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SP26LV432CN-L Datasheet(PDF) 2 Page - Sipex Corporation |
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SP26LV432CN-L Datasheet(HTML) 2 Page - Sipex Corporation |
2 / 11 page 2 Date: 04/27/06 SP26LV432 High Speed, Low Power Quad Differential Line Receiver © Copyright 2006 Sipex Corporation 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 and cause permanent damage to the device. VCC (Supply Voltage) ................................................................... +7.0V VCM (Common Mode Range) ........................................................ ±14V VDIFF (Differential Input Voltage) .................................................. ±14V VIN (Enable Input Voltage) ................................................... VCC + 1.5V TSTG (Storage Temperature Range) ........................... -65°C to +150°C Maximum Current Per Output .................................................... ±25mA Storage Temperature .................................................. -65°C to +150°C Power Dissipation Per Package 16-pin PDIP (derate 14.3mW/ºC above +70ºC) ...................... 1150mW 16-pin NSOIC (derate 8.95mW/ºC above +70ºC) ..................... 725mW Unless otherwise noted, the following specifications apply for V CC = +3.0V to +3.6V with TAMB = 25°C and all MIN and MAX limits apply across the recommended operating temperature range. ELECTRICAL CHARACTERISTICS S R E T E M A R A P C D. N I M. P Y T. X A MS T I N US N O I T I D N O C , e g a t l o V y l p p u SV C C 0 . 36 . 3V s e m i T ll a F r o e s i R t u p n I e l b a n E3 s n s c i t s i r e t c a r a h C l a c i r t c e l E t u p n I V , e g a t l o V t u p n I l a i t n e r e f f i D m u m i n i M H T 0 0 2 -0 50 0 2 +V mV T U O V = H O V r o L O , V < V 7 - M C V 7 + < R , e c n a t s i s e R t u p n I N I 0 . 5KΩ V N I V 0 1 + , V 7 + , V 7 - = D N G = t u p n i r e h t o t n e r r u C t u p n I I N I 5 2 . 1 +5 . 1 +A mV N I D N G = t u p n i r e h t o , V 0 1 + = I N I 5 . 1 -5 . 2 -A mV N I D N G = t u p n i r e h t o , V 0 1 - = , e g a t l o V l e v e L t u p n I H G I H e l b a n E m u m i n i M V ) N E ( H I 0 . 2V , e g a t l o V l e v e L t u p n I W O L e l b a n E m u m i x a M V ) N E ( L I 8 . 0V I , t n e r r u C t u p n I e l b a n E m u m i x a M N E 0 . 1 ± µA V N I V = C C D N G r o V , s i s e r e t s y H t u p n I T S Y H 0 6V mV M C V 0 = I , t n e r r u C y l p p u S t n e c s e i u Q C C 55 1A mV C C V , V 3 . 3 + = F I D V 1 + = s c i t s i r e t c a r a h C l a c i r t c e l E t u p t u O V , e g a t l o V t u p t u O l e v e L h g i H m u m i n i M H O 4 . 28 . 2V V C C V , V 0 . 3 + = F F I D , V 1 + = I T U O A m 6 - = V , e g a t l o V t u p t u O l e v e L w o L m u m i x a M L O 2 . 05 . 0V V C C V , V 0 . 3 + = F F I D , V 1 - = I T U O A m 6 + = , t n e r r u C e g a k a e L t u p t u O e t a t s - i r T m u m i x a M I Q Z O 5 . 0 ±0 . 5 ± µA V T U O V = C C , D N G r o V = E L B A N E L I V = E L B A N E , H I |
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