CPC5602 IXYS, CPC5602 Datasheet

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CPC5602

Manufacturer Part Number
CPC5602
Description
Depletion Mode MOSFETs
Manufacturer
IXYS
Datasheet

Specifications of CPC5602

Vds, Max, (v)
350
Id(on), Min, (a)
0.13
Rds(on), Max, (?)
14
Vgs(off), Max, (v)
-2
Ciss, Typ, (pf)
300(max)
Crss, Typ, (pf)
-
Qg, Typ, (nc)
-
Pd, (w)
-
Rthjc, Max, (ºc/w)
14
Package Style
SOT-223

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
CPC5602C
Manufacturer:
CLARE
Quantity:
2 950
Part Number:
CPC5602C
Manufacturer:
ST
Quantity:
267
Part Number:
CPC5602C
Manufacturer:
CLARE
Quantity:
20 000
Part Number:
CPC5602CTR
Manufacturer:
CPCLARE
Quantity:
18 210
Part Number:
CPC5602CTR
Manufacturer:
CPCLARE
Quantity:
453
Part Number:
CPC5602CTR
Manufacturer:
CPCLARE
Quantity:
20 000
Part Number:
CPC5602CTR
Quantity:
4 000
Features
Applications
DS-CPC5602-R06
Parameter
Drain-to-Source Voltage - V
Max On-Resistance - R
Max Power
350V Drain-to-Source Voltage
Depletion Mode Device Offers Low R
at Cold Temperatures
Low On-resistance: 8 (Typical) @ 25°C
Low V
High Input Impedance
Low Input and Output Leakage
Small Package Size SOT-223
PC Card (PCMCIA) Compatible
PCB Space and Cost Savings
Support Component for LITELINK™
Data Access Arrangement (DAA)
Telecommunications
Normally On Switches
Ignition Modules
Converters
Security
Power Supplies
Pb
GS(off)
2002/95/EC
RoHS
Voltage: -2.0V to -3.6V
DS(on)
DS
e
3
Rating
350
2.5
14
DS(on)
Units
W
V
www.clare.com
www.clare.com
The CPC5602 is an N-channel depletion mode Field
Effect Transistor (FET) that utilizes Clare’s proprietary
third generation vertical DMOS process. The third
generation process realizes world class, high voltage
MOSFET performance in an economical silicon gate
process. The vertical DMOS process yields a highly
reliable device, particularly in difficult application
environments such as telecommunications, security,
and power supplies.
One of the primary applications for the CPC5602 is
as a linear regulator/hook switch for the LITELINK
family of Data Access Arrangements (DAA) Devices
CPC5620A, CPC5621A, and CPC5622A.
The CPC5602 has a typical on-resistance of 8, a
drain-to-source voltage of 350V, and is available in an
SOT-223 package. As with all MOS devices, the FET
structure prevents thermal runaway and
thermal-induced secondary breakdown.
Description
Ordering Information
Part Number
CPC5602C
CPC5602CTR
N-Channel Depletion Mode FET
Pin Number
Package Pinout
Description
N-Channel Depletion Mode FET, SOT-223 Pkg.
Cut-Tape, Available in Quantities of 200, 300,
400, 500, and 600
N-Channel Depletion Mode FET, SOT-223 Pkg.
Tape and Reel (1000/reel)
1
2
3
4
G
1
D
D
4
2
SOURCE
DRAIN
DRAIN
Name
S
GATE
3
CPC5602
1

Related parts for CPC5602

CPC5602 Summary of contents

Page 1

... DS(on) and power supplies. One of the primary applications for the CPC5602 linear regulator/hook switch for the LITELINK family of Data Access Arrangements (DAA) Devices CPC5620A, CPC5621A, and CPC5622A. The CPC5602 has a typical on-resistance of 8, a drain-to-source voltage of 350V, and is available in an SOT-223 package ...

Page 2

... V =50V -0.57V -0.35V, I =50mA DS(on =10V, V =-10V GSS =0V ISS DS GS Symbol Conditions R - JC www.clare.com CPC5602 Min Typ Max Units -3.6 -2.  130 - - mA   0 300 pF Min Typ ...

Page 3

... Temperature (ºC) Power Dissipation vs. Ambient Temperature 4.0 3.5 3.0 2.5 2.0 1.5 1.0 0 100 120 140 160 Temperature (ºC) www.clare.com CPC5602 Transconductance vs Drain Current (V =10V) DS 300 T =-40º =25ºC 250 A T =125ºC A 200 150 100 100 0.6 I (mA) D On-Resistance vs. Temperature ...

Page 4

... Chlorine- or Fluorine-based solvents or fluxes should not be used. Cleaning methods that employ ultrasonic energy should not be used RoHS 2002/95/EC 4 Moisture Sensitivity Level (MSL) Rating MSL 1 Maximum Temperature x Time 260ºC for 30 seconds www.clare.com CPC5602 R06 ...

Page 5

... CPC5602C Tape & Reel 7” Tape and Reel Packaging for the SOT-223 Package 177.8 Dia (7.00 Dia) Top Cover Tape Thickness 0.102 Max (0.004 Max) Embossed Carrier Embossment For additional information please visit our website at: www ...

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