Part: LE57D121BTC

Index Files

Offer Index 2

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

 
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Product Summary
LEGERITY LE57D121BTC
This is an offer provided by HKin.com member.
In stock! Order now!
Category: Electronic Components.
Product #: LE57D121BTC.


Available from: United Sources Industrial Enterprises
Condition: in excellent condition
In stock! Order now!

Part Numbers

Previous Parts:RC0100FR-074K7L, MOC3083, VI-243-IV, BAR43S, D1047, SS2P6, LD1117AL-ADJ-A, NCP302LSN09T1, STK4182 II, STK4231 II, S21ME5FYJ00F, IDT49FCT806ASO, TC59LM814BFT-24, FDP65N06, HIN202EIBNZ, HJ772

(+HKin.com) :) The followings are offers provided by our member in Electronic Components Offer site about the following parts: LE57D121BTC":

Post DatePart NumberBrandD/CDescQtyCompany
Thu May 24 02:04:00 UTC 2012LE57D121BTC (from standard server 2)LEGERITY双路SLIC(带反极功能)LE57D121BTC20118United Sources Industrial Enterprises
Thu May 24 02:04:00 UTC 2012LE57D121BTC (from parts server 2)LEGERITY双路SLIC(带反极功能)LE57D121BTC20118United Sources Industrial Enterprises
Thu May 24 02:04:00 UTC 2012LE57D121BTC (from hkin.com 2)LEGERITY双路SLIC(带反极功能)LE57D121BTC20118United Sources Industrial Enterprises
Thu May 24 02:04:00 UTC 2012LE57D121BTC (from hkin.com 2)LEGERITY双路SLIC(带反极功能)LE57D121BTC20118United Sources Industrial Enterprises

Last record HJ772:

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Last record HIN202EIBNZ:

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Last record FDP65N06:

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vid:offerengine20120525 Part Number Prefix

LE57D121BTC,LE57D121BTC,Comments from user about LE57D121BTC: General-purpose microprocessors in personal computers are used for computation, text editing, multimedia display, and communication over the Internet. The net result is that the turn-off switching loss of an IGBT is considerably higher than its turn-on loss. 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. In principle, a single microarchitecture could execute several different ISAs with only minor changes to the microcode. Sometimes it may be difficult to differentiate between analog and digital circuits as they have elements of both linear and non-linear operation.0 also informally known as VHDL 2008, which addressed more than 90 issues discovered during the trial period for version 3.6 defines a subset of the language that is considered the official synthesis subset. 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. Anything related to :LE57D121BTC, or electronic components and electronic component distributors such as:fairchild,avx capacitor, or electronics part index in: LE57D121BTC, search hkinventory: LE57D121BTC, Some other standards support wider use of VHDL, notably VITAL (VHDL Initiative Towards ASIC Libraries) and microwave circuit design extensions. One barrier to achieving higher performance through instruction-level parallelism stems from pipeline stalls and flushes due to branches. 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.0 also informally known as VHDL 2008, which addressed more than 90 issues discovered during the trial period for version 3. Datasheet Dir, DataSheet Archive
This collection of simulation models is commonly called a testbench. The large number of discrete logic gates used more electrical powerXand therefore, produced more heatXthan a more integrated design with fewer ICs. In reality one side or the other of the branch will be called much more often than the other. This equation is linear with respect to temperature. An electric field can increase the number of free electrons and holes in a semiconductor, thereby changing its conductivity. Several specialized processing devices have followed from the technology. The integration of a whole CPU onto a single chip or on a few chips greatly reduced the cost of processing power. 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.
any passive component and active component such as:Diode, In the mid-1980s to early-1990s, a crop of new high-performance Reduced Instruction Set Computer (RISC) microprocessors appeared, influenced by discrete RISC-like CPU designs such as the IBM 801 and others. This technique is used in most modern microprocessors, microcontrollers, and DSPs. The gate electrode is charged to produce an electric field that controls the conductivity of a "channel" between two terminals, called the source and drain. The capacitance is greatest when there is a narrow separation between large areas of conductor, hence capacitor conductors are often called "plates," referring to an early means of construction. For example driver circuit
LE57D121BTC,LE57D121BTC,Comments from user about LE57D121BTC: A conventional solid-state diode will not allow significant current if it is reverse-biased below its reverse breakdown voltage. This equation is linear with respect to temperature. Different features can be implemented in different models of a product line at negligible production cost. Execution units are also essential to microarchitecture. One overriding characteristic of consumer electronic products is the trend of ever-falling prices. Doping a semiconductor such as silicon with a small amount of impurity atoms, such as phosphorus or boron, greatly increases the number of free electrons or holes within the semiconductor. Flip-flops and latches are a fundamental building block of digital electronics systems used in computers, communications, and many other types of systems. Continued increases in microprocessor capacity have rendered other forms of computers almost completely obsolete (see history of computing hardware), with one or more microprocessors used in everything from the smallest embedded systems and handheld devices to the largest mainframes and supercomputers. Anything related to :LE57D121BTC, or electronic components and electronic component distributors such as:fairchild,avx capacitor, or electronics part index in: LE57D121BTCSee also: