Voltage comparator APPLICATIONS
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- Verity Scarlett Berry
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1 DESCRIPTION The is a high-speed analog voltage comparator which, for the first time, mates state-of-the-art Schottky diode technology with the conventional linear process. This allows simultaneous fabrication of high speed TTL gates with a precision linear amplifier on a single monolithic chip. The is similar in design to the Philips Semiconductors NE voltage comparator except that it incorporates an Emitter-Follower input stage for extremely low input currents. This opens the door to a whole new range of applications for analog voltage comparators. FEATURES ns propagation delay Complementary output gates TTL or ECL compatible outputs Wide common-mode and differential voltage range Typical gain of PIN CONFIGURATIONS V + A B V APPLICATIONS A/D conversion ECL-to-TTL interface TTL-to-ECL interface Memory sensing Optical data coupling D, N Packages 7 8 TOP VIEW V + GND ORDERING INFORMATION DESCRIPTION TEMPERATURE RANGE ORDER CODE DWG # -Pin Plastic Dual In-Line Package (DIP) to +7 C N B -Pin Small Outline (SO) Package to +7 C D 7D EUIVALENT SCHEMATIC V + V + K K K K.K.K.K 7 7 K K A B.K K.K GND 7.K 7.K K V August, 8-7
2 ABSOLUTE MAXIMUM RATINGS SYMBOL PARAMETER RATING UNIT V + Positive supply voltage + V V - Negative supply voltage - V V + Gate supply voltage +7 V V OUT Output voltage +7 V V IN Differential input voltage ± V V CM Input common mode voltage ± V P D Max power dissipation C ambient (still air) N package mw D package mw T A Operating temperature range to +7 C T STG Storage temperature range - to + C T SOLD Lead soldering temperature (sec max) + C. Derate above C, at the following rates: N package.mw/ C D package 8.mW/ C BLOCK DIAGRAM V + V + A B V August,
3 DC ELECTRICAL CHARACTERISTICS V+=V, V-=-V, V+=+.V, unless otherwise specified. SYMBOL PARAMETER TEST CONDITIONS Input characteristics Min Typ Max Input offset C V OS over temperature range Input bias C I BIAS over temperature range UNIT mv µa Input offset C.7 µa I OS over temperature range V IN =V µa V CM Common-mode voltage range - + V Gate characteristics Output Voltage V OUT State V +=.7V, I SOURCE =-ma.7. V OUT State V +=.7V, I SINK =ma. V Strobe inputs Input current V +=.V, V STROBE =.V - ma Input C V +=.V, V STROBE =.7V µa Over temperature range V +=.V, V STROBE =.7V µa Input voltage V +=.7V.8 V Input voltage V +=.7V. V I SC Short-circuit output current V +=.V, V OUT =V -8-7 ma Power supply requirements Supply voltage V + V V V V +.7. V Supply current V +=V, V -=-V V +=.V I + Over temp. ma I - Over temp. ma I + Over temp. ma. See Logic Function Table. AC ELECTRICAL CHARACTERISTICS T A = C, unless otherwise specified. (See AC test circuit) SYMBOL PARAMETER TEST CONDITIONS Transient response propagation delay time LIMITS Min Typ Max t PLH Low-to-High V IN =±mv step ns t PHL High-to-Low ns Delay between output A and B ns Strobe delay time t ON Turn-on time ns t OFF Turn-off time ns UNIT August, 7
4 TYPICAL PERFORMAE CHARACTERISTICS INOUR CURRENT A µ Input Currents vs Temperature.... BIAS CURRENT... OFFSET CURRENT. 7 TEMPERATURE o C SUPPLY CURRENT ma Supply Currents vs Temperature 7 I + + =.V V = V I + V + = V 7 TEMPERATURE o C POWER DISSIPATION mw Power Dissipation vs Supply Voltage V + =.V TA = o C 7 8 SUPPLY VOLTAGE (V +, V ) VOLTS SUPPLY CURRENT ma 8 7 Supply Current vs Supply Voltage T T + T + TA = o C V + =.V VOLTAGE V VOLTAGE mv + Output Propagation Delays A V + = V, V = V V + =.V VOLTAGE V VOLTAGE mv + Response Time for Various Input Overdrives + mv + mv + mv V + = V, V = V V + =.V B + mv + mv 7 8 SUPPLY VOLTAGE (V +, V ) VOLTS TIME ns TIME ns RESPONSE TIME TEST CIRCUIT PROBE Ω (V +) + µf +. K. + (V +) + µf PROBE + Ω R Ω + R R C L K CR R L CR 8 CR (V ). + K CR CR CR = IN R selected for. divider R, selected for mv at Pin Input PRR = MHz P w = ns T r = T f = ns Amplitude =.V Output R L = Ω C L = pf (including stray capacitance August, 8
5 APPLICATIONS One of the main features of the device is that supply voltages (V +, V -) need not be balanced, as in the following diagrams. For proper operation, however, negative supply (V -) should always be at least V more than the ground terminal (Pin ). Input common-mode range should be limited to values of V less than the supply voltages (V + and V -) up to a maximum of ±V as supply voltages are increased. It is also important to note that Output A is in phase with Input A and Output B is in phase with Input B. LOGIC FUTION V ID (A +, B ) COMMENT V ID -V OS H X L H Read I IHA, I ILB -V OS <V ID <V OS H H Undefined Undefined V ID V OS X H H L Read I ILA, I IHB X L L H H TYPICAL APPLICATIONS λ + V + V R R N 7N ECL R 7N TTL S R R R R V Photodiode Detector V ECL to TTL Interface + V V REF + V R K K MOS RAM TTL 7N N N 7N Ω Ω R R V MOS Memory Sense AMP V.V TTL to ECL Interface August,
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