Part: BSV42

Index Files

Offer Index 21

VISHAY,
ON,
MOT,
INTEL,
AVX,
MICREL,
IR,
SANYO,
LINEAR,
MIT,
FREESCALE,
SEMIKRON,
ALLEGRO,
SHARP,
PHI,
AVAGO,
TDK,
EVERLIGHT,
NVIDIA,
NEC,
ROHM,
BROADCOM,
RENESAS,
COILCRAFT,
MICRON,
INTERSIL,
YAGEO,
MIC,
DALLAS,
QUALCOMM,
WURTH,
AUO,
FUJITSU,
HIT,
MPS,
ISD/NUVOTON,
KEMET,
HARVATEK,
FTDI,
POWER,
SUMIDA,
BB,
EPCOS,
BB/TI,
TYCO,
AMD,
NIPPON CHEMI-CON,
SILICON,
BOURNS,
LITTELFUSE,
SAMXON,
HYNIX,
SEIKO,
IXYS,
TRACO,
SONY,
COOPER,
ERICSSOM,
IDT,
FUJI,
LAMBDA,
MOLEX,
QFP,
SST,
CREE,
REALTEK,
MICRON(ST),
SPANSION,
NUVOTON,
DARFON,
QFN,
CIRRUS,
EPSON,
ATI,
PAM,
SIPEX,
RAMTRON,
TI ,
DIODES,
SW,
LATTICE,
SIEMENS,
BOSCH,
TI,
AD,
ATMEL,
ST,
NS,
MAX,
MURATA,
NXP,
XILINX,
ALTERA,
SAMSUNG,
FSC,
MICROCHIP,
INFINEON,
TOS,
CY,
PANASONIC,
VISHAY,
ON,
MOT,
INTEL,
AVX,
MICREL,
IR,
SANYO,
LINEAR,
MIT,
FREESCALE,
SEMIKRON,
ALLEGRO,
SHARP,
PHI,
AVAGO,
TDK,
EVERLIGHT,
NVIDIA,
NEC,
ROHM,
BROADCOM,
RENESAS,
COILCRAFT,
MICRON,
INTERSIL,
YAGEO,
MIC,
DALLAS,
QUALCOMM,
WURTH,
AUO,
FUJITSU,
HIT,
MPS,
ISD/NUVOTON,
KEMET,
HARVATEK,
FTDI,
POWER,
SUMIDA,
BB,
EPCOS,
BB/TI,
TYCO,
AMD,
NIPPON CHEMI-CON,
SILICON,
BOURNS,
LITTELFUSE,
SAMXON,
HYNIX,
SEIKO,
IXYS,
TRACO,
SONY,
COOPER,
ERICSSOM,
IDT,
FUJI,
LAMBDA,
MOLEX,
QFP,
SST,
CREE,
REALTEK,
MICRON(ST),
SPANSION,
NUVOTON,
DARFON,
QFN,
CIRRUS,
EPSON,
ATI,
PAM,
SIPEX,
RAMTRON,
TI ,
DIODES,
SW,
LATTICE,
SIEMENS,
BOSCH,
TI,
AD,
ATMEL,
ST,
MAX,
MURATA,
NXP,
NS,
ALTERA,
XILINX,
FSC,
SAMSUNG,
INFINEON,
MICROCHIP,
TOS,
CY,
PANASONIC,
VISHAY,
ON,
MOT,
INTEL,
AVX,
MICREL,
SANYO,
IR,
MIT,
LINEAR,
FREESCALE,
SEMIKRON,
ALLEGRO,
SHARP,
PHI,
AVAGO,
TDK,
EVERLIGHT,
NVIDIA,
ROHM,
NEC,
BROADCOM,
RENESAS,
COILCRAFT,
INTERSIL,
MICRON,
YAGEO,
DALLAS,
MIC,
WURTH,
QUALCOMM,
AUO,
FUJITSU,
HIT,
MPS,
ISD/NUVOTON,
KEMET,
HARVATEK,
FTDI,
SUMIDA,
BB,
POWER,
BB/TI,
EPCOS,
TYCO,
AMD,
NIPPON CHEMI-CON,
SILICON,
BOURNS,
LITTELFUSE,
SAMXON,
HYNIX,
SEIKO,
IXYS,
TRACO,
COOPER,
SONY,
ERICSSOM,
IDT,
LAMBDA,
MOLEX,
QFP,
FUJI,
CREE,
SST,
REALTEK,
MICRON(ST),
NUVOTON,
DARFON,
QFN,
CIRRUS,
SPANSION,
EPSON,
ATI,
PAM,
SIPEX,
RAMTRON,
TI ,
SW,
LATTICE,
BOSCH,
SIEMENS,
ZETEX,
TI,
AD,
ST,
ATMEL,
MAX,
MURATA,
NXP,
NS,
ALTERA,
XILINX,
FSC,
SAMSUNG,
INFINEON,
MICROCHIP,
TOS,
CY,
PANASONIC,
VISHAY,
ON,
INTEL,
MOT,
AVX,
FREESCALE,
MICREL,
PHI,
SANYO,
IR,
MIT,
LINEAR,
SEMIKRON,
ALLEGRO,
SHARP,
AVAGO,
EVERLIGHT,
NVIDIA,
TDK,
NEC,
ROHM,
COILCRAFT,
RENESAS,
INTERSIL,
YAGEO,
DALLAS,
MIC,
BROADCOM,
QUALCOMM,
WURTH,
AUO,
MICRON,
FUJITSU,
HIT,
MPS,
ISD/NUVOTON,
HARVATEK,
KEMET,
FTDI,
SUMIDA,
BB,
POWER,
BB/TI,
EPCOS,
TYCO,
AMD,
NIPPON CHEMI-CON,
SILICON,
BOURNS,
LITTELFUSE,
HYNIX,
SONY,
SEIKO,
FUJI,
IXYS,
HKR,
TRACO,
COOPER,
IDT,
ERICSSOM,
MOLEX,
LAMBDA,
QFP,
CREE,
SST,
REALTEK,
MICRON(ST),
NUVOTON,
RALEC,
DARFON,
QFN,
CIRRUS,
SPANSION,
EPSON,
ATI,
PAM,
SIPEX,
RAMTRON,
LATTICE,
TI ,
SW,
SAMXON,
SIEMENS,
TI,
AD,
ST,
ATMEL,
MAX,
MURATA,
NXP,
ALTERA,
XILINX,
NS,
FSC,
SAMSUNG,
INFINEON,
MICROCHIP,
TOS,
CY,
PANASONIC,
ON,
VISHAY,
INTEL,
MOT,
AVX,
FREESCALE,
MICREL,
PHI,
SANYO,
IR,
MIT,
LINEAR,
SEMIKRON,
SHARP,
ALLEGRO,
TDK,
AVAGO,
EVERLIGHT,
NVIDIA,
NEC,
ROHM,
COILCRAFT,
RENESAS,
INTERSIL,
YAGEO,
MIC,
DALLAS,
BROADCOM,
QUALCOMM,
WURTH,
AUO,
MICRON,
FUJITSU,
HIT,
MPS,
ISD/NUVOTON,
HARVATEK,
KEMET,
FTDI,
SUMIDA,
BB,
POWER,
BB/TI,
EPCOS,
TYCO,
AMD,
NIPPON CHEMI-CON,
SILICON,
BOURNS,
LITTELFUSE,
HYNIX,
COOPER,
SONY,
SEIKO,
FUJI,
IXYS,
HKR,
TRACO,
IDT,
ERICSSOM,
MOLEX,
LAMBDA,
QFP,
CREE,
SST,
REALTEK,
MICRON(ST),
NUVOTON,
RALEC,
DARFON,
QFN,
SPANSION,
CIRRUS,
EPSON,
SIPEX,
ATI,
PAM,
RAMTRON,
LATTICE,
TI ,
SW,
SAMXON,
SIEMENS,
TI,
AD,
ST,
ATMEL,
MAX,
MURATA,
NXP,
ALTERA,
XILINX,
NS,
FSC,
SAMSUNG,
INFINEON,
MICROCHIP,
TOS,
CY,
PANASONIC,
ON,
VISHAY,
INTEL,
MOT,
AVX,
FREESCALE,
MICREL,
PHI,
SANYO,
IR,
MIT,
LINEAR,
SEMIKRON,
SHARP,
ALLEGRO,
TDK,
AVAGO,
EVERLIGHT,
NVIDIA,
NEC,
ROHM,
COILCRAFT,
RENESAS,
INTERSIL,
YAGEO,
MIC,
DALLAS,
BROADCOM,
QUALCOMM,
WURTH,
AUO,
MICRON,
FUJITSU,
HIT,
MPS,
ISD/NUVOTON,
HARVATEK,
KEMET,
SUMIDA,
FTDI,
BB,
POWER,
BB/TI,
EPCOS,
TYCO,
AMD,
NIPPON CHEMI-CON,
SILICON,
BOURNS,
LITTELFUSE,
HYNIX,
COOPER,
SONY,
SEIKO,
FUJI,
IXYS,
HKR,
TRACO,
IDT,
ERICSSOM,
MOLEX,
LAMBDA,
QFP,
CREE,
SST,
REALTEK,
MICRON(ST),
NUVOTON,
RALEC,
DARFON,
QFN,
SPANSION,
CIRRUS,
EPSON,
SIPEX,
ATI,
PAM,
RAMTRON,
LATTICE,
TI ,
SW,
SAMXON,
SIEMENS,
TI,
AD,
ST,
ATMEL,
MAX,
MURATA,
NXP,
ALTERA,
XILINX,
NS,
FSC,
SAMSUNG,
INFINEON,
MICROCHIP,
TOS,
CY,
PANASONIC,
ON,
VISHAY,
INTEL,
MOT,
AVX,
FREESCALE,
MICREL,
PHI,
SANYO,
IR,
MIT,
LINEAR,
SEMIKRON,
ALLEGRO,
SHARP,
AVAGO,
TDK,
EVERLIGHT,
NEC,
NVIDIA,
ROHM,
COILCRAFT,
RENESAS,
INTERSIL,
YAGEO,
DALLAS,
MIC,
BROADCOM,
QUALCOMM,
WURTH,
AUO,
MICRON,
FUJITSU,
HIT,
MPS,
ISD/NUVOTON,
HARVATEK,
KEMET,
SUMIDA,
FTDI,
BB,
POWER,
BB/TI,
EPCOS,
TYCO,
AMD,
NIPPON CHEMI-CON,
SILICON,
BOURNS,
LITTELFUSE,
HYNIX,
COOPER,
SONY,
SEIKO,
FUJI,
IXYS,
HKR,
TRACO,
IDT,
ERICSSOM,
MOLEX,
LAMBDA,
QFP,
CREE,
SST,
REALTEK,
MICRON(ST),
NUVOTON,
RALEC,
DARFON

