53mm)
-
-
U
1000W
Flatted
750
None
1
User Defined
335°
2.000" (50.80mm)
RUS2K5E
POT 2.5K OHM 1000W WIREWOUND LIN
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Panel Mount
Wirewound
Linear
±10%
1
Solder Lug
0.375" (9.53mm)
-
-
U
1000W
Flatted
2.5k
None
1
User Defined
335°
2.000" (50.80mm)
RUS1R0E
POT 1 OHM 1000W WIREWOUND LINEAR
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Panel Mount
Wirewound
Linear
±10%
1
Solder Lug
0.375" (9.53mm)
-
-
U
1000W
Flatted
1
None
1
User Defined
335°
2.000" (50.80mm)
RUS3R0E
POT 3 OHM 1000W WIREWOUND LINEAR
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Panel Mount
Wirewound
Linear
±10%
1
Solder Lug
0.375" (9.53mm)
-
-
U
1000W
Flatted
3
None
1
User Defined
335°
2.000" (50.80mm)
RUS50R
POT 50 OHM 1000W WIREWOUND LIN
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Panel Mount
Wirewound
Linear
±10%
1
Solder Lug
0.375" (9.53mm)
-
-
U
1000W
Flatted
50
None
1
User Defined
335°
2.000" (50.80mm)
RUS25R
POT 25 OHM 1000W WIREWOUND LIN
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Panel Mount
Wirewound
Linear
±10%
1
Solder Lug
0.375" (9.53mm)
-
-
U
1000W
Flatted
25
None
1
User Defined
335°
2.000" (50.80mm)
RUS16R
POT 16 OHM 1000W WIREWOUND LIN
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Panel Mount
Wirewound
Linear
±10%
1
Solder Lug
0.375" (9.53mm)
-
-
U
1000W
Flatted
16
None
1
User Defined
335°
2.000" (50.80mm)
RUS400
POT 400 OHM 1000W WIREWOUND LIN
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Panel Mount
Wirewound
Linear
±10%
1
Solder Lug
0.375" (9.53mm)
-
-
U
1000W
Flatted
400
None
1
User Defined
335°
2.000" (50.80mm)
RUS300
POT 300 OHM 1000W WIREWOUND LIN
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Panel Mount
Wirewound
Linear
±10%
1
Solder Lug
0.375" (9.53mm)
-
-
U
1000W
Flatted
300
None
1
User Defined
335°
2.000" (50.80mm)
RUS175
POT 175 OHM 1000W WIREWOUND LIN
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Panel Mount
Wirewound
Linear
±10%
1
Solder Lug
0.375" (9.53mm)
-
-
U
1000W
Flatted
175
None
1
User Defined
335°
2.000" (50.80mm)
RUS8R0E
POT 8 OHM 1000W WIREWOUND LINEAR
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Panel Mount
Wirewound
Linear
±10%
1
Solder Lug
0.375" (9.53mm)
-
-
U
1000W
Flatted
8
None
1
User Defined
335°
2.000" (50.80mm)
RUS5R0E
POT 5 OHM 1000W WIREWOUND LINEAR
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Panel Mount
Wirewound
Linear
±10%
1
Solder Lug
0.375" (9.53mm)
-
-
U
1000W
Flatted
5
None
1
User Defined
335°
2.000" (50.80mm)
RUS4R0E
POT 4 OHM 1000W WIREWOUND LINEAR
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Panel Mount
Wirewound
Linear
±10%
1
Solder Lug
0.375" (9.53mm)
-
-
U
1000W
Flatted
4
None
1
User Defined
335°
2.000" (50.80mm)

About  Rotary Potentiometers, Rheostats

A rotary potentiometer (pot) is a three-terminal device that utilizes a resistive element and a rotating contact to form an adjustable voltage divider. The resistive element is typically composed of a carbon film or metal wire, while the rotating contact is a metal wiper that moves along the resistive element's surface. By rotating the shaft connected to the wiper, users can adjust the position of the contact on the resistive element, thereby altering the output voltage according to their requirements. If only two terminals are used, connecting one end of the element with the adjustable contact, the potentiometer functions as a variable resistor or rheostat, allowing users to control the flow of current. When selecting a potentiometer, several factors must be considered. These include the resistance value of the resistive element, the degree of rotation/number of turns required for adjustment, the type of taper (linear or logarithmic), the power dissipation capability, the presence of ganged elements (multiple pots controlled simultaneously), the resistive material used, and the termination style for easy integration into the circuitry. Furthermore, some potentiometers come with built-in switch contacts, providing additional functionality for circuit control. The resistance value of the resistive element may range from a few ohms to several megaohms, depending on the specific application and requirements. The degree of rotation or number of turns required for adjustment varies based on the potentiometer's design and intended use. The type of taper used can be linear, where the resistance changes evenly throughout the rotation, or logarithmic, where the resistance varies exponentially. Power dissipation capabilities typically range from 0.1 watts to several watts, with higher power ratings allowing for greater control over high-current applications. Potentiometers can also be configured with ganged elements, where multiple pots are controlled simultaneously using a single adjustment knob or control. The resistive material used in potentiometers can vary, with carbon film and metal wire being the most common. Finally, termination styles may include through-hole, surface mount, or wire leads, depending on the user's preference and circuit requirements. Overall, potentiometers offer a versatile solution for various applications where precise voltage or current control is required. Their selection parameters allow users to choose the right potentiometer based on specific requirements such as resistance range, mechanical specifications, and electrical characteristics. With their adjustable nature and different configurations, potentiometers provide users with enhanced control and customization options for their electronic circuits.