91A1A-B28-B23L Allicdata Electronics
Allicdata Part #:

91A1A-B28-B23L-ND

Manufacturer Part#:

91A1A-B28-B23L

Price: $ 2.32
Product Category:

Potentiometers, Variable Resistors

Manufacturer: Bourns Inc.
Short Description: POT 500K OHM 1W PLASTIC LINEAR
More Detail: 500k Ohm 1 Gang Linear Panel Mount Potentiometer N...
DataSheet: 91A1A-B28-B23L datasheet91A1A-B28-B23L Datasheet/PDF
Quantity: 1000
Lead Free Status / RoHS Status: Lead free / RoHS Compliant
Moisture Sensitivity Level (MSL): 1 (Unlimited)
495 +: $ 2.10988
Stock 1000Can Ship Immediately
$ 2.32
Specifications
Series: 91
Packaging: Bulk 
Lead Free Status / RoHS Status: --
Part Status: Active
Moisture Sensitivity Level (MSL): --
Taper: Linear
Resistance (Ohms): 500k
Tolerance: ±20%
Number of Gangs: 1
Built in Switch: None
Power (Watts): 1W
Temperature Coefficient: ±1000ppm/°C
Number of Turns: 1
Rotation: 300°
Adjustment Type: Side Adjustment
Resistive Material: Conductive Plastic
Termination Style: PC Pins
Actuator Type: Slotted
Actuator Length: 0.875" (22.23mm)
Actuator Diameter: 0.250" (6.35mm)
Bushing Thread: 3/8-32
Mounting Type: Panel Mount
Description

Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us:   sales@allicdata.com

Rotary Potentiometers, Rheostats are widely used in robotic fields and they are becoming increasingly popular as the complexity of robotic systems increases. The 91A1A-B28-B23L application field and working principle is a perfect example of this increasing complexity and popularity.

What are Rotary Potentiometers, Rheostats? Rotary Potentiometers, Rheostats are special devices that use resistors to control the amount of current in a circuit. Typically these devices have a rotating control member which will vary the resistance of the device as it is turned. The current control devices can also be known as digital rotary potentiometers or rheostats.

How do Rotary Potentiometers, Rheostats Work? The 91A1A-B28-B23L application field and working principle is very straight forward. The device uses one or more resistors inside of it to control the current that passes through the device. As the knob thats controlling it is turned, the resistance of the resistor changes, and the current that passes through the device changes accordingly. This resistance change can be used to vary the voltage and current in a certain circuit, allowing for precise control over the voltage and current used. This is extremely useful when used in robotics, to control the speed and direction of robotic servos.

What Makes the 91A1A-B28-B23L application field and working principle Unique? The 91A1A-B28-B23L application field and working principle are unique in that they provide a high degree of accuracy and resolution when compared to other types of resistances. The product is made up of higher grade components resulting in a device that is extremely durable and reliable. The product also has a variety of adjustability and features that are rarely seen in other types of resistors.

The 91A1A-B28-B23L application field and working principle are also unique in that they use a special technology known as “closed loop control”. This type of control allows for the device to be precisely controlled and can even react and adjust to changing conditions in the circuit. By using this technology, the 91A1A-B28-B23L application field and working principle are able to provide a high degree of accuracy and resolution, while also being very resilient to external elements such as vibration and temperature.

Applications for the 91A1A-B28-B23L The 91A1A-B28-B23L application field and working principle can be found in a variety of applications, such as motor control, process control, and robotics. The device is a great choice for many different types of robotic projects and applications, due to its accuracy and reliability. The device is also very easy to use, and can be easily incorporated into existing robotic systems and control systems.

The 91A1A-B28-B23L application field and working principle also have applications in the communications systems. These systems can use the device to regulate the power levels of radio transmissions, as well as controlling the waveforms that are sent out. This can be used to improve communication reliability and signal quality.

Conclusion The 91A1A-B28-B23L application field and working principle are a great choice for controlling current in robotic and communications systems. The device provides a high degree of accuracy and resolution, while also being extremely durable and reliable. The device is also very easy to use, and can be easily incorporated into existing robotic and radio systems.

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

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