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Микросхема LF398N/NOPB, Монолитная ИМС с выборкой и хранением …

61,74 руб.

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Склад №110-12 дней61,74руб.57,42руб.55,57руб.54,33руб.50,63руб.49,39руб.48,16руб.44,45руб.
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Склад №25-7 дней111,75руб.102,49руб.100,64руб.98,17руб.91,38руб.89,52руб.87,05руб.78,41руб.
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Склад №35 дней144,47руб.133,36руб.130,27руб.127,18руб.118,54руб.115,45руб.112,98руб.101,25руб.
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Склад №47-10 дней74,09руб.67,91руб.66,68руб.64,83руб.60,51руб.59,27руб.57,42руб.51,86руб.
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Склад №55 дней142,62руб.131,51руб.128,42руб.125,33руб.121,63руб.117,31руб.111,13руб.100,02руб.

Характеристики

LF398N/NOPB, Монолитная ИМС с выборкой и хранением …The LF398N/NOPB is a monolithic Sample-and-Hold Circuit uses BI-FET technology to obtain ultrahigh DC accuracy with fast acquisition of signal and low droop rate. Operating as unity-gain follower, DC gain accuracy is 0.002% typical and acquisition time is as low as 6µs to 0.01%. A bipolar input stage is used to achieve low offset voltage and wide bandwidth. Input offset adjust is accomplished with a single pin and does not degrade input offset drift. The wide bandwidth allows the LF198-N to be included inside the feedback loop of 1MHz operational amplifiers without having stability problems. Input impedance of 10¹⁰R allows high-source impedances to be used without degrading accuracy. P-channel junction FETs are combined with bipolar devices in the output amplifier to give droop rates as low as 5mV/minute with a 1µF hold capacitor. The JFETs have much lower noise than MOS devices used in previous designs and do not exhibit high temperature instabilities.

• Low input offset
• Low output noise in hold mode
• Input characteristics do not change during hold mode
• High supply rejection ratio in sample or hold
• Wide bandwidth
• Logic input compatible with TTL, PMOS and CMOS
• 0.5mV Typical hold step at 0.01µF
• 0.002% Gain accuracy
• 500mW Power dissipation
• ±15V Supply voltage