Part: FQPF5N60

Index Files

Offer Index 43

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

 
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Product Summary
FQPF5N60
This is an offer provided by HKin.com member.
In stock! Order now!
Category: Electronic Components.
Product #: FQPF5N60.


Available from: Shenzhen Jindapeng Technology Co.,Ltd
Condition: in excellent condition
In stock! Order now!

Part Numbers

Previous Parts:AD8052AR, ADG431BR, ARD2440, AT17C512A, BTS5045, BTS5180-2E, C8051F330-GP, C8051F410-GQR, C8051F530A-ITR, CH7017A-TF, CS0396, D87C52, DPS326718, EP20K200CQ240C7, EPM3032ATC44-7/I44-10, FMMT589TA

(+HKin.com) :) The followings are offers provided by our member in Electronic Components Offer site about the following parts: FQPF5N60":

Post DatePart NumberBrandD/CDescQtyCompany
Wed Jun 6 06:24:00 UTC 2012FQPF5N60 (from standard server 2)5146Shenzhen Jindapeng Technology Co.,Ltd
Wed Jun 6 06:24:00 UTC 2012FQPF5N60 (from parts server 2)5146Shenzhen Jindapeng Technology Co.,Ltd
Wed Jun 6 06:24:00 UTC 2012FQPF5N60 (from hkin.com 2)5146Shenzhen Jindapeng Technology Co.,Ltd
Wed Jun 6 06:24:00 UTC 2012FQPF5N60 (from hkin.com 2)5146Shenzhen Jindapeng Technology Co.,Ltd

Last record FMMT589TA:

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Last record EPM3032ATC44-7/I44-10:

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Last record EP20K200CQ240C7:

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vid:offerengine20120609 Part Number Prefix

FQPF5N60,FQPF5N60,Comments from user about FQPF5N60: As of 2007, two 64-bit RISC architectures are still produced in volume for non-embedded applications: SPARC and Power ISA.Most analog electronic appliances, such as radio receivers, are constructed from combinations of a few types of basic circuits. Competing projects would result in the IBM POWER and Sun SPARC architectures. Being created for one element base, a computing device project can be ported on another element base, for example VLSI with various technologies. The transistor's low cost, flexibility, and reliability have made it a ubiquitous device. Increasingly these products have become based on digital technologies, and have largely merged with the computer industry in what is increasingly referred to as the consumerization of information technology. 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). It is generally considered a "best practice" to write very idiomatic code for synthesis as results can be incorrect or suboptimal for non-standard constructs. Anything related to :FQPF5N60, or electronic components and electronic component distributors such as:fairchild,avx capacitor, or electronics part index in: FQPF5N60, search hkinventory: FQPF5N60, The junctions which form where n-type and p-type semiconductors join together are called p-n junctions. This may be done to limit the bandwidth to a narrow band centered around the intended operating frequency. The internal arrangement of a microprocessor varies depending on the age of the design and the intended purposes of the processor. The size, latency, throughput and connectivity of memories within the system are also microarchitectural decisions. Datasheet Dir, DataSheet Archive
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 integrated circuit processor was produced in large numbers by highly automated processes, so unit cost was low. The MOSFET is particularly suited to this configuration because its positive thermal coefficient of resistance tends to balance current between individual devices. The thyristor turn-off is passive, i. 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.[3] Each microarchitectural element is in turn represented by a schematic describing the interconnections of logic gates used to implement it. The complexity of an integrated circuit is bounded by physical limitations of the number of transistors that can be put onto one chip, the number of package terminations that can connect the processor to other parts of the system, the number of interconnections it is possible to make on the chip, and the heat that the chip can dissipate. When a light-emitting diode is forward biased (switched on), electrons are able to recombine with electron holes within the device, releasing energy in the form of photons.
any passive component and active component such as:Diode, 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. 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. An ideal capacitor is characterized by a single constant value, capacitance, measured in farads. 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. For example driver circuit
FQPF5N60,FQPF5N60,Comments from user about FQPF5N60: A second-order all-pole filter gives an ultimate slope of about 12 dB per octave (40dB/decade), but the slope close to the corner frequency is much less, sometimes necessitating a notch be added to the filter. Furthermore, much less material is used to construct a packaged IC die than to construct a discrete circuit. 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. Circuit designers will sometimes refer to this class of components as dissipative, or thermodynamically passive. Modern designs have rather complex statistical prediction systems, which watch the results of past branches to predict the future with greater accuracy. The move to 64 bits is more than just an increase in register size from the IA-32 as it also doubles the number of general-purpose registers. This indicates the variety of filter (see above) and the center or corner frequencies. 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 :FQPF5N60, or electronic components and electronic component distributors such as:fairchild,avx capacitor, or electronics part index in: FQPF5N60See also: