MF-MSHT125KX [BOURNS]

MF-MSHT Series – PTC Resettable Fuses;
MF-MSHT125KX
型号: MF-MSHT125KX
厂家: BOURNS ELECTRONIC SOLUTIONS    BOURNS ELECTRONIC SOLUTIONS
描述:

MF-MSHT Series – PTC Resettable Fuses

文件: 总7页 (文件大小:796K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
Features  
AUTOMOTIVE  
GRADE  
nꢀ Highꢀpowerꢀratingsꢀwithꢀhigherꢀholdꢀ  
nꢀ CompliantꢀwithꢀAEC-Q200ꢀRev-DꢀStressꢀ  
TestꢀQualificationꢀforꢀPassiveꢀComponentsꢀ  
inꢀautomotiveꢀapplications  
nꢀ Surfaceꢀmountꢀpackagingꢀforꢀautomatedꢀ  
assembly  
nꢀ Agencyꢀrecognition:ꢀꢀꢀ  
nꢀ RoHSꢀcompliant*  
currentsꢀatꢀelevatedꢀtemperatures  
nꢀ Operatingꢀtemperatureꢀrangeꢀfromꢀ-40ꢀ°Cꢀ  
toꢀ125ꢀ°C  
nꢀ Lowꢀthermalꢀderatingꢀfactor  
nꢀ Standardꢀ1812ꢀfootprintꢀsize  
MF-MSHT Series – PTC Resettable Fuses  
Additional Information  
Click these links for more information:  
PRODUCT  
TECHNICAL  
LIBRARY  
INVENTORY  
SAMPLES  
Electrical Characteristics  
Tripped  
Power  
Dissipation  
Max. Time  
To Trip  
I
I
Resistance  
Agency Recognition  
hold trip  
V
I
AEC-Q200  
Compliant  
max max  
Model  
at 23 °C  
Ohms  
at 23 °C  
Watts  
at 23 °C  
at 23 °C  
cUL  
TÜV  
R
R
Volts Amps  
Amps  
Amps Seconds  
1Max.**  
Typical  
1.2  
1.2  
1.2  
1.5  
1.5  
1.5  
1.5  
1.5  
E174545 R 50384138  
Min.  
MF-MSHT020KX  
MF-MSHT035KX  
MF-MSHT050KX  
MF-MSHT075KX  
MF-MSHT110KX  
MF-MSHT125KX  
MF-MSHT150KX  
MF-MSHT175KX  
42  
36  
30  
30  
16  
9
40  
40  
40  
40  
40  
40  
40  
40  
0.20  
0.35 1.75  
0.50 2.5  
0.75 3.75  
1.10 5.5  
1.25 6.25  
1.0  
0.5  
0.3  
4.5  
2.6  
8.0  
8.0  
0.1  
0.1  
0.1  
5.0  
5.0  
5.0  
5.0  
5.0  
3
3
3
3
3
3
3
3
3
3
3
3
3
3
3
3
3
3
3
0.18  
0.09  
0.05  
0.03  
0.022  
0.018  
1.6  
8.0  
0.85  
0.45  
0.30  
0.20  
0.17  
8.0  
8.0  
8.0  
10.0  
10.0  
3
3
pending  
pending  
pending  
9
9
1.50  
1.75  
6.0  
7.0  
**R  
1Max.  
measured 24 hours post reflow  
Environmental Characteristics  
Item  
Condition  
Criteria  
Operating Temperature  
Recommended Storage  
Passive Aging  
-40 °C to +125 °C  
+40 °C max. / 70 % R.H. max.  
+125 °C, 1000 hours  
R < R  
R < R  
R < R  
1max  
1max  
1max  
Humidity Aging  
+85 °C, 85 % R.H. 1000 hours  
-40 °C to +125 °C, 20 times  
MIL-STD-202, Method 215  
Thermal Shock  
Solvent Resistance  
Vibration  
No change (marking still legible)  
No change (R < R < R  
MIL-STD-883C, Method 2007.1 Condition A  
See Note  
)
1max  
min  
Moisture Sensitivity Level (MSL)  
ESD Classification  
Class 6 (per AEC-Q200-2, HBM)  
Test Procedures and Requirements  
Item  
Test Condition  
Accept/Reject Criteria  
Per MF physical description  
≤ R ≤ R  
Visual/Mechanical  
Resistance  
Verify dimensions and materials  
In still air @ 23 °C  
R
min  
max  
Time to Trip  
Hold Current  
Trip Cycle Life  
Trip Endurance  
Solderability  
At specified current, V  
, 23 °C, still air  
T ≤ max. time to trip (seconds)  
max  
, still air  
30 min. at I  
No trip  
hold  
, 100 cycles  
V
V
, I  
max max  
No arcing or burning  
No arcing or burning  
95 % min. coverage  
, 48 hours  
max  
245 °C ±5 °C, 5 seconds  
*RoHSꢀDirectiveꢀ2015/863,ꢀMarꢀ31,ꢀ2015ꢀandꢀAnnex.  
Specificationsꢀareꢀsubjectꢀtoꢀchangeꢀwithoutꢀnotice.ꢀUsersꢀshouldꢀverifyꢀactualꢀdeviceꢀperformanceꢀinꢀtheirꢀ  
specificꢀapplications.ꢀTheꢀproductsꢀdescribedꢀhereinꢀandꢀthisꢀdocumentꢀareꢀsubjectꢀtoꢀspecificꢀlegalꢀdisclaimersꢀ  
asꢀsetꢀforthꢀonꢀtheꢀlastꢀpageꢀofꢀthisꢀdocument,ꢀandꢀatꢀwww.bourns.com/docs/legal/disclaimer.pdf.  
WARNING Cancer and Reproductive Harm  
www.P65Warnings.ca.gov  
Applications  
nꢀ Overcurrentꢀsurgeꢀprotectionꢀofꢀelectronicꢀequipmentꢀrequiredꢀtoꢀoperateꢀatꢀhighꢀoperatingꢀ  
temperatureꢀranges  
nꢀ Robustꢀresettableꢀfaultꢀprotectionꢀforꢀindustrialꢀtransportation,ꢀcommunication,ꢀsecurity,ꢀandꢀ  
consumerꢀelectronicꢀequipment  
MF-MSHT Series – PTC Resettable Fuses  
Product Dimensions  
Top View  
Side View  
Bottom View  
Recommended Pad Layout  
Terminal Material:  
ENIG-plated terminals  
A
C
D
E
2.95  
(.116)  
MARKING  
B
1.68  
(.066)  
3.10  
(.122)  
1.68  
(.066)  
A
B
C
D
E
Model  
Min.  
Max.  
Min.  
Max.  
Min.  
Max.  
Min.  
Min.  
MF-MSHT020KX  
MF-MSHT035KX  
MF-MSHT050KX  
MF-MSHT075KX  
MF-MSHT110KX  
MF-MSHT125KX  
MF-MSHT150KX  
MF-MSHT175KX  
4.37  
(.172)  
4.83  
(.190)  
3.07  
(.121)  
3.41  
(.134)  
0.40  
(.016)  
0.85  
(.033)  
0.30  
(.012)  
0.05  
(.002)  
4.37  
(.172)  
4.83  
(.190)  
3.07  
(.121)  
3.41  
(.134)  
0.60  
(.024)  
1.20  
(.047)  
4.37  
(.172)  
4.83  
(.190)  
3.07  
(.121)  
3.41  
(.134)  
0.80  
(.031)  
1.60  
(.063)  
Thermal Derating Table - I  
Model  
(Amps)  
hold  
Ambient Operating Temperature  
-40 °C  
0.29  
0.51  
0.73  
1.09  
1.60  
1.81  
2.18  
2.54  
-20 °C  
0.26  
0.46  
0.66  
0.98  
1.44  
1.64  
1.97  
2.29  
0 °C  
0.23  
0.41  
0.58  
0.87  
1.28  
1.45  
1.74  
2.03  
+23 °C  
+40 °C  
0.18  
0.31  
0.44  
0.66  
0.97  
1.10  
1.32  
1.54  
+50 °C  
0.16  
0.28  
0.41  
0.61  
0.89  
1.01  
1.22  
1.42  
+60 °C  
+70 °C  
0.13  
0.23  
0.34  
0.50  
0.74  
0.84  
1.01  
1.17  
+85 °C  
0.11  
+125 °C  
0.05  
0.09  
0.14  
0.20  
0.30  
0.34  
0.41  
0.47  
MF-MSHT020KX  
MF-MSHT035KX  
MF-MSHT050KX  
MF-MSHT075KX  
MF-MSHT110KX  
MF-MSHT125KX  
MF-MSHT150KX  
MF-MSHT175KX  
0.20  
0.35  
0.50  
0.75  
1.10  
1.25  
1.50  
1.75  
0.15  
0.26  
0.37  
0.56  
0.81  
0.93  
1.11  
1.30  
0.20  
0.28  
0.42  
0.62  
0.70  
0.84  
0.98  
Specificationsꢀareꢀsubjectꢀtoꢀchangeꢀwithoutꢀnotice.  
Usersꢀshouldꢀverifyꢀactualꢀdeviceꢀperformanceꢀinꢀtheirꢀspecificꢀapplications.ꢀ  
Theꢀproductsꢀdescribedꢀhereinꢀandꢀthisꢀdocumentꢀareꢀsubjectꢀtoꢀspecificꢀlegalꢀdisclaimersꢀasꢀsetꢀforthꢀonꢀtheꢀlastꢀpageꢀofꢀthisꢀdocument,ꢀandꢀatꢀwww.bourns.com/docs/legal/disclaimer.pdf.  
MF-MSHT Series – PTC Resettable Fuses  
Typical Time to Trip at 23 ˚C  
10  
H
G
F
1
A
C
E
B
D
A - MF-MSHT020KX  
B - MF-MSHT035KX  
C - MF-MSHT050KX  
D - MF-MSHT075KX  
E - MF-MSHT110KX  
F - MF-MSHT125KX  
G - MF-MSHT150KX  
H - MF-MSHT175KX  
0.1  
0.01  
TheꢀTimeꢀtoꢀTripꢀcurvesꢀrepresentꢀtypicalꢀperformanceꢀofꢀaꢀdeviceꢀinꢀ  
aꢀsimulatedꢀapplicationꢀenvironment.ꢀActualꢀperformanceꢀinꢀspecificꢀ  
customerꢀapplicationsꢀmayꢀdifferꢀfromꢀtheseꢀvaluesꢀdueꢀtoꢀtheꢀ  
influenceꢀofꢀotherꢀvariables.  
0.001  
0.1  
1
10  
100  
Fault Current (Amps)  
Typical Part Marking  
How to Order  
Represents total content. Layout may vary.  
MF - MSHT 035 K X - 2  
Multifuse® Product Designator  
Series  
PART IDENTIFICATION:  
MF-MSHT020KX = 02  
MF-MSHT035KX = 03  
MF-MSHT050KX = 05  
MF-MSHT075KX = 07  
MF-MSHT110KX = 11  
MF-MSHT125KX = 12  
MF-MSHT150KX = 15  
MF-MSHT175KX = 17  
MSHT = 1812 High Temperature Surface Mount Component  
Hold Current, I  
hold  
020 - 175 (0.2 - 1.75 Amps)  
07  
K = Material Specific Code  
X = Multifuse® freeXpansionDesign  
Packaging  
-2 = Tape and Reel Packaged per EIA-481  
C
Packaging Quantity  
Bi-WEEKLY DATE CODE:  
WEEKS 05-06 = C  
Model  
Packaging Quantity  
MF-MSHT020KX  
MF-MSHT035KX  
MF-MSHT050KX  
MF-MSHT075KX  
MF-MSHT110KX  
MF-MSHT125KX  
MF-MSHT150KX  
MF-MSHT175KX  
2,000 pcs. per reel  
2,000 pcs. per reel  
2,000 pcs. per reel  
2,000 pcs. per reel  
1,500 pcs. per reel  
1,000 pcs. per reel  
1,500 pcs. per reel  
1,500 pcs. per reel  
Specificationsꢀareꢀsubjectꢀtoꢀchangeꢀwithoutꢀnotice.  
Usersꢀshouldꢀverifyꢀactualꢀdeviceꢀperformanceꢀinꢀtheirꢀspecificꢀapplications.ꢀ  
Theꢀproductsꢀdescribedꢀhereinꢀandꢀthisꢀdocumentꢀareꢀsubjectꢀtoꢀspecificꢀlegalꢀdisclaimersꢀasꢀsetꢀforthꢀonꢀtheꢀlastꢀpageꢀofꢀthisꢀdocument,ꢀandꢀatꢀwww.bourns.com/docs/legal/disclaimer.pdf.  
MF-MSHT Series – PTC Resettable Fuses  
Solder Reflow Recommendations  
Notes:  
t
p
MF-MSHT models are intended for reflow soldering  
(including, but not limited to heating plate, hot air, IR,  
nitrogen, and vapor phase).  
T
P
CRITICAL ZONE  
TO  
RAMP-UP  
T
T
P
L
T
L
Wave soldering is permissible only if the device is on the top  
of the PCB, opposite the heat source.  
t
L
Hand soldering is not recommended for these devices.  
Ts  
max  
All temperatures refer to the topside of the device, measured  
on the device body surface.  
RAMP-DOWN  
If reflow temperatures exceed the recommended profile,  
devices may not meet the published specifications.  
Ts  
min  
t
s
PREHEAT  
Compatible with Pb and Pb-free solder reflow profiles.  
Excess solder may cause a short circuit.  
Please refer to the Multifuse® Polymer PTC Resettable Fuse  
Soldering Recommendations document for more details.  
25  
t 25 °C TO PEAK  
Time  
Profile Feature  
Pb-Free Assembly  
Average Ramp-Up Rate (Ts  
PREHEAT:  
to T )  
3 °C / second max.  
max  
p
Temperature Min. (Ts  
)
150 °C  
min  
Temperature Max. (Ts  
)
200 °C  
max  
Time (Ts  
to Ts  
) (ts)  
max  
60~180 seconds  
min  
TIME MAINTAINED ABOVE:  
Temperature (T )  
217 °C  
L
Time (t )  
60~150 seconds  
L
Peak Temperature (T )  
260 °C  
p
