RS PRO Metal Oxide Varistor 1.58nF, Clamping 395V, Varistor 240V

RS Stok Numarası: 901-2699Marka: RS PRO
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Teknik Belgeler

Özellikler

Marka

RS Pro

Varistör Gerilimi

240V

Maksimum AC Gerilim Değeri

150V

Maksimum DC Gerilim Değeri

200V

Kelepçeleme Gerilimi

395V

Enerji

120J

Çap

23mm

Maksimum Ani Akım

10000A

Kapasitans

1.58nF

Uzunluk

26mm

Kalınlık

8.5mm

Boyutlar

23 (Dia.) x 8.5mm

Kablo Hatvesi

7.5mm

Menşe

China

Ürün Ayrıntıları

Thermally Protected MOV, Round, Three Leaded

Our RS Pro metal oxide varistors have been designed to meet the abnormal overvoltage requirements outlined in Section 39.4 of the UL1449 standard (4th edition). Under sustained voltage conditions, the Metal Oxide Varistor (MOV) lead that is connected to the thermal link opens. Meeting UL1449 4th edition requirements, these MOVs are ideal for surge protection devices without generating high cost or creating a complicated approach.

When used above their rated specification, traditional MOVs can fail to short circuit conditions or fail to open when exposed to sustained steady state overvoltage. However, the integrated thermal link used in our RS Pro range responds to temperature and voltage. This response ensures that when the MOV exceeds a certain temperature or voltage, the MOV disconnects from the line.

Our range of thermally protected MOVs react instantly to unexpected overvoltage situations and offer an excellent level of protection to components downstream. RS Pro MOVs are wave solderable, helping you to reduce cost by eliminating the rework caused by hand soldering operations.

The thermal link in our MOVs must only be used to provide protection to the varistor in cases of abnormal overvoltage. Never use a thermally protected varistor in series with the load. Our metal oxide varistors are intended for use in UL 1449 compliant surge protection device modules. However, your module design should allow for the possibility that under extreme overvoltage conditions some units may exhibit heating, arcing and venting before opening. We recommend application testing for this range.

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P.O.A.

RS PRO Metal Oxide Varistor 1.58nF, Clamping 395V, Varistor 240V

P.O.A.

RS PRO Metal Oxide Varistor 1.58nF, Clamping 395V, Varistor 240V
Stok bilgileri geçici olarak kullanılamıyor.

Teknik Belgeler

Özellikler

Marka

RS Pro

Varistör Gerilimi

240V

Maksimum AC Gerilim Değeri

150V

Maksimum DC Gerilim Değeri

200V

Kelepçeleme Gerilimi

395V

Enerji

120J

Çap

23mm

Maksimum Ani Akım

10000A

Kapasitans

1.58nF

Uzunluk

26mm

Kalınlık

8.5mm

Boyutlar

23 (Dia.) x 8.5mm

Kablo Hatvesi

7.5mm

Menşe

China

Ürün Ayrıntıları

Thermally Protected MOV, Round, Three Leaded

Our RS Pro metal oxide varistors have been designed to meet the abnormal overvoltage requirements outlined in Section 39.4 of the UL1449 standard (4th edition). Under sustained voltage conditions, the Metal Oxide Varistor (MOV) lead that is connected to the thermal link opens. Meeting UL1449 4th edition requirements, these MOVs are ideal for surge protection devices without generating high cost or creating a complicated approach.

When used above their rated specification, traditional MOVs can fail to short circuit conditions or fail to open when exposed to sustained steady state overvoltage. However, the integrated thermal link used in our RS Pro range responds to temperature and voltage. This response ensures that when the MOV exceeds a certain temperature or voltage, the MOV disconnects from the line.

Our range of thermally protected MOVs react instantly to unexpected overvoltage situations and offer an excellent level of protection to components downstream. RS Pro MOVs are wave solderable, helping you to reduce cost by eliminating the rework caused by hand soldering operations.

The thermal link in our MOVs must only be used to provide protection to the varistor in cases of abnormal overvoltage. Never use a thermally protected varistor in series with the load. Our metal oxide varistors are intended for use in UL 1449 compliant surge protection device modules. However, your module design should allow for the possibility that under extreme overvoltage conditions some units may exhibit heating, arcing and venting before opening. We recommend application testing for this range.