P0300Q12BLRP Littelfuse / Teccor Sidactor(R) Product, P0300Q12BLRP Datasheet - Page 3

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P0300Q12BLRP

Manufacturer Part Number
P0300Q12BLRP
Description
SIDACTOR BI 40V 250A QFN SMD
Manufacturer
Littelfuse / Teccor Sidactor(R) Product
Series
SIDACtor® Q2Lr
Datasheet

Specifications of P0300Q12BLRP

Voltage - Breakover
40V
Voltage - Off State
25V
Voltage - On State
5V
Current - Peak Pulse (8 X 20µs)
250A
Current - Peak Pulse (10 X 1000µs)
80A
Current - Hold (ih)
50mA
Number Of Elements
1
Capacitance
35pF
Package / Case
2-VQFN
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
P0300Q12BL
P0300Q12BLRP
P0300Q12BLRPTR

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
P0300Q12BLRP
Manufacturer:
Littelfuse
Quantity:
135
Please refer to www.littelfuse.com for current information.
© 2011 Littelfuse, Inc.
Specifications are subject to change without notice.
V-I Characteristics
Normalized V
Soldering Parameters
Reflow Condition
Pre Heat
Average ramp up rate (Liquidus Temp (T
to peak)
T
Reflow
Peak Temp (T
Time within 5°C of actual Peak Temp (t
Ramp-down Rate
Time 25°C to Peak Temp (T
Do not exceed
S(max)
to T
L
- Ramp-up Rate
- Temperature Min (T
- Temperature Max (T
- Time (Min to Max) (t
- Temperature (T
- Temperature (t
14
12
10
-V
-4
-6
-8
P
8
6
4
2
0
)
-40 -20
S
Change vs. Junction Temperature
Junction Temperature (T
0
I
DRM
I
I
I
L
T
S
H
L
)
20 40 60 80 100 120 140 160
25 °C
) (Liquidus)
P
)
s(min)
+I
s(max)
s
-I
)
V
T
)
)
SIDACtor
Broadband Optimized
V
p
DRM
)
L
)
V
J
S
) – °C
Pb-Free assembly
(see Fig. 1)
60-180 secs.
3°C/sec. Max.
3°C/sec. Max.
60-150 secs.
30 secs. Max.
6°C/sec. Max.
8 min. Max.
+V
®
Protection Thyristors
Revised: February 22, 2011
Protection
60
t
Normalized DC Holding Current vs. Case Temperature
r
x t
T
d
T
S(max)
S(min)
Pulse Waveform
2
T
T
P
L
100
50
0
2.0
1.8
1.6
1.4
1.0
0.8
0.6
0.4
1.2
0
-40
t
time to peak temperature
r
(t 2 ºC to peak)
-20
Waveform = t
Peak
Value
t
Preheat
0
Case Temperature (T
S
t
d
25°C
20
t
t
r
d
Figure 1
= rise time to peak value
= decay time to half value
40
Ramp-up
r
t – Time (μs)
x t
Half Value
d
60
80
100 120 140 160
C
t
) - ºC
t
P
L
Time
Ramp-down
Critical Zone
T
L
to T
P

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