MAX9000 MAXIM | Alldatasheet

Document overview

  • Manufacturer or author: Provided By ALLDATASHEET.COM(FREE DATASHEET DOWNLOAD SITE)
  • PDF pages: 20

Technical content

Features

' Op Amp + Comparator + Reference in Space-Saving µMAX Package ' +2.5V to +5.5V Single-Supply Voltage Range ' 340µA Supply Current (MAX9002/MAX9005) ' Unity-Gain Stable (GBW = 1.25MHz) and Decompensated (AV ‡ 10V/V, GBW = 8MHz) Options ' Op-Amp/Comparator Outputs Swing Rail-to-Rail ' Ground-Sensing Inputs for Both Op Amp and Comparator ' Op Amp Stable with Capacitive Loads up to 250pF ' Internal ±2mV Comparator Hysteresis ' Fast 185ns Propagation-Delay Comparator ' No Phase Reversal for Overdriven Inputs (Both Op Amp and Comparator) ' Internal 1.230V Precision Reference (MAX9000/ MAX9001/MAX9003/MAX9004) ±1% Initial Accuracy Low 8ppm/°C Temperature Drift Sink or Source up to 1mA Stable for Capacitive Loads up to 100nF MAX9000–MAX9005 Low-Power, High-Speed, Single-Supply Op Amp + Comparator + Reference ICs 19-0499; Rev 1; 7/98 PART MAX9000 EUA MAX9000ESA -40°C to +85°C -40°C to +85°C TEMP. RANGE PIN-PACKAGE 8 µMAX 8 SO

Ordering Information

Ordering Information continued at end of data sheet. Rail-to-Rail is a registered trademark of Nippon Motorola, Ltd. Pin Configurations and Typical Operating Circuit appear at end of data sheet. INTERNAL PRECISION REFERENCE PIN-PACKAGE MAX9000 Yes 8 SO/µMAX MAX9001 Yes 10 µMAX, 14 SO PART MAX9002 No 8 SO/µMAX OP-AMP GAIN STABILITY (V/V) MAX9003 Yes 8 SO/µMAX MAX9004 Yes 10 µMAX, 14 SO MAX9005 No 8 SO/µMAX SHUTDOWN No Yes No No Yes No OP-AMP GAIN BANDWIDTH (MHz) 1.25 1.25 1.25 MAX9001 EUB MAX9001ESD -40°C to +85°C -40°C to +85°C 10 µMAX 14 SO

MAX9000–MAX9005 Low-Power, High-Speed, Single-Supply Op Amp + Comparator + Reference ICs ABSOLUTE MAXIMUM RATINGS

ELECTRICAL CHARACTERISTICS

(VDD = +2.5V to +5.5V, V SS = 0, SHDN = VDD (MAX9001/MAX9004 only), V CM(OP AMP) = 0, V AOUT = VDD / 2, V CM(COMP) = 0 (for MAX9001/MAX9002/MAX9004/MAX9005), COUT = low, IOUT(REF) = 0, TA = TMIN to TMAX, unless otherwise noted. Typical values are at VDD = 5V and TA = +25° C.) Stresses beyond those listed under “Absolute Maximum Ratings” may cause permanent damage to the device. These are stress ratings only, and functional operation of the device at these or any other conditions beyond those indicated in the operational sections of the specificatio ns is not implied. Exposure to absolute maximum rating conditions for extended periods may affect device reliability. Output Short-Circuit Duration (AOUT, COUT, REF)...Continuous to either VSS or VDD Continuous Power Dissipation (TA = +70° C) Operating Temperature Range V SHDN ≤ (0.3V x VDD), VAOUT = 0 to VDD Shorted to VDD Shorted to VSS MAX9000/MAX9001/ MAX9003/MAX9004 AV = 1V/V VDD = 2.5V to 5.5V MAX900_ES_, (VSS - 0.15V) ≤ VCM ≤ (VDD - 1.2V), VDD = 5.5V Guaranteed by PSRR tests Guaranteed by CMRR test Differential or common mode MAX900_ES_ AIN+, AIN- AIN+, AIN- MAX9002/MAX9005 MAX9001/MAX9004 (V SHDN = 0) MAX900_ES_ CONDITIONS µA±0.01 ±1IOUT (DISABLED) Disabled Mode Output Leakage mA65 Output Short-Circuit Current Ω0.01Output Resistance dB74 100PSRRPower-Supply Rejection Ratio dBCMRRCommon-Mode Rejection Ratio 72 96 V-0.15 VDD - 1.2CMVRInput Common-Mode Voltage Range MΩ1000RINInput Resistance nA±0.02 ±1Input Offset Current nA±0.05 ±2IBIASInput Bias Current µV/° CTCVOS Input Offset Voltage Temperature Coefficient ±1 µA450 550 410 500 V2.5 5.5VDDSupply Voltage Range VOSInput Offset Voltage mV±0.5 ±1.5 V0.3 x VDDVIL(SHDN)Shutdown Logic Low 340 425 µA375 475 IDDSupply Current µA2 5ISHDN Supply Current in Shutdown V0.7 x VDDVIH(SHDN)Shutdown Logic High UNITSMIN TYP MAXSYMBOLPARAMETER VDD = 3V VDD = 5V VDD = 3V VDD = 5V MAX9001/MAX9004 (V SHDN = 0 to VDD) µA1 2.5IIN(SHDN) Shutdown Input Bias Current OP AMP

MAX9000–MAX9005 Low-Power, High-Speed, Single-Supply Op Amp + Comparator + Reference ICs f = 10kHz f = 10kHz œVAIN+ - VAIN-œ‡ 10mV VDD = 5.5V VDD = 2.5V CONDITIONS fA/√Hz1INOISEInput Noise Current Density nV/√Hz36VNOISEInput Noise Voltage Density pF2.5CINInput Capacitance 140 250 1 5 1 5 94 125 dB 86 106 AVOLLarge-Signal Voltage Gain 84 115 94 120 UNITSMIN TYP MAXSYMBOLPARAMETER ELECTRICAL CHARACTERISTICS (continued) (VDD = +2.5V to +5.5V, V SS = 0, SHDN = VDD (MAX9001/MAX9004 only), V CM(OP AMP) = 0, V AOUT = VDD / 2, V CM(COMP) = 0 (for MAX9001/MAX9002/MAX9004/MAX9005), COUT = low, IOUT(REF) = 0, TA = TMIN to TMAX, unless otherwise noted. Typical values are at VDD = 5V and TA = +25° C.) MAX9003/MAX9004/MAX9005 MAX9000/MAX9001/MAX9002 MHz8GBWGain-Bandwidth Product 1.25 mV 60 100 VOL / VOHOutput Voltage Swing 0.009 MAX9000/MAX9001/MAX9002 MAX9000/MAX9001/MAX9002 dB30 degrees75 µs2Power-On Time µs2Enable Delay Time µs0.2Shutdown Delay Time MAX9000/MAX9001/MAX9002 (AV = 1V/V) 250 VAOUT = 0.05V to 2.45V, RL = 100kΩ VAOUT = 0.2V to 2.3V, RL = 1kΩ VAOUT = 0.05V to 5.4V, RL = 100kΩ VAOUT = 0.25V to 5.2V, RL = 1kΩ VDD - VOH VOL VDD - VOH VOL MAX9000/MAX9001/ MAX9002 (AV = 1V/V)f = 10kHz, V AOUT = 2Vp-p, VDD = 5V 0.028 THD+NTotal Harmonic Distortion plus Noise MAX9003/MAX9004/ MAX9005 (AV = 10V/V) VDD = 5V, VAOUT = 4V step µs 6.9 2.1 Settling Time to within 0.01% MAX9000/MAX9001/ MAX9002 (AV = 1V/V) MAX9003/MAX9004/ MAX9005 (A V = 10V/V) MAX9003/MAX9004/MAX9005 (AV = 10V/V) pF250CLOADCapacitive-Load Stability µV/° CTCVOS Input Offset Voltage Temperature Coefficient MAX900_ES_ ±1 mVInput-Referred Hysteresis VDD = 5V (Notes 2, 3) 4 7 RL = 100kΩ RL = 1kΩ MAX9003/MAX9004/MAX9005 80Phase Margin MAX9003/MAX9004/MAX9005 40Gain Margin mVVOSInput Offset Voltage MAX900_ES_ (Notes 1, 2) ±1 ±2 VDD = 5V, VAOUT = 4V step V/µs 0.85 6.0 SRSlew Rate MAX9000/MAX9001/ MAX9002 (AV = 1V/V) MAX9003/MAX9004/ MAX9005 (A V = 10V/V) COMPARATOR

MAX9000–MAX9005 Low-Power, High-Speed, Single-Supply Op Amp + Comparator + Reference ICs VDD = 5V, RL = 10kΩ , CL = 15pF (Note 5) VOD = 25mV, RL = 10kΩ , CL = 15pF (Note 4) VSHDN ≤ (0.3V x VDD), VCOUT = 0 to VDD MAX9001/MAX9002/MAX9004/MAX9005, 0.15V ≤ VCM ≤ (VDD - 1.1V), VDD = 5.5V (VCIN+ - VCIN-) ‡ 20mV VDD = 2.5V to 5.5V CONDITIONS ns100Power-On Time ns100Enable Delay Time ns100Shutdown Delay Time ns10tR, tFRise/Fall Time ns185tPD+, tPD-Propagation Delay µA±0.01 ±1IOUT (DISABLED) Disabled Mode Output Leakage mA55Output Short-Circuit Current mV 400 VOL/VOHOutput Voltage Swing 5 nA8 80IBIASInput Bias Current 400 dB72 100CMRRCommon-Mode Rejection Ratio dB72 100PSRRPower-Supply Rejection Ratio UNITSMIN TYP MAXSYMBOLPARAMETER Note 1: Comparator Input Offset is defined as the center of the input-referred hysteresis zone. Note 2: Measured at VCM(COMP) = 0 for the MAX9001/MAX9002/MAX9004/MAX9005; or VCM(COMP) = VREF for the MAX9000/MAX9003. Note 3: Input-referred hysteresis is defined as the difference of the trip points required to change comparator output states. Note 4: VOD is the overdrive that is beyond the offset and hysteresis-determined trip points. Note 5:Rise and fall times are measured between 10% and 90% at COUT. ELECTRICAL CHARACTERISTICS (continued) (VDD = +2.5V to +5.5V, V SS = 0, SHDN = VDD (MAX9001/MAX9004 only), V CM(OP AMP) = 0, V AOUT = VDD / 2, V CM(COMP) = 0 (for MAX9001/MAX9002/MAX9004/MAX9005), COUT = low, IOUT(REF) = 0, TA = TMIN to TMAX, unless otherwise noted. Typical values are at VDD = 5V and TA = +25° C.) Shorted to VDD Shorted to VSS VDD = 5V, IOUT = 0 to 1mA VDD = 2.5V to 5.5V MAX900_ES_, VDD = 5V, TA = +25° C mA10 6Output Short-Circuit Current 0.15 0.8 µV/V20 250Line Regulation ppm/° C8TCVREF Output Voltage Temperature Coefficient VVREFOutput Voltage 1.218 1.230 1.242 mV/mA 0.6 2.0Load Regulation 0.1Hz to 10Hz VSHDN ≤ (0.3V x VDD), VREF = 0 to VDD µVp-p20Output Noise µA±0.01 ±1Disabled Mode Output Leakage RL = 100kΩ to VSS, VREF within 1% µs16Enable Delay Time µs1Shutdown Delay Time RL = 100kΩ to VSS, VREF within 1% nF0 to 100Capacitive Load Stability µs16Power-On Time VDD - VOH ISOURCE = 10µA ISOURCE = 4mA ISINK = 10µA ISINK = 4mAVOL Sourcing Sinking mV/mA Guaranteed by CMRR test VVSS - VDD - 0.15 1.1VCM Common-Mode Voltage Range VOLTAGE REFERENCE (MAX9000/MAX9001/MAX9003/MAX9004) Input Offset Current IOS MAX9001/MAX9002/MAX9004/MAX9005 ±2 ±15 nA

MAX9000–MAX9005 Low-Power, High-Speed, Single-Supply Op Amp + Comparator + Reference ICs 200 300 250 400 350 450 500 SUPPLY CURRENT vs. SUPPLY VOLTAGE MAX9000 TOC01 SUPPLY VOLTAGE (V) SUPPLY CURRENT (µA) MAX9000/MAX9001/MAX9003/MAX9004 MAX9002/MAX9005 1.0 0.5 2.0 1.5 3.0 2.5 3.5 SHUTDOWN SUPPLY CURRENT vs. SUPPLY VOLTAGE MAX9000 TOC02 SUPPLY VOLTAGE (V) SHUTDOWN SUPPLY CURRENT (µA) 0.5 1.5 1.0 2.0 2.5 SHUTDOWN LOGIC THRESHOLD vs. SUPPLY VOLTAGE MAX9000 TOC03 SUPPLY VOLTAGE (V) SHUTDOWN LOGIC THRESHOLD (V) 300 400 350 450 500 -40 0-20 20 40 60 80 100 MAX9000/MAX9001/MAX9003/MAX9004 SUPPLY CURRENT vs. TEMPERATURE MAX9000 TOC04 TEMPERATURE (°C) SUPPLY CURRENT (µA) VDD = 5.5V VDD = 2.5V 300 400 350 450 500 -40 0-20 20 40 60 80 100 MAX9002/MAX9005 SUPPLY CURRENT vs. TEMPERATURE MAX9000 TOC07 TEMPERATURE (°C) SUPPLY CURRENT (µA) VDD = 5.5V VDD = 2.5V 1.5 1.0 0.5 2.5 2.0 4.5 4.0 3.5 3.0 5.0 -40 -20 0 20 40 60 80 100 SHUTDOWN SUPPLY CURRENT vs. TEMPERATURE MAX9000 TOC05 TEMPERATURE (°C) SHUTDOWN SUPPLY CURRENT (µA) VDD = 5.5V VDD = 2.5V 1.90 1.92 1.96 1.94 1.98 2.00 -40 0-20 20 40 60 80 100 SHUTDOWN LOGIC THRESHOLD vs. TEMPERATURE MAX9000 TOC06 TEMPERATURE (°C) SHUTDOWN LOGIC THRESHOLD (V) 100 250 200 150 400 350 300 450 0 21 3 4 5 6 OP-AMP OUTPUT VOLTAGE SWING HIGH (VOH) vs. SOURCE CURRENT MAX9000 TOC08 SOURCE CURRENT (mA) VDD - VOH (mV) TA = +85°C TA = +25°C TA = -40°C 300 200 100 400 500 600 0 862 4 10 12 14 16 18 20 OP-AMP OUTPUT VOLTAGE SWING LOW (VOL) vs. SINK CURRENT MAX9000 TOC09 SINK CURRENT (mA) VOL (mV) TA = +85°C TA = +25°C TA = -40°C (VDD = +5V, VSS = 0, VCM (op amp) = 0, SHDN = VDD, COUT = low, RL = ¥, TA = +25° C, unless otherwise noted.)

MAX9000–MAX9005 Low-Power, High-Speed, Single-Supply Op Amp + Comparator + Reference ICs (VDD = +5V, VSS = 0, VCM (op amp) = 0, SHDN = VDD, COUT = low, RL = ¥, TA = +25° C, unless otherwise noted.) -30 -10 -20 CHANGE IN OP-AMP OFFSET VOLTAGE (VOS) vs. SUPPLY VOLTAGE MAX9000 TOC10 SUPPLY VOLTAGE (V) CHANGE IN VOS (µV) -150 -100 -50 100 -40 0-20 20 40 60 80 100 CHANGE IN OP-AMP OFFSET VOLTAGE (VOS) vs. TEMPERATURE MAX9000 TOC11 TEMPERATURE (°C) CHANGE IN VOS (µV) -40 0-20 20 40 60 80 100 OP-AMP COMMON-MODE REJECTION RATIO vs. TEMPERATURE MAX9000 TOC12 TEMPERATURE (°C) CMRR (dB) 100 120 110 130 140 0 200 300100 400 500 600 OP-AMP LARGE-SIGNAL GAIN vs. OUTPUT VOLTAGE MAX9000 TOC13 OUTPUT VOLTAGE FROM EITHER SUPPLY (mV) GAIN (dB) RL = 2kΩ RL = 10kΩ VDD = 5.5V RL TO GND RL = 100kΩ 100 120 110 130 140 0 200 300100 400 500 600 OP-AMP LARGE-SIGNAL GAIN vs. OUTPUT VOLTAGE MAX9000 TOC16 OUTPUT VOLTAGE FROM EITHER SUPPLY (mV) GAIN (dB) RL = 2kΩ RL = 10kΩ VDD = 5.5V RL TO VDD RL = 100kΩ 100 120 110 130 140 0 200 300100 400 500 600 OP-AMP LARGE-SIGNAL GAIN vs. OUTPUT VOLTAGE MAX9000 TOC14 OUTPUT VOLTAGE FROM EITHER SUPPLY (mV) GAIN (dB) VDD = 2.5V RL TO GND RL = 100kΩ RL = 10kΩ RL = 2kΩ 100 120 110 130 140 -40 0 20-20 40 60 80 100 OP-AMP LARGE-SIGNAL GAIN vs. TEMPERATURE MAX9000 TOC15 TEMPERATURE (°C) GAIN (dB) VDD = 5.5V RL TO VDD/2 VOUT SWING = 0.2V TO 5.3V RL = 100kΩ RL = 10kΩ RL = 1kΩ 100 120 110 130 140 0 200 300100 400 500 600 OP-AMP LARGE-SIGNAL GAIN vs. OUTPUT VOLTAGE MAX9000 TOC17 OUTPUT VOLTAGE FROM EITHER SUPPLY (mV) GAIN (dB) RL = 2kΩ RL = 10kΩ VDD = 2.7V RL TO VDD RL = 100kΩ 100 120 110 130 140 -40 0 20-20 40 60 80 100 OP-AMP LARGE-SIGNAL GAIN vs. TEMPERATURE MAX9000 TOC18 TEMPERATURE (°C) GAIN (dB) VDD = 2.5V RL TO VDD/2 VOUT SWING = 0.2V TO 2.3V RL = 100kΩ RL = 10kΩ RL = 1kΩ

MAX9000–MAX9005 Low-Power, High-Speed, Single-Supply Op Amp + Comparator + Reference ICs -40 100 10M10k 1M100k1k MAX9000/MAX9001/MAX9002 OP-AMP GAIN AND PHASE vs. FREQUENCY (NO LOAD) -20 MAX9000 TOC 19 FREQUENCY (Hz) GAIN (dB) 180 -180 -36 -72 -108 -144 108 144 PHASE (DEGREES) GAIN AV = +1000 NO LOAD PHASE -40 100 10M10k 1M100k1k MAX9000/MAX9001/MAX9002 OP-AMP GAIN AND PHASE vs. FREQUENCY (WITH CLOAD) -20 MAX9000 TOC20 FREQUENCY (Hz) GAIN (dB) 180 -180 -36 -72 -108 -144 108 144 PHASE (DEGREES) AV = +1000 CL = 270pF GAIN PHASE -100 100 1k 10k 100k 1M 10M MAX9000/MAX9001/MAX9002 OP-AMP POWER-SUPPLY REJECTION vs. FREQUENCY -80 MAX9000 TOC21 FREQUENCY (Hz) POWER-SUPPLY REJECTION (dB) -60 -40 -20 AV = +1 NO LOAD -40 100 1k 10k 100k 1M 10M MAX9003/MAX9004/MAX9005 OP-AMP GAIN AND PHASE vs. FREQUENCY (NO LOAD) -20 MAX9000 TOC22 FREQUENCY (Hz) GAIN (dB)0 180 -180 -36 -72 -108 -144 108 144 PHASE (DEGREES) AV = +1000 NO LOAD GAIN PHASE 0 400 500200 300100 600 700 800 900 1000 MAX9000/MAX9001/MAX9002 OP-AMP PERCENT OVERSHOOT vs. LOAD CAPACITANCE MAX9000 TOC25 CLOAD (pF) OVERSHOOT (%) AV = +1 RL TO VDD/2 RL = 10kΩ RL = 1kΩ RL = 100kΩ -40 100 1k 10k 100k 1M 10M MAX9003/MAX9004/MAX9005 OP-AMP GAIN AND PHASE vs. FREQUENCY (WITH CLOAD) -20 MAX9000 TOC23 FREQUENCY (Hz) GAIN (dB)0 180 -180 -36 -72 -108 -144 108 144 PHASE (DEGREES) AV = +1000 CL = 270pF PHASE GAIN -100 100 1k 10k 100k 1M 10M MAX9003/MAX9004/MAX9005 OP-AMP POWER-SUPPLY REJECTION vs. FREQUENCY -80 MAX9000 TOC24 FREQUENCY (Hz) POWER-SUPPLY REJECTION (dB) -60 -40 -20 AV = +10 NO LOAD 0 400 500200 300100 600 700 800 900 1000 MAX9003/MAX9004/MAX9005 OP-AMP PERCENT OVERSHOOT vs. LOAD CAPACITANCE MAX9000 TOC26 CLOAD (pF) OVERSHOOT (%) AV = +10 RL TO VDD/2 RL = 10kΩ RL = 1kΩ RL = 100kΩ 1000 1 10 100 1k 10k 100k OP-AMP VOLTAGE NOISE DENSITY vs. FREQUENCY MAX9000 TOC27 FREQUENCY (Hz) VOLTAGE NOISE (nV/√Hz) 100 300 (VDD = +5V, VSS = 0, VCM (op amp) = 0, SHDN = VDD, COUT = low, RL = ¥, TA = +25° C, unless otherwise noted.)

MAX9000–MAX9005 Low-Power, High-Speed, Single-Supply Op Amp + Comparator + Reference ICs (VDD = +5V, VSS = 0, VCM (op amp) = 0, SHDN = VDD, COUT = low, RL = ¥, TA = +25° C, unless otherwise noted.) 0.001 10 10k1k 100k MAX9000/MAX9001/MAX9002 OP-AMP TOTAL HARMONIC DISTORTION PLUS NOISE vs. FREQUENCY 0.01 0.1 MAX9000 TOC28 FREQUENCY (Hz) THD + NOISE (%) 100 RL = 1kΩ AV = +1 VIN = 2Vp-p 500 kHz LOWPASS FILTER R L TO VDD/2 RL = 10kΩ RL = 100kΩ 0.05 0.10 0.15 0.20 0.25 MAX9000/MAX9001/MAX9002 OP-AMP TOTAL HARMONIC DISTORTION PLUS NOISE vs. VAOUT MAX9000 TOC29 VAOUT SWING (Vp-p) THD + NOISE (%) AV = +1 VIN = 10kHz SINE WAVE 500kHz LOWPASS FILTER R L TO VDD/2 RL = 10kΩ RL = 1kΩ RL = 100kΩ 0.01 100 10M10k 1M100k1k MAX9000/MAX9001/MAX9002 OP-AMP OUTPUT IMPEDANCE vs. FREQUENCY 0.1 100 MAX9000 TOC30 FREQUENCY (Hz) OUTPUT IMPEDANCE (Ω ) AV = +1 NO LOAD 0.01 10 1k 10k 100k MAX9003/MAX9004/MAX9005 OP-AMP TOTAL HARMONIC DISTORTION PLUS NOISE vs. FREQUENCY 0.1 MAX9000 TOC31 FREQUENCY (Hz) THD + NOISE (%) 100 AV = +10 VIN = 200mVp-p 500kHz LOWPASS FILTER R L TO VDD/2 RL = 1kΩ RL = 100kΩ RL = 10kΩ VIN VOUT RL 36k4k -200 -150 -100 -50 100 150 200 CHANGE IN COMPARATOR OFFSET VOLTAGE (VOS) vs. SUPPLY VOLTAGE MAX9000 TOC34 SUPPLY VOLTAGE (V) CHANGE IN VOS (µV) 0.05 0.10 0.15 0.20 0.25 MAX9003/MAX9004/MAX9005 OP-AMP TOTAL HARMONIC DISTORTION PLUS NOISE vs. VAOUT MAX9000 TOC32 VAOUT SWING (Vp-p) THD + NOISE (%) AV = +10 VIN = 10kHz SINE WAVE 500kHz LOWPASS FILTER R L TO VDD/2 VIN VOUT RL 36k4k RL = 1kΩ RL = 100kΩ RL = 10kΩ 10k 0.1 100 10M10k 1M100k1k MAX9003/MAX9004/MAX9005 OP-AMP OUTPUT IMPEDANCE vs. FREQUENCY 100 MAX9000 TOC33 FREQUENCY (Hz) OUTPUT IMPEDANCE (Ω ) AV = +10 NO LOAD -200 -150 -100 -50 100 150 200 -40 0-20 20 40 60 80 100 CHANGE IN COMPARATOR OFFSET VOLTAGE (VOS) vs. TEMPERATURE MAX9000 TOC35 TEMPERATURE (°C) CHANGE IN VOS (µV) -40 0-20 20 40 60 80 100 COMPARATOR COMMON-MODE REJECTION RATIO (CMRR) vs. TEMPERATURE MAX9000 TOC36 TEMPERATURE (°C) CMRR (dB)

