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ESDXXV88D-CDN Datasheet, PDF (1/3 Pages) UN Semiconducctor INC – Transient Voltage Suppressors for ESD Protection
Transient Voltage Suppressors for ESD Protection
ESDXXV88D-CDN
Description
The ESDXXV88D-CDN is ultra low capacitance TVS arrays
designed to protect high speed data interfaces. This series has
been specifically designed to protect sensitive components
which are connected to high-speed data and transmission lines
from over-voltage caused by ESD (electrostatic discharge),
CDE (Cable Discharge Events), and EFT (electrical fast
transients).
Feature
u 250 Watts Peak Pulse Power per Line (tp=8/20μs)
u Protects one birectional I/O line
u Low clamping voltage
u Working voltages :3.3V - 36V
u Low leakage current
u IEC61000-4-2(ESD)±30kV(air),±30kV(contact):3.3V-15V
u IEC61000-4-2(ESD)±25kV(air),±15kV(contact):18V-36V
u IEC61000-4-4 (EFT) 40A (5/50ηs)
Applications
u Cell Phone Handsets and Accessories
u Microprocessor based equipment
u Personal Digital Assistants (PDA’s)
u Notebooks, Desktops, and Servers
u Portable Instrumentation
u Peripherals
u Pagers
Mechanical Characteristics
Symbol
PPP
TJ
TSTG
TL
Parameter
Peak Pulse Power (tp=8/20μs waveform)
Operating Junction Temperature Range
Storage Temperature Range
Soldering Temperature, t max = 10s
DFN-1006DN
Functional Diagram
Mechanical Data
u DFN1006DN (1.0x0.6x0.5mm) Package
u Molding Compound Flammability Rating : UL 94V-0
u Weight 0.5 Milligrams (Approximate)
u Quantity Per Reel : 10,000pcs
u Reel Size : 7 inch
u Lead Finish : Lead Free
Value
250
-55 to +150
-55 to +150
260
Units
W
ºC
ºC
ºC
Electrical Characteristics (@ 25℃ Unless Otherwise Specified )
Part Number
ESD3.3V88D-CDN
ESD05V88D-CDN
Device
Marking
D3
D5
VRWM
(V)
(Max.)
3.3
5.0
VB
(V)
(Min.)
4.5
6.0
IT
(mA)
1
1
VC
@1A
(Max.)
-
-
VC
(Max.) (@A)
14.0
15.0
18.0
14.0
IR
(μA)
(Max.)
30
1
C
(pF)
(Typ.)
95
60
UN Semiconductor Co., Ltd.
Revision December 18, 2013
1/3
www.unsemi.com.tw
@ UN Semiconductor Co., Ltd. 2013
Specifications are subject to change without notice.
Please refer to www.unsemi.com.tw for current information.