onsemi FAN2505S30X

Fixed Positive LDO Regulator, 3V, 0.2V Dropout, CMOS, PDSO5
$ 0.241
Obsolete
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Datasheet10 SeitenVor 23 Jahren

Augswan

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Export Control Classification Number (ECCN) CodeEAR99
Harmonized Tariff Schedule (HTS) Code8542.39.00.60
Introduction Date2000-11-01
Lifecycle StatusObsolete (Last Updated: 4 months ago)
LTB Date2009-09-12
LTD Date2010-03-12

Verwandte Teile

Obsolete Lead Free Positive Fixed Linear Voltage Regulator IC -40C~125C 200mA 30mg 170mV
Linear Voltage Regulator IC Positive Fixed Output 3V 200mA SOT-23-5
Fixed Positive LDO Regulator, 2.5V, 0.2V Dropout, CMOS, PDSO5
Linear Voltage Regulator IC Positive Fixed 1 Output 3.3V 150mA SOT-23-5
Fixed Positive LDO Regulator, 2.8V, 0.18V Dropout, CMOS, PDSO5
Fixed Positive LDO Regulator, 3V, 0.18V Dropout, CMOS, PDSO5

Beschreibungen

Beschreibungen von onsemi FAN2505S30X, die von den Distributoren bereitgestellt werden.

Fixed Positive LDO Regulator, 3V, 0.2V Dropout, CMOS, PDSO5
IC REG LINEAR 3V 200MA SOT23-5
Tape & Reel (TR) Surface Mount Over Temperature ROHS3Compliant voltage regulator linear 3.06V 2.9mm 200mA -40C~125C
Low voltage differential Regulator (LDO)
The FAN2504/05 family of micropower low-dropout voltage regulators utilize CMOS technology to offer a new level of cost-effective performance in GSM and TDMA cellular handsets, Laptop and Notebook portable computers, and other portale devices. Features include extremely low power consumption and low shutdown current, low dropout voltage, exceptional loop stability able to accommodate a wide variety of external capacitors and the compact SOT23-5 surface-mount package. The FAN2504/05 family of products offer significant improvements over older BiCMOS designs and are pin-compatible with many popular devices. The output is thermally protected against overload. The FAN2504 and FAN2505 devices are distinguished by the assignment of pin 4: <B>FAN2504</B>: pin 4-ADJ, allowing the user to adjust the output voltage over a wide range using an external voltage divider. <B>FAN2504-XX</B>: pin 4-BYP, to which a bypass capacitor may be connected for optimal noise performance

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