Supply Applications. CMS08 Datasheet

CMS08 Applications. Datasheet pdf. Equivalent

Part CMS08
Description Switching Mode Power Supply Applications
Feature CMS08 TOSHIBA Schottky Barrier Rectifier Schottky Barrier Type CMS08 Switching Mode Power Supply Ap.
Manufacture Toshiba Semiconductor
Datasheet
Download CMS08 Datasheet




CMS08
TOSHIBA Schottky Barrier Rectifier Schottky Barrier Type
CMS08
CMS08
Switching Mode Power Supply Applications
Portable Equipment Battery Applications
Unit: mm
Forward voltage: VFM = 0.37 V (max)
Average forward current: IF (AV) = 1.0 A
Repetitive peak reverse voltage: VRRM = 30 V
www.DataSheet4U.cSoumitable for compact assembly due to small surface-mount package
“MFLATTM” (Toshiba package name)
Absolute Maximum Ratings (Ta = 25°C)
Characteristics
Symbol
Rating
Unit
Repetitive peak reverse voltage
Average forward current
Peak one cycle surge forward current
(non-repetitive)
VRRM
IF((NAVot)e 1)
IF (AV)
30
1.0
(Ta = 51°C)
1.0
(T= 106°C)
IFSM
25 (50 Hz)
V
A
A
A
JEDEC
Junction temperature
Storage temperature
Tj
40~125
°C
Tstg
40~150
°C
JEITA
TOSHIBA
3-4E1A
Note 1: Device mounted on a ceramic board
(board size: 50 mm × 50 mm, soldering land: 2 mm × 2 mm)
Weight: 0.023 g (typ.)
Note 2: Using continuously under heavy loads (e.g. the application of high temperature/current/voltage and the
significant change in temperature, etc.) may cause this product to decrease in the reliability significantly
even if the operating conditions (i.e. operating temperature/current/voltage, etc.) are within the absolute
maximum ratings.
Please design the appropriate reliability upon reviewing the Toshiba Semiconductor Reliability Handbook
(“Handling Precautions”/Derating Concept and Methods) and individual reliability data (i.e. reliability test
report and estimated failure rate, etc).
Electrical Characteristics (Ta = 25°C)
Characteristics
Peak forward voltage
Repetitive peak reverse current
Junction capacitance
Thermal resistance
Thermal resistance
Symbol
VFM (1)
VFM (2)
VFM (3)
IRRM
IRRM
Cj
Rth (j-a)
Rth (j-)
Test Condition
IFM = 0.1 A
IFM = 0.5 A
IFM = 1.0 A
VRRM = 5 V
VRRM = 30 V
VR = 10 V, f = 1.0 MHz
Device mounted on a ceramic board
(soldering land: 2 mm × 2 mm)
Device mounted on a glass-epoxy
board
(soldering land: 6 mm × 6 mm)
Min
Typ. Max Unit
0.23
0.29
0.32
0.04
0.38
70
0.37
1.5
V
mA
pF
60
°C/W
135
16 °C/W
1 2006-11-13



CMS08
Marking
Abbreviation Code
S8
Part No.
CMS08
Standard Soldering Pad
Unit: mm
CMS08
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1.4
3.0
1.4
Handling Precaution
Schottky barrier diodes have reverse current characteristic compared to the other diodes.
There is a possibility SBD may cause thermal runaway when it is used under high temperature or high voltage.
This device is VF-IRRM trade-off type, lower VF higher IRRM; therefore, thermal runaway might occur when
voltage is applied. Please take forward and reverse loss into consideration during design.
The absolute maximum ratings denote the absolute maximum ratings, which are rated values and must not be
exceeded during operation, even for an instant. The following are the general derating methods that we recommend
when you design a circuit with a device.
VRRM: Use this rating with reference to the above. VRRM has a temperature coefficient of 0.1%/°C. Take
this temperature coefficient into account designing a device at low temperature.
IF(AV):
We recommend that the worst case current be no greater than 80% of the absolute maximum rating
of IF(AV) and Tj be below 100°C. When using this device, take the margin into consideration by
using an allowable Tamax-IF(AV) curve.
IFSM: This rating specifies the non-repetitive peak current. This is only applied for an abnormal operation,
which seldom occurs during the lifespan of the device.
Tj: Derate this rating when using a device in order to ensure high reliability. We recommend that the
device be used at a Tj of below 100°C.
Thermal resistance between junction and ambient fluctuates depending on the device’s mounting condition. When
using a device, please design a circuit board and a soldering land size to match the appropriate thermal resistance
value.
Please refer to the Rectifiers databook for further information.
2 2006-11-13







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