Time within 5 °C of Actual Peak Temperature (t )  
p
20~40 seconds  
6 °C / second max.  
8 minutes max.  
Ramp-Down Rate  
Time 25 °C to Peak Temperature  
Asia-Pacific: Tel: +886-2 2562-4117 • Email: asiacus@bourns.com  
EMEA: Tel: +36 88 885 877 • Email: eurocus@bourns.com  
The Americas: Tel: +1-951 781-5500 • Email: americus@bourns.com  
www.bourns.com  
Specificationsꢀareꢀsubjectꢀtoꢀchangeꢀwithoutꢀnotice.  
Usersꢀshouldꢀverifyꢀactualꢀdeviceꢀperformanceꢀinꢀtheirꢀspecificꢀapplications.ꢀ  
Theꢀproductsꢀdescribedꢀhereinꢀandꢀthisꢀdocumentꢀareꢀsubjectꢀtoꢀspecificꢀlegalꢀdisclaimersꢀasꢀsetꢀforthꢀonꢀtheꢀlastꢀpageꢀofꢀthisꢀdocument,ꢀandꢀatꢀwww.bourns.com/docs/legal/disclaimer.pdf.  
MF-MSHT Series – PTC Resettable Fuses  
Packaging Dimensions  
1ꢀ.4*  
(.72)  
MAX.  
1ꢀ5  
(7.2ꢀ)  
DIA. MAX.  
50  
(1.97)  
DIA. MIN.  
12.4 +2.0/-0*  
(.049 +.00ꢀ/-0)  
*MEASURED AT HUB  
40.0 0.20  
(1.575 .00ꢀ)  
10 SPROCKET HOLES  
1.75 0.10  
(.069 .004)  
0.6  
(.024)  
MAX.  
4.00 0.10  
(.157 .004)  
2.00 0.05  
(.079 .002)  
1.50 +0.10/-0  
(.059 +.004/-0)  
DIA.  
5.50 0.05  
(.217 .002)  
COVER  
TAPE  
10.25  
(.404)  
TYP.  
5.90  
B0  
(.232)  
MAX.  
12.00 0.30  
(.472 .012)  
ꢀ.00 0.10  
(.315 .004)  
0.1  
(.004)  
MAX.  
A0  
LEADER  
K0  
COMPONENTS  
NO COMPONENT  
TRAILER  
160  
(6.30)  
MIN.  
390  
(15.35)  
MIN.  
USER DIRECTION OF FEED  
Model  
MF-MSHT020KX  
~ MF-MSHT075KX  
A0  
B0  
K0  
3.66 ± 0.15  
(.144 ± .006)  
4.98 ± 0.10  
(.196 ± .004)  
0.95 ± 0.10  
(.037 ± .004)  
3.58 ± 0.10  
(.141 ± .004)  
4.93 ± 0.10  
(.194 ± .004)  
1.30 ± 0.10  
(.051 ± .004)  
MF-MSHT110KX  
3.50 ± 0.10  
(.138 ± .004)  
4.90 ± 0.10  
(.193 ± .004)  
1.80 ± 0.10  
(.071 ± .004)  
MF-MSHT125KX  
MF-MSHT150KX  
~ MF-MSHT175KX  
3.70 ± 0.10  
(.146 ± .004)  
5.10 ± 0.10  
(.201 ± .004)  
1.50 ± 0.10  
(.059 ± .004)  
MM  
(INCHES)  
DIMENSIONS:  
MF-MSHT SERIES, REV. A, 01/21  
Specificationsꢀareꢀsubjectꢀtoꢀchangeꢀwithoutꢀnotice.  
Usersꢀshouldꢀverifyꢀactualꢀdeviceꢀperformanceꢀinꢀtheirꢀspecificꢀapplications.ꢀ  
Theꢀproductsꢀdescribedꢀhereinꢀandꢀthisꢀdocumentꢀareꢀsubjectꢀtoꢀspecificꢀlegalꢀdisclaimersꢀasꢀsetꢀforthꢀonꢀtheꢀlastꢀpageꢀofꢀthisꢀdocument,ꢀandꢀatꢀwww.bourns.com/docs/legal/disclaimer.pdf.  
Bourns® Multifuse® PPTC Resettable Fuses  
Application Notice  
Users are responsible for independent and adequate evaluation of Bourns® Multifuse® Polymer PTC devices in the user’s  
application, including the PPTC device characteristics stated in the applicable data sheet.  
Polymer PTC devices must not be allowed to operate beyond their stated maximum ratings. Operation in excess of such  
maximum ratings could result in damage to the PTC device and possibly lead to electrical arcing and/or fire. Circuits with  
inductance may generate a voltage above the rated voltage of the polymer PTC device and should be thoroughly evaluated  
within the user’s application during the PTC selection and qualification process.  
Polymer PTC devices are intended to protect against adverse effects of temporary overcurrent or overtemperature  
conditions up to rated limits and are not intended to serve as protective devices where overcurrent or overvoltage conditions  
are expected to be repetitive or prolonged.  
In normal operation, polymer PTC devices experience thermal expansion under fault conditions. Thus, a polymer PTC  
device must be protected against mechanical stress, and must be given adequate clearance within the user’s application to  
accommodate such thermal expansion. Rigid potting materials or fixed housings or coverings that do not provide adequate  
clearance should be thoroughly examined and tested by the user, as they may result in the malfunction of polymer PTC  
devices if the thermal expansion is inhibited.  
Exposure to lubricants, silicon-based oils, solvents, gels, electrolytes, acids, and other related or similar materials may  
adversely affect the performance of polymer PTC devices.  
Aggressive solvents may adversely affect the performance of polymer PTC devices. Conformal coating, encapsulating,  
potting, molding, and sealing materials may contain aggressive solvents including but not limited to xylene and toluene,  
which are known to cause adverse effects on the performance of polymer PTCs. Such aggressive solvents must be  
thoroughly cured or baked to ensure their complete removal from polymer PTCs to minimize the possible adverse effect  
on the device.  
Recommended storage conditions should be followed at all times. Such conditions can be found on the applicable data  
sheet and on the Multifuse® Polymer PTC Moisture/Reflow Sensitivity Classification (MSL) note:  
https://www.bourns.com/docs/RoHS-MSL/msl_mf.pdf  
MFAN 12/18  
Specifications are subject to change without notice.  
Users should verify actual device performance in their specific applications.  
The products described herein and this document are subject to specific legal disclaimers as set forth on the last page of this document, and at www.bourns.com/docs/legal/disclaimer.pdf.  
Legal Disclaimer Notice  
This legal disclaimer applies to purchasers and users of Bourns® products manufactured by or on behalf of Bourns, Inc. and  
P[ZꢀHɉSPH[LZꢀꢁJVSSLJ[P]LS`ꢂꢀ¸)V\YUZ¹ꢃꢄ  
Unless otherwise expressly indicated in writing, Bourns® products and data sheets relating thereto are subject to change  
^P[OV\[ꢀUV[PJLꢄꢀꢀ<ZLYZꢀZOV\SKꢀJOLJRꢀMVYꢀHUKꢀVI[HPUꢀ[OLꢀSH[LZ[ꢀYLSL]HU[ꢀPUMVYTH[PVUꢀHUKꢀ]LYPM`ꢀ[OH[ꢀZ\JOꢀPUMVYTH[PVUꢀPZꢀJ\YYLU[ꢀ  
and complete before placing orders for Bourns® products.  
The characteristics and parameters of a Bourns® product set forth in its data sheet are based on laboratory conditions, and  
statements regarding the suitability of products for certain types of applications are based on Bourns’ knowledge of typical  
requirements in generic applications. The characteristics and parameters of a Bourns®ꢀWYVK\J[ꢀPUꢀHꢀ\ZLYꢀHWWSPJH[PVUꢀTH`ꢀ]HY`ꢀ  
®
MYVTꢀ[OLꢀKH[HꢀZOLL[ꢀJOHYHJ[LYPZ[PJZꢀHUKꢀWHYHTL[LYZꢀK\Lꢀ[VꢀꢁPꢃꢀ[OLꢀJVTIPUH[PVUꢀVMꢀ[OLꢀ)V\YUZ product with other components  
®
PUꢀ[OLꢀ\ZLY»ZꢀHWWSPJH[PVUꢂꢀVYꢀꢁPPꢃꢀ[OLꢀLU]PYVUTLU[ꢀVMꢀ[OLꢀ\ZLYꢀHWWSPJH[PVUꢀP[ZLSMꢄꢀꢀ;OLꢀJOHYHJ[LYPZ[PJZꢀHUKꢀWHYHTL[LYZꢀVMꢀHꢀ)V\YUZ  
WYVK\J[ꢀHSZVꢀJHUꢀHUKꢀKVꢀ]HY`ꢀPUꢀKPɈLYLU[ꢀHWWSPJH[PVUZꢀHUKꢀHJ[\HSꢀWLYMVYTHUJLꢀTH`ꢀ]HY`ꢀV]LYꢀ[PTLꢄꢀꢀ<ZLYZꢀZOV\SKꢀHS^H`Zꢀ]LYPM`ꢀ  
the actual performance of the Bourns®ꢀWYVK\J[ꢀPUꢀ[OLPYꢀZWLJPÄJꢀKL]PJLZꢀHUKꢀHWWSPJH[PVUZꢂꢀHUKꢀTHRLꢀ[OLPYꢀV^UꢀPUKLWLUKLU[ꢀ  
Q\KNTLU[ZꢀYLNHYKPUNꢀ[OLꢀHTV\U[ꢀVMꢀHKKP[PVUHSꢀ[LZ[ꢀTHYNPUꢀ[VꢀKLZPNUꢀPU[Vꢀ[OLPYꢀKL]PJLꢀVYꢀHWWSPJH[PVUꢀ[VꢀJVTWLUZH[LꢀMVYꢀ  
KPɈLYLUJLZꢀIL[^LLUꢀSHIVYH[VY`ꢀHUKꢀYLHSꢀ^VYSKꢀJVUKP[PVUZꢄ  
®
<USLZZꢀ)V\YUZꢀOHZꢀL_WSPJP[S`ꢀKLZPNUH[LKꢀHUꢀPUKP]PK\HSꢀ)V\YUZ product as meeting the requirements of a particular industry  
Z[HUKHYKꢀꢁLꢄNꢄꢂꢀ0:6ꢅ;:ꢀꢆꢇ ꢈ ꢃꢀVYꢀHꢀWHY[PJ\SHYꢀX\HSPÄJH[PVUꢀꢁLꢄNꢄꢂꢀ<3ꢀSPZ[LKꢀVYꢀYLJVNUPaLKꢃꢂꢀ)V\YUZꢀPZꢀUV[ꢀYLZWVUZPISLꢀMVYꢀHU`ꢀ  
®
MHPS\YLꢀVMꢀHUꢀPUKP]PK\HSꢀ)V\YUZ ꢀWYVK\J[ꢀ[VꢀTLL[ꢀ[OLꢀYLX\PYLTLU[ZꢀVMꢀZ\JOꢀPUK\Z[Y`ꢀZ[HUKHYKꢀVYꢀWHY[PJ\SHYꢀX\HSPÄJH[PVUꢄꢀꢀ<ZLYZꢀ  
of Bourns® products are responsible for ensuring compliance with safety-related requirements and standards applicable to  
[OLPYꢀKL]PJLZꢀVYꢀHWWSPJH[PVUZꢄ  
Bourns®ꢀWYVK\J[ZꢀHYLꢀUV[ꢀYLJVTTLUKLKꢂꢀH\[OVYPaLKꢀVYꢀPU[LUKLKꢀMVYꢀ\ZLꢀPUꢀU\JSLHYꢀSPMLZH]PUNꢂꢀSPMLꢉJYP[PJHSꢀVYꢀSPMLꢉZ\Z[HPUPUNꢀ  
HWWSPJH[PVUZꢂꢀUVYꢀPUꢀHU`ꢀV[OLYꢀHWWSPJH[PVUZꢀ^OLYLꢀMHPS\YLꢀVYꢀTHSM\UJ[PVUꢀTH`ꢀYLZ\S[ꢀPUꢀWLYZVUHSꢀPUQ\Y`ꢂꢀKLH[OꢂꢀVYꢀZL]LYLꢀWYVWLY[`ꢀ  
VYꢀLU]PYVUTLU[HSꢀKHTHNLꢄꢀꢀ<USLZZꢀL_WYLZZS`ꢀHUKꢀZWLJPÄJHSS`ꢀHWWYV]LKꢀPUꢀ^YP[PUNꢀI`ꢀ[^VꢀH\[OVYPaLKꢀ)V\YUZꢀYLWYLZLU[H[P]LZꢀ  
on a case-by-case basis, use of any Bourns®ꢀWYVK\J[ZꢀPUꢀZ\JOꢀ\UH\[OVYPaLKꢀHWWSPJH[PVUZꢀTPNO[ꢀUV[ꢀILꢀZHMLꢀHUKꢀ[O\ZꢀPZꢀH[ꢀ  
[OLꢀ\ZLY»ZꢀZVSLꢀYPZRꢄꢀꢀ3PMLꢉJYP[PJHSꢀHWWSPJH[PVUZꢀPUJS\KLꢀKL]PJLZꢀPKLU[PÄLKꢀI`ꢀ[OLꢀ<ꢄ:ꢄꢀ-VVKꢀHUKꢀ+Y\Nꢀ(KTPUPZ[YH[PVUꢀHZꢀ*SHZZꢀ000ꢀ  
KL]PJLZꢀHUKꢀNLULYHSS`ꢀLX\P]HSLU[ꢀJSHZZPÄJH[PVUZꢀV\[ZPKLꢀVMꢀ[OLꢀ<UP[LKꢀ:[H[LZꢄ  
®
)V\YUZꢀL_WYLZZS`ꢀPKLU[PÄLZꢀ[OVZLꢀ)V\YUZ ꢀZ[HUKHYKꢀWYVK\J[Zꢀ[OH[ꢀHYLꢀZ\P[HISLꢀMVYꢀ\ZLꢀPUꢀH\[VTV[P]LꢀHWWSPJH[PVUZꢀVUꢀZ\JOꢀ  
WYVK\J[Z»ꢀKH[HꢀZOLL[ZꢀPUꢀ[OLꢀZLJ[PVUꢀLU[P[SLKꢀ¸(WWSPJH[PVUZꢄ¹ꢀꢀ<USLZZꢀL_WYLZZS`ꢀHUKꢀZWLJPÄJHSS`ꢀHWWYV]LKꢀPUꢀ^YP[PUNꢀI`ꢀ[^Vꢀ  
®
H\[OVYPaLKꢀ)V\YUZꢀYLWYLZLU[H[P]LZꢀVUꢀHꢀJHZLꢉI`ꢉJHZLꢀIHZPZꢂꢀ\ZLꢀVMꢀHU`ꢀV[OLYꢀ)V\YUZ ꢀZ[HUKHYKꢀWYVK\J[ZꢀPUꢀHUꢀH\[VTV[P]Lꢀ  
HWWSPJH[PVUꢀTPNO[ꢀUV[ꢀILꢀZHMLꢀHUKꢀ[O\ZꢀPZꢀUV[ꢀYLJVTTLUKLKꢂꢀH\[OVYPaLKꢀVYꢀPU[LUKLKꢀHUKꢀPZꢀH[ꢀ[OLꢀ\ZLY»ZꢀZVSLꢀYPZRꢄꢀꢀ0Mꢀ)V\YUZꢀ  
L_WYLZZS`ꢀPKLU[PÄLZꢀHꢀZ\IꢉJH[LNVY`ꢀVMꢀH\[VTV[P]LꢀHWWSPJH[PVUꢀPUꢀ[OLꢀKH[HꢀZOLL[ꢀMVYꢀP[ZꢀZ[HUKHYKꢀWYVK\J[ZꢀꢁZ\JOꢀHZꢀPUMV[HPUTLU[ꢀ  
®
VYꢀSPNO[PUNꢃꢂꢀZ\JOꢀPKLU[PÄJH[PVUꢀTLHUZꢀ[OH[ꢀ)V\YUZꢀOHZꢀYL]PL^LKꢀP[ZꢀZ[HUKHYKꢀWYVK\J[ꢀHUKꢀOHZꢀKL[LYTPULKꢀ[OH[ꢀPMꢀZ\JOꢀ)V\YUZ  
Z[HUKHYKꢀWYVK\J[ꢀPZꢀJVUZPKLYLKꢀMVYꢀWV[LU[PHSꢀ\ZLꢀPUꢀH\[VTV[P]LꢀHWWSPJH[PVUZꢂꢀP[ꢀZOV\SKꢀVUS`ꢀILꢀ\ZLKꢀPUꢀZ\JOꢀZ\IꢉJH[LNVY`ꢀVMꢀ  
®
H\[VTV[P]LꢀHWWSPJH[PVUZꢄꢀꢀ(U`ꢀYLMLYLUJLꢀ[Vꢀ)V\YUZ ꢀZ[HUKHYKꢀWYVK\J[ꢀPUꢀ[OLꢀKH[HꢀZOLL[ꢀHZꢀJVTWSPHU[ꢀ^P[Oꢀ[OLꢀ(,*ꢉ8ꢀZ[HUKHYKꢀ  
VYꢀ¸H\[VTV[P]LꢀNYHKL¹ꢀKVLZꢀUV[ꢀI`ꢀP[ZLSMꢀTLHUꢀ[OH[ꢀ)V\YUZꢀOHZꢀHWWYV]LKꢀZ\JOꢀWYVK\J[ꢀMVYꢀ\ZLꢀPUꢀHUꢀH\[VTV[P]LꢀHWWSPJH[PVUꢄ  
Bourns®ꢀZ[HUKHYKꢀWYVK\J[ZꢀHYLꢀUV[ꢀ[LZ[LKꢀ[VꢀJVTWS`ꢀ^P[Oꢀ<UP[LKꢀ:[H[LZꢀ-LKLYHSꢀ(]PH[PVUꢀ(KTPUPZ[YH[PVUꢀZ[HUKHYKZꢀNLULYHSS`ꢀ  
VYꢀHU`ꢀV[OLYꢀNLULYHSS`ꢀLX\P]HSLU[ꢀNV]LYUTLU[HSꢀVYNHUPaH[PVUꢀZ[HUKHYKꢀHWWSPJHISLꢀ[VꢀWYVK\J[ZꢀKLZPNULKꢀVYꢀTHU\MHJ[\YLKꢀMVYꢀ  
®
\ZLꢀPUꢀHPYJYHM[ꢀVYꢀZWHJLꢀHWWSPJH[PVUZꢄꢀ)V\YUZꢀL_WYLZZS`ꢀPKLU[PÄLZꢀ)V\YUZ standard products that are suitable for use in aircraft  
VYꢀZWHJLꢀHWWSPJH[PVUZꢀVUꢀZ\JOꢀWYVK\J[Z»ꢀKH[HꢀZOLL[ZꢀPUꢀ[OLꢀZLJ[PVUꢀLU[P[SLKꢀ¸(WWSPJH[PVUZꢄ¹ꢀꢀ<USLZZꢀL_WYLZZS`ꢀHUKꢀZWLJPÄJHSS`ꢀ  
®
HWWYV]LKꢀPUꢀ^YP[PUNꢀI`ꢀ[^VꢀH\[OVYPaLKꢀ)V\YUZꢀYLWYLZLU[H[P]LZꢀVUꢀHꢀJHZLꢉI`ꢉJHZLꢀIHZPZꢂꢀ\ZLꢀVMꢀHU`ꢀV[OLYꢀ)V\YUZ standard  
WYVK\J[ꢀPUꢀHUꢀHPYJYHM[ꢀVYꢀZWHJLꢀHWWSPJH[PVUꢀTPNO[ꢀUV[ꢀILꢀZHMLꢀHUKꢀ[O\ZꢀPZꢀUV[ꢀYLJVTTLUKLKꢂꢀH\[OVYPaLKꢀVYꢀPU[LUKLKꢀHUKꢀPZꢀH[ꢀ  
the user’s sole risk.  
®
;OLꢀ\ZLꢀHUKꢀSL]LSꢀVMꢀ[LZ[PUNꢀHWWSPJHISLꢀ[Vꢀ)V\YUZ custom products shall be negotiated on a case-by-case basis by Bourns  
and the user for which such Bourns®ꢀJ\Z[VTꢀWYVK\J[ZꢀHYLꢀZWLJPHSS`ꢀKLZPNULKꢄꢀꢀ(IZLU[ꢀHꢀ^YP[[LUꢀHNYLLTLU[ꢀIL[^LLUꢀ)V\YUZꢀ  
®
HUKꢀ[OLꢀ\ZLYꢀYLNHYKPUNꢀ[OLꢀ\ZLꢀHUKꢀSL]LSꢀVMꢀZ\JOꢀ[LZ[PUNꢂꢀ[OLꢀHIV]LꢀWYV]PZPVUZꢀHWWSPJHISLꢀ[Vꢀ)V\YUZ standard products shall  
also apply to such Bourns® custom products.  
Users shall not sell, transfer, export or re-export any Bourns®ꢀWYVK\J[ZꢀVYꢀ[LJOUVSVN`ꢀMVYꢀ\ZLꢀPUꢀHJ[P]P[PLZꢀ^OPJOꢀPU]VS]Lꢀ[OLꢀ  
KLZPNUꢂꢀKL]LSVWTLU[ꢂꢀWYVK\J[PVUꢂꢀ\ZLꢀVYꢀZ[VJRWPSPUNꢀVMꢀU\JSLHYꢀJOLTPJHSꢀVYꢀIPVSVNPJHSꢀ^LHWVUZꢀVYꢀTPZZPSLZꢂꢀUVYꢀZOHSSꢀ[OL`ꢀ\ZLꢀ  
Bourns®ꢀWYVK\J[ZꢀVYꢀ[LJOUVSVN`ꢀPUꢀHU`ꢀMHJPSP[`ꢀ^OPJOꢀLUNHNLZꢀPUꢀHJ[P]P[PLZꢀYLSH[PUNꢀ[VꢀZ\JOꢀKL]PJLZꢄꢀꢀ;OLꢀMVYLNVPUNꢀYLZ[YPJ[PVUZꢀ  
HWWS`ꢀ[VꢀHSSꢀ\ZLZꢀHUKꢀHWWSPJH[PVUZꢀ[OH[ꢀ]PVSH[LꢀUH[PVUHSꢀVYꢀPU[LYUH[PVUHSꢀWYVOPIP[PVUZꢂꢀPUJS\KPUNꢀLTIHYNVZꢀVYꢀPU[LYUH[PVUHSꢀ  
®
YLN\SH[PVUZꢄꢀꢀ-\Y[OLYꢀ)V\YUZ products and Bourns technology and technical data may not under any circumstance be  
exported or re-exported to countries subject to international sanctions or embargoes. Bourns® products may not, without  
WYPVYꢀH\[OVYPaH[PVUꢀMYVTꢀ)V\YUZꢀHUKꢅVYꢀ[OLꢀ<ꢄ:ꢄꢀ.V]LYUTLU[ꢂꢀILꢀYLZVSKꢂꢀ[YHUZMLYYLKꢂꢀVYꢀYLꢉL_WVY[LKꢀ[VꢀHU`ꢀWHY[`ꢀUV[ꢀLSPNPISLꢀ  
[VꢀYLJLP]Lꢀ<ꢄ:ꢄꢀJVTTVKP[PLZꢂꢀZVM[^HYLꢂꢀHUKꢀ[LJOUPJHSꢀKH[Hꢄ  
;Vꢀ[OLꢀTH_PT\TꢀL_[LU[ꢀWLYTP[[LKꢀI`ꢀHWWSPJHISLꢀSH^ꢂꢀ)V\YUZꢀKPZJSHPTZꢀꢁPꢃꢀHU`ꢀHUKꢀHSSꢀSPHIPSP[`ꢀMVYꢀZWLJPHSꢂꢀW\UP[P]LꢂꢀJVUZLX\LU[PHSꢂꢀ  
PUJPKLU[HSꢀVYꢀPUKPYLJ[ꢀKHTHNLZꢀVYꢀSVZ[ꢀYL]LU\LZꢀVYꢀSVZ[ꢀWYVÄ[ZꢂꢀHUKꢀꢁPPꢃꢀHU`ꢀHUKꢀHSSꢀPTWSPLKꢀ^HYYHU[PLZꢂꢀPUJS\KPUNꢀPTWSPLKꢀ^HYYHU[PLZꢀ  
VMꢀÄ[ULZZꢀMVYꢀWHY[PJ\SHYꢀW\YWVZLꢂꢀUVUꢉPUMYPUNLTLU[ꢀHUKꢀTLYJOHU[HIPSP[`ꢄ  
)RUꢀ\RXUꢀFRQYHQLHQFHꢁꢀFRSLHVꢀRIꢀWKLVꢀ/HJDOꢀ'LVFODLPHUꢀ1RWLFHꢀZLWKꢀ*HUPDQꢁꢀ6SDQLVKꢁꢀ-DSDQHVHꢁꢀ7UDGLWLRQDOꢀ&KLQHVHꢀDQGꢀ6LPSOLÀHGꢀ&KLQHVHꢀ  
bilingual versions are available at:  
Web Page: http://www.bourns.com/legal/disclaimers-terms-and-policies  
PDF: http://www.bourns.com/docs/Legal/disclaimer.pdf  
*ꢆꢊꢋꢌꢀꢍꢋꢅꢆꢊꢅꢆꢎ9  

相关型号:

SI9130DB

5- and 3.3-V Step-Down Synchronous Converters

Warning: Undefined variable $rtag in /www/wwwroot/website_ic37/www.icpdf.com/pdf/pdf/index.php on line 217
-
VISHAY

SI9135LG-T1

SMBus Multi-Output Power-Supply Controller

Warning: Undefined variable $rtag in /www/wwwroot/website_ic37/www.icpdf.com/pdf/pdf/index.php on line 217
-
VISHAY

SI9135LG-T1-E3

SMBus Multi-Output Power-Supply Controller

Warning: Undefined variable $rtag in /www/wwwroot/website_ic37/www.icpdf.com/pdf/pdf/index.php on line 217
-
VISHAY

SI9135_11

SMBus Multi-Output Power-Supply Controller

Warning: Undefined variable $rtag in /www/wwwroot/website_ic37/www.icpdf.com/pdf/pdf/index.php on line 217
-
VISHAY

SI9136_11

Multi-Output Power-Supply Controller

Warning: Undefined variable $rtag in /www/wwwroot/website_ic37/www.icpdf.com/pdf/pdf/index.php on line 217
-
VISHAY

SI9130CG-T1-E3

Pin-Programmable Dual Controller - Portable PCs

Warning: Undefined variable $rtag in /www/wwwroot/website_ic37/www.icpdf.com/pdf/pdf/index.php on line 217
-
VISHAY

SI9130LG-T1-E3

Pin-Programmable Dual Controller - Portable PCs

Warning: Undefined variable $rtag in /www/wwwroot/website_ic37/www.icpdf.com/pdf/pdf/index.php on line 217
-
VISHAY

SI9130_11

Pin-Programmable Dual Controller - Portable PCs

Warning: Undefined variable $rtag in /www/wwwroot/website_ic37/www.icpdf.com/pdf/pdf/index.php on line 217
-
VISHAY

SI9137

Multi-Output, Sequence Selectable Power-Supply Controller for Mobile Applications

Warning: Undefined variable $rtag in /www/wwwroot/website_ic37/www.icpdf.com/pdf/pdf/index.php on line 217
-
VISHAY

SI9137DB

Multi-Output, Sequence Selectable Power-Supply Controller for Mobile Applications

Warning: Undefined variable $rtag in /www/wwwroot/website_ic37/www.icpdf.com/pdf/pdf/index.php on line 217
-
VISHAY

SI9137LG

Multi-Output, Sequence Selectable Power-Supply Controller for Mobile Applications

Warning: Undefined variable $rtag in /www/wwwroot/website_ic37/www.icpdf.com/pdf/pdf/index.php on line 217
-
VISHAY

SI9122E

500-kHz Half-Bridge DC/DC Controller with Integrated Secondary Synchronous Rectification Drivers

Warning: Undefined variable $rtag in /www/wwwroot/website_ic37/www.icpdf.com/pdf/pdf/index.php on line 217
-
VISHAY