Part: K 337

Index Files

Offer Index 7

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

 
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Product Summary
N/A K 337
This is an offer provided by HKin.com member.
In stock! Order now!
Category: Electronic Components.
Product #: K 337.


Available from: Tongyou (HK) Electronics Limited
Condition: in excellent condition
In stock! Order now!

Part Numbers

Previous Parts:RB706D-40, TLE42664, K4S281632F, ST662ACD-TR, LA78040N, TDA7498L, WG240128A-FTC-VZ, WG320240C0-PFHTZ, WH1601A-YGK-CTK, WH1602D-CGK-CT, WH1602D-NGG-CT, WH1602M-YYB-EP, WH1602P-YYK-CTK, WH1604A-TFH-CT, LA7801, LM4040CIX3-5.0

(+HKin.com) :) The followings are offers provided by our member in Electronic Components Offer site about the following parts: K 337":

Post DatePart NumberBrandD/CDescQtyCompany
Tue Mar 13 03:47:00 UTC 2012K 337 (from standard server 2)N/A10+2500Tongyou (HK) Electronics Limited
Tue Mar 13 03:47:00 UTC 2012K 337 (from parts server 2)N/A10+2500Tongyou (HK) Electronics Limited
Tue Mar 13 03:47:00 UTC 2012K 337 (from hkin.com 2)N/A10+2500Tongyou (HK) Electronics Limited
Tue Mar 13 03:47:00 UTC 2012K 337 (from hkin.com 2)N/A10+2500Tongyou (HK) Electronics Limited

Last record LM4040CIX3-5.0:

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Last record LA7801:

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Last record WH1604A-TFH-CT:

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vid:offerengine20120406 Part Number Prefix

K 337,K 337,Comments from user about K 337: It is an example of sequential digital logic, as it has internal memory. 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. 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. Branch prediction is where the hardware makes educated guesses on whether a particular branch will be taken. In addition to IEEE standard 1164, several child standards were introduced to extend functionality of the language. The Niagara 2 supports more threads and operates at 1. One barrier to achieving higher performance through instruction-level parallelism stems from pipeline stalls and flushes due to branches. During the 1960s, computer processors were constructed out of small and medium-scale ICs each containing from tens to a few hundred transistors. Anything related to :K 337, or electronic components and electronic component distributors such as:fairchild,avx capacitor, or electronics part index in: K 337, search hkinventory: K 337, Circuit designers will sometimes refer to this class of components as dissipative, or thermodynamically passive. A logic gate consists of up to about twenty transistors whereas an advanced microprocessor, as of 2011, can use as many as 3 billion transistors (MOSFETs). 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. Flip-flops and latches are a fundamental building block of digital electronics systems used in computers, communications, and many other types of systems. Datasheet Dir, DataSheet Archive
A microprocessor control program can be easily tailored to different needs of a product line, allowing upgrades in performance with minimal redesign of the product. The integration of large numbers of tiny transistors into a small chip was an enormous improvement over the manual assembly of circuits using electronic components. Passivity, in most cases, can be used to demonstrate that passive circuits will be stable under specific criteria. Current conduction in a semiconductor occurs via mobile or "free" electrons and holes, collectively known as charge carriers. Computers, cellular phones, and other digital appliances are now inextricable parts of the structure of modern societies, made possible by the low cost of production of integrated circuits. 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 is driven by gains in manufacturing efficiency and automation, lower labor costs as manufacturing has moved to lower-wage countries, and improvements in semiconductor design. New microarchitectures and/or circuitry solutions, along with advances in semiconductor manufacturing, are what allows newer generations of processors to achieve higher performance while using the same ISA.
any passive component and active component such as:Diode, However, some systems use the reverse definition ("0" is "High") or are current based. The compact size, the possibility of narrow bandwidth, switching speed, and extreme reliability of LEDs has allowed new text and video displays and sensors to be developed, while their high switching rates are also useful in advanced communications technology. Noyce also came up with his own idea of an integrated circuit half a year later than Kilby. 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. For example driver circuit
K 337,K 337,Comments from user about K 337: With this structure, one of the connections of the device is located on the bottom of the semiconductor die.[3] Some of these stages include instruction fetch, instruction decode, execute, and write back. As of 2007, two 64-bit RISC architectures are still produced in volume for non-embedded applications: SPARC and Power ISA. Techniques for heat dissipation can include heat sinks and fans for air cooling, and other forms of computer cooling such as water cooling. Sun Microsystems has released the Niagara and Niagara 2 chips, both of which feature an eight-core design. Most power semiconductor devices are only used in commutation mode (i.e they are either on or off), and are therefore optimized for this. With the ability to put large numbers of transistors on one chip, it becomes feaible to integrate memory on the same die as the processor. The number of different analog circuits so far devised is huge, especially because a 'circuit' can be defined as anything from a single component, to systems containing thousands of components. Anything related to :K 337, or electronic components and electronic component distributors such as:fairchild,avx capacitor, or electronics part index in: K 337See also: