Rotary Potentiometers, Rheostats

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Resistance (Ohms)
Tolerance
Power (Watts)
Built in Switch
Number of Turns
Features
Taper
Number of Gangs
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Temperature Coefficient
Rotation
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842
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1 : $1.21000
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100k
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1.0
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1
Top Adjustment
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305°
Carbon
PC Pins
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0.591" (15.00mm)
0.236" (6.00mm)
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770
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0.591" (15.00mm)
0.236" (6.00mm)
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Through Hole
761
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305°
Carbon
PC Pins
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0.591" (15.00mm)
0.236" (6.00mm)
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731
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305°
Carbon
PC Pins
Knurled and Slotted
0.591" (15.00mm)
0.236" (6.00mm)
M7 x 0.75
Through Hole
695
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305°
Carbon
PC Pins
Knurled and Slotted
0.591" (15.00mm)
0.236" (6.00mm)
M7 x 0.75
Through Hole
692
In Stock
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305°
Carbon
PC Pins
Knurled and Slotted
0.787" (20.00mm)
0.236" (6.00mm)
M7 x 0.75
Through Hole
692
In Stock
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10k
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Top Adjustment
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305°
Carbon
PC Pins
Knurled and Slotted
0.591" (15.00mm)
0.236" (6.00mm)
M7 x 0.75
Through Hole
689
In Stock
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10k
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1.0
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Linear
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Top Adjustment
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305°
Carbon
PC Pins
Flatted
0.787" (20.00mm)
0.236" (6.00mm)
M7 x 0.75
Through Hole
680
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305°
Carbon
PC Pins
Knurled and Slotted
0.984" (25.00mm)
0.236" (6.00mm)
M7 x 0.75
Through Hole
669
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10k
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1.0
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Top Adjustment
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305°
Carbon
PC Pins
Knurled and Slotted
0.787" (20.00mm)
0.236" (6.00mm)
M7 x 0.75
Through Hole
628
In Stock
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20k
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1.0
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Side Adjustment
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305°
Carbon
PC Pins
Knurled and Slotted
0.787" (20.00mm)
0.236" (6.00mm)
M7 x 0.75
Through Hole
567
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Top Adjustment
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305°
Carbon
PC Pins
Knurled and Slotted
0.787" (20.00mm)
0.236" (6.00mm)
M7 x 0.75
Through Hole
557
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1.0
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Linear
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Side Adjustment
-
305°
Carbon
PC Pins
Knurled and Slotted
0.591" (15.00mm)
0.236" (6.00mm)
M7 x 0.75
Through Hole
547
In Stock
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5k
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0.125W, 1/8W
None
1.0
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1
Top Adjustment
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305°
Carbon
PC Pins
Knurled and Slotted
0.787" (20.00mm)
0.236" (6.00mm)
M7 x 0.75
Through Hole
534
In Stock
1 : $1.21000
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5k
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0.125W, 1/8W
None
1.0
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Linear
1
Side Adjustment
-
305°
Carbon
PC Pins
Knurled and Slotted
0.787" (20.00mm)
0.236" (6.00mm)
M7 x 0.75
Through Hole
497
In Stock
1 : $1.21000
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100k
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0.125W, 1/8W
None
1.0
-
Logarithmic
1
Side Adjustment
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305°
Carbon
PC Pins
Knurled and Slotted
0.787" (20.00mm)
0.236" (6.00mm)
M7 x 0.75
Through Hole
491
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10k
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0.125W, 1/8W
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1.0
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Side Adjustment
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305°
Carbon
PC Pins
Knurled and Slotted
0.787" (20.00mm)
0.236" (6.00mm)
M7 x 0.75
Through Hole
469
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50k
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Detent
1.0
-
Linear
1
Top Adjustment
-
305°
Carbon
PC Pins
Knurled and Slotted
0.591" (15.00mm)
0.236" (6.00mm)
M7 x 0.75
Through Hole
414
In Stock
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100k
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1.0
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Linear
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Side Adjustment
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305°
Carbon
PC Pins
Knurled and Slotted
0.984" (25.00mm)
0.236" (6.00mm)
M7 x 0.75
Through Hole
392
In Stock
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1.0
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Linear
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Side Adjustment
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305°
Carbon
PC Pins
Knurled and Slotted
0.787" (20.00mm)
0.236" (6.00mm)
M7 x 0.75
Through Hole
378
In Stock
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10k
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Detent
1.0
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Side Adjustment
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305°
Carbon
PC Pins
Knurled and Slotted
0.787" (20.00mm)
0.236" (6.00mm)
M7 x 0.75
Through Hole
158
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50k
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1.0
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Top Adjustment
-
305°
Carbon
Solder Lug
Flatted
0.591" (15.00mm)
0.236" (6.00mm)
M7 x 0.75
Panel Mount
132
In Stock
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1.0
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Linear
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Side Adjustment
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305°
Carbon
PC Pins
Knurled and Slotted
0.591" (15.00mm)
0.236" (6.00mm)
M7 x 0.75
Through Hole
565
In Stock
1 : $1.26000
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10k
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1.0
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Linear
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Top Adjustment
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305°
Carbon
PC Pins
Knurled and Slotted
0.591" (15.00mm)
0.236" (6.00mm)
M7 x 0.75
Through Hole
841
In Stock
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1.0
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Side Adjustment
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305°
Carbon
PC Pins
Knurled and Slotted
1.181" (30.00mm)
0.236" (6.00mm)
M7 x 0.75
Through Hole
Showing
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About Rotary Potentiometers and Rheostats


A rheostat is a type of adjustable resistor used to control current flow in an electrical circuit by varying resistance. Often referred to as a variable resistor, a rheostat is typically constructed using a wire-wound resistive element—usually made of materials like nichrome or another high-resistivity alloy—wrapped around a ceramic or insulating core. A sliding contact called a wiper moves along the resistive wire to change the effective resistance between two terminals, allowing more or less current to flow. Rheostats are commonly rotary or linear in design and are manually adjusted using a shaft or slider. Though similar in appearance to a potentiometer, a rheostat is typically used with just two terminals to control current (not voltage division), making it better suited for high-power applications like motor speed control or dimming incandescent lamps.

When selecting a rheostat, key factors include resistance range (measured in ohms), power rating (in watts), adjustment type (rotary or linear), and mechanical durability. For high-current applications, look for wire-wound models that can dissipate significant heat. Rheostats are generally used in AC and DC circuits, but they must be rated appropriately for the type and magnitude of the voltage and current involved.

It’s important to note that rheostats are not as precise or compact as digital alternatives, and their mechanical nature makes them less suited to automated or embedded systems. However, they remain useful for hands-on control, adjustment during prototyping, and high-power load variation where fine-tuned analog control is necessary. When comparing to potentiometers, remember: all rheostats are variable resistors, but not all variable resistors are rheostats—potentiometers usually act as voltage dividers, while rheostats typically control current directly.