Part: 79L08

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Previous Parts:74LS38N,74LVC02ADB,74LVC161284DLR,74LVC1G79,74LVCH16245AEV118,74LVX74MTCX,74OL6011,74VHC139M,74VHC86MTCX,74VHCT04AMTCX,75L6P43,75N03,75T2091IH,766163104G,76619D3,77005PC

The followings are offers provided by our member in Electronic Components Offer site about the following parts: 79L08":

Post DatePart NumberBrandD/CDescQtyCompany
Sat Sep 30 02:01:00 UTC 200679L08 (from hkin.com)ST2005TO-929000HONGKONG FEILONG INDUSTRY INTERNATIONAL LIMITED
Sat Sep 30 02:01:00 UTC 200679L08 (from standard server 2)ST2005TO-929000HONGKONG FEILONG INDUSTRY INTERNATIONAL LIMITED
Sat Sep 30 02:01:00 UTC 200679L08 (from parts server 2)ST2005TO-929000HONGKONG FEILONG INDUSTRY INTERNATIONAL LIMITED
Sat Sep 30 02:01:00 UTC 200679L08 (from hkin.com 2)ST2005TO-929000HONGKONG FEILONG INDUSTRY INTERNATIONAL LIMITED
Sat Sep 30 02:01:00 UTC 200679L08 (from hkin.com 2)ST2005TO-929000HONGKONG FEILONG INDUSTRY INTERNATIONAL LIMITED
Fri Sep 1 06:27:00 UTC 200679L08 (from hkin.com)WST0-92450000YASTAR ELECTRONICS (HK) LIMITED
Fri Sep 1 06:27:00 UTC 200679L08 (from standard server 2)WST0-92450000YASTAR ELECTRONICS (HK) LIMITED
Fri Sep 1 06:27:00 UTC 200679L08 (from parts server 2)WST0-92450000YASTAR ELECTRONICS (HK) LIMITED
Fri Sep 1 06:27:00 UTC 200679L08 (from hkin.com 2)WST0-92450000YASTAR ELECTRONICS (HK) LIMITED
Fri Sep 1 06:27:00 UTC 200679L08 (from hkin.com 2)WST0-92450000YASTAR ELECTRONICS (HK) LIMITED
Tue Sep 5 01:30:00 UTC 200679L08 (from hkin.com)SOT-89-3L05+3000000Creator International (HK) Ltd.,
Tue Sep 5 01:30:00 UTC 200679L08 (from standard server 2)SOT-89-3L05+3000000Creator International (HK) Ltd.,
Tue Sep 5 01:30:00 UTC 200679L08 (from parts server 2)SOT-89-3L05+3000000Creator International (HK) Ltd.,
Tue Sep 5 01:30:00 UTC 200679L08 (from hkin.com 2)SOT-89-3L05+3000000Creator International (HK) Ltd.,
Tue Sep 5 01:30:00 UTC 200679L08 (from hkin.com 2)SOT-89-3L05+3000000Creator International (HK) Ltd.,
Mon Sep 11 02:05:00 UTC 200679L08 (from hkin.com)KEC/长电05+SOT-895000SANTER (HK) ELECTRONICS CO.,LIMITED
Mon Sep 11 02:05:00 UTC 200679L08 (from standard server 2)KEC/长电05+SOT-895000SANTER (HK) ELECTRONICS CO.,LIMITED
Mon Sep 11 02:05:00 UTC 200679L08 (from parts server 2)KEC/长电05+SOT-895000SANTER (HK) ELECTRONICS CO.,LIMITED
Mon Sep 11 02:05:00 UTC 200679L08 (from hkin.com 2)KEC/长电05+SOT-895000SANTER (HK) ELECTRONICS CO.,LIMITED
Mon Sep 11 02:05:00 UTC 200679L08 (from hkin.com 2)KEC/长电05+SOT-895000SANTER (HK) ELECTRONICS CO.,LIMITED
Wed Sep 20 05:58:00 UTC 200679L08 (from hkin.com)KEC04+SOT-89(真空)100000FOREVER TECHNOLOGIES ELECTRONIC COMPANY LIMITED
Wed Sep 20 05:58:00 UTC 200679L08 (from standard server 2)KEC04+SOT-89(真空)100000FOREVER TECHNOLOGIES ELECTRONIC COMPANY LIMITED
Wed Sep 20 05:58:00 UTC 200679L08 (from parts server 2)KEC04+SOT-89(真空)100000FOREVER TECHNOLOGIES ELECTRONIC COMPANY LIMITED
Wed Sep 20 05:58:00 UTC 200679L08 (from hkin.com 2)KEC04+SOT-89(真空)100000FOREVER TECHNOLOGIES ELECTRONIC COMPANY LIMITED
Wed Sep 20 05:58:00 UTC 200679L08 (from hkin.com 2)KEC04+SOT-89(真空)100000FOREVER TECHNOLOGIES ELECTRONIC COMPANY LIMITED
Mon Sep 25 01:31:00 UTC 200679L08AC (from hkin.com)HTCSOT895000SHENZHEN TDTONG ELECTRONICS CO., LTD
Mon Sep 25 01:31:00 UTC 200679L08AC (from standard server 2)HTCSOT895000SHENZHEN TDTONG ELECTRONICS CO., LTD
Mon Sep 25 01:31:00 UTC 200679L08AC (from parts server 2)HTCSOT895000SHENZHEN TDTONG ELECTRONICS CO., LTD
Mon Sep 25 01:31:00 UTC 200679L08AC (from hkin.com 2)HTCSOT895000SHENZHEN TDTONG ELECTRONICS CO., LTD
Mon Sep 25 01:31:00 UTC 200679L08AC (from hkin.com 2)HTCSOT895000SHENZHEN TDTONG ELECTRONICS CO., LTD

Last record 77005PC:

Post DatePart NumberBrandD/CDescQtyCompany
Tue Sep 19 17:38:00 UTC 200677005PC (from hkin.com)FAIR99+SOP88608SUNTON INT'L ELECTRONICS (UK) CO., LTD

Last record 76619D3:

Post DatePart NumberBrandD/CDescQtyCompany
Sat Sep 30 01:36:00 UTC 200676619D3 (from hkin.com)FAIRCHILD03+SOT-2525000ShenZhen JinCheng Micropart Co., Ltd.

Last record 766163104G:

Post DatePart NumberBrandD/CDescQtyCompany
Thu Sep 21 07:05:00 UTC 2006766163104G (from hkin.com)CTS98+SOP16500NewStar Electronics Co.,

If you want to find more about 79L08, please visit us on HKin


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79L08,79L08,Comments from user about 79L08: It was made of Germanium and had a voltage capability of 200 volts and a current rating of 35 amperes. This collection of simulation models is commonly called a testbench. These units perform the operations or calculations of the processor. The design of pipelines is one of the central microarchitectural tasks. High-pass filters ?attenuation of frequencies below their cut-off points. A digital signal processor (DSP) is specialized for signal processing. There is an ever increasing need to keep product information updated and comparable, for the consumer to make an informed choice. VHDL has constructs to handle the parallelism inherent in hardware designs, but these constructs (processes) differ in syntax from the parallel constructs in Ada (tasks). Anything related to :79L08, or electronic components and electronic component distributors such as:fairchild,avx capacitor,6502, or electronics part index in: 79L08, search hkinventory: 79L08, Advancing technology makes more complex and powerful chips feasible to manufacture. The range of desired frequencies (the passband) together with the shape of the frequency response. Cost is low because the chips, with all their components, are printed as a unit by photolithography rather than being constructed one transistor at a time. Different features can be implemented in different models of a product line at negligible production cost. Datasheet Dir, DataSheet Archive
The amount of the voltage drop depends on the semiconductor material and the doping concentrations. Flip-flops and latches are a fundamental building block of digital electronics systems used in computers, communications, and many other types of systems. Single-chip processors increase reliability as there were many fewer electrical connections to fail. This can yield better performance when the guess is good, with the risk of a huge penalty when the guess is bad because instructions need to be undone. During the 1960s, computer processors were constructed out of small and medium-scale ICs each containing from tens to a few hundred transistors. This equation is linear with respect to temperature. Performance is high because the components switch quickly and consume little power (compared to their discrete counterparts) as a result of the small size and close proximity of the components. The size of data objects became larger; allowing more transistors on a chip allowed word sizes to increase from 4- and 8-bit words up to today's 64-bit words.
any passive component and active component such as:Diode, The first bipolar transistors devices with substantial power handling capabilities were introduced in the 1960s. Introduced as a practical electronic component in 1962, early LEDs emitted low-intensity red light, but modern versions are available across the visible, ultraviolet and infrared wavelengths, with very high brightness. This creates a much larger current between the collector and emitter, controlled by the base-emitter current.Most analog electronic appliances, such as radio receivers, are constructed from combinations of a few types of basic circuits. For example driver circuit
79L08,79L08,Comments from user about 79L08: Capacitors are widely used in electronic circuits for blocking direct current while allowing alternating current to pass, in filter networks, for smoothing the output of power supplies, in the resonant circuits that tune radios to particular frequencies and for many other purposes. The IGBT is a recent component, so its performance improves regularly as technology evolves. This can yield better performance when the guess is good, with the risk of a huge penalty when the guess is bad because instructions need to be undone. 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). The pipelined architecture allows multiple instructions to overlap in execution, much like an assembly line. Structural changes are often made in power devices to accommodate the higher current density, higher power dissipation and/or higher reverse breakdown voltage. For instance, a resonant series LC circuit will have unbounded voltage output for a bounded voltage input, but will be stable in the sense of Lyapunov, and given bounded energy input will have bounded energy output. Typically this will be a vacuum tube, or solid-state (transistor or operational amplifier). Anything related to :79L08, or electronic components and electronic component distributors such as:fairchild,avx capacitor,6502, or electronics part index in: 79L08See also: