Technical Document
Specifications
Brand
KEMETSeries
PMZ
Capacitance
100nF
Voltage
250 V ac, 630V dc
Resistance
100Ω
Dielectric
Metallised Paper
Mounting Type
Through Hole
Number of Elements
2
Capacitance Tolerance
±20%
Resistance Tolerance
±30%
Dimensions
26 x 9 x 18.5mm
Height
18.5mm
Depth
9mm
Length
26mm
Operating Temperature Range
-40 °C → +85 °C
Maximum Operating Temperature
+85°C
Minimum Operating Temperature
-40°C
Country of Origin
Bulgaria
Product details
PMZ Series
R-C contact suppressors comprising a series-connected resistor and capacitor
May be connected across switch or relay contacts to suppress interference generated when switching reactive loads
Suitable for AC & DC use
Self-healing construction and self-extinguishing case
385-360 incorporates an insulated mounting tab
Warning
These devices are designed for connecting directly across a mains supply but should NOT be used in positions where failure of the capacitor would expose anyone to electric shock.
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EGP 544.80
Each (In a Pack of 5) (ex VAT)
Standard
5
EGP 544.80
Each (In a Pack of 5) (ex VAT)
Standard
5
Technical Document
Specifications
Brand
KEMETSeries
PMZ
Capacitance
100nF
Voltage
250 V ac, 630V dc
Resistance
100Ω
Dielectric
Metallised Paper
Mounting Type
Through Hole
Number of Elements
2
Capacitance Tolerance
±20%
Resistance Tolerance
±30%
Dimensions
26 x 9 x 18.5mm
Height
18.5mm
Depth
9mm
Length
26mm
Operating Temperature Range
-40 °C → +85 °C
Maximum Operating Temperature
+85°C
Minimum Operating Temperature
-40°C
Country of Origin
Bulgaria
Product details
PMZ Series
R-C contact suppressors comprising a series-connected resistor and capacitor
May be connected across switch or relay contacts to suppress interference generated when switching reactive loads
Suitable for AC & DC use
Self-healing construction and self-extinguishing case
385-360 incorporates an insulated mounting tab
Warning
These devices are designed for connecting directly across a mains supply but should NOT be used in positions where failure of the capacitor would expose anyone to electric shock.