Download LM760 Datasheet PDF
National Semiconductor
LM760
LM760 is High Speed Differential Comparator manufactured by National Semiconductor.
Description The LM760 is a differential voltage parator offering considerable speed improvement over the LM710 family and operates from symmetric supplies of g 4 5V to g 6 5V The LM760 can be used in high speed analog-to-digital conversion systems and as a zero crossing detector in disc file and tape amplifiers The LM760 output features balanced rise and fall times for minimum skew and close matching between the plementary outputs The outputs are TTL patible with a minimum sink capability of two gate loads Features Y Y Y Y Y Guaranteed high speed 25 ns response time Guaranteed delay matching on both outputs plementary TTL patible outputs High sensitivity Standard supply voltages Applications High speed A-to-D Peak or zero detector Connection Diagram 8-Lead DIP TL H 10067 - 3 Top View Ordering Information Temperature Range mercial 0 C to a 70 C LM760CN Package Type 8-lead Plastic DIP NSC Package Drawing N08E C1995 National Semiconductor Corporation TL H 10067 RRD-B30M115 Printed in U S A Absolute Maximum Ratings If Military Aerospace specified devices are required please contact the National Semiconductor Sales Office Distributors for availability and specifications Storage Temperature Range Metal Can and Ceramic DIP Molded DIP Operating Temperature Range Military (LM760) mercial (LM760C) Lead Temperature Metal Can and Ceramic DIP (Soldering 60 sec ) Molded DIP (Soldering 10 sec ) b 65 C to a 175 C b 65 C to a 150 C b 55 C to a 125 C 0 C to a 70 C Positive Supply Voltage Negative Supply Voltage Peak Output Current Differential Input Voltage Input Voltage ESD Susceptibility a 8 0V b 8 0V 10 m A g 5 0V V a t VI t Vb TBD 300 C 265 C LM760 Electrical Characteristics VCC e g 4 5V to g 6 5V TA e b55 C to a 125 C TA e 25 C for typical figures unless otherwise specified Symbol Parameter Conditions Min Typ Max VIO IIO IIB RO t PD Input Offset Voltage Input Offset Current Input Bias Current Output Resistance (Either Output) Response Time VO e VOH TA e 25 C...