Part: 1.5KE12C

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Previous Parts:1N5244,1N5253,1N5353A,293D476X0004B2T,2SB772-RC,2SB888,18N06L,0161R0TCM 1UF16V-A,02CZ.2-X,038A,04834595AB,0603 MC 0.1UF 25V Y5V 80-20%,070X21H,2322 156 21002,1.5KE10A,1.5KE12A

The followings are offers provided by our member in Electronic Components Offer site about the following parts: 1.5KE12C":

Post DatePart NumberBrandD/CDescQtyCompany
Sat Sep 9 04:16:00 UTC 20061.5KE12C (from hkin.com)EIC04+100000ShenZhen Linkrich Technology Co., Ltd.
Sat Sep 9 04:16:00 UTC 20061.5KE12C (from standard server 2)EIC04+100000ShenZhen Linkrich Technology Co., Ltd.
Sat Sep 9 04:16:00 UTC 20061.5KE12C (from parts server 2)EIC04+100000ShenZhen Linkrich Technology Co., Ltd.
Sat Sep 9 04:16:00 UTC 20061.5KE12C (from hkin.com 2)EIC04+100000ShenZhen Linkrich Technology Co., Ltd.
Sat Sep 9 04:16:00 UTC 20061.5KE12C (from hkin.com 2)EIC04+100000ShenZhen Linkrich Technology Co., Ltd.
Sat Sep 9 04:16:00 UTC 20061.5KE12CA (from hkin.com)EIC200011300ShenZhen Linkrich Technology Co., Ltd.
Sat Sep 9 04:16:00 UTC 20061.5KE12CA (from standard server 2)EIC200011300ShenZhen Linkrich Technology Co., Ltd.
Sat Sep 9 04:16:00 UTC 20061.5KE12CA (from parts server 2)EIC200011300ShenZhen Linkrich Technology Co., Ltd.
Sat Sep 9 04:16:00 UTC 20061.5KE12CA (from hkin.com 2)EIC200011300ShenZhen Linkrich Technology Co., Ltd.
Sat Sep 9 04:16:00 UTC 20061.5KE12CA (from hkin.com 2)EIC200011300ShenZhen Linkrich Technology Co., Ltd.
Sat Sep 9 04:16:00 UTC 20061.5KE12CA (from hkin.com)EIC04+100000ShenZhen Linkrich Technology Co., Ltd.
Sat Sep 9 04:16:00 UTC 20061.5KE12CA (from standard server 2)EIC04+100000ShenZhen Linkrich Technology Co., Ltd.
Sat Sep 9 04:16:00 UTC 20061.5KE12CA (from parts server 2)EIC04+100000ShenZhen Linkrich Technology Co., Ltd.
Sat Sep 9 04:16:00 UTC 20061.5KE12CA (from hkin.com 2)EIC04+100000ShenZhen Linkrich Technology Co., Ltd.
Sat Sep 9 04:16:00 UTC 20061.5KE12CA (from hkin.com 2)EIC04+100000ShenZhen Linkrich Technology Co., Ltd.
Sat Sep 9 04:16:00 UTC 20061.5KE12CAS (from hkin.com)EIC20015000ShenZhen Linkrich Technology Co., Ltd.
Sat Sep 9 04:16:00 UTC 20061.5KE12CAS (from standard server 2)EIC20015000ShenZhen Linkrich Technology Co., Ltd.
Sat Sep 9 04:16:00 UTC 20061.5KE12CAS (from parts server 2)EIC20015000ShenZhen Linkrich Technology Co., Ltd.
Sat Sep 9 04:16:00 UTC 20061.5KE12CAS (from hkin.com 2)EIC20015000ShenZhen Linkrich Technology Co., Ltd.
Sat Sep 9 04:16:00 UTC 20061.5KE12CAS (from hkin.com 2)EIC20015000ShenZhen Linkrich Technology Co., Ltd.
Sat Sep 9 04:16:00 UTC 20061.5KE12CAS (from hkin.com)EIC04+100000ShenZhen Linkrich Technology Co., Ltd.
Sat Sep 9 04:16:00 UTC 20061.5KE12CAS (from standard server 2)EIC04+100000ShenZhen Linkrich Technology Co., Ltd.
Sat Sep 9 04:16:00 UTC 20061.5KE12CAS (from parts server 2)EIC04+100000ShenZhen Linkrich Technology Co., Ltd.
Sat Sep 9 04:16:00 UTC 20061.5KE12CAS (from hkin.com 2)EIC04+100000ShenZhen Linkrich Technology Co., Ltd.
Sat Sep 9 04:16:00 UTC 20061.5KE12CAS (from hkin.com 2)EIC04+100000ShenZhen Linkrich Technology Co., Ltd.
Sat Sep 9 04:16:00 UTC 20061.5KE12CS (from hkin.com)EIC04+100000ShenZhen Linkrich Technology Co., Ltd.
Sat Sep 9 04:16:00 UTC 20061.5KE12CS (from standard server 2)EIC04+100000ShenZhen Linkrich Technology Co., Ltd.
Sat Sep 9 04:16:00 UTC 20061.5KE12CS (from parts server 2)EIC04+100000ShenZhen Linkrich Technology Co., Ltd.
Sat Sep 9 04:16:00 UTC 20061.5KE12CS (from hkin.com 2)EIC04+100000ShenZhen Linkrich Technology Co., Ltd.
Sat Sep 9 04:16:00 UTC 20061.5KE12CS (from hkin.com 2)EIC04+100000ShenZhen Linkrich Technology Co., Ltd.

Last record 1.5KE12A:

Post DatePart NumberBrandD/CDescQtyCompany
Mon Oct 2 03:05:00 UTC 20061.5KE12A (from hkin.com)2006bright-cn.com1000000Bright Electronics International Ltd
Sat Sep 9 04:16:00 UTC 20061.5KE12A (from hkin.com)EIC98+500ShenZhen Linkrich Technology Co., Ltd.
Sat Sep 9 04:16:00 UTC 20061.5KE12A (from hkin.com)EIC04+100000ShenZhen Linkrich Technology Co., Ltd.
Sat Sep 9 04:16:00 UTC 20061.5KE12AS (from hkin.com)EIC04+100000ShenZhen Linkrich Technology Co., Ltd.

Last record 1.5KE10A:

Post DatePart NumberBrandD/CDescQtyCompany
Mon Oct 2 03:05:00 UTC 20061.5KE10A (from hkin.com)2006bright-cn.com1000000Bright Electronics International Ltd
Sat Sep 9 04:16:00 UTC 20061.5KE10A (from hkin.com)EIC04+100000ShenZhen Linkrich Technology Co., Ltd.
Sat Sep 9 04:16:00 UTC 20061.5KE10AS (from hkin.com)EIC04+100000ShenZhen Linkrich Technology Co., Ltd.

Last record 2322 156 21002:

Post DatePart NumberBrandD/CDescQtyCompany
Wed Sep 13 05:34:00 UTC 20062322 156 21002 (from hkin.com)VISHAY2006VISHAY, BCC RESISTOR80000Anours Technology (H.K.) LIMITED

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1.5KE12C,1.5KE12C,Comments from user about 1.5KE12C: 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. In case of large forward bias (current in the direction of the arrow), the diode exhibits a voltage drop due to its junction built-in voltage and internal resistance. Flip-flops and latches are used as data storage elements.VHDL is frequently used for two different goals: simulation of electronic designs and synthesis of such designs. 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. While different synthesis tools have different capabilities, there exists a common synthesizable subset of VHDL that defines what language constructs and idioms map into common hardware for many synthesis tools. This may be done to limit the bandwidth to a narrow band centered around the intended operating frequency. For high-pass and low-pass (as well as band-pass filters far from the center frequency), the required rejection may determine the slope of attenuation needed, and thus the "order" of the filter. Anything related to :1.5KE12C, or electronic components and electronic component distributors such as:fairchild,avx capacitor,6502, or electronics part index in: 1.5KE12C, search hkinventory: 1.5KE12C, Semiconductor conductivity can be controlled by introduction of an electric or magnetic field, by exposure to light or heat, or by mechanical deformation of a doped monocrystalline grid; thus, semiconductors can make excellent sensors. Generally, processor speed has increased more rapidly than external memory speed, so cache memory is necessary if the processor is not to be delayed by slower external memory. The circuit can be made to change state by signals applied to one or more control inputs and will have one or two outputs. LEDs powerful enough for room lighting are relatively expensive and require more precise current and heat management than compact fluorescent lamp sources of comparable output. Datasheet Dir, DataSheet Archive
The thyristor appeared in 1957. While maintaining full compatibility with older versions, this proposed standard provides numerous extensions that make writing and managing VHDL code easier. Microprocessors integrated into one or a few large-scale ICs the architectures that had previously been implemented using many medium- and small-scale integrated circuits. Digital circuits are electric circuits based on a number of discrete voltage levels. Affordable 8-bit microprocessors with 16-bit addressing also led to the first general-purpose microcomputers from the mid-1970s on. The pipelined datapath is the most commonly used datapath design in microarchitecture today. An electric field can increase the number of free electrons and holes in a semiconductor, thereby changing its conductivity. The integrated circuit's mass production capability, reliability, and building-block approach to circuit design ensured the rapid adoption of standardized ICs in place of designs using discrete transistors.
any passive component and active component such as:Diode,[citation needed] The R3000 made the design truly practical, and the R4000 introduced the world's first commercially available 64-bit RISC microprocessor. Microprocessor control of a system can provide control strategies that would be impractical to implement using electromechanical controls or purpose-built electronic controls. The first commercial RISC microprocessor design was released either by MIPS Computer Systems, the 32-bit R2000 (the R1000 was not released) or by Acorn computers, the 32-bit ARM2 in 1987. When a doped semiconductor contains excess holes it is called "p-type", and when it contains excess free electrons it is known as "n-type", where p (positive for holes) or n (negative for electrons) is the sign of the charge of the majority mobile charge carriers. For example driver circuit
1.5KE12C,1.5KE12C,Comments from user about 1.5KE12C: Common emitters are also commonly used as low-noise amplifiers.[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. This is the ratio of the electric charge on each conductor to the potential difference between them. Sometimes it may be difficult to differentiate between analog and digital circuits as they have elements of both linear and non-linear operation. 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. Microprocessors make it possible to put a computer into thousands of items that were traditionally not computer-related. 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. As clock speeds increase the depth of the pipeline increases with it, and some modern processors may have 20 stages or more. Anything related to :1.5KE12C, or electronic components and electronic component distributors such as:fairchild,avx capacitor,6502, or electronics part index in: 1.5KE12CSee also: