SIDACtor® ProtectionThyristors
Broadband OptimizedTM Protection
Pb e3
Pxxx0Q22xLHL, Low IH Series – QFN 3.3X3.3
RoHS
Description
The Pxxx0Q22xLHL Low IH series is the low capacitance
SIDACtor® component designed to protect high density
broadband equipment from damaging overvoltage
transients.
It provides a low profile, chip scale surface mount
solution that enables broadband equipment to comply
with global regulatory standards while limiting the impact
to broadband signals and board space.
Features and Benefits
• Low profile
• Small footprint
• Pb-free E3 means 2nd
level interconnect is
Pb-free and the terminal
finish material is tin(Sn)
(IPC/JEDEC J-STD-
609A.01)
Agency Approvals
• Low capacitance
• Low voltage overshoot
• Low on-state voltage
• Does not degrade surge
capability after multiple
surge events within limit.
• Fails short circuit when
surged in excess of
ratings
Agency
Agency File Number
E133083
• Halogen-Free and RoHS-
Compliant
Schematic Symbol
Applicable Global Standards
•TIA-968-A
•TIA-968-B
• GR 1089 Intra-building
• IEC 61000-4-5 2nd Edition
•YD/T 1082
• ITU K.20/21 Enhanced
Level
•YD/T 993
• ITU K.20/21 Basic Level
• GR 1089 Inter-building
•YD/T 950
Electrical Characteristics
VDRM
@lDRM=5µA
VS
VT
Capacitance
@1MHz, 2V bias
IH
IS
IT
@100V/µs
@IT=2.2 Amps
Part Number
Marking
V min
V max
mA min
mA max
A max
V max
pF min
25
pF max
65
P4500Q22DLHL
P45DL
400
570
10
800
2.2
4
Notes:
- Absolute maximum ratings measured at TA= 25ºC (unless otherwise noted).
- Components are bi-directional (unless otherwise noted).
Surge Ratings
IPP
ITSM
50/60 Hz
di/dt
0.2/310 1
0.5/700 2
2/10 1
2/10 2
8/20 1
10/160 1
10/160 2
5/320 1
9/720 2
10/360 1
10/360 2
10/1000 1
10/1000 2
5/310 1
Series
1.2/50 2
10/700 2
A min
A min
A min
A min
A min
A min
A min
A typ
A min
A/µs max
D
-
600
550
-
-
-
130
250
50
500
Notes:
1. Current waveform in µs
2. Voltage waveform in µs
- Peak pulse current rating (IPP) is repetitive and guaranteed for the life of the product.
- IPP ratings applicable over temperature range of -40ºC to +85ºC
- The component must initially be in thermal equilibrium with -40°C < TJ < +150°C
© 2020 Littelfuse, Inc.
Specifications are subject to change without notice.
Revised: 04/01/20