GFL2B060302 Allicdata Electronics
Allicdata Part #:

GFL2B060302-ND

Manufacturer Part#:

GFL2B060302

Price: $ 59.12
Product Category:

Uncategorized

Manufacturer: Altech Corporation
Short Description: MCCB+EGFP 6A240V AC 30MA B TRIP
More Detail: N/A
DataSheet: GFL2B060302 datasheetGFL2B060302 Datasheet/PDF
Quantity: 1000
6 +: $ 53.74530
Stock 1000Can Ship Immediately
$ 59.12
Specifications
Series: *
Part Status: Active
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

GFL2B060302, often also referred to as a PTC resistor, is a type of electronic component whose resistance significantly increases after it heats up. This type of component can be used to create electronic circuits which are able to effectively sense and act on changes in temperature. GFL2B060302’s unique way of generating power from heat makes it highly versatile and applicable to a wide range of industries.

Applications

GFL2B060302 components can be used in a variety of industries. They are commonly used in electrical devices where a change in temperature allows the device to operate in a given state. For example, smart thermostats in homes use GFL2B060302 components to precisely control the temperature of a given area. GFL2B060302 can also be used in automotive, medical, electronic, and janitorial equipment as well. This type of component is often used in situations where an automated response or feedback is needed when certain temperature-related thresholds are exceeded. Additionally, GFL2B060302 components are common in safety devices such as smoke detectors and gas leak alarms.

Working Principle

GFL2B060302s are known as "positive temperature coefficient" (PTC) components because they increase in resistance as the temperature increases. A given GFL2B060302 component is composed of a ceramic material containing metal particles. As the component heats up, the particles become more energized and the resistance increases significantly. This increase in resistance creates a voltage surge which can be used to trigger a response from a circuit. The resistance of the GFL2B060302 can be adjusted according to the desired temperature threshold. Once the threshold is reached, the component will autonomously shut off as it cools down.

Advantages

One of the main advantages of GFL2B060302 components is their ability to accurately and reliably sense changes in temperature. This makes them ideal for sensitive applications such as medical diagnostics and safety devices. Additionally, GFL2B060302 components are small and capable of operating at low voltage and power, which makes them suitable for both industrial and consumer uses. Furthermore, GFL2B060302 components are simple to integrate into a circuit and require no external power source, making them an economical choice.

Disadvantages

While GFL2B060302 components are generally reliable and cost-effective, there are some drawbacks that should be considered. For one, they are sensitive to leaks and other environmental conditions which can affect their performance. Additionally, GFL2B060302 components are not as precise as other temperature sensors and may only be able to provide approximate readings. Finally, GFL2B060302 components are not able to sense changes in temperature until they heat up, which can create a delay in the operation of the circuit.

Conclusion

GFL2B060302 components are a highly versatile electronic component with a wide range of applications. They are used in industries such as automotive, medical, and janitorial applications in order to sense changes in temperature. GFL2B060302s work by increasing their resistance when heated, resulting in a voltage surge which can be used to trigger an automated response or feedback. These components are small, cost-effective, and can operate at low voltage and power. However, they are sensitive to environmental conditions and may not be as precise as other temperature sensors. Nevertheless, GFL2B060302 components are a reliable and economical choice for many temperature sensing applications.

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

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