MAX9000–MAX9005 Low-Power, High-Speed, Single-Supply Op Amp + Comparator + Reference ICs 2.0 2.3 2.9 2.6 3.2 3.5 -40 0-20 20 40 60 80 100 COMPARATOR HYSTERESIS vs. TEMPERATURE MAX9000 TOC37 TEMPERATURE (°C) HYSTERESIS (mV) 300 200 100 400 500 600 0 431 2 5 6 7 8 9 10 COMPARATOR OUTPUT VOLTAGE SWING HIGH (VOH) vs. SOURCE CURRENT MAX9000 TOC38 SOURCE CURRENT (mA) VDD - VOH (mV) TA = +25°C TA = +85°C TA = -40°C 300 200 100 400 500 600 0 431 2 5 6 7 8 9 10 COMPARATOR OUTPUT VOLTAGE SWING LOW (VOL) vs. SINK CURRENT MAX9000 TOC39 SINK CURRENT (mA) VOL (mV) TA = +85°C TA = +25°C TA = -40°C 150 225 200 175 250 275 300 0 403010 20 50 60 70 80 90 100 COMPARATOR PROPAGATION DELAY vs. INPUT OVERDRIVE MAX9000 TOC40 INPUT OVERDRIVE (mV) PROPAGATION DELAY (ns) tPD- tPD+ 100 150 125 175 200 -40 0 20-20 40 60 80 100 COMPARATOR PROPAGATION DELAY vs. TEMPERATURE MAX9000 TOC43 TEMPERATURE (°C) PROPAGATION DELAY (ns) tPD- OVERDRIVE VOLTAGE = 50mV tPD+ 100 300 200 500 400 700 600 800 0 2000 4000 6000 8000 10,000 POSITIVE COMPARATOR PROPAGATION DELAY (tPD+) vs. LOAD CAPACITANCE MAX9000 TOC41 CLOAD (pF) tPD+ (ns) OVERDRIVE = 5mV OVERDRIVE = 25mV OVERDRIVE = 100mV 100 300 200 500 400 700 600 800 0 2000 4000 6000 8000 10,000 NEGATIVE COMPARATOR PROPAGATION DELAY (tPD-) vs. LOAD CAPACITANCE MAX9000 TOC42 CLOAD (pF) tPD- (ns) OVERDRIVE = 25mV OVERDRIVE = 5mV OVERDRIVE = 100mV -100 1 1M10k100 100k1k10 VREF POWER-SUPPLY REJECTION vs. FREQUENCY -60 -80 -20 -40 MAX9000 TOC44 FREQUENCY (Hz) POWER-SUPPLY REJECTION (dB) -2.0 -1.0 -1.5 -0.5 0.5 1.0 -40 20 40-20 0 60 80 100 VREF OUTPUT VOLTAGE CHANGE vs. TEMPERATURE MAX9000TOC45 TEMPERATURE (°C) VREF OUTPUT VOLTAGE CHANGE (mV) (VDD = +5V, VSS = 0, VCM (op amp) = 0, SHDN = VDD, COUT = low, RL = ¥, TA = +25° C, unless otherwise noted.)

MAX9000–MAX9005 Low-Power, High-Speed, Single-Supply Op Amp + Comparator + Reference ICs (VDD = +5V, VSS = 0, VCM (op amp) = 0, SHDN = VDD, COUT = low, RL = ¥, TA = +25° C, unless otherwise noted.) VREF OUTPUT VOLTAGE CHANGE vs. LOAD CURRENT MAX9000 TOC46 LOAD CURRENT (mA) VREF OUTPUT VOLTAGE CHANGE (mV) SINKING SOURCING -100 -50 100 VREF OUTPUT VOLTAGE CHANGE vs. SUPPLY VOLTAGE MAX9000 TOC47 SUPPLY VOLTAGE (V) VREF OUTPUT VOLTAGE CHANGE (µV) 50µs/div VREF LOAD-TRANSIENT RESPONSE IOUT 2mA/div VREF 200mV/div +1mA -1mA MAX9000-TOC48 5µs/div VREF LINE-TRANSIENT RESPONSE VDD 500mV/div VREF 100mV/div 5.0V 4.5V MAX9000-TOC49 500ns/div MAX9000/MAX9001/MAX9002 OP-AMP SMALL-SIGNAL TRANSIENT RESPONSE VIN 50mV/div VOUT 50mV/div MAX9000-TOC52 AV = +1 NO LOAD 1sec/div VREF 0.1Hz to 10Hz VOLTAGE NOISE 5µV/div MAX9000-TOC50 100ns/div -50mW +50mW COMPARATOR PROPAGATION DELAY VIN+ 50mV/div VOUT 2V/div VIN- = GND NO LOAD tPD+ MAX9000-TOC51 tPD- 1µs/div MAX9000/MAX9001/MAX9002 OP-AMP SMALL-SIGNAL TRANSIENT RESPONSE WITH CLOAD VIN 50mV/div VOUT 50mV/div MAX9000-TOC53 AV = +1 CL = 270pF 500ns/div MAX9003/MAX9004/MAX9005 OP-AMP SMALL-SIGNAL TRANSIENT RESPONSE VIN 10mV/div VOUT 50mV/div MAX9000-TOC54 AV = +10 NO LOAD

MAX9000–MAX9005 Low-Power, High-Speed, Single-Supply Op Amp + Comparator + Reference ICs (VDD = +5V, VSS = 0, VCM (op amp) = 0, SHDN = VDD, COUT = low, RL = ¥, TA = +25° C, unless otherwise noted.) Pin Description Shutdown Logic Input—— 21 1µs/div MAX9003/MAX9004/MAX9005 OP-AMP SMALL-SIGNAL TRANSIENT RESPONSE WITH CLOAD VIN 10mV/div VOUT 50mV/div MAX9000-TOC55 AV = +1 CL = 270pF 2µs/div MAX9000/MAX9001/MAX9002 OP-AMP LARGE-SIGNAL TRANSIENT RESPONSE VIN 5V/div VOUT 1V/div MAX9000-TOC56 AV = +1 NO LOAD 500ns/div MAX9003/MAX9004/MAX9005 OP-AMP LARGE-SIGNAL TRANSIENT RESPONSE VIN 0.5V/div VOUT 1V/div MAX9000-TOC57 AV = +10 NO LOAD MAX9000/ MAX9003 FUNCTIONMAX9002/ MAX9005 SHDN

32 AOUT Op-Amp Output11

43 AIN-

54 AIN+ Noninverting Op-Amp Input33

65 VSS

96 REF Internal Reference Output—5

107 CIN-

118 CIN+ Noninverting Comparator Input66

Inverting Comparator Input5— Negative Supply or Ground44

129 COUT Comparator Output77

1310 VDD

1, 7, 8, 14— N.C. No Connection. Not internally connected.—— Positive Supply88 NAME PIN MAX9001/MAX9004 10 µMAX 14 SO

nected to the reference output in the MAX9000/MAX9003. ideal for portable and battery-powered systems. bandwidth product of 8MHz and a slew rate of 6.0V/µs. mode, and supply-voltage ranges. Figure 1. MAX9000–MAX90005 Functional Diagrams

to the op amp’s noninverting input. Figure 9. Infrared Receiver Application

MAX9000–MAX9005 Low-Power, High-Speed, Single-Supply Op Amp + Comparator + Reference ICs Pin Configurations CIN+ REF (CIN-)VSS ( ) ARE FOR THE MAX9002/MAX9005. VDD COUTAIN- AIN+ AOUT SO/µMAX TOP VIEW MAX9000 MAX9002 MAX9003 MAX9005 VDD COUT CIN+ CIN-AIN+ AIN- AOUT SHDN MAX9001 MAX9004 µMAX SO REFVSS N.C. VDD COUT CIN+AIN- AOUT SHDN N.C. MAX9001 MAX9004 CIN- REF N.C.N.C. VSS AIN+ AIN+ INPUT AIN- OP AMP COMP REF CIN+ AOUT REF 0.1µF 1.230V VSS VDD COUT MAX9000 MAX9003 Typical Operating Circuit

MAX9000–MAX9005 Low-Power, High-Speed, Single-Supply Op Amp + Comparator + Reference ICs Ordering Information (continued) Chip Information TRANSISTOR COUNT: 283 PART TEMP. RANGE PIN-PACKAGE MAX9002 EUA MAX9002ESA -40° C to +85° C -40° C to +85° C 8 µMAX 8 SO MAX9003 EUA MAX9003ESA MAX9004 EUB MAX9004ESD -40° C to +85° C -40° C to +85° C 8 µMAX 8 SO -40° C to +85° C -40° C to +85° C 10 µMAX 14 SO MAX9005 EUA MAX9005ESA -40° C to +85° C -40° C to +85° C 8 µMAX 8 SO

Package Information

8LUMAXD.EPS

MAX9000–MAX9005 Low-Power, High-Speed, Single-Supply Op Amp + Comparator + Reference ICs Package Information (continued) 10LUMAXB.EPS

MAX9000–MAX9005 Low-Power, High-Speed, Single-Supply Op Amp + Comparator + Reference ICs Maxim cannot assume responsibility for use of any circuitry other than circuitry entirely embodied in a Maxim product. No circu it patent licenses are implied. Maxim reserves the right to change the circuitry and specifications without notice at any time. 20 ____________________Maxim Integrated Products, 120 San Gabriel Drive, Sunnyvale, CA 94086 408-737-7600 © 1998 Maxim Integrated Products Printed USA is a registered trademark of Maxim Integrated Products. Maxim cannot assume responsibility for use of any circuitry other than circuitry entirely embodied in a Maxim product. No circu it patent licenses are implied. Maxim reserves the right to change the circuitry and specifications without notice at any time. 20 ____________________Maxim Integrated Products, 120 San Gabriel Drive, Sunnyvale, CA 94086 408-737-7600 © 1998 Maxim Integrated Products Printed USA is a registered trademark of Maxim Integrated Products. Package Information (continued) SOICN.EPS