Part: Si4500BDY

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Offer Index 49

aic,
mxic,
spansion,
nxp/phi,
lg,
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osram,
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Previous Parts:SG2003J,SG2003J/883,SG6841S,SGH40N60,SH6950D,SI1141CT80,SI3443TR,SI3455,SI3460DV,SI3872DV,SI4364DY,SI4368DY,Si4431BDY,SI4434,SI4435DY-T1,SI4467DY

The followings are offers provided by our member in Electronic Components Offer site about the following parts: Si4500BDY":

Post DatePart NumberBrandD/CDescQtyCompany
Tue Sep 19 02:31:00 UTC 2006Si4500BDY (from hkin.com)VISHAY2005+ORIGINAL50036HK HENG LI SHENG ELECTRONICS LIMITED
Tue Sep 19 02:31:00 UTC 2006Si4500BDY (from standard server 2)VISHAY2005+ORIGINAL50036HK HENG LI SHENG ELECTRONICS LIMITED
Tue Sep 19 02:31:00 UTC 2006Si4500BDY (from parts server 2)VISHAY2005+ORIGINAL50036HK HENG LI SHENG ELECTRONICS LIMITED
Tue Sep 19 02:31:00 UTC 2006Si4500BDY (from hkin.com 2)VISHAY2005+ORIGINAL50036HK HENG LI SHENG ELECTRONICS LIMITED
Tue Sep 19 02:31:00 UTC 2006Si4500BDY (from hkin.com 2)VISHAY2005+ORIGINAL50036HK HENG LI SHENG ELECTRONICS LIMITED
Tue Sep 19 02:33:00 UTC 2006Si4500BDY (from hkin.com)VISHAY2005+ORIGINAL50165HK HENG LI SHENG ELECTRONICS LIMITED
Tue Sep 19 02:33:00 UTC 2006Si4500BDY (from standard server 2)VISHAY2005+ORIGINAL50165HK HENG LI SHENG ELECTRONICS LIMITED
Tue Sep 19 02:33:00 UTC 2006Si4500BDY (from parts server 2)VISHAY2005+ORIGINAL50165HK HENG LI SHENG ELECTRONICS LIMITED
Tue Sep 19 02:33:00 UTC 2006Si4500BDY (from hkin.com 2)VISHAY2005+ORIGINAL50165HK HENG LI SHENG ELECTRONICS LIMITED
Tue Sep 19 02:33:00 UTC 2006Si4500BDY (from hkin.com 2)VISHAY2005+ORIGINAL50165HK HENG LI SHENG ELECTRONICS LIMITED
Tue Sep 19 02:37:00 UTC 2006Si4500BDY (from hkin.com)VISHAY2005+ORIGINAL50485HK HENG LI SHENG ELECTRONICS LIMITED
Tue Sep 19 02:37:00 UTC 2006Si4500BDY (from standard server 2)VISHAY2005+ORIGINAL50485HK HENG LI SHENG ELECTRONICS LIMITED
Tue Sep 19 02:37:00 UTC 2006Si4500BDY (from parts server 2)VISHAY2005+ORIGINAL50485HK HENG LI SHENG ELECTRONICS LIMITED
Tue Sep 19 02:37:00 UTC 2006Si4500BDY (from hkin.com 2)VISHAY2005+ORIGINAL50485HK HENG LI SHENG ELECTRONICS LIMITED
Tue Sep 19 02:37:00 UTC 2006Si4500BDY (from hkin.com 2)VISHAY2005+ORIGINAL50485HK HENG LI SHENG ELECTRONICS LIMITED
Tue Sep 19 02:38:00 UTC 2006Si4500BDY (from hkin.com)VISHAY2005+ORIGINAL50543HK HENG LI SHENG ELECTRONICS LIMITED
Tue Sep 19 02:38:00 UTC 2006Si4500BDY (from standard server 2)VISHAY2005+ORIGINAL50543HK HENG LI SHENG ELECTRONICS LIMITED
Tue Sep 19 02:38:00 UTC 2006Si4500BDY (from parts server 2)VISHAY2005+ORIGINAL50543HK HENG LI SHENG ELECTRONICS LIMITED
Tue Sep 19 02:38:00 UTC 2006Si4500BDY (from hkin.com 2)VISHAY2005+ORIGINAL50543HK HENG LI SHENG ELECTRONICS LIMITED
Tue Sep 19 02:38:00 UTC 2006Si4500BDY (from hkin.com 2)VISHAY2005+ORIGINAL50543HK HENG LI SHENG ELECTRONICS LIMITED
Tue Sep 19 02:38:00 UTC 2006Si4500BDY (from hkin.com)VISHAY2005+ORIGINAL50638HK HENG LI SHENG ELECTRONICS LIMITED
Tue Sep 19 02:38:00 UTC 2006Si4500BDY (from standard server 2)VISHAY2005+ORIGINAL50638HK HENG LI SHENG ELECTRONICS LIMITED
Tue Sep 19 02:38:00 UTC 2006Si4500BDY (from parts server 2)VISHAY2005+ORIGINAL50638HK HENG LI SHENG ELECTRONICS LIMITED
Tue Sep 19 02:38:00 UTC 2006Si4500BDY (from hkin.com 2)VISHAY2005+ORIGINAL50638HK HENG LI SHENG ELECTRONICS LIMITED
Tue Sep 19 02:38:00 UTC 2006Si4500BDY (from hkin.com 2)VISHAY2005+ORIGINAL50638HK HENG LI SHENG ELECTRONICS LIMITED
Mon Sep 18 03:18:00 UTC 2006SI4500BDY-T1-E3 (from hkin.com)VISHAY06+new and original10000ABD Technology Company
Mon Sep 18 03:18:00 UTC 2006SI4500BDY-T1-E3 (from standard server 2)VISHAY06+new and original10000ABD Technology Company
Mon Sep 18 03:18:00 UTC 2006SI4500BDY-T1-E3 (from parts server 2)VISHAY06+new and original10000ABD Technology Company
Mon Sep 18 03:18:00 UTC 2006SI4500BDY-T1-E3 (from hkin.com 2)VISHAY06+new and original10000ABD Technology Company
Mon Sep 18 03:18:00 UTC 2006SI4500BDY-T1-E3 (from hkin.com 2)VISHAY06+new and original10000ABD Technology Company

Last record SI4467DY:

Post DatePart NumberBrandD/CDescQtyCompany
Mon Sep 25 16:17:00 UTC 2006SI4467DY (from hkin.com)VISHAY04+SO-8100000HUESPORT ELECTRONICS (H.K.) CO.,LIMITED
Wed Sep 27 05:14:00 UTC 2006SI4467DYT1 (from hkin.com)VISHAY05+SO-824000HONGKONG DIODES ELECTRONICCO,.LIMITED
Fri Sep 29 01:18:00 UTC 2006SI4467DY-T1 (from hkin.com)VISHAY05+SOP-895000GATHER TOREMIT THE ELECTRONICS (TECHNOLOGY) CO.,LTD
Thu Sep 28 03:15:00 UTC 2006SI4467DY-T1 (from hkin.com)VISHAY04+SOP-8299700HK POTENTIAL ELECTRONICS CO., LIMITED

Last record SI4435DY-T1:

Post DatePart NumberBrandD/CDescQtyCompany
Sat Sep 30 04:03:00 UTC 2006SI4435DY-T1 (from hkin.com)VISHAY05+SOP-875000HONGKONG COVASON TECHNOLOGY LIMITED
Fri Sep 29 01:17:00 UTC 2006SI4435DY-T1 (from hkin.com)SIL05+300000GATHER TOREMIT THE ELECTRONICS (TECHNOLOGY) CO.,LTD
Fri Sep 29 01:17:00 UTC 2006SI4435DY-T1 (from hkin.com)VISHAY05+300000GATHER TOREMIT THE ELECTRONICS (TECHNOLOGY) CO.,LTD
Mon Sep 18 08:56:00 UTC 2006SI4435DY-T1 (from hkin.com)SI05+SOP-82500KAM MING TIK (HK) ELECTRON CO.
Thu Sep 21 03:04:00 UTC 2006SI4435DY-T1/VISHAY (from hkin.com)2500On Loyal International Ltd.
Fri Sep 29 01:00:00 UTC 2006SI4435DY-T1-REVA (from hkin.com)SI00+SOP-82357JIN WEI GUANG ELECTRONIC (HK) CO., LIMITED
Sat Sep 30 02:04:00 UTC 2006SI4435DY-T1-REVA (from hkin.com)SILICONIX05+6390JUNXING ELECTRONIC (H.K) LIMITED

Last record SI4434:

Post DatePart NumberBrandD/CDescQtyCompany
Sat Sep 30 02:23:00 UTC 2006SI4434 (from hkin.com)SISOP-8500Shenzhen kehaiwei electronics co.,LTD
Tue Sep 19 02:37:00 UTC 2006Si4434DY (from hkin.com)VISHAY2005+ORIGINAL50429HK HENG LI SHENG ELECTRONICS LIMITED
Tue Sep 19 02:37:00 UTC 2006Si4434DY (from hkin.com)VISHAY2005+ORIGINAL50457HK HENG LI SHENG ELECTRONICS LIMITED
Tue Sep 19 02:37:00 UTC 2006Si4434DY (from hkin.com)VISHAY2005+ORIGINAL50469HK HENG LI SHENG ELECTRONICS LIMITED

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Si4500BDY,Si4500BDY,Comments from user about Si4500BDY: 2 added better handling of real and complex data types.[specify] Minor changes in the standard (2000 and 2002) added the idea of protected types (similar to the concept of class in C++) and removed some restrictions from port mapping rules. A conventional solid-state diode will not allow significant current if it is reverse-biased below its reverse breakdown voltage. Some common power devices are the power diode, thyristor, power MOSFET and IGBT. Single-chip processors increase reliability as there were many fewer electrical connections to fail. Common-emitter amplifiers are also used in radio frequency circuits, for example to amplify faint signals received by an antenna. While this required extra logic to handle, for example, carry and overflow within each slice, the result was a system that could handle, say, 32-bit words using integrated circuits with a capacity for only 4 bits each. The ISA is roughly the same as the programming model of a processor as seen by an assembly language programmer or compiler writer. Anything related to :Si4500BDY, or electronic components and electronic component distributors such as:fairchild,avx capacitor,6502, or electronics part index in: Si4500BDY, search hkinventory: Si4500BDY, 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. A single operation code might affect many individual data paths, registers, and other elements of the processor. Compared to the MOSFET, the operating frequency of the IGBT is relatively low (few devices are rated over 50 kHz), mainly because of a so-called 'current-tail' problem during turn-off. One particular pitfall is the accidental production of transparent latches rather than D-type flip-flops as storage elements The initial version of VHDL, designed to IEEE standard 1076-1987, included a wide range of data types, including numerical (integer and real), logical (bit and boolean), character and time, plus arrays of bit called bit_vector and of character called string. Datasheet Dir, DataSheet Archive
For notch filters, the degree to which unwanted signals at the notch frequency must be rejected determines the accuracy of the components, but not the Q, which is governed by desired steepness of the notch, i. Execution units are also essential to microarchitecture. General-purpose microprocessors in personal computers are used for computation, text editing, multimedia display, and communication over the Internet. These include large and small household appliances, cars (and their accessory equipment units), car keys, tools and test instruments, toys, light switches/dimmers and electrical circuit breakers, smoke alarms, battery packs, and hi-fi audio/visual components (from DVD players to phonograph turntables.) Such products as cellular telephones, DVD video system and ATSC HDTV broadcast system fundamentally require consumer devices with powerful, low-cost, microprocessors. An LED is often small in area (less than 1 mm2), and integrated optical components may be used to shape its radiation pattern.1 (known as VHDL-AMS) provided analog and mixed-signal circuit design extensions.Integrated circuits were made possible by experimental discoveries showing that semiconductor devices could perform the functions of vacuum tubes and by mid-20th-century technology advancements in semiconductor device fabrication. 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.
any passive component and active component such as:Diode,The second region, at reverse biases more positive than the PIV, has only a very small reverse saturation current. 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. The integration of a whole CPU onto a single chip or on a few chips greatly reduced the cost of processing power. A conventional solid-state diode will not allow significant current if it is reverse-biased below its reverse breakdown voltage. For example driver circuit
Si4500BDY,Si4500BDY,Comments from user about Si4500BDY: Current conduction in a semiconductor occurs via mobile or "free" electrons and holes, collectively known as charge carriers. Microprocessor control of a system can provide control strategies that would be impractical to implement using electromechanical controls or purpose-built electronic controls. The distance that signals had to travel between ICs on the boards limited the speed at which a computer could operate. Furthermore, much less material is used to construct a packaged IC die than to construct a discrete circuit. Transistorized mechatronic circuits have replaced electromechanical devices in controlling appliances and machinery. Other embedded uses of 4-bit and 8-bit microprocessors, such as terminals, printers, various kinds of automation etc. They are commonly used in speaker crossover design (due to the moderately large voltages and currents, and the lack of easy access to power), filters in power distribution networks (due to the large voltages and currents), power supply bypassing (due to low cost, and in some cases, power requirements), as well as a variety of discrete and home brew circuits (for low-cost and simplicity). Microprocessor control of a system can provide control strategies that would be impractical to implement using electromechanical controls or purpose-built electronic controls. Anything related to :Si4500BDY, or electronic components and electronic component distributors such as:fairchild,avx capacitor,6502, or electronics part index in: Si4500BDYSee also: