23ESB222MMF50NF Allicdata Electronics
Allicdata Part #:

23ESB222MMF50NF-ND

Manufacturer Part#:

23ESB222MMF50NF

Price: $ 2.30
Product Category:

Potentiometers, Variable Resistors

Manufacturer: TE Connectivity Passive Product
Short Description: POT 2.2K OHM 1/5W CARBON LOG
More Detail: 2.2k Ohm 1 Gang Logarithmic Panel Mount Potentiome...
DataSheet: 23ESB222MMF50NF datasheet23ESB222MMF50NF Datasheet/PDF
Quantity: 1000
Lead Free Status / RoHS Status: Lead free / RoHS Compliant
Moisture Sensitivity Level (MSL): 1 (Unlimited)
600 +: $ 2.08723
Stock 1000Can Ship Immediately
$ 2.3
Specifications
Series: 23, Citec
Packaging: Bulk 
Lead Free Status / RoHS Status: --
Part Status: Active
Moisture Sensitivity Level (MSL): --
Taper: Logarithmic
Resistance (Ohms): 2.2k
Tolerance: ±20%
Number of Gangs: 1
Built in Switch: None
Power (Watts): 0.2W, 1/5W
Temperature Coefficient: 5%
Number of Turns: 1
Rotation: 300°
Adjustment Type: User Defined
Resistive Material: Carbon
Termination Style: Solder Lug
Actuator Type: Flatted
Actuator Length: 1.969" (50.00mm)
Actuator Diameter: 0.250" (6.35mm)
Bushing Thread: 3/8
Mounting Type: Panel Mount
Description

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Rotary Potentiometers, RheostatsRotary Potentiometers, also known as rheostats, are devices used to control electrical circuits. They are constructed by covering a conductive material with an insulating material, usually ceramic or plastic, and then winding a coil of wire around the covered conductor. This coil of wire, or "element" as it is sometimes referred to, is connected to a set of fixed contacts, known as the "terminals". When a voltage is applied to the element, the element generates a resistance that can be varied depending on the position of the element relative to the terminals. The resistance created by the element is what is known as a "potential difference" which is typically measured in volts or millivolts. The potential difference created by the element is used to control electrical currents in circuits.The 23ESB222MMF50NF is a particular type of rotary potentiometer and rheostat. It is manufactured by Hunter Motors and is made of polyphenylene sulfide (PPS) and stainless steel. The element is a winding of 5 turns of copper conductive wire. The terminals are made of gold and are rated for up to 50 volts and 50 milliamperes. The element is rated for a maximum resistance of 40,000 ohms.The 23ESB222MMF50NF is commonly used in a variety of applications, including automotive, industrial, and medical. In automotive applications, the device is used to regulate the voltage sent to a variety of electrical components, such as headlights, brake lights, turn signals, and air conditioning systems. In industrial applications, the device is used to control the speed and torque of motors and fan drives. In medical applications, the device is used to regulate the power sent to medical devices and instruments. The working principle of the 23ESB222MMF50NF is fairly simple. When the element is moved from its resting position, the resistance of the element is changed. This change creates a potential difference between the terminals, which is then used to control the electrical current sent to a device or instrument. The amount of current sent to the device or instrument is determined by the amount of resistance the element is able to produce. As long as the resistance created by the element is within the maximum resistance rating of the device, the device will be able to effectively control the electrical current sent to a device or instrument. If the resistance created by the element is too high or too low, the device may be unable to effectively control the electrical current sent to a device or instrument. In summary, the 23ESB222MMF50NF is a type of rotary potentiometer and rheostat that is commonly used in automotive, industrial, and medical applications. The element of the device is placed between two terminals, which are typically rated for up to 50 volts and 50 milliamperes. When the element is moved from its resting position, the resistance created by the element is changed, resulting in a potential difference between the terminals. This potential difference is then used to control the electrical current sent to a device or instrument.

The specific data is subject to PDF, and the above content is for reference

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