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Circuitry

Circuitry,英語單詞,主要用作名詞,作名詞時(shí)譯為“電路;電路系統(tǒng);電路學(xué);一環(huán)路”。[1]
  • LT1017:Circuitry for Single Cell Operation

      Portable, battery-powered operation of electronic apparatushas become increasingly desirable. Medical, remotedata acquisition, power monitoring and other applicationsare good candidates for battery operation. In some circumstances,due to space, power or reliability considerations,it is preferable to operate the Circuitry from a single 1.5Vcell. Unfortunately, a 1.5V supply eliminates almost alllinear ICs as design candidates. In fact, the LM10 opamp-reference and the LT®1017/LT1018 comparators arethe only IC gain blocks fully specifi ed for 1.5V operation.Further complications are presented by the 600mV dropof silicon transistors and diodes. This limitation consumesa substantial portion of available supply range, makingcircuit design diffi cult. Additionally, any circuit designedfor 1.5V operation must function at end-of-life batteryvoltage, typically 1.3V. (See Box Section, “Componentsfor 1.5V Operation.”)

    標(biāo)簽: Circuitry Operation Single 1017

    上傳時(shí)間: 2013-12-20

    上傳用戶:Wwill

  • Circuitry for Single Cell Operation

      Portable, battery-powered operation of electronic apparatushas become increasingly desirable. Medical, remotedata acquisition, power monitoring and other applicationsare good candidates for batteryoperation. In some circumstances,due to space, power or reliability considerations,it is preferable to operate the Circuitry from a single 1.5Vcell. Unfortunately, a 1.5V supply eliminates almost alllinear ICs as design candidates. In fact, the LM10 opamp-reference and the LT®1017/LT1018 comparators arethe only IC gain blocks fully specifi ed for 1.5V operation.Further complications are presented by the 600mV dropof silicon transistors and diodes. This limitation consumesa substantial portion of available supply range, makingcircuit design diffi cult. Additionally, any circuit designedfor 1.5V operation mustfunction at end-of-life batteryvoltage, typically 1.3V. (See Box Section, “Componentsfor 1.5V Operation.”)

    標(biāo)簽: Circuitry Operation Single Cell

    上傳時(shí)間: 2013-10-30

    上傳用戶:hz07104032

  • Source Circuitry for a PCB to handle a signal for Kalman filter preparation.

    Source Circuitry for a PCB to handle a signal for Kalman filter preparation.

    標(biāo)簽: preparation Circuitry for Source

    上傳時(shí)間: 2017-04-27

    上傳用戶:小眼睛LSL

  • LM621無刷電機(jī)換向器

    General Description The LM621 is a bipolar IC designed for commutation of brushless DC motors. The part is compatible with both three- and four-phase motors. It can directly drive the power switching devices used to drive the motor. The LM621 provides an adjustable dead-time circuit to eliminate ``shootthrough'' current spiking in the power switching Circuitry. Operation is from a 5V supply, but output swings of up to 40V are accommodated. The part is packaged in an 18-pin, dual-in-line package.

    標(biāo)簽: 621 LM 無刷電機(jī)

    上傳時(shí)間: 2013-07-24

    上傳用戶:sdq_123

  • LTP5901 and LTP5902 Hardware Integration Guide

    The LTP5901 and LTP5902 require little external Circuitry, as the devices references,decoupling and power supply filtering are integrated. The LTP5901 and LTP5902 will bemodularly certified for operation in the United States (FCC), Canada (IC) and theEuropean Union (CE).  

    標(biāo)簽: Integration LTP Hardware Guide

    上傳時(shí)間: 2013-11-22

    上傳用戶:sunchao524

  • 利用纖巧型負(fù)載點(diǎn)電路來簡化電源電壓的跟蹤和排序

      Multiple-voltage electronics systems often requirecomplex supply voltage tracking or sequencing, whichif not met, can result in system faults or even permanentfailures in the fi eld. The design diffi culties in meetingthese requirements are often compounded in distributedpowerarchitectures where point-of-load (POL) DC/DCconverters or linear regulators are scattered across PCboard space, sometimes on different board planes. Theproblem is that power supply Circuitry is often the lastCircuitry to be designed into the board, and it must beshoehorned into whatever little board real estate is left.Often, a simple, drop-in, fl exible solution is needed tomeet these requirements.

    標(biāo)簽: 負(fù)載點(diǎn)電路 電源電壓 排序

    上傳時(shí)間: 2013-10-08

    上傳用戶:15071087253

  • FP6291

    DC/DC 升壓IC:The FP6291 is a current mode boost DC-DC converter. Its PWM Circuitry with built-in 0.25 Ω power MOSFET make this regulator highly power efficient. The internal compensation network also minimizes as much as 6 external component counts. The non-inverting input of error amplifier connects to a 0.6V precision reference voltage and internal soft-start function can reduce the inrush current. The FP6291 is available in the SOT23-6L package and provides space-saving PCB for the application fields.

    標(biāo)簽: 6291 FP

    上傳時(shí)間: 2013-11-07

    上傳用戶:3294322651

  • 快速,高效,獨(dú)立型NiMH,NiCd電池充電

      Although recent popular attention is focused on LithiumIon batteries, one must not forget that other batterychemistries, such as Nickel Cadmium (NiCd) and NickelMetal Hydride (NiMH) have advantages in rechargeablepower systems. Nickel-based batteries are robust, capableof high discharge rates, have good cycle life, do notrequire special protection Circuitry and are less expensivethan Li-Ion. Among the two, NiMH batteries are rapidlyreplacing NiCd because of their higher capacity (40% to50% more) and the environmental concerns of the toxiccadmium contained in NiCd batteries.

    標(biāo)簽: NiMH NiCd 獨(dú)立 電池充電

    上傳時(shí)間: 2013-11-04

    上傳用戶:qq10538412

  • 使用5V電源的高分辨率視頻解決方案

      Video cable driver amplifi er output stages traditionallyrequire a supply voltage of at least 6V in order to providethe required output swing. This requirement is usuallymet with 5V supplies by adding a boost regulator or asmall local negative rail, say via the popular LT®1983-3.Such additional Circuitry is unnecessary in typical 1VP-Pvideo connections, such as HD component video, if thecable driver amplifi ers simply offer near rail-to-rail outputcapability when powered from 5V.

    標(biāo)簽: 5V電源 高分辨率 視頻解決 方案

    上傳時(shí)間: 2013-11-16

    上傳用戶:yanyangtian

  • 按鍵開關(guān)控制器簡化系統(tǒng)設(shè)計(jì)

      Handheld designers often grapple with ways to de-bounceand control the on/off pushbutton of portable devices.Traditional de-bounce designs use discrete logic, fl ipflops, resistors and capacitors. Other designs includean onboard microprocessor and discrete comparatorswhich continuously consume battery power. For highvoltage multicell battery applications, a high voltageLDO is needed to drive the low voltage devices. All thisextra Circuitry not only increases required board spaceand design complexity, but also drains the battery whenthe handheld device is turned off. Linear Technology addressesthis pushbutton interface challenge with a pairof tiny pushbutton controllers.

    標(biāo)簽: 按鍵開關(guān) 控制器 系統(tǒng)設(shè)計(jì)

    上傳時(shí)間: 2013-11-18

    上傳用戶:ZJX5201314

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