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Datasheet Texas Instruments OPA2613ID

Texas Instruments OPA2613ID

Производитель:Texas Instruments
Серия:OPA2613
Модель:OPA2613ID

Dual Wideband, High-Output Current, Operational Amplifier with Current Limit 8-SOIC -40 to 85

Datasheets

  • Скачать » Datasheet, PDF, 737 Кб, Версия: H, 28-08-2008
    Dual, Wideband, High Output Current, Operational Amplifier with Current Limit (Rev. H)

Цены

    SO 8/I°/DUAL WIDEBAND, HIGH-OUTPUT CURRENT, OPERATIONAL AMPLIFIER WITH CURR
    Цена OPA2613ID
    ПоставщикПроизводительЦена
    ЭлитанTexas Instruments178 руб.
    ЭФОTexas Instrumentsпо запросу
    ДКО ЭлектронщикTexas Instrumentsпо запросу
    ЭлрусTexas Instrumentsпо запросу
    TradeElectronicsTexas Instrumentsпо запросу
    Все 6 предложений от 6 поставщиков »

Семейство: OPA2613

Статус

Статус продуктаВ производстве (Рекомендуется для новых разработок)
Доступность образцов у производителяНет

Корпус / Упаковка / Маркировка

Pin88
Package TypeDD
Industry STD TermSOICSOIC
JEDEC CodeR-PDSO-GR-PDSO-G
Package QTY7575
CarrierTUBETUBE
МаркировкаOPA2613
Width (мм)3.913.91
Length (мм)4.94.9
Thickness (мм)1.581.58
Pitch (мм)1.271.27
Max Height (мм)1.751.75
Mechanical DataСкачать »Скачать »

Параметры

2nd Harmonic(dBc)70
3rd Harmonic(dBc)84
@ MHz1
Acl, min spec gain(V/V)1
Additional FeaturesN/A
Approx. Price (US$)1.70 | 1ku
АрхитектураBipolar
Voltage FB
BW @ Acl(MHz)230
CMRR(Min)(dB)88
CMRR(Typ)(dB)100
GBW(Typ)(MHz)230
Input Bias Current(Max)(pA)12000
Iq per channel(Max)(mA)6.2
Iq per channel(Typ)(mA)6
Number of Channels(#)2
Offset Drift(Typ)(uV/C)3.3
Operating Temperature Range(C)-40 to 85
Output Current(Typ)(mA)350
Package GroupSOIC
Package Size: mm2:W x L (PKG)8SOIC: 29 mm2: 6 x 4.9(SOIC)
Rail-to-RailNo
RatingCatalog
Slew Rate(Typ)(V/us)60
Total Supply Voltage(Max)(+5V=5, +/-5V=10)12
Total Supply Voltage(Min)(+5V=5, +/-5V=10)5
Vn at Flatband(Typ)(nV/rtHz)1.8
Vos (Offset Voltage @ 25C)(Max)(mV)1

Экологический статус

RoHSСовместим
Бессвинцовая технология (Pb Free)Да

Классификация производителя

  • Semiconductors > Amplifiers > Operational Amplifiers (Op Amps) > High-Speed Op Amps (>=50MHz)

Комплекты разработчика и оценочные наборы

  • Evaluation Modules & Boards: DEM-OPA268XU
    DEM-OPA268xU: Demonstration Fixture
    Статус продукта: В производстве (Рекомендуется для новых разработок)
  • Evaluation Modules & Boards: DEM-OPA-SO-2A
    DEM-OPA-SO-2A
    Статус продукта: В производстве (Рекомендуется для новых разработок)

Application Notes

  • Скачать » Application Notes, PDF, 636 Кб, 26-11-2002
    Active Output Impedance for ADSL Line Drivers
    Signal termination is very common in bidirectional communication systems. Termination allows for receiving signals while transmitting different signals at the same time. With the increasing popularity of asymmetrical digital subscriber lines (ADSL), the requirement for a low power line driver amplifier combined with line termination becomes a very difficult goal. This application note examines the
  • Скачать » Application Notes, PDF, 299 Кб, Версия: A, 13-05-2015
    RLC Filter Design for ADC Interface Applications (Rev. A)
    As high performance Analog-to-Digital Converters (ADCs) continue to improve in their performance, the last stage interface from the final amplifier into the converter inputs becomes a critical element in the system design if the full converter dynamic range is desired. This application note describes the performance and design equations for a simple passive 2nd-order filter used successfully in AD
  • Скачать » Application Notes, PDF, 273 Кб, 22-04-2004
    ADS5500, OPA695: PC Board Layout for Low Distortion High-Speed ADC Drivers
    Once an analog-to-digital converter (ADC) and a driver/interface have been selected for a given application, the next step to achieving excellent performance is laying out the printed circuit board (PCB) that will support the application. This application report describes several techniques for optimizing a high-speed, 14-bit performance, differential driver PCB layout using a wideband operation
  • Скачать » Application Notes, PDF, 134 Кб, 07-07-2003
    Measuring Board Parasitics in High-Speed Analog Design
    Successful circuit designs using high-speed amplifiers can depend upon understanding and identifying parasitic PCB components. Simulating a design while including PCB parasitics can protect against unpleasant production surprises. This application report discusses an easy method for measuring parasitic components in a prototype or final PC board design by using a standard oscilloscope and low freq
  • Скачать » Application Notes, PDF, 256 Кб, Версия: A, 17-01-2005
    Noise Analysis for High Speed Op Amps (Rev. A)
    As system bandwidths have increased, an accurate estimate of the noise contribution for each element in the signal channel has become increasingly important. Many designers are not, however, particularly comfortable with the calculations required to predict the total noise for an op amp, or in the conversions between the different descriptions of noise. Considerable inconsistency between manufactu
  • Скачать » Application Notes, PDF, 44 Кб, 02-10-2000
    Tuning in Amplifiers
    Have you ever had the experience of designing an analog gain block with an amplifier that is specified to be unity gain stable only to find that it is oscillating out of control in your circuit? Or have you ever replaced a stable voltage feedback amplifier with a current feedback amplifier to find that the current feedback amplifier immediately oscillates when placed in the amplifier socket? Oscil
  • Скачать » Application Notes, PDF, 77 Кб, 02-10-2000
    Single-Supply Operation of Operational Amplifiers
    Operation of op amps from single supply voltages is useful when negative supply voltages are not available. Furthermore, certain applications using high voltage and high current op amps can derive important benefits from single supply operation.
  • Скачать » Application Notes, PDF, 76 Кб, 02-10-2000
    Op Amp Performance Analysis
    This bulletin reflects the analysis power gained through knowledge of an op amp circuit's feedback factor. Feedback dictates the performance of an op amp both in function and in quality. The major specifications of the amplifier descibe an open-loop device awaiting feedback direction of the end circuit's function. Just how well the amplifier performs the function reflects through the feedback inte

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