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SP6661EB Datasheet(PDF) 2 Page - Sipex Corporation |
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SP6661EB Datasheet(HTML) 2 Page - Sipex Corporation |
2 / 8 page Date: 09/16/04 SP6661 High Frequency 200mA Charge Pump Inverter or Doubler © Copyright 2004 Sipex Corporation 2 ABSOLUTE MAXIMUM RATINGS These are stress ratings only and functional operation of the device at these ratings or any other above those indicated in the operation sections of the specifications below is not implied. Exposure to absolute maximum rating conditions for extended periods of time may affect reliability. Power Supply Voltage (V+ to GND or GND to OUT).............................+5.6V LV Input Voltages............(OUT - 0.3V) to (V+ + 0.3V) FC and OSC Input Voltages......The least negative of (OUT - 0.3V) or (V+ - 5.6V) to (V+ + 0.3V) ELECTRICAL CHARACTERISTICS OUT and V+ Continuous Output Current.........200mA Output Short-Circuit Duration to GND (Note 1).......1s Operating Temperature Ranges SP6661E_...........................-40˚C to +85˚C Continuous Power Dissipation (T AMB = 70˚C) NSOIC (derate 5.88mW/˚C above +70˚C).......471mW µSOIC (derate 4.10mW/˚C above +70˚C)........330mW Operating Temperature.......................-40˚C to +85˚C Storage Temperature........................-65˚C to +150˚C Lead Temperature (soldering 10s)..................+300˚C R E T E M A R A P. N I M. P Y T. X A MS T I N US N O I T I D N O C s r o t i c a p a C F µ 2 2 h t i w y c n e u q e r F w o L t a t i u c r i C r e t r e v n I T , D N G = V L , n e p o = C F , F µ 2 2 = 3 C = 2 C = 1 C , V 0 . 5 + = + V B M A T = N I M T o t X A M ; o t r e f e r 1 e r u g i F 2 e t o N . t i u c r i c t s e t e g n a R e g a t l o V y l p p u S5 . 13 . 5V R L 0 0 5 = Ω e g a t l o V p U - t r a t S3 9 . 0V t n e r r u C y l p p u S3 6 A md a o L o N t n e r r u C t u p t u O x a M0 0 2A m t n e r r u C t u p n I r o t a ll i c s O1 ±A µ y c n e u q e r F r o t a ll i c s O0 70 2 10 7 1z H k e c n a t s i s e R t u p t u O5 7 Ω I L 3 e t o N , A m 0 0 1 = y c n e i c i f f E n o i s r e v n o C e g a t l o V0 . 9 99 . 9 9% d a o L o N y c n e i c i f f E r e w o P0 8 0 7 9 8 2 8 % I L A m 0 0 1 = I L A m 0 0 2 = s r o t i c a p a C F µ 2 2 h t i w y c n e u q e r F w o L t a t i u c r i C r e l b u o D T , D N G = V L , n e p o = C F , F µ 2 2 = 3 C = 2 C = 1 C , V 0 . 5 + = + V B M A T = N I M T o t X A M ; o t r e f e r 2 2 e r u g i F 2 e t o N . t i u c r i c t s e t e g n a R e g a t l o V y l p p u S5 . 23 . 5V R L k 1 = Ω e g a t l o V p U - t r a t S5 . 1V t n e r r u C y l p p u S3 6 A md a o L o N t n e r r u C t u p t u O x a M0 0 2A m t n e r r u C t u p n I r o t a ll i c s O1 ±A µ y c n e u q e r F r o t a ll i c s O0 70 2 10 7 1z H k e c n a t s i s e R t u p t u O5 . 47 Ω I L 3 e t o N , A m 0 0 1 = y c n e i c i f f E n o i s r e v n o C e g a t l o V0 . 9 99 . 9 9% d a o L o N y c n e i c i f f E r e w o P9 8 9 7 4 9 0 9 % I L A m 0 0 1 = I L A m 0 0 2 = |
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