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P1012AP Datenblatt (PDF) - ON Semiconductor

P1012AP Datasheet PDF - ON Semiconductor
Teilenummer P1012AP
Download  P1012AP Download
Filegröße   501.01 Kbytes
Page   25 Pages
Hersteller  ONSEMI [ON Semiconductor]
Direct Link  http://www.onsemi.com
Logo ONSEMI - ON Semiconductor
Bauteilbeschribung Self-Supplied Monolithic Switcher for Low Standby- Power Offline SMPS

P1012AP Datasheet (PDF)

Go To PDF Page Download Datenblatt
P1012AP Datasheet PDF - ON Semiconductor

Teilenummer P1012AP
Download  P1012AP Click to download

Filegröße   501.01 Kbytes
Page   25 Pages
Hersteller  ONSEMI [ON Semiconductor]
Direct Link  http://www.onsemi.com
Logo ONSEMI - ON Semiconductor
Bauteilbeschribung Self-Supplied Monolithic Switcher for Low Standby- Power Offline SMPS

P1012AP Datenblatt (HTML) - ON Semiconductor


P1012AP Produktdetails

The NCP101X series integrates a fixed−frequency current−mode
controller and a 700 V MOSFET. Housed in a PDIP−7 or SOT−223
package, the NCP101X offers everything needed to build a rugged and
low−cost power supply, including soft−start, frequency jittering,
short−circuit protection, skip−cycle, a maximum peak current setpoint
and a Dynamic Self−Supply (no need for an auxiliary winding).
Unlike other monolithic solutions, the NCP101X is quiet by nature:
during nominal load operation, the part switches at one of the available
frequencies (65 − 100 − 130 kHz). When the current setpoint falls
below a given value, e.g. the output power demand diminishes, the IC
automatically enters the so−called skip−cycle mode and provides
excellent efficiency at light loads. Because this occurs at typically 1/4
of the maximum peak value, no acoustic noise takes place. As a result,
standby power is reduced to the minimum without acoustic noise
generation.
Short−circuit detection takes place when the feedback signal fades
away, e.g. in true short−circuit conditions or in broken Optocoupler
cases. External disabling is easily done either simply by pulling the
feedback pin down or latching it to ground through an inexpensive
SCR for complete latched−off. Finally soft−start and frequency
jittering further ease the designer task to quickly develop low−cost and
robust offline power supplies.
For improved standby performance, the connection of an auxiliary
winding stops the DSS operation and helps to consume less than
100 mW at high line. In this mode, a built−in latched overvoltage
protection prevents from lethal voltage runaways in case the
Optocoupler would brake. These devices are available in economical
8−pin dual−in−line and 4−pin SOT−223 packages.

Features
• Built−in 700 V MOSFET with Typical RDSon of 11 
and 22 
• Large Creepage Distance Between High−Voltage Pins
• Current−Mode Fixed Frequency Operation:
65 kHz – 100 kHz − 130 kHz
• Skip−Cycle Operation at Low Peak Currents Only:
No Acoustic Noise!
• Dynamic Self−Supply, No Need for an Auxiliary
Winding
• Internal 1.0 ms Soft−Start
• Latched Overvoltage Protection with Auxiliary
Winding Operation
• Frequency Jittering for Better EMI Signature
• Auto−Recovery Internal Output Short−Circuit
Protection
• Below 100 mW Standby Power if Auxiliary Winding
is Used
• Internal Temperature Shutdown
• Direct Optocoupler Connection
• SPICE Models Available for TRANsient Analysis
• These are Pb−Free and Halide−Free Devices

Typical Applications
• Low Power AC/DC Adapters for Chargers
• Auxiliary Power Supplies (USB, Appliances,TVs, etc.)




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Über ON Semiconductor


ON Semiconductor befindet sich ein börsennotiertes Unternehmen, das eine breite Palette von Halbleiterprodukten für eine Vielzahl von Anwendungen entwirft, entwickelt und herstellt, darunter Automobil-, Computer-, Konsumgüter-, Industrie- und Kommunikationsmärkte.
Das Unternehmen wurde 1999 gegründet und hat seinen Hauptsitz in Phoenix, Arizona.
Über Semiconductor bietet unter anderem ein breites Portfolio an analogen und diskreten Halbleitern, einschließlich LeistungsmOSFETs, Dioden, Gleichrichter, Spannungsregulatoren.
Die Produkte des Unternehmens sind energieeffizient, zuverlässig und kostengünstig und werden in einer Vielzahl von Anwendungen verwendet, darunter tragbare Elektronik, industrielle Automatisierungssysteme, erneuerbare Energiesysteme und Automobilelektronik.
Semiconductor engagiert sich für Innovation und Kundenzufriedenheit und setzt sich dafür ein, die besten Halbleiterlösungen für die Bedürfnisse unserer Kunden zu bieten.

*Diese Informationen dienen nur zu allgemeinen Informationszwecken. Wir haften nicht für Verluste oder Schäden, die durch die oben genannten Informationen verursacht werden.




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