EYP-2MT092B Allicdata Electronics
Allicdata Part #:

P10930-ND

Manufacturer Part#:

EYP-2MT092B

Price: $ 0.00
Product Category:

Circuit Protection

Manufacturer: Panasonic Electronic Components
Short Description: TCO 50VDC 2A 92C(198F) STRAP
More Detail: Thermal Cutoff (TCO) 50V DC 2A 92°C (198°F) Strap
DataSheet: EYP-2MT092B datasheetEYP-2MT092B Datasheet/PDF
Quantity: 1000
Lead Free Status / RoHS Status: Contains lead / RoHS non-compliant
Moisture Sensitivity Level (MSL): 1 (Unlimited)
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: MT
Part Status: Obsolete
Lead Free Status / RoHS Status: --
Holding Temperature: 60°C (140°F)
Moisture Sensitivity Level (MSL): --
Rated Functioning Temperature: 92°C (198°F)
Voltage - Rated DC: 50V
Current Rating: 2A
Approvals: UL
Maximum Temperature Limit: 150°C (302°F)
Package / Case: Strap
Description

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Thermal Cutoffs, also known as Thermal Fuses, are a type of electric switch used to protect electrical circuits from over-temperature damage or fire risks - and are essential components of many electrical appliances and machines. The EYP-2MT092B is one such Thermal Cutoff, specifically designed for high temperature cut-off applications, such as deep fryers, dryers, grills, etc.

The EYP-2MT092B utilizes a thermally sensitive bimetallic strip as its core switch element. It is designed with a small pin size and a large reset current that can easily fit into small components. The high temperature cut-off threshold is adjustable with its operating switch - the temperature can be adjusted between 80 and 250 degrees Celsius. The open circuit temperature is higher than the threshold temperature, typically by 5 to 10 degrees.

The two main components of the EYP-2MT092B are the bimetallic snap-action switch and the temperature sensing device. The snap-action switch is made of two strips of metal with different rates of expansion - when the strip is heated, the slower metal expands quicker than the faster one and causes the strip to curl, snapping the switch open or closed when the heat threshold is exceeded. The temperature sensing device is composed of a bi-metal disc or ceramic disc that senses the temperature of the appliance or circuit and transmits the information to the bimetallic strip.

The EYP-2MT092B is generally used for two different applications: thermal overload protection and high temperature cut-off. Thermal overload protection is essentially a preventative measure, ensuring that the appliance or circuit is not damaged by operating at excessive temperatures. This type of Thermal Cutoff is typically used in devices that generate substantial amounts of heat - especially in applications such as heavy machinery, electric heaters, etc. The high temperature cut-off application is used in systems with more sensitive components, such as lamps, computers or refrigerators wherein the temperature must be monitored much more closely. The EYP-2MT092B is suitable for both types of applications, as its adjustable switch allows for the threshold temperature to be adjusted in order to suit the needs of the system.

In most cases, the EYP-2MT092B is used in conjunction with a standard thermal protector device. When the thermal protector senses that the temperature has exceeded the threshold, it will trigger the EYP-2MT092B, which will in turn disengage the power supply. This ensures that the appliance or circuit is not damaged by excessive temperatures and that any fire risk is eliminated. The EYP-2MT092B is designed to meet a wide range of industry standards such as UL, CSA, VDE, SEMKO and IEC.

The EYP-2MT092B is a reliable and reliable device designed for temperature control of appliances and circuits. Its adjustable threshold and small pin size make it suitable for a variety of applications requiring high temperature cut-off or thermal overload protection. The EYP-2MT092B is built to meet the highest industry standards, making it a safe and reliable device to use when working with electrical circuits.

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

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