Shenler: реле, интерфейсные модули

Datasheet MC34071,2,4,A; MC33071,2,4,A; NCV33072,4,A (ON Semiconductor) - 9

ПроизводительON Semiconductor
ОписаниеSingle Supply 3.0 V to 44 V Operational Amplifiers
Страниц / Страница26 / 9 — MC34071,2,4,A MC33071,2,4,A, NCV33072,4,A. Figure 22. Percent Overshoot …
Версия22
Формат / Размер файлаPDF / 253 Кб
Язык документаанглийский

MC34071,2,4,A MC33071,2,4,A, NCV33072,4,A. Figure 22. Percent Overshoot versus. Figure 23. Phase Margin versus

MC34071,2,4,A MC33071,2,4,A, NCV33072,4,A Figure 22 Percent Overshoot versus Figure 23 Phase Margin versus

43 предложений от 19 поставщиков
Интегральные микросхемы Аналоговая техника — усилители — инструменты, ОУ (операционные), буферные
EIS Components
Весь мир
MC33074ADR2G
ON Semiconductor
31 ₽
AiPCBA
Весь мир
MC33074ADR2G
ON Semiconductor
61 ₽
MC33074ADR2G
ON Semiconductor
от 67 ₽
MC33074ADR2G
ON Semiconductor
от 72 ₽
AC-DC источники питания Mean Well на DIN рейку

Модельный ряд для этого даташита

Текстовая версия документа

MC34071,2,4,A MC33071,2,4,A, NCV33072,4,A
100 70 VCC = +15 V V 60 CC = +15 V V 80 EE = -15 V VEE = -15 V RL = 2.0 k AV = +1.0 50 VO = -10 V to +10 V RL = 2.0 k to R T 60 A = 25°C VO = -10 V to +10 V 40 TA = 25°C OVERSHOOT 30 40 20 PERCENT , PHASE MARGIN (DEGREES) 20 mφ 10 0 0 10 100 1.0 k 10 k 10 100 1.0 k 10 k CL, LOAD CAPACITANCE (pF) CL, LOAD CAPACITANCE (pF)
Figure 22. Percent Overshoot versus Figure 23. Phase Margin versus Load Capacitance Load Capacitance
14 80 VCC = +15 V 12 C V L = 10 pF EE = -15 V A C V = +1.0 60 L = 100 pF 10 RL = 2.0 k to ∞ VO = -10 V to +10 V 8.0 TA = 25°C VCC = +15 V 40 VEE = -15 V 6.0 AV = +1.0 RL = 2.0 k to ∞ m 4.0 A, GAIN MARGIN (dB) C V 20 L = 1,000 pF O = -10 V to +10 V , PHASE MARGIN (DEGREES) m 2.0 φ CL = 10,000 pF 0 0 10 100 1.0 k 10 k -55 -25 0 25 50 75 100 125 CL, LOAD CAPACITANCE (pF) TA, AMBIENT TEMPERATURE (°C)
Figure 24. Gain Margin versus Load Capacitance Figure 25. Phase Margin versus Temperature
16 12 70 VCC = +15 V 10 60 C Gain L = 10 pF 12 VEE = -15 V 8.0 50 AV = +1.0 R1 V R - O L = 2.0 k to ∞ 6.0 40 V + O = -10 V to +10 V CL = 100 pF 8.0 R2 4.0 30 VCC = +15 V V m C EE = -15 V L = 10,000 pF m 2.0 20 A, GAIN MARGIN (dB) 4.0 C R L = 1,000 pF A, GAIN MARGIN (dB) T = R1 + R2 Phase , PHASE MARGIN (DEGREES) AV = +100 m 0 V 10 φ O = 0 V TA = 25°C 0 0 -55 -25 0 25 50 75 100 125 1.0 10 100 1.0 k 10 k 100 k TA, AMBIENT TEMPERATURE (°C) RT, DIFFERENTIAL SOURCE RESISTANCE (W)
Figure 26. Gain Margin versus Temperature Figure 27. Phase Margin and Gain Margin versus Differential Source Resistance http://onsemi.com 9
ТМ Электроникс. Электронные компоненты и приборы. Скидки, кэшбэк и бесплатная доставка