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SF-0603HI250M-2

Description
Surface Mount Fuses 2.5A Slow Blow 0603 SinglFuse
CategoryCircuit protection   
File Size409KB,5 Pages
ManufacturerBourns
Websitehttp://www.bourns.com
Environmental Compliance
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SF-0603HI250M-2 Overview

Surface Mount Fuses 2.5A Slow Blow 0603 SinglFuse

SF-0603HI250M-2 Parametric

Parameter NameAttribute value
Product AttributeAttribute Value
ManufacturerBourns
Product CategorySurface Mount Fuses
RoHSDetails
ProductSurface Mount Ceramic Fuse
Fuse TypeTime Delay / Slow Blow
Current Rating2.5 A
Voltage Rating DC32 VDC
Fuse Size / Group0603 (1608 metric)
Minimum Operating Temperature- 55 C
Maximum Operating Temperature+ 150 C
PackagingCut Tape
PackagingReel
Resistance42 mOhms
Height0.8 mm
Length1.6 mm
Width0.8 mm
Interrupt Rating50 A at 32 VDC
Factory Pack Quantity4000
C
O
LO & MP
LI
GE
AN
N
T
FR
EE
SinglFuse
SF-0603HIxxxM Series Features
n
Single blow fuse for overcurrent
PL
IA
N
protection
n
1608 (EIA 0603) miniature footprint
n
High inrush current withstand fuse
n
UL 248-14 listed
n
RoHS compliant* and halogen free**
n
Multilayer SMD design
n
Surface mount packaging for automated
assembly
**
HA
*R
oH
S
T
Electrical Characteristics
F
RE
E
*R
oH
S
Model
SF-0603HI100M-2
SF-0603HI150M-2
SF-0603HI200M-2
SF-0603HI250M-2
SF-0603HI300M-2
SF-0603HI350M-2
SF-0603HI400M-2
SF-0603HI450M-2
SF-0603HI500M-2
SF-0603HI600M-2
SF-0603HI700M-2
SF-0603HI800M-2
Rated Current
(Amps)
1.00
1.50
2.00
2.50
3.00
3.50
4.00
4.50
5.00
6.00
7.00
8.00
C
OM
LE
AD
Ro VE LEA
HS RS D
C ION FRE
OM S E
PL AR
IA E
NT
*
*** Resistance value measured with ≤10 % rated current at 25 °C ambient.
**** Melting I
2
t calculated at 1000 % of current rating.
Reliability Testing
E
Test
Solderability
Soldering heat
resistance
Moisture resistance
Salt spray
Mechanical vibration
Mechanical shock
Thermal Shock
Life
SF-0603HIxxxM Series - High Inrush Current Withstand Surface Mount Fuses
Fusing Time
Open within 60
sec. at 200 %
rated current
Resistance
(Ω) Typ.***
0.210
0.101
0.057
0.042
0.030
0.022
0.018
0.014
0.013
0.010
0.008
0.006
Rated
Voltage
Interrupting
Rating
DC 32 V 50 A
DC 32 V
DC 32 V 80 A
Typical
I t (A
2
s) ****
0.08
0.11
0.24
0.56
0.72
1.10
2.08
2.63
3.25
4.00
5.00
7.00
2
No.
1
2
3
4
5
6
7
8
Requirement
Minimum 95 % coverage
DCR change ≤ 10 %
No mechanical damage
Test Condition
One dip at 245 °C for 5 seconds
One dip at 260 °C for 60 seconds
10 cycles
48 hour exposure, 5 % salt solution
0.4 inch D.A. or 30 G between
5-3000 Hz
1500 G, 0.5 ms, half-sine shocks
100 cycles between -65 °C and +125 °C
Test Reference
MIL-STD-202
Method 208
MIL-STD-202
Method 210
MIL-STD-202
Method 106
MIL-STD-202
Method 101
MIL-STD-202
Method 204
MIL-STD-202
Method 213
MIL-STD-202
Method 107
DCR change ≤ ±15 %
No excessive corrosion
DCR change ≤ ±10 %
No excessive corrosion
DCR change ≤ ±10 %
No mechanical damage
DCR change ≤ ±10 %
No mechanical damage
DCR change ≤ ±10 %
No mechanical damage
No electrical “opens” during testing
Voltage drop change shall be less
than ±20 % of initial value
80 % rated current (75 % for < 1 A fuses)
Refer to STP
for 2000 hours at ambient temperature
document
between +20 °C and +30 °C
Agency Recognition
UL File Number .................................................... E198545
http://www.ul.com/ Follow link to Online Certificates Directory,
then enter UL File No. E198545, or
click here
Asia-Pacific:
Tel: +886-2 2562-4117 • Email: asiacus@bourns.com
EMEA:
Tel: +36 88 520 390 • Email: eurocus@bourns.com
The Americas:
Tel: +1-951 781-5500 • Email: americus@bourns.com
www.bourns.com
* RoHS Directive 2002/95/EC Jan. 27, 2003 including annex and RoHS Recast 2011/65/EU June 8, 2011.
** Bourns considers a product to be “halogen free” if (a) the Bromine (Br) content is 900 ppm or less; (b) the Chlorine (Cl) content is 900 ppm or less; and (c) the total Bromine (Br) and
Chlorine (Cl) content is 1500 ppm or less.
“SinglFuse” is a trademark of Bourns, Inc.
Specifications are subject to change without notice.
The device characteristics and parameters in this data sheet can and do vary in different applications and actual device performance may vary over time.
Users should verify actual device performance in their specific applications.

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