 
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Product Summary
PHILIPS BSV42
This is an offer provided by HKin.com member.
In stock! Order now!
Category: Electronic Components.
Product #: BSV42.


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

Part Numbers

Previous Parts:2SB817, TF222B-B5A-TL-E, BFi160452, BSS18, 3306W-1-104, LC7940, EP2S30F672C3, CL-191WEFG-D-T, XC3030A-7PC84, HT1625, NE5532P, ISD4004-16MX, 12107C223JAT2A, SKM100GAL12T4, BSS54A, BSS62

(+HKin.com) :) The followings are offers provided by our member in Electronic Components Offer site about the following parts: BSV42":

Post DatePart NumberBrandD/CDescQtyCompany
Thu Jan 31 01:42:00 UTC 2013BSV42 (from standard server 2)PHILIPS05+CAN1689BeiJing Jietuozijing Science and Technology Co., Ltd.
Thu Jan 31 01:42:00 UTC 2013BSV42 (from parts server 2)PHILIPS05+CAN1689BeiJing Jietuozijing Science and Technology Co., Ltd.
Thu Jan 31 01:42:00 UTC 2013BSV42 (from hkin.com 2)PHILIPS05+CAN1689BeiJing Jietuozijing Science and Technology Co., Ltd.
Thu Jan 31 01:42:00 UTC 2013BSV42 (from hkin.com 2)PHILIPS05+CAN1689BeiJing Jietuozijing Science and Technology Co., Ltd.

