Part: C3216X5R1H161K

Index Files

Offer Index 30

SONY,
BB/TI,
EPCOS,
TYCO,
SILICON,
AMD,
NIPPON CHEMI-CON,
BOURNS,
LITTELFUSE,
FUJI,
SEIKO,
IXYS,
IDT,
TRACO,
COOPER,
ERICSSOM,
MOLEX,
SST,
CREE,
QFP,
ISSI,
REALTEK,
BCD,
CIRRUS,
MICRON(ST),
HYNIX,
SAMXON,
DARFON,
EPSON,
QFN,
WINBOND,
SPANSION,
ATI,
PAM,
SIPEX,
RAMTRON,
EUPEC,
TI ,
DIODES,
TI,
AD,
ATMEL,
ST,
NS,
MAX,
MURATA,
NXP,
XILINX,
ALTERA,
SAMSUNG,
FSC,
MICROCHIP,
INFINEON,
TOS,
CY,
PANASONIC,
VISHAY,
ON,
INTEL,
MOT,
AVX,
MICREL,
MIT,
SANYO,
IR,
LINEAR,
FREESCALE,
ALLEGRO,
SHARP,
PHI,
SEMIKRON,
TDK,
EVERLIGHT,
NVIDIA,
AVAGO,
NEC,
BROADCOM,
ROHM,
RENESAS,
COILCRAFT,
INTERSIL,
MICRON,
YAGEO,
MIC,
DALLAS,
QUALCOMM,
WURTH,
AUO,
FUJITSU,
HIT,
MPS,
ISD/NUVOTON,
KEMET,
HARVATEK,
POWER,
FTDI,
SUMIDA,
BB,
BB/TI,
EPCOS,
TYCO,
AMD,
NIPPON CHEMI-CON,
SILICON,
BOURNS,
LITTELFUSE,
SAMXON,
HYNIX,
SEIKO,
IXYS,
TRACO,
SONY,
COOPER,
ERICSSOM,
SST,
IDT,
MOLEX,
CREE,
QFP,
REALTEK,
FUJI,
MICRON(ST),
SPANSION,
NUVOTON,
DARFON,
CIRRUS,
QFN,
EPSON,
ATI,
PAM,
SIPEX,
RAMTRON,
TI ,
SW,
SIEMENS,
BOSCH,
ZETEX,
WINBOND,
EUPEC,
TI,
AD,
ATMEL,
ST,
NS,
MAX,
MURATA,
NXP,
XILINX,
ALTERA,
SAMSUNG,
FSC,
MICROCHIP,
INFINEON,
TOS,
CY,
PANASONIC,
ON,
VISHAY,
MOT,
INTEL,
AVX,
MICREL,
IR,
SANYO,
LINEAR,
MIT,
FREESCALE,
SEMIKRON,
ALLEGRO,
SHARP,
PHI,
AVAGO,
TDK,
EVERLIGHT,
NVIDIA,
NEC,
ROHM,
BROADCOM,
RENESAS,
COILCRAFT,
MICRON,
INTERSIL,
YAGEO,
MIC,
DALLAS,
QUALCOMM,
WURTH,
AUO,
FUJITSU,
HIT,
MPS,
ISD/NUVOTON,
KEMET,
HARVATEK,
FTDI,
POWER,
SUMIDA,
BB,
EPCOS,
BB/TI,
TYCO,
AMD,
NIPPON CHEMI-CON,
SILICON,
BOURNS,
LITTELFUSE,
SAMXON,
HYNIX,
SEIKO,
IXYS,
TRACO,
SONY,
COOPER,
ERICSSOM,
FUJI,
IDT,
LAMBDA,
MOLEX,
QFP,
SST,
CREE,
REALTEK,
MICRON(ST),
SPANSION,
NUVOTON,
DARFON,
QFN,
CIRRUS,
EPSON,
ATI,
PAM,
SIPEX,
RAMTRON,
TI ,
SW,
LATTICE,
SIEMENS,
BOSCH,
ZETEX,
TI,
AD,
ATMEL,
ST,
NS,
MAX,
MURATA,
NXP,
XILINX,
ALTERA,
SAMSUNG,
FSC,
MICROCHIP,
INFINEON,
TOS,
CY,
PANASONIC,
VISHAY,
ON,
MOT,
INTEL,
AVX,
MICREL,
IR,
SANYO,
LINEAR,
MIT,
FREESCALE,
SEMIKRON,
ALLEGRO,
SHARP,
PHI,
AVAGO,
TDK,
EVERLIGHT,
NVIDIA,
NEC,
ROHM,
BROADCOM,
RENESAS,
COILCRAFT,
MICRON,
INTERSIL,
YAGEO,
MIC,
DALLAS,
QUALCOMM,
WURTH,
AUO,
FUJITSU,
HIT,
MPS,
ISD/NUVOTON,
KEMET,
HARVATEK,
FTDI,
POWER,
SUMIDA,
BB,
EPCOS,
BB/TI,
TYCO,
AMD,
NIPPON CHEMI-CON,
SILICON,
BOURNS,
LITTELFUSE,
SAMXON,
HYNIX,
SEIKO,
IXYS,
TRACO,
SONY,
COOPER,
ERICSSOM,
IDT,
FUJI,
LAMBDA,
MOLEX,
QFP,
SST,
CREE,
REALTEK,
MICRON(ST),
SPANSION,
NUVOTON,
DARFON,
QFN,
CIRRUS,
EPSON,
ATI,
PAM,
SIPEX,
RAMTRON,
TI ,
DIODES,
SW,
LATTICE,
SIEMENS,
BOSCH,
TI,
AD,
ATMEL,
ST,
NS,
MAX,
MURATA,
NXP,
XILINX,
ALTERA,
SAMSUNG,
FSC,
MICROCHIP,
INFINEON,
TOS,
CY,
PANASONIC,
VISHAY,
ON,
MOT,
INTEL,
AVX,
MICREL,
IR,
SANYO,
LINEAR,
MIT,
FREESCALE,
SEMIKRON,
ALLEGRO,
SHARP,
PHI,
AVAGO,
TDK,
EVERLIGHT,
NVIDIA,
NEC,
ROHM,
BROADCOM,
RENESAS,
COILCRAFT,
MICRON,
INTERSIL,
YAGEO,
MIC,
DALLAS,
QUALCOMM,
WURTH,
AUO,
FUJITSU,
HIT,
MPS,
ISD/NUVOTON,
KEMET,
HARVATEK,
FTDI,
POWER,
SUMIDA,
BB,
EPCOS,
BB/TI,
TYCO,
AMD,
NIPPON CHEMI-CON,
SILICON,
BOURNS,
LITTELFUSE,
SAMXON,
HYNIX,
SEIKO,
IXYS,
TRACO,
SONY,
COOPER,
ERICSSOM,
IDT,
FUJI,
LAMBDA,
MOLEX,
QFP,
SST,
CREE,
REALTEK,
MICRON(ST),
SPANSION,
NUVOTON,
DARFON,
QFN,
CIRRUS,
EPSON,
ATI,
PAM,
SIPEX,
RAMTRON,
TI ,
DIODES,
SW,
LATTICE,
SIEMENS,
BOSCH,
TI,
AD,
ATMEL,
ST,
MAX,
MURATA,
NXP,
NS,
ALTERA,
XILINX,
FSC,
SAMSUNG,
INFINEON,
MICROCHIP,
TOS,
CY,
PANASONIC,
VISHAY,
ON,
MOT,
INTEL,
AVX,
MICREL,
SANYO,
IR,
MIT,
LINEAR,
FREESCALE,
SEMIKRON,
ALLEGRO,
SHARP,
PHI,
AVAGO,
TDK,
EVERLIGHT,
NVIDIA,
ROHM,
NEC,
BROADCOM,
RENESAS,
COILCRAFT,
INTERSIL,
MICRON,
YAGEO,
DALLAS,
MIC,
WURTH,
QUALCOMM,
AUO,
FUJITSU,
HIT,
MPS,
ISD/NUVOTON,
KEMET,
HARVATEK,
FTDI,
SUMIDA,
BB,
POWER,
BB/TI,
EPCOS,
TYCO,
AMD,
NIPPON CHEMI-CON,
SILICON,
BOURNS,
LITTELFUSE,
SAMXON,
HYNIX,
SEIKO,
IXYS,
TRACO,
COOPER,
SONY,
ERICSSOM,
IDT,
LAMBDA,
MOLEX,
QFP,
FUJI,
CREE,
SST,
REALTEK,
MICRON(ST),
NUVOTON,
DARFON,
QFN,
CIRRUS,
SPANSION,
EPSON,
ATI,
PAM,
SIPEX,
RAMTRON,
TI ,
SW,
LATTICE,
BOSCH,
SIEMENS,
ZETEX,
TI,
AD,
ST,
ATMEL,
MAX,
MURATA,
NXP,
NS,
ALTERA,
XILINX,
FSC,
SAMSUNG,
INFINEON,
MICROCHIP,
TOS,
CY,
PANASONIC,
VISHAY,
ON,
INTEL,
MOT,
AVX,
FREESCALE,
MICREL,
PHI,
SANYO,
IR,
MIT,
LINEAR,
SEMIKRON,
ALLEGRO,
SHARP,
AVAGO,
EVERLIGHT,
NVIDIA,
TDK,
NEC,
ROHM,
COILCRAFT,
RENESAS,
INTERSIL,
YAGEO,
DALLAS,
MIC,
BROADCOM,
QUALCOMM,
WURTH,
AUO,
MICRON,
FUJITSU,
HIT,
MPS,
ISD/NUVOTON,
HARVATEK,
KEMET,
FTDI,
SUMIDA,
BB,
POWER,
BB/TI,
EPCOS,
TYCO,
AMD,
NIPPON CHEMI-CON,
SILICON,
BOURNS,
LITTELFUSE,
HYNIX,
SONY,
SEIKO,
FUJI,
IXYS,
HKR,
TRACO,
COOPER,
IDT,
ERICSSOM,
MOLEX,
LAMBDA,
QFP,
CREE,
SST,
REALTEK,
MICRON(ST),
NUVOTON,
RALEC,
DARFON,
QFN,
CIRRUS,
SPANSION,
EPSON,
ATI,
PAM,
SIPEX,
RAMTRON,
LATTICE,
TI ,
SW,
SAMXON,
SIEMENS,
TI

 
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Product Summary
TDK C3216X5R1H161K
This is an offer provided by HKin.com member.
In stock! Order now!
Category: Electronic Components.
Product #: C3216X5R1H161K.


Available from: Yingxinyuan INT'L (Group) Limited
Condition: in excellent condition
In stock! Order now!

Part Numbers

Previous Parts:XC2V80-4FG256C, CS5536, KMVYL000LM-B503, LTC1701BES5, ISL6235CA-T, CC1020RUZR, RC500, S3P863AXZZ-AQBA, LM77CIMX-5, MAX8724ET, B7959, TE3320RPF, LT660, CY7C63743C-SXC, MC100LVEL01DT, 1PS300

(+HKin.com) :) The followings are offers provided by our member in Electronic Components Offer site about the following parts: C3216X5R1H161K":

Post DatePart NumberBrandD/CDescQtyCompany
Thu Jan 31 01:58:00 UTC 2013C3216X5R1H161K (from standard server 2)TDK2012+SMD400000Yingxinyuan INT'L (Group) Limited
Thu Jan 31 01:58:00 UTC 2013C3216X5R1H161K (from parts server 2)TDK2012+SMD400000Yingxinyuan INT'L (Group) Limited
Thu Jan 31 01:58:00 UTC 2013C3216X5R1H161K (from hkin.com 2)TDK2012+SMD400000Yingxinyuan INT'L (Group) Limited
Thu Jan 31 01:58:00 UTC 2013C3216X5R1H161K (from hkin.com 2)TDK2012+SMD400000Yingxinyuan INT'L (Group) Limited

Last record 1PS300:

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Last record MC100LVEL01DT:

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Last record CY7C63743C-SXC:

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vid:offerengine20130131 Part Number Prefix

C3216X5R1H161K,C3216X5R1H161K,Comments from user about C3216X5R1H161K: 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. A conventional solid-state diode will not allow significant current if it is reverse-biased below its reverse breakdown voltage. Each logic gate is in turn represented by a circuit diagram describing the connections of the transistors used to implement it in some particular logic family. 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. The trade-off between voltage, current and frequency ratings also exists for the switches. Another type of transistor, the field effect transistor operates on the principle that semiconductor conductivity can be increased or decreased by the presence of an electric field. The bipolar junction transistor, or BJT, was the most commonly used transistor in the 1960s and 70s. 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. Anything related to :C3216X5R1H161K, or electronic components and electronic component distributors such as:fairchild,avx capacitor, or electronics part index in: C3216X5R1H161K, search hkinventory: C3216X5R1H161K, 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. Most of them should not be used in linear operation. Some components, such as bus interface and second level cache, may be shared between cores. This technique is used in most modern microprocessors, microcontrollers, and DSPs. Datasheet Dir, DataSheet Archive
Some components, such as bus interface and second level cache, may be shared between cores. Structural changes are often made in power devices to accommodate the higher current density, higher power dissipation and/or higher reverse breakdown voltage. Each logic gate is in turn represented by a circuit diagram describing the connections of the transistors used to implement it in some particular logic family. The trade-off between voltage, current and frequency ratings also exists for the switches. 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. The net result is that the turn-off switching loss of an IGBT is considerably higher than its turn-on loss. These diagrams generally separate the datapath (where data is placed) and the control path (which can be said to steer the data). The semiconductor material used in devices is doped under highly controlled conditions in a fabrication facility, or fab, to precisely control the location and concentration of p- and n-type dopants.
any passive component and active component such as:1N4148, or 6502 A different approach to improving a computer's performance is to add extra processors, as in symmetric multiprocessing designs, which have been popular in servers and workstations since the early 1990s. A conventional solid-state diode will not allow significant current if it is reverse-biased below its reverse breakdown voltage. This includes decisions on the performance-level and connectivity of these peripherals. As it is a physical limit, no improvement is expected from silicon MOSFETs concerning their maximum voltage ratings. For example driver circuit
C3216X5R1H161K,C3216X5R1H161K,Comments from user about C3216X5R1H161K: Ternary (with three states) logic has been studied, and some prototype computers made. The choice of the number of execution units, their latency and throughput is a central microarchitectural design task. Most power semiconductor devices are only used in commutation mode (i.e they are either on or off), and are therefore optimized for this. Its basic function is to detect a fault condition and, by interrupting continuity, to immediately discontinue electrical flow. 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. Some components, such as bus interface and second level cache, may be shared between cores. IEEE 1076. Circuit designers will sometimes refer to this class of components as dissipative, or thermodynamically passive. Anything related to :C3216X5R1H161K, or electronic components and electronic component distributors such as:fairchild,avx capacitor, or electronics part index in: C3216X5R1H161KSee also: