P0080Q22CLRP Littelfuse Inc, P0080Q22CLRP Datasheet - Page 2

Sidacs 6V 500A SIDACtor

P0080Q22CLRP

Manufacturer Part Number
P0080Q22CLRP
Description
Sidacs 6V 500A SIDACtor
Manufacturer
Littelfuse Inc
Type
SIDACr
Datasheets

Specifications of P0080Q22CLRP

Rated Repetitive Off-state Voltage Vdrm
6 V (Min)
Off-state Leakage Current @ Vdrm Idrm
5 uA
Forward Voltage Drop
5 V @ 1 A
Off-state Capacitance Co
35 pF to 75 pF
Maximum Operating Temperature
+ 150 C
Mounting Style
SMD/SMT
Package / Case
QFN
Minimum Operating Temperature
- 40 C
Repetitive Peak Off-state Volt
6V
Off-state Voltage
6V
Average On-state Current
2.2A
Hold Current
50mA
Package Type
QFN
On State Voltage(max)
5@1AV
Mounting
Surface Mount
Pin Count
2
Operating Temp Range
-40C to 150C
Operating Temperature Classification
Automotive
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Notes:
- Peak pulse current rating (I
- I
- The device must initially be in thermal equilibrium with -40°C < T
Please refer to www.littelfuse.com for current information.
© 2011 Littelfuse, Inc.
Specifications are subject to change without notice.
PP
Surge Ratings
Thermal Considerations
V-I Characteristics
Normalized V
Series
C
Package
3.3 x 3.3 QFN
14
12
10
2x10μs
-V
-4
-6
-8
A min
8
6
4
2
0
500
-40 -20
S
Change vs. Junction Temperature
PP
) is repetitive and guaranteed for the life of the product.
Junction Temperature (T
Symbol
R
0
I
T
T
DRM
0JA
S
J
1.2x50μs/8x20μs
I
I
I
T
S
H
20 40 60 80 100 120 140 160
25 °C
A min
+I
-I
400
V
Thermal Resistance: Junction to Ambient
T
Operating Junction Temperature Range
SIDACtor
Broadband Optimized
V
Storage Temperature Range
DRM
V
I
J
S
pp
10x160μs
) – °C
J
Parameter
A min
<
200
+V
®
Protection Thyristors
10x560μs
Revised: February 22, 2011
A min
150
Protection
64
10x1000μs
t
Normalized DC Holding Current vs. Case Temperature
r
A min
x t
100
Value
120
d
Pulse Waveform
100
50
0
2.0
1.8
1.6
1.4
1.0
0.8
0.6
0.4
1.2
0
-40
t
r
50 / 60 Hz
°C/W
Unit
A min
-20
°C
°C
I
TSM
30
Waveform = t
Peak
Value
0
Case Temperature (T
t
d
25°C
20
t
t
r
d
= rise time to peak value
= decay time to half value
40
r
t – Time (μs)
x t
Amps/μs max
Half Value
d
60
di/dt
500
80
100 120 140 160
C
) - ºC

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