Part: VI-B6Y-CU

Index Files

Offer Index 58

SANYO,
SIPEX,
FUJI,
REALTEK,
LITTELFUSE,
BOURNS,
FUJITSU,
QFN,
LAMBDA,
IDT,
LATTICE,
NAIS,
MIT,
NUVOTON,
NVIDIA,
SILICON,
EPCOS,
NICHICON,
WJ,
MINI,
OKI,
RAMTRON,
ATI,
COOPER,
MURATAPS,
CONEXANT,
COILCRAFT,
EPSON,
QFP,
WINBOND,
ISSI,
MURATA PS,
BGA,
IC,
OSRAM,
LSI,
SIMCOM,
SEMIKRON,
SST,
ASTEC,
JRC,
ZETEX/DIODES,
KEMET,
AT,
AUO,
AGILENT,
ISD/NUVOTON,
DIODES,
LUCENT,
TI,
MAX,
NS,
ST,
AD,
INFINEON,
MURATA,
ALTERA,
TOS,
NXP,
ON,
SAMSUNG,
CY,
IR,
ATMEL,
FSC,
INTEL,
VISHAY,
XILINX,
POWER,
DALLAS,
FREESCALE,
VICOR,
MIC,
MICROCHIP,
PHI,
NEC,
PANASONIC,
MOT,
BB,
ROHM,
MICRON,
RENESAS,
TDK,
LINEAR,
SHARP,
MPS,
AMD,
ALLEGRO,
AVAGO,
ZETEX,
BROADCOM,
AVX,
YAGEO,
VISHAY/IR,
IXYS,
HYNIX,
INTERSIL,
HIT,
MICREL,
NIPPON CHEMI-CON,
SANYO,
SIPEX,
FUJI,
REALTEK,
LITTELFUSE,
BOURNS,
FUJITSU,
QFN,
LAMBDA,
LATTICE,
IDT,
NAIS,
MIT,
AGILENT,
NUVOTON,
NVIDIA,
SILICON,
EPCOS,
NICHICON,
WJ,
MINI,
OKI,
RAMTRON,
ATI,
CONEXANT,
COOPER,
MURATAPS,
COILCRAFT,
EPSON,
QFP,
SEMIKRON,
WINBOND,
ISSI,
MURATA PS,
BGA,
IC,
ISD/NUVOTON,
OSRAM,
LSI,
SIMCOM,
SST,
ASTEC,
JRC,
AUO,
ZETEX/DIODES,
KEMET,
AT,
DIODES,
LUCENT,
TI,
MAX,
NS,
ST,
AD,
INFINEON,
MURATA,
ALTERA,
TOS,
NXP,
ON,
SAMSUNG,
CY,
IR,
ATMEL,
FSC,
INTEL,
VISHAY,
XILINX,
POWER,
DALLAS,
FREESCALE,
VICOR,
MIC,
MICROCHIP,
PHI,
NEC,
PANASONIC,
MOT,
BB,
ROHM,
MICRON,
RENESAS,
TDK,
LINEAR,
SHARP,
MPS,
AMD,
ALLEGRO,
AVAGO,
ZETEX,
BROADCOM,
AVX,
YAGEO,
VISHAY/IR,
IXYS,
HYNIX,
INTERSIL,
HIT,
MICREL,
NIPPON CHEMI-CON,
SANYO,
SIPEX,
FUJI,
REALTEK,
LITTELFUSE,
BOURNS,
FUJITSU,
QFN,
LAMBDA,
LATTICE,
IDT,
NAIS,
MIT,
AGILENT,
NUVOTON,
NVIDIA,
SILICON,
EPCOS,
NICHICON,
WJ,
MINI,
OKI,
RAMTRON,
ATI,
CONEXANT,
COOPER,
MURATAPS,
COILCRAFT,
EPSON,
QFP,
SEMIKRON,
WINBOND,
ISSI,
MURATA PS,
BGA,
IC,
ISD/NUVOTON,
OSRAM,
LSI,
SIMCOM,
SST,
ASTEC,
JRC,
AUO,
ZETEX/DIODES,
KEMET,
AT,
DIODES,
LUCENT,
TI,
MAX,
NS,
ST,
AD,
INFINEON,
MURATA,
ALTERA,
TOS,
NXP,
ON,
SAMSUNG,
CY,
IR,
ATMEL,
FSC,
INTEL,
VISHAY,
XILINX,
POWER,
DALLAS,
FREESCALE,
VICOR,
MIC,
MICROCHIP,
PHI,
NEC,
PANASONIC,
MOT,
BB,
ROHM,
MICRON,
RENESAS,
TDK,
LINEAR,
SHARP,
MPS,
AMD,
ALLEGRO,
AVAGO,
ZETEX,
BROADCOM,
AVX,
YAGEO,
VISHAY/IR,
IXYS,
HYNIX,
INTERSIL,
HIT,
MICREL,
NIPPON CHEMI-CON,
SANYO,
SIPEX,
FUJI,
REALTEK,
LITTELFUSE,
BOURNS,
FUJITSU,
QFN,
LAMBDA,
LATTICE,
IDT,
NAIS,
MIT,
AGILENT,
NUVOTON,
NVIDIA,
SILICON,
EPCOS,
NICHICON,
WJ,
MINI,
OKI,
RAMTRON,
ATI,
CONEXANT,
COOPER,
MURATAPS,
COILCRAFT,
EPSON,
QFP,
SEMIKRON,
WINBOND,
ISSI,
MURATA PS,
BGA,
IC,
ISD/NUVOTON,
OSRAM,
LSI,
SIMCOM,
SST,
ASTEC,
JRC,
AUO,
ZETEX/DIODES,
KEMET,
AT,
DIODES,
LUCENT,
TI,
NS,
MAX,
AD,
ST,
INFINEON,
ALTERA,
TOS,
NXP,
ON,
MURATA,
SAMSUNG,
CY,
INTEL,
FSC,
ATMEL,
XILINX,
VISHAY,
IR,
DALLAS,
POWER,
MIC,
PHI,
FREESCALE,
MICROCHIP,
NEC,
PANASONIC,
MOT,
BB,
ROHM,
MICRON,
LAMBDA,
RENESAS,
TDK,
LINEAR,
AMD,
ALLEGRO,
AVAGO,
ZETEX,
BROADCOM,
SHARP,
YAGEO,
VISHAY/IR,
HYNIX,
IXYS,
AVX,
INTERSIL,
HIT,
MICREL,
SANYO,
SIPEX,
FUJI,
REALTEK,
LITTELFUSE,
BOURNS,
FUJITSU,
QFN,
IDT,
LATTICE,
NAIS,
NIPPON CHEMI-CON,
MIT,
AGILENT,
VICOR,
NUVOTON,
NVIDIA,
SILICON,
WJ,
NICHICON,
MINI,
OKI,
RAMTRON,
ATI,
CONEXANT,
COOPER,
MURATAPS,
PRX,
COILCRAFT,
EPSON,
QFP,
ISSI,
WINBOND,
SEMIKRON,
MURATA PS,
BGA,
IC,
OSRAM,
LSI,
SIMCOM,
SST,
ASTEC,
JRC,
AUO,
ZETEX/DIODES,
AT,
ISD/NUVOTON,
KEMET,
LUCENT,
LG,
EPCOS,
TI,
NS,
MAX,
AD,
ST,
INFINEON,
ALTERA,
TOS,
NXP,
ON,
SAMSUNG,
MURATA,
CY,
ATMEL,
INTEL,
FSC,
XILINX,
VISHAY,
IR,
DALLAS,
POWER,
MIC,
PHI,
FREESCALE,
MICROCHIP,
NEC,
MOT,
PANASONIC,
BB,
ROHM,
MICRON,
LAMBDA,
RENESAS,
TDK,
LINEAR,
AMD,
ALLEGRO,
AVAGO,
ZETEX,
BROADCOM,
SHARP,
MPS,
VISHAY/IR,
HYNIX,
YAGEO,
IXYS,
AVX,
INTERSIL,
MICREL,
HIT,
SANYO,
SIPEX,
FUJI,
REALTEK,
LITTELFUSE,
LATTICE,
BOURNS,
FUJITSU,
QFN,
IDT,
NAIS,
NIPPON CHEMI-CON,
MIT,
AGILENT,
VICOR,
NUVOTON,
NVIDIA,
SILICON,
WJ,
NICHICON,
MINI,
RAMTRON,
OKI,
ATI,
CONEXANT,
MURATAPS,
COOPER,
PRX,
EPSON,
ISSI,
QFP,
COILCRAFT,
WINBOND,
SEMIKRON,
MURATA PS,
BGA,
IC,
OSRAM,
SIMCOM,
SST,
ASTEC,
JRC,
AUO,
LSI,
ZETEX/DIODES,
AT,
ISD/NUVOTON,
KEMET,
LUCENT,
LG,
TI,
NS,
MAX,
ST,
AD,
INFINEON,
ALTERA,
TOS,
NXP,
ON,
SAMSUNG,
MURATA,
CY,
ATMEL,
FSC,
INTEL,
VISHAY,
XILINX,
IR,
DALLAS,
POWER,
MIC,
MICROCHIP,
PHI,
FREESCALE,
NEC,
MOT,
PANASONIC,
ROHM,
BB,
MICRON,
TDK,
LAMBDA,
RENESAS,
LINEAR,
AMD,
ALLEGRO,
AVAGO,
ZETEX,
BROADCOM,
SHARP,
AVX,
MPS,
IXYS,
VISHAY/IR,
HYNIX,
YAGEO,
INTERSIL,
SANYO,
MICREL,
NIPPON CHEMI-CON,
HIT,
SIPEX,
BOURNS,
FUJI,
REALTEK,
LITTELFUSE,
LATTICE,
FUJITSU,
IDT,
MIT,
QFN,
NAIS,
AGILENT,
VICOR,
NVIDIA,
NUVOTON,
SILICON,
WJ,
NICHICON,
MINI,
RAMTRON,
ISSI,
OKI,
ATI,
CONEXANT,
MURATAPS,
COOPER,
WINBOND,
EPSON,
PRX,
QFP,
COILCRAFT,
SEMIKRON,
MURATA PS,
BGA,
IC,
OSRAM,
SIMCOM,
SST,
ASTEC,
KEMET,
JRC,
AUO,
ZETEX/DIODES,
AT,
LSI,
ISD/NUVOTON,
DIODES,
MBI,
TI,
NS,
MAX,
ST,
AD,
INFINEON,
ALTERA,
TOS,
NXP,
ON,
SAMSUNG,
MURATA,
CY,
ATMEL,
FSC,
INTEL,
VISHAY,
XILINX,
IR,
DALLAS,
POWER,
MIC,
MICROCHIP,
PHI,
NEC,
FREESCALE,
MOT,
PANASONIC,
ROHM,
BB,
MICRON,
TDK,
LAMBDA,
RENESAS,
LINEAR,
AMD,
ALLEGRO,
AVAGO,
ZETEX,
BROADCOM,
SHARP,
AVX,
MPS,
IXYS,
VISHAY/IR,
HYNIX,
YAGEO,
INTERSIL,
SANYO,
MICREL,
HIT

