EVM-EAGA00B53 Allicdata Electronics
Allicdata Part #:

EAG53BK-ND

Manufacturer Part#:

EVM-EAGA00B53

Price: $ 0.00
Product Category:

Potentiometers, Variable Resistors

Manufacturer: Panasonic Electronic Components
Short Description: TRIMMER 5K OHM 0.3W TH
More Detail: 5 kOhms 0.3W PC Pins Through Hole Trimmer Potentio...
DataSheet: EVM-EAGA00B53 datasheetEVM-EAGA00B53 Datasheet/PDF
Quantity: 1000
Lead Free Status / RoHS Status: Lead free / RoHS Compliant
Moisture Sensitivity Level (MSL): 1 (Unlimited)
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: EVM
Packaging: Bulk 
Lead Free Status / RoHS Status: --
Part Status: Obsolete
Moisture Sensitivity Level (MSL): --
Resistance: 5 kOhms
Power (Watts): 0.3W
Tolerance: ±25%
Temperature Coefficient: ±200ppm/°C
Number of Turns: 1
Adjustment Type: Top Adjustment
Resistive Material: Cermet
Mounting Type: Through Hole
Termination Style: PC Pins
Size / Dimension: Rectangular - 0.315" x 0.252" Face x 0.299" H (8.00mm x 6.40mm x 7.60mm)
Description

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Trimmer Potentiometers, or the EVM-EAGA00B53, are components designed for precision attenuation, or voltage scaling, of any given signal. They are predominantly used in electronic circuits, and are housed in either a top-mounted or side-mounted package.

The trimmer potentiometers are usually equipped with a small potentiometer of typically 2 to 10 turns. The different turns allow for more fine-tuning of the attenuation level and accuracy. Moreover, nowadays, higher resolutions of up to 30 or even 50 turns are also commonly seen in some commercial EVM-EAGA00B53 models.

The EVM-EAGA00B53 is a trimmer potentiometer solution that is widely used in consumer, automotive and industrial applications. It is a three-terminal device containing a resistive element which is connected between two terminals, and an adjustable wiper terminal which can be connected to any desired voltage point. The wiper terminal is adjustable, allowing the user to vary the resistance through the device when a voltage is applied.

The EVM-EAGA00B53 is built on a standard non-inductive architecture which enables the user to adjust the device’s output. It has three distinct features, namely: its high resolution, high linearity and its low temperature behavior. The high resolution of the device enables it to achieve fine tuning of the output voltage. Additionally, its low temperature behavior ensures that the device remains stable over wide temperature variations. Furthermore, the EVM-EAGA00B53 boasts of high linearity, which allows it to produce a more reliable output over a wide range of supply voltages.

The EVM-EAGA00B53 trimmer potentiometers are mainly used for fine-tuning of voltage levels. This can be achieved using the trimmers’ adjustable wiper terminal. A voltage is applied to the device, and then the wiper terminal can be adjusted to change its resistance. This change in resistance affects the output voltage level, thus allowing fine-tuning of the signal. In addition, the EVM-EAGA00B53 can also be used to provide attenuation of voltage signals, thus regulating the signal amplitude.

The EVM-EAGA00B53 trimmer potentiometers are useful in applications where precise signal control is required. These include power supplies, high-precision test instruments, audio equipment, and medical and communications systems. For instance, the EVM-EAGA00B53 can be used to control the output voltage of power supplies. By controlling the voltage levels, the EVM-EAGA00B53 helps to ensure that the power supplies are running at their optimum efficiency, while also protecting them from damage.

In conclusion, the EVM-EAGA00B53 trimmer potentiometers are versatile and practical components used in a wide variety of applications. They provide precise voltage control and attenuation which can be used to regulate and fine-tune the output voltage in many applications. The device’s small form factor, high resolution and low temperature behavior also make it versatile and suitable for a variety of applications.

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

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