P0900SCMC Littelfuse / Teccor Sidactor(R) Product, P0900SCMC Datasheet - Page 173

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P0900SCMC

Manufacturer Part Number
P0900SCMC
Description
SIDACTOR MC BI 75V 400A DO-214AA
Manufacturer
Littelfuse / Teccor Sidactor(R) Product
Series
SIDACtor® SC(MC)r
Datasheet

Specifications of P0900SCMC

Voltage - Breakover
98V
Voltage - Off State
75V
Voltage - On State
5V
Current - Peak Pulse (8 X 20µs)
400A
Current - Peak Pulse (10 X 1000µs)
100A
Current - Hold (ih)
150mA
Number Of Elements
1
Capacitance
70pF
Package / Case
DO-214AA, SMB
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant

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Part Number
Manufacturer
Quantity
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P0900SCMC
Manufacturer:
TECCOR
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P0900SCMCL
Manufacturer:
Littelfu
Quantity:
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© 2002 Teccor Electronics
SIDACtor
®
Data Book and Design Guide
transient to follow. Once the transient drops below the DC holdover voltage and current, the
gas tube returns to its off state.
Advantages
Gas tubes have high surge current and low capacitance ratings. Current ratings can be as
high as 500 A for 200 impulses, and capacitance ratings can be as low as 1 pF with a zero-
volt bias.
Restrictions
Gas tubes have a limited shelf life and their performance degrades with usage. Out of the
four devices discussed, gas tubes exhibit the slowest response time and highest peak
voltage measurement. (Figure 5.3)
Applications
Because gas tubes are large and require a substantial amount of time to reach full
conduction, they are rarely used as board-level components. Consequently, gas tubes are
not normally used in telecommunications applications other than station protection
modules.
Metal Oxide Varistors
Metal Oxide Varistors (MOVs) are two-leaded, through-hole components typically shaped in
the form of discs. Manufactured from sintered oxides and schematically equivalent to two
back-to-back PN junctions, MOVs shunt transients by decreasing their resistance as
voltage is applied.
Advantages
Since MOVs surge capabilities are determined by their physical dimensions, high surge
current ratings are available. Also, because MOVs are clamping devices, they can be used
as transient protectors in secondary AC power line applications.
Restrictions
Like gas tubes, MOVs have slow response times resulting in peak clamping voltages which
can be greater than twice the device’s voltage rating. (Figure 5.3) MOVs also have long-
term reliability and performance issues due to their tendency to fatigue, high capacitance,
and limited packaging options.
Applications
Although MOVs are restricted from use in many telecom applications (other than disposable
equipment), they are useful in AC applications where a clamping device is required and
tight voltage tolerances are not.
5 - 11
Overvoltage Protection Comparison
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