Last record BSS62:

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Last record BSS54A:

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Last record SKM100GAL12T4:

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If you want to find more about BSV42, please visit us on HKin


vid:offerengine20130131 Part Number Prefix

BSV42,BSV42,Comments from user about BSV42: Microprocessors make it possible to put a computer into thousands of items that were traditionally not computer-related. Advancing technology makes more complex and powerful chips feasible to manufacture. A small current injected through the junction between the base and the emitter changes the properties of the base-collector junction so that it can conduct current even though it is reverse biased.1 (known as VHDL-AMS) provided analog and mixed-signal circuit design extensions. An example is the comparator which takes in a continuous range of voltage but only outputs one of two levels as in a digital circuit. In 2005, the first personal computer dual-core processors were announced. One disadvantage of the thyristor for switching circuits is that once it is 'latched-on' in the conducting state it cannot be turned off by external control. The VHDL standard IEEE 1076-2008 was published in January 2009. Anything related to :BSV42, or electronic components and electronic component distributors such as:fairchild,avx capacitor, or electronics part index in: BSV42, search hkinventory: BSV42, With the transition to the LGA1366 and LGA1156 socket and the Intel i7 and i5 chips, quad core is now considered mainstream, but with the release of the i7-980x, six core processors are now well within reach. Light-emitting diodes are used in applications as diverse as replacements for aviation lighting, automotive lighting (particularly brake lamps, turn signals and indicators) as well as in traffic signals. A problem not solved by this edition, however, was "multi-valued logic", where a signal's drive strength (none, weak or strong) and unknown values are also considered. The integrated circuit processor was produced in large numbers by highly automated processes, so unit cost was low. Datasheet Dir, DataSheet Archive
Machines with different microarchitectures may have the same instruction set architecture, and thus be capable of executing the same programs. An example is the comparator which takes in a continuous range of voltage but only outputs one of two levels as in a digital circuit. Band-pass filters ?attenuation of frequencies both above and below those they allow to pass. When a light-emitting diode is forward biased (switched on), electrons are able to recombine with electron holes within the device, releasing energy in the form of photons. Passive filters are uncommon in monolithic integrated circuit design, where active devices are inexpensive compared to resistors and capacitors, and inductors are prohibitively expensive. When there is a potential difference (voltage) across the conductors, a static electric field develops across the dielectric, causing positive charge to collect on one plate and negative charge on the other plate. An electric field can increase the number of free electrons and holes in a semiconductor, thereby changing its conductivity.2 added better handling of real and complex data types.
any passive component and active component such as:1N4148, or 65020 also informally known as VHDL 2008, which addressed more than 90 issues discovered during the trial period for version 3. Different features can be implemented in different models of a product line at negligible production cost. Generally, in datasheets, turn-off energy is mentioned as a measured parameter and one has to multiply that number with the switching frequency of the intended application to estimate the turn-off loss. However, because of high switching losses, typical operating frequency up to 500 Hz. For example driver circuit
BSV42,BSV42,Comments from user about BSV42: Circuit breakers for large currents or high voltages are usually arranged with pilot devices to sense a fault current and to operate the trip opening mechanism. The transistor's low cost, flexibility, and reliability have made it a ubiquitous device. As integrated circuit technology advanced, it was feasible to manufacture more and more complex processors on a single chip. The large number of discrete logic gates used more electrical powerXand therefore, produced more heatXthan a more integrated design with fewer ICs. For quantities that vary polynomially or logarithmically with temperature, it may be possible to calculate a temperature coefficient that is a useful approximation for a certain range of temperatures. The power MOSFET has the advantages of the majority carrier devices, so it can achieve very high operating frequency, but can't be used with high voltages. Typically, analog designers use this term to refer to incrementally passive components and systems, while control systems engineers will use this to refer to thermodynamically passive ones. IEEE standard 1076. Anything related to :BSV42, or electronic components and electronic component distributors such as:fairchild,avx capacitor, or electronics part index in: BSV42See also: