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CMLM0305_15 Datasheet, PDF (1/3 Pages) Central Semiconductor Corp – SCHOTTKY DIODE
CMLM0305
CMLM0305G*
Multi Discrete Module™
SURFACE MOUNT SILICON
N-CHANNEL MOSFET AND
LOW VF SCHOTTKY DIODE
SOT-563 CASE
w w w. c e n t r a l s e m i . c o m
DESCRIPTION:
The CENTRAL SEMICONDUCTOR CMLM0305 and
CMLM0305G are Multi Discrete Modules™ consisting
of a single N-Channel enhancement-mode MOSFET
and a low VF Schottky diode packaged in a space
saving SOT-563 surface mount case. This device is
designed for small signal general purpose applications
where size and operational efficiency are prime
requirements.
MARKING CODES: CMLM0305: 5C3
CMLM0305G*: 5CG
* Device is Halogen Free by design
APPLICATIONS:
• DC / DC Converters
• Battery Powered Portable Equipment
FEATURES:
• ESD protection up to 2kV
• Low rDS(on) Transistor (3Ω MAX @ VGS=1.8V)
• Low VF Schottky Diode (0.47V MAX @ 0.5A)
MAXIMUM RATINGS - CASE: (TA=25°C)
Power Dissipation (Note 1)
Power Dissipation (Note 2)
Power Dissipation (Note 3)
Operating and Storage Junction Temperature
Thermal Resistance
SYMBOL
PD
PD
PD
TJ, Tstg
ΘJA
350
300
150
-65 to +150
357
UNITS
mW
mW
mW
°C
°C/W
MAXIMUM RATINGS - Q1: (TA=25°C)
SYMBOL
Drain-Source Voltage
VDS
50
Drain-Gate Voltage
VDG
50
Gate-Source Voltage
VGS
12
Continuous Drain Current
ID
280
Maximum Pulsed Drain Current
IDM
1.5
UNITS
V
V
V
mA
A
MAXIMUM RATINGS - D1: (TA=25°C)
SYMBOL
Peak Repetitive Reverse Voltage
VRRM
40
Continuous Forward Current
IF
500
Peak Repetitive Forward Current, tp≤1.0ms
IFRM
3.5
Peak Forward Surge Current, tp = 8.0ms
IFSM
10
UNITS
V
mA
A
A
ELECTRICAL CHARACTERISTICS - Q1: (TA=25°C unless otherwise noted)
SYMBOL
TEST CONDITIONS
MIN
MAX
IGSSF, IGSSR VGS=5.0V
100
IGSSF, IGSSR VGS=10V
2.0
IGSSF, IGSSR VGS=12V
2.0
IDSS
VDS=50V, VGS=0
50
BVDSS
VGS=0, ID=10μA
50
VGS(th)
VDS=VGS, ID=250μA
0.49
1.0
Notes: (1) Ceramic or aluminum core PC Board with copper mounting pad area of 4.0mm2
(2) FR-4 Epoxy PC Board with copper mounting pad area of 4.0mm2
(3) FR-4 Epoxy PC Board with copper mounting pad area of 1.4mm2
UNITS
nA
μA
μA
nA
V
V
R5 (15-June 2015)