P0080SCMC Littelfuse / Teccor Sidactor(R) Product, P0080SCMC Datasheet - Page 177

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P0080SCMC

Manufacturer Part Number
P0080SCMC
Description
SIDACTOR MC BI 6V 400A DO-214AA
Manufacturer
Littelfuse / Teccor Sidactor(R) Product
Series
SIDACtor® SC(MC)r
Datasheet

Specifications of P0080SCMC

Voltage - Breakover
25V
Voltage - Off State
6V
Voltage - On State
5V
Current - Peak Pulse (8 X 20µs)
400A
Current - Peak Pulse (10 X 1000µs)
100A
Current - Hold (ih)
50mA
Number Of Elements
1
Capacitance
75pF
Package / Case
DO-214AA, SMB
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
P0080SCMC
Manufacturer:
Littelfuse
Quantity:
45 000
Part Number:
P0080SCMCL
Manufacturer:
Littelfu
Quantity:
150 000
Part Number:
P0080SCMCLRP
Manufacturer:
Littelfu
Quantity:
73 500
Part Number:
P0080SCMCLRP
Manufacturer:
LITTELFUSE/力特
Quantity:
20 000
Part Number:
P0080SCMCRP
Manufacturer:
Littelfu
Quantity:
30 000
© 2002 Teccor Electronics
SIDACtor
®
Data Book and Design Guide
Advantages include:
• Elimination of series line resistance enabling longer loop lengths
• Precise longitudinal balance allowing better transmission quality
• Robust surge performance which eliminates costly down time due to nuisance blows
• Greater surge ratings than resettable devices, ensuring regulatory compliance
• Non-degenerative performance
• Available in surface mount packaging which uses less Printed Circuit Board (PCB) real
Weaknesses
Because a fuse does not reset, consideration should be given to its use in applications
where multiple fault occurrences are likely. For example, AC strip protectors and ground
fault interrupting circuits (GFIC) are applications in which an alternative solution might be
more prudent.
Applications
Telecommunications equipment best suited for a fuse is equipment that requires surface
mount technology, accurate longitudinal balance, and regulatory compliance without the
use of additional series line impedance.
Selection Criteria
For circuits that do not require additional series resistance, the surge current rating (I
the TeleLink SM fuse should be greater than or equal to the surge currents associated with
the lightning immunity tests of the applicable regulatory requirement (I
For circuits that use additional series resistance, the surge current rating (I
TeleLink SM fuse should be greater than or equal to the available surge currents associated
with the lightning immunity tests of the applicable regulatory requirement (I
The maximum available surge current is calculated by dividing the peak surge voltage (V
by the total circuit resistance (R
For longitudinal surges (Tip-Ground, Ring-Ground), R
Ring.
For metallic surges (Tip-Ring):
estate, eliminates mixed technologies, and reduces manufacturing costs
I
I
I
R
R
R
PP
PP
PP
TOTAL
TOTAL
TOTAL
³ I
³ I
³ I
PK
PK (available)
PK (available)
= R
= R
= R
TIP
TIP
RING
+ R
+ R
+ R
= V
RING
SOURCE
SOURCE
PK
/R
+ R
TOTAL
TOTAL
SOURCE
5 - 15
).
TOTAL
is calculated for both Tip and
Overcurrent Protection
PK
http://www.teccor.com
).
PP
PK (available)
+1 972-580-7777
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PP
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