3B MARKING
Abstract: CASE 403A
Text: MBRS260T3 Surface Mount Schottky Power Rectifier SMB Power Surface Mount Package . . . employing the Schottky Barrier principle in a metal-to-silicon power rectifier. Features epitaxial construction with oxide passivation and metal overlay contact. Ideally suited for low voltage, high
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MBRS260T3
0E-01
0E-02
0E-03
0E-04
0E-03
3B MARKING
CASE 403A
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Thermal Resistance to ambient SMB Case
Abstract: No abstract text available
Text: MBRS260T3 Surface Mount Schottky Power Rectifier SMB Power Surface Mount Package . . . employing the Schottky Barrier principle in a metal−to−silicon power rectifier. Features epitaxial construction with oxide passivation and metal overlay contact. Ideally suited for low voltage, high
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MBRS260T3
0E-01
0E-02
0E-03
0E-04
0E-01
MBRS260T3
Thermal Resistance to ambient SMB Case
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marking B26 diode SCHOTTKY
Abstract: 403a MBRS260T3
Text: MBRS260T3 Surface Mount Schottky Power Rectifier SMB Power Surface Mount Package . . . employing the Schottky Barrier principle in a metal–to–silicon power rectifier. Features epitaxial construction with oxide passivation and metal overlay contact. Ideally suited for low voltage, high
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MBRS260T3
r14525
MBRS260T3/D
marking B26 diode SCHOTTKY
403a
MBRS260T3
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MBRS260T3
Abstract: marking code b26
Text: MBRS260T3 Surface Mount Schottky Power Rectifier SMB Power Surface Mount Package . . . employing the Schottky Barrier principle in a metal-to-silicon power rectifier. Features epitaxial construction with oxide passivation and metal overlay contact. Ideally suited for low voltage, high
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MBRS260T3
r14525
MBRS260T3/D
MBRS260T3
marking code b26
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MBRS260T3G
Abstract: B26G
Text: MBRS260T3G, NRVBS260T3G Surface Mount Schottky Power Rectifier SMB Power Surface Mount Package http://onsemi.com This device employs the Schottky Barrier principle in a metal−to−silicon power rectifier. Features epitaxial construction with oxide passivation and metal overlay contact. Ideally suited for low
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MBRS260T3G,
NRVBS260T3G
AEC-Q101
MBRS260T3/D
MBRS260T3G
B26G
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Untitled
Abstract: No abstract text available
Text: MBRS260T3G, NRVBS260T3G Surface Mount Schottky Power Rectifier SMB Power Surface Mount Package http://onsemi.com This device employs the Schottky Barrier principle in a metal−to−silicon power rectifier. Features epitaxial construction with oxide passivation and metal overlay contact. Ideally suited for low
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MBRS260T3G,
NRVBS260T3G
MBRS260T3/D
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Untitled
Abstract: No abstract text available
Text: MBRS260T3G, NRVBS260T3G Surface Mount Schottky Power Rectifier SMB Power Surface Mount Package http://onsemi.com This device employs the Schottky Barrier principle in a metal−to−silicon power rectifier. Features epitaxial construction with oxide passivation and metal overlay contact. Ideally suited for low
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MBRS260T3G,
NRVBS260T3G
MBRS260T3/D
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CS5323demo
Abstract: BAT54 BAT54LT1 CS5301 CS5323 NCP5351 NTD4302 atx 300 power supply schematic PGA423 SOCKET au19
Text: CS5323DEMO/D Demonstration Note for CS5323 12 V to 1.45 V, 65 A Three–Phase Synchronous Buck Converter Demonstration Board for Pentium 4 Processors http://onsemi.com DEMONSTRATION NOTE • • • • Features • Three–Phase Architecture • Lossless Active Current Sharing
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CS5323DEMO/D
CS5323
CS5323
r14525
CS5323demo
BAT54
BAT54LT1
CS5301
NCP5351
NTD4302
atx 300 power supply schematic
PGA423 SOCKET
au19
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AU13
Abstract: sanyo c35 C3843 ak36 diode ak38 ECUV1H471KBN 16SP270M BAT54S CS5301 TP20
Text: CS5301DEMO/D Demonstration Note for CS5301 12 V to 1.45 V, 60 A Three–Phase Synchronous Buck Converter Demonstration Board for Northwood Processor http://onsemi.com DEMONSTRATION NOTE • • • • • Features • 1″ x 4.5″ Footprint • Three–Phase Architecture
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CS5301DEMO/D
CS5301
CS5301
r14525
AU13
sanyo c35
C3843
ak36
diode ak38
ECUV1H471KBN
16SP270M
BAT54S
TP20
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B26G
Abstract: marking B26 diode SCHOTTKY diode mbrs260t3 MBRS260T3 MBRS260T3G DSASW00315214
Text: MBRS260T3 Surface Mount Schottky Power Rectifier SMB Power Surface Mount Package This device employs the Schottky Barrier principle in a metal−to−silicon power rectifier. Features epitaxial construction with oxide passivation and metal overlay contact. Ideally suited for low
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MBRS260T3
MBRS260T3/D
B26G
marking B26 diode SCHOTTKY
diode mbrs260t3
MBRS260T3
MBRS260T3G
DSASW00315214
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MBRS260T3
Abstract: MBRS260T3G
Text: MBRS260T3 Surface Mount Schottky Power Rectifier SMB Power Surface Mount Package This device employs the Schottky Barrier principle in a metal−to−silicon power rectifier. Features epitaxial construction with oxide passivation and metal overlay contact. Ideally suited for low
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MBRS260T3
MBRS260T3/D
MBRS260T3
MBRS260T3G
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MBRS260T3G
Abstract: MBRS260T3
Text: MBRS260T3 Surface Mount Schottky Power Rectifier SMB Power Surface Mount Package This device employs the Schottky Barrier principle in a metal-to-silicon power rectifier. Features epitaxial construction with oxide passivation and metal overlay contact. Ideally suited for low
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MBRS260T3
MBRS260T3/D
MBRS260T3G
MBRS260T3
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MBRS260T3G
Abstract: B26G MBRS260T3
Text: MBRS260T3 Surface Mount Schottky Power Rectifier SMB Power Surface Mount Package This device employs the Schottky Barrier principle in a metal−to−silicon power rectifier. Features epitaxial construction with oxide passivation and metal overlay contact. Ideally suited for low
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MBRS260T3
MBRS260T3/D
MBRS260T3G
B26G
MBRS260T3
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socket AM2 pinout
Abstract: PGA370C T-30-26 PGA370A al15 schematic M36N1 K34 mosfet AH34 mosfet intel pga 370 pin K34 mosfet 64
Text: CS5308DEMO/D Demonstration Note for CS5308 5.0 V to 1.7 V Two–Phase Converter for VRM8.5 http://onsemi.com DEMONSTRATION NOTE • • • • Features • 1.1″ x 4.1″ Footprint – CS5308 Controller, MOSFETs 2 , Input Capacitors (2), Inductors (2);
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CS5308
CS5308
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socket AM2 pinout
PGA370C
T-30-26
PGA370A
al15 schematic
M36N1
K34 mosfet
AH34 mosfet
intel pga 370 pin
K34 mosfet 64
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diode C531
Abstract: c531 diode lga775 schematic transistor C535 60N02R C536 VCC3 1156 01 85n02 C532 diode u504
Text: NCP5318DEMO NCP5318 Four Phase Demonstration Board Note Switching Regulator Controller http://onsemi.com DEMONSTRATION NOTE Features Protection Features • Programmable 2/3/4 Phase Operation • Lossless Current Sensing • Enhanced V2 Control Method Provides Fast Transient
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NCP5318DEMO
NCP5318
NCP5318DEMO/D
diode C531
c531 diode
lga775 schematic
transistor C535
60N02R
C536
VCC3 1156 01
85n02
C532 diode
u504
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SMD SOT23 transistor MARK Y2
Abstract: tp link schematic circuit diagram adc modem boar 0805 10V CAPACITOR X7R 4.7UF atmel 16b1 24C64A 88E1145 samsung K5 MCP marvell 88e1145 computer motherboard circuit diagram g31 chipset 30b1 diode
Text: MPC8548E Configurable Development System Reference Manual Supports MPC8548E MPC8548 MPC8547E MPC8545E MPC8545 MPC8543E MPC8543 MPC8548CDSx3RM Rev. 2, 10/2006 Contents Paragraph Number Title Page Number Contents About This Book Audience .xv
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MPC8548E
MPC8548
MPC8547E
MPC8545E
MPC8545
MPC8543E
MPC8543
MPC8548CDSx3RM
SMD SOT23 transistor MARK Y2
tp link schematic circuit diagram adc modem boar
0805 10V CAPACITOR X7R 4.7UF
atmel 16b1
24C64A
88E1145
samsung K5 MCP
marvell 88e1145
computer motherboard circuit diagram g31 chipset
30b1 diode
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AN15530
Abstract: K34 mosfet fairchild aa35 rPGA-989 AN1553 CM21X5R226M04AT GRM21BC80J226M C2012X5R0J226MT009N panasonic cpu am32 fairchild Ah7
Text: Application Note AN1553 Author: Jia Wei ISL62881CGPUEVAL2Z Evaluation Board User Guide Hardware Description Interface Connections The ISL62881CGPUEVAL2Z evaluation board demonstrates the performance of the ISL62881C single-phase synchronous-buck PWM GPU VCORE
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AN1553
ISL62881CGPUEVAL2Z
ISL62881C
ISL62881C
Conte1553
AN1553
AN15530
K34 mosfet
fairchild aa35
rPGA-989
CM21X5R226M04AT
GRM21BC80J226M
C2012X5R0J226MT009N
panasonic cpu am32
fairchild Ah7
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K34 mosfet
Abstract: sot23 w32 ISL62882c vss 1558 rPGA-989 AN1558 ag30 transistor ONSEMI diode a30 transistor r14 ah16 socket am2 am3
Text: Application Note 1558 Author: Jia Wei ISL62882CEVAL2Z User Guide Introduction Interface Connections The ISL62882CEVAL2Z evaluation board demonstrates the performance of the ISL62882 multiphase synchronous-buck PWM VCORE controller implementing Intel IMVP-6.5 protocol. The ISL62882 features Intersil's
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AN1558
K34 mosfet
sot23 w32
ISL62882c
vss 1558
rPGA-989
ag30 transistor
ONSEMI diode a30
transistor r14 ah16
socket am2 am3
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ah30 diode
Abstract: AH34 mosfet ak24 diode thermistor M33 irf7832 ISL62882 n34 transistor w8 mosfet transistor c36 Burndy y34 lug specifications
Text: ISL62882EVAL2Z User Guide Application Note April 9, 2009 AN1461.0 Author: Jia Wei Introduction Interface Connections The ISL62882EVAL2Z evaluation board demonstrates the performance of the ISL62882 multiphase synchronous-buck PWM VCORE controller implementing Intel IMVP-6.5
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ISL62882EVAL2Z
AN1461
ISL62882
ah30 diode
AH34 mosfet
ak24 diode
thermistor M33
irf7832
n34 transistor
w8 mosfet
transistor c36
Burndy y34 lug specifications
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r58 ah16
Abstract: ISL62883HRZ rPGA-989 ISL62883 TEK131-4353-00 thermistor R53 burndy Y35 irf7832 burndy CONNECTOR Burndy y34 lug specifications
Text: ISL62883EVAL2Z User Guide Application Note July 13, 2009 AN1460.1 Author: Jia Wei Introduction Interface Connections The ISL62883EVAL2Z evaluation board demonstrates the performance of the ISL62883 multiphase synchronous-buck PWM VCORE controller implementing Intel IMVP-6.5
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AN1460
ISL62883
r58 ah16
ISL62883HRZ
rPGA-989
TEK131-4353-00
thermistor R53
burndy Y35
irf7832
burndy CONNECTOR
Burndy y34 lug specifications
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r58 ah16
Abstract: ISL62883HRZ ISL62883C fairchild sot23 v31 Burndy y35 r39 ah16 TP35 1557 b transistor rPGA-989 ISL6208
Text: Application Note 1557 Author: Jia Wei ISL62883CEVAL2Z User Guide Introduction Interface Connections The ISL62883CEVAL2Z evaluation board demonstrates the performance of the ISL62883 multiphase synchronous-buck PWM VCORE controller implementing Intel IMVP-6.5 protocol. The ISL62883 features Intersil's
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ISL62883CEVAL2Z
ISL62883
AN1557
r58 ah16
ISL62883HRZ
ISL62883C
fairchild sot23 v31
Burndy y35
r39 ah16
TP35
1557 b transistor
rPGA-989
ISL6208
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r58 ah16
Abstract: am2 SOCKET PIN LAYOUT burndy Y35 AG34 diode irf7832 ISL62883 K34 mosfet ONSEMI diode a30 burndy socket am2 am3
Text: ISL62883EVAL2Z User Guide Application Note April 8, 2009 AN1460.0 Author: Jia Wei Introduction Interface Connections The ISL62883EVAL2Z evaluation board demonstrates the performance of the ISL62883 multiphase synchronous-buck PWM VCORE controller implementing Intel IMVP-6.5
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ISL62883EVAL2Z
AN1460
ISL62883
r58 ah16
am2 SOCKET PIN LAYOUT
burndy Y35
AG34 diode
irf7832
K34 mosfet
ONSEMI diode a30
burndy
socket am2 am3
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fairchild AG33
Abstract: K30 mosfet rPGA-989 transistor r14 ah16 MPCh1040LR36 r33 ah16 burndy Y35 ONSEMI diode a30 K34 mosfet K26 mosfet
Text: ISL62882EVAL2Z User Guide Application Note July 13, 2009 AN1461.1 Author: Jia Wei Introduction Interface Connections The ISL62882EVAL2Z evaluation board demonstrates the performance of the ISL62882 multiphase synchronous-buck PWM VCORE controller implementing Intel IMVP-6.5
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ISL62882EVAL2Z
AN1461
ISL62882
fairchild AG33
K30 mosfet
rPGA-989
transistor r14 ah16
MPCh1040LR36
r33 ah16
burndy Y35
ONSEMI diode a30
K34 mosfet
K26 mosfet
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philips cx50
Abstract: at24lc02 FRC 40 PIN Male connector 88E1145 FRC 14 PIN Male connector hynix mcp marvell 88e1145 schematic atx 2.03 P4 capacitor 0.1uf 400v Indutor
Text: MPC8555E Configurable Development System Reference Manual Supports MPC8555E MPC8541E MPC8555CDSx3RM Rev. 1, 11/2006 Contents Paragraph Number Title Page Number Contents About This Book Audience . xiii
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MPC8555E
MPC8541E
MPC8555CDSx3RM
philips cx50
at24lc02
FRC 40 PIN Male connector
88E1145
FRC 14 PIN Male connector
hynix mcp
marvell 88e1145
schematic atx 2.03 P4
capacitor 0.1uf 400v
Indutor
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