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MAX4023EEE+ |MAX4023EEEMAXIMN/a5avaiTriple and Quad, 2:1 Video Multiplexer-Amplifiers with Fixed and Settable Gain
MAX4024ESD+TMAXIMN/a2365avaiTriple and Quad, 2:1 Video Multiplexer-Amplifiers with Fixed and Settable Gain
MAX4024EUD+ |MAX4024EUDMAXIMN/a1avaiTriple and Quad, 2:1 Video Multiplexer-Amplifiers with Fixed and Settable Gain
MAX4026EUP+TMAXICN/a2500avaiTriple and Quad, 2:1 Video Multiplexer-Amplifiers with Fixed and Settable Gain
MAX4026EWP+MAXIMN/a10avaiTriple and Quad, 2:1 Video Multiplexer-Amplifiers with Fixed and Settable Gain


MAX4026EUP+T ,Triple and Quad, 2:1 Video Multiplexer-Amplifiers with Fixed and Settable GainELECTRICAL CHARACTERISTICS—Dual Supply(V = +5V, V = -5V, R = ∞, EN = +5V, V = REF = OUT_ = 0V, T = ..
MAX4026EWP+ ,Triple and Quad, 2:1 Video Multiplexer-Amplifiers with Fixed and Settable GainFeaturesThe MAX4023–MAX4026 family of voltage feedback♦ Single +5V or Dual ±5V Operationmultiplexer ..
MAX4028EUE ,Triple/Quad / 2:1 Video Multiplexer-Amplifiers with Input ClampsApplicationsIn-Car Navigation/EntertainmentA/B+5VBlade ServersCINVCC75Ω CABLE 0.1µ FSecurity System ..
MAX4028EWE ,Triple/Quad / 2:1 Video Multiplexer-Amplifiers with Input ClampsELECTRICAL CHARACTERISTICS(V = +5V, GND = 0V, R = 150Ω to GND, V = +5V, R = 6kΩ , C = 0.1µF to GND, ..
MAX4032EUT+T ,5V, 6dB Video Buffer with Sync-Tip Clamp, Output Sag Correction, and 150nA Shutdown CurrentELECTRICAL CHARACTERISTICS(V = 5.0V, GND = 0V, C = 0.1µF from IN to GND, R = infinity to GND, SAG s ..
MAX4032EXT+T ,5V, 6dB Video Buffer with Sync-Tip Clamp, Output Sag Correction, and 150nA Shutdown CurrentBlock DiagramVideo-Enabled Cell PhonesNotebook ComputersPortable/Flat-Panel DisplaysTOP VIEW VCCMAX ..
MAX753CSE ,CCFL Backlight and LCD Contrast ControllersApplicationsMAX753ESE -40°C to +85°C 16 Narrow SONotebook ComputersMAX754CPE 0°C to +70°C 16 Plasti ..
MAX753ESE ,CCFL Backlight and LCD Contrast ControllersELECTRICAL CHARACTERISTICS(V = 5V, BATT = 15V, CON = LON = 5V, LX = GND = PGND = 0V, I = 0mA, all d ..
MAX753ESE ,CCFL Backlight and LCD Contrast ControllersFeaturesThe MAX753/MAX754 drive cold-cathode fluorescent' Drives Backplane and Backlightlamps (CCFL ..
MAX7545AKCWP ,CMOS 12-BIT BUFFERED MULTIPLYING DACsApplications Motion Control Systems Automatic Test Equipment pp Controlled Systems Progra ..
MAX7545ALP ,CMOS 12-BIT BUFFERED MULTIPLYING DACsfeatures a 100ns max write pulse width (150ns for MAX7645) which allows inter- facing to a wide r ..
MAX754CPE ,CCFL Backlight and LCD Contrast ControllersMAX753/MAX75419-0197; Rev 1; 1/95CCFL Backlight andLCD Contrast Controllers_______________


MAX4023EEE+-MAX4024ESD+T-MAX4024EUD+-MAX4026EUP+T-MAX4026EWP+
Triple and Quad, 2:1 Video Multiplexer-Amplifiers with Fixed and Settable Gain
General Description
The MAX4023–MAX4026 family of voltage feedback
multiplexer-amplifiers combine low-glitch switching and
excellent video specifications with fixed or settable
gain. The MAX4024/MAX4026 are triple and quad 2:1
multiplexers, respectively, with amplifiers that have a
fixed gain of +2. The MAX4023/MAX4025 are triple and
quad 2:1 multiplexers, respectively, with adjustable
gain amplifiers optimized for unity-gain stability. All
devices have 25ns channel switching time and low
10mVP-Pswitching transients, making them ideal for
high-speed video-switching applications. These
devices operate from a single +4.5V to +11V supply or
from dual supplies of ±2.25V to ±5.5V, and feature an
input common-mode voltage range that extends to the
negative supply rail. A low-power disable mode places
the output in a high-impedance state.
The MAX4023/MAX4025 have -3dB bandwidths of
260MHz and up to 330V/µs slew rates with a settable
gain to equalize long cable runs. The MAX4024/
MAX4026, with 200MHz -3dB bandwidths and 363V/µs
slew rates, have a fixed gain of +2 for driving short
back-terminated cables. The MAX4023/MAX4025 inter-
nal amplifiers maintain an open-loop output impedance
of only 18Ωover the full output voltage range, and mini-
mize the gain error and bandwidth changes under
loads typical of most rail-to-railamplifiers. These
devices are ideal for broadcast video applications with
differential gain and phase errors of 0.07% and 0.07°,
respectively.
Applications

Set-Top Boxes
In-Car Navigation/Entertainment
Servers
Security Systems
Video Projectors
Notebook Computers
Broadcast Video
Video Crosspoint Switching
Features
Single +5V or Dual ±5V Operation260MHz -3dB Bandwidth (MAX4023/MAX4025)200MHz -3dB Bandwidth (MAX4024/MAX4026)363V/µs Slew Rate (MAX4024/MAX4026)25ns Channel Switching TimeUltra-Low 20mVP-PSwitching Transient0.012%/0.05°Differential Gain/Phase ErrorInput Common-Mode Range Includes Negative
Rail (MAX4023/MAX4025)
Low-Power Disable ModeAvailable in Space-Saving 14-Pin TSSOP and
16-Pin QSOP Packages
MAX4023–MAX4026riple and Quad, 2:1 Video Multiplexer-
Amplifiers with Fixed and Settable Gain

VIDEO
SOURCE
TRIPLE
2:1
MUX
DISPLAY
SOURCE
SELECT
VIDEO
SOURCE
MAX4024x 2
x 2
x 2
Typical Operating Circuit

19-2758; Rev 1; 11/09
Ordering Information
PARTTEMP RANGEPIN-PACKAGE
MAX4023EEE
-40°C to +85°C16 QSOP
MAX4023ESE-40°C to +85°C16 Narrow SO
MAX4024EUD
-40°C to +85°C14 TSSOP
MAX4024ESD-40°C to +85°C14 Narrow SO
MAX4025EUP
-40°C to +85°C20 TSSOP
MAX4025EWP-40°C to +85°C20 Wide SO
MAX4026EUP
-40°C to +85°C20 TSSOP
MAX4026EWP-40°C to +85°C20 Wide SO
Selector Guide and Pin Configurations appear at end of data
sheet.
MAX4023–MAX4026riple and Quad, 2:1 Video Multiplexer-
Amplifiers with Fixed and Settable Gain
ABSOLUTE MAXIMUM RATINGS

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 specifications is not implied. Exposure to
absolute maximum rating conditions for extended periods may affect device reliability.
Supply Voltage (VCCto VEE)..