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型号 制造商 描述 价格 封装 批号 数量
ADP1715ARMZ-0.8-R7
Analog Devices value between 0.8 V and 5.0 V by an external voltage divider connected from OUT to ADJ. The variable soft start uses an external capacitor at SS to 0.0000 1115+ 5021
ADP1715ARMZ-0.75R7
Analog Devices μF ceramic output capacitor. Three versions of this part are available, one with fixed output voltage options and variable soft start (ADP1715), one 0.0000 1115+ 9625
ADP1714AUJZ-3.0-R7
Analog Devices ange. Using a novel scaling architecture, ground current is a very low 75 μA when driving a 100 μA load, making the ADP1712/ ADP1713/ADP1714 ideal fo 0.0000 SOT23-5 1115+ 2594
ADP1714AUJZ-1.5-R7
Analog Devices ange. Using a novel scaling architecture, ground current is a very low 75 μA when driving a 100 μA load, making the ADP1712/ ADP1713/ADP1714 ideal fo 0.0000 SOT23-5 1115+ 3638
ADP1714AUJZ-1.05R7
Analog Devices ange. Using a novel scaling architecture, ground current is a very low 75 μA when driving a 100 μA load, making the ADP1712/ ADP1713/ADP1714 ideal fo 0.0000 5 SOT23 1115+ 1627
ADP1714AUJZ-0.95R7
Analog Devices ange. Using a novel scaling architecture, ground current is a very low 75 μA when driving a 100 μA load, making the ADP1712/ ADP1713/ADP1714 ideal fo 0.0000 1115+ 7693
ADP1714AUJZ-0.8-R7
Analog Devices Inc. Linear Voltage Regulators 300mA CMOS Low-Dropout Regula 0.0000 1115+ 1022
ADP1714AUJZ-0.75R7
Analog Devices ange. Using a novel scaling architecture, ground current is a very low 75 μA when driving a 100 μA load, making the ADP1712/ ADP1713/ADP1714 ideal fo 0.0000 5 SOT23 1115+ 5463
ADP1713AUJZ-2.5-R7
Analog Devices ange. Using a novel scaling architecture, ground current is a very low 75 μA when driving a 100 μA load, making the ADP1712/ ADP1713/ADP1714 ideal fo 0.0000 SOT23-5 1115+ 7440
ADP1713AUJZ-1.8-R7
Analog Devices ange. Using a novel scaling architecture, ground current is a very low 75 μA when driving a 100 μA load, making the ADP1712/ ADP1713/ADP1714 ideal fo 0.0000 SOT23-5 1115+ 1322
ADP1713AUJZ-1.5-R7
Analog Devices ange. Using a novel scaling architecture, ground current is a very low 75 μA when driving a 100 μA load, making the ADP1712/ ADP1713/ADP1714 ideal fo 0.0000 SOT23-5 1115+ 1749
ADP1713AUJZ-1.0-R7
Analog Devices ange. Using a novel scaling architecture, ground current is a very low 75 μA when driving a 100 μA load, making the ADP1712/ ADP1713/ADP1714 ideal fo 0.0000 TSOT-5 1115+ 4240
ADP1713AUJZ-0.9-R7
Analog Devices ange. Using a novel scaling architecture, ground current is a very low 75 μA when driving a 100 μA load, making the ADP1712/ ADP1713/ADP1714 ideal fo 0.0000 TSOT5 1115+ 4638
ADP1712AUJZ-1.5-R7
Analog Devices ange. Using a novel scaling architecture, ground current is a very low 75 μA when driving a 100 μA load, making the ADP1712/ ADP1713/ADP1714 ideal fo 0.0000 SOT23-5 1115+ 5601
ADP1712AUJZ-1.3-R7
Analog Devices eference. The ADP1712/ADP1713/ADP1714 are optimized for stable operation with small 2.2 μF ceramic output capacitors, allowing good transient 0.0000 TSOP-5 1115+ 1320
ADP1712AUJZ-1.1-R7
Analog Devices ange. Using a novel scaling architecture, ground current is a very low 75 μA when driving a 100 μA load, making the ADP1712/ ADP1713/ADP1714 ideal fo 0.0000 TSOT5 1115+ 1399
ADP1712AUJZ-1.05R7
Analog Devices ange. Using a novel scaling architecture, ground current is a very low 75 μA when driving a 100 μA load, making the ADP1712/ ADP1713/ADP1714 ideal fo 0.0000 SOT23-5 1115+ 7386
ADP1712AUJZ-0.9-R7
Analog Devices ange. Using a novel scaling architecture, ground current is a very low 75 μA when driving a 100 μA load, making the ADP1712/ ADP1713/ADP1714 ideal fo 0.0000 TSOT5 1115+ 6050
ADP1712AUJZ-0.8-R7
Analog Devices ange. Using a novel scaling architecture, ground current is a very low 75 μA when driving a 100 μA load, making the ADP1712/ ADP1713/ADP1714 ideal fo 0.0000 TSOT5 1115+ 7320
ADP1711AUJZ-1.5-R7
Analog Devices scaling architecture, ground current drawn is a very low 40 μA, when driving a 100 μA load, making the ADP1710/ADP1711 ideal for battery-operated 0.0000 SOT23-5 1115+ 9474

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