 
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Product Summary
VICOR VI-B6Y-CU
This is an offer provided by HKin.com member.
In stock! Order now!
Category: Electronic Components.
Product #: VI-B6Y-CU.


Available from: BeiJing Jietuozijing Science and Technology Co., Ltd.
Condition: in excellent condition
In stock! Order now!

Part Numbers

Previous Parts:AD842KN, 6R150E-080, AK55QB80, MC68360FE25C, MQ200J2YS45, MT4LC4M4E9DJ-6, PS3601L-E3, ECN3067SLV, TPS54610, MAX8724E, BYM600A17, LMD18245T/NOPB, BB555, B9305, VSC7391XHO, Z85C3006PSC

(+HKin.com) :) The followings are offers provided by our member in Electronic Components Offer site about the following parts: VI-B6Y-CU":

Post DatePart NumberBrandD/CDescQtyCompany
Mon Jun 11 02:20:00 UTC 2012VI-B6Y-CU (from standard server 2)VICOR300V/3.3V/132W86BeiJing Jietuozijing Science and Technology Co., Ltd.
Mon Jun 11 02:20:00 UTC 2012VI-B6Y-CU (from parts server 2)VICOR300V/3.3V/132W86BeiJing Jietuozijing Science and Technology Co., Ltd.
Mon Jun 11 02:20:00 UTC 2012VI-B6Y-CU (from hkin.com 2)VICOR300V/3.3V/132W86BeiJing Jietuozijing Science and Technology Co., Ltd.
Mon Jun 11 02:20:00 UTC 2012VI-B6Y-CU (from hkin.com 2)VICOR300V/3.3V/132W86BeiJing Jietuozijing Science and Technology Co., Ltd.

