Популярные микроконтроллеры Nuvoton серий М2354 и М251 со склада компании Смарт-ЭК

Datasheet ADP2386 (Analog Devices) - 7

ПроизводительAnalog Devices
Описание20 V, 6 A, Synchronous Step-Down DC-to-DC Regulator
Страниц / Страница24 / 7 — Data Sheet. ADP2386. TYPICAL PERFORMANCE CHARACTERISTICS. 100. %) (. …
ВерсияC
Формат / Размер файлаPDF / 860 Кб
Язык документаанглийский

Data Sheet. ADP2386. TYPICAL PERFORMANCE CHARACTERISTICS. 100. %) (. FFIC. FFIC E. VOUT = 1.2V. OUT = 1.2V. OUT = 1.8V. OUT = 2.5V

Data Sheet ADP2386 TYPICAL PERFORMANCE CHARACTERISTICS 100 %) ( FFIC FFIC E VOUT = 1.2V OUT = 1.2V OUT = 1.8V OUT = 2.5V

39 предложений от 17 поставщиков
Интегральные микросхемы Силовые чипы — регуляторы напряжения — постоянного тока коммутирующие
LIXINC Electronics
Весь мир
ADP2386ACPZN-R7
Analog Devices
от 27 ₽
Akcel
Весь мир
ADP2386ACPZN-R7
Analog Devices
от 232 ₽
T-electron
Россия и страны СНГ
ADP2386ACPZN-R7
Analog Devices
324 ₽
ЭИК
Россия
ADP2386ACPZN-R7
Analog Devices
от 879 ₽
LED-драйверы MOSO для индустриальных приложений

Модельный ряд для этого даташита

Текстовая версия документа

Data Sheet ADP2386 TYPICAL PERFORMANCE CHARACTERISTICS
TA = 25°C, VIN = 12 V, VOUT = 3.3 V, L = 2.2 µH, COUT = 100 µF + 47 µF, fSW = 600 kHz, unless otherwise noted.
100 100 95 95 90 90 85 85 %) ( 80 %) Y ( 80 Y C C N 75 N IE 75 IE 70 FFIC 70 E FFIC E 65 65 60 VOUT = 1.2V V V 60 OUT = 1.2V OUT = 1.8V V V OUT = 1.8V OUT = 2.5V 55 V V OUT = 2.5V OUT = 3.3V 55 V V OUT = 3.3V OUT = 5V V 50 OUT = 5V 50 0 1 2 3 4 5 6
007
0 1 2 3 4 5 6
1- 004 1 1-
OUTPUT CURRENT (A)
1 102
OUTPUT CURRENT (A)
102 Figure 4. Efficiency at VIN = 12 V, fSW = 600 kHz Figure 7. Efficiency at VIN = 12 V, fSW = 300 kHz
100 100 95 95 90 90 85 85 %) %) ( 80 ( 80 Y Y C C N 75 N IE 75 IE 70 FFIC 70 FFIC E E 65 65 VOUT = 1.0V 60 60 VOUT = 1.2V VOUT = 1.8V VOUT = 1.5V VOUT = 2.5V V 55 OUT = 1.8V V 55 OUT = 3.3V VOUT = 2.5V VOUT = 5V VOUT = 3.3V 50 50 0 1 2 3 4 5 6
005
0 1 2 3 4 5 6
008 1- 1 1- 1
OUTPUT CURRENT (A)
102
OUTPUT CURRENT (A)
102 Figure 5. Efficiency at VIN = 18 V, fSW = 600 kHz Figure 8. Efficiency at VIN = 5 V, fSW = 600 kHz
100 3.2 TJ = –40°C TJ = –40°C TJ = +25°C TJ = +25°C TJ = +125°C 3.0 TJ = +125°C 90 (μA) mA) 2.8 ( NT 80 NT 2.6 CURRE N CURRE W 70 2.4 NT DO CE S E SHUT 2.2 UI 60 Q 2.0 50 4 6 8 10 12 14 16 18 20 1.8
006 1-
4 6 8 10 12 14 16 18 20
009 1 1-
INPUT VOLTAGE (V)
1 102
INPUT VOLTAGE (V)
102 Figure 6. Shutdown Current vs. Input Voltage (VIN) Figure 9. Quiescent Current vs. VIN Rev. C | Page 7 of 24 Document Outline Features Applications Typical Applications Circuit General Description Table of Contents Revision History Specifications Absolute Maximum Ratings Thermal Resistance ESD Caution Pin Configuration and Function Descriptions Typical Performance Characteristics Functional Block Diagram Theory of Operation Control Scheme Precision Enable/Shutdown Internal Regulator (VREG) Bootstrap Circuitry Oscillator Synchronization Soft Start Power Good Peak Current-Limit and Short-Circuit Protection Overvoltage Protection (OVP) Undervoltage Lockout (UVLO) Thermal Shutdown Applications Information Input Capacitor Selection Output Voltage Setting Voltage Conversion Limitations Inductor Selection Output Capacitor Selection Programming the Input Voltage UVLO Compensation Design ADIsimPower Design Tool Design Example Output Voltage Setting (Design Example) Frequency Setting Inductor Selection (Design Example) Output Capacitor Selection (Design Example) Compensation Components Soft Start Time Program Input Capacitor Selection (Design Example) Recommended External Components Circuit Board Layout Recommendations Typical Applications Circuits Outline Dimensions Ordering Guide
Электронные компоненты. Скидки, кэшбэк и бесплатная доставка от ТМ Электроникс