Last record Z85C3006PSC:

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Last record VSC7391XHO:

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Last record B9305:

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vid:offerengine20120611 Part Number Prefix

VI-B6Y-CU,VI-B6Y-CU,Comments from user about VI-B6Y-CU: In reality one side or the other of the branch will be called much more often than the other. Note that this only works if only one of the above definitions of passivity is used ?if components from the two are mixed, the systems may be unstable under any criteria. That is, input signal changes cause immediate changes in output; when several transparent latches follow each other, using the same clock signal, signals can propagate through all of them at once. Occasionally the physical limitations of integrated circuits made such practices as a bit slice approach necessary. The guess allows the hardware to prefetch instructions without waiting for the register read. Single-chip processors increase reliability as there were many fewer electrical connections to fail. Small circuit breakers may be manually operated; larger units have solenoids to trip the mechanism, and electric motors to restore energy to the springs. Some architectures include other stages such as memory access. Anything related to :VI-B6Y-CU, or electronic components and electronic component distributors such as:fairchild,avx capacitor, or electronics part index in: VI-B6Y-CU, search hkinventory: VI-B6Y-CU, This required IEEE standard 1164, which defined the 9-value logic types: scalar std_ulogic and its vector version std_ulogic_vector. voltage amplifiers or buffer amplifiers.The second region, at reverse biases more positive than the PIV, has only a very small reverse saturation current. The main reason why semiconductor materials are so useful is that the behavior of a semiconductor can be easily manipulated by the addition of impurities, known as doping. Datasheet Dir, DataSheet Archive
The pipeline includes several different stages which are fundamental in microarchitecture designs. The internal arrangement of a microprocessor varies depending on the age of the design and the intended purposes of the processor. Once a fault is detected, contacts within the circuit breaker must open to interrupt the circuit; some mechanically-stored energy (using something such as springs or compressed air) contained within the breaker is used to separate the contacts, although some of the energy required may be obtained from the fault current itself. The integration of a whole CPU onto a single chip or on a few chips greatly reduced the cost of processing power. However, most designers leave this job to the simulator. VHDL is a dataflow language, unlike procedural computing languages such as BASIC, C, and assembly code, which all run sequentially, one instruction at a time. This required IEEE standard 1164, which defined the 9-value logic types: scalar std_ulogic and its vector version std_ulogic_vector. Integrated circuits are used in virtually all electronic equipment today and have revolutionized the world of electronics.
any passive component and active component such as:Diode, Latches are designed to be transparent. Some other standards support wider use of VHDL, notably VITAL (VHDL Initiative Towards ASIC Libraries) and microwave circuit design extensions. Microprocessor control of a system can provide control strategies that would be impractical to implement using electromechanical controls or purpose-built electronic controls. However, remember that the internal output impedance of operational amplifiers, if used, may rise markedly at high frequencies and reduce the attenuation from that expected. For example driver circuit
VI-B6Y-CU,VI-B6Y-CU,Comments from user about VI-B6Y-CU: Instead of processing all of a long word on one integrated circuit, multiple circuits in parallel processed subsets of each data word. voltage amplifiers or buffer amplifiers. One rarely finds modern circuits that are entirely analog. Performance is high because the components switch quickly and consume little power (compared to their discrete counterparts) as a result of the small size and close proximity of the components. With this structure, one of the connections of the device is located on the bottom of the semiconductor die. The semiconductor material used in devices is doped under highly controlled conditions in a fabrication facility, or fab, to precisely control the location and concentration of p- and n-type dopants. Passive filters are uncommon in monolithic integrated circuit design, where active devices are inexpensive compared to resistors and capacitors, and inductors are prohibitively expensive. An active filter is a type of analog electronic filter, distinguished by the use of one or more active components i. Anything related to :VI-B6Y-CU, or electronic components and electronic component distributors such as:fairchild,avx capacitor, or electronics part index in: VI-B6Y-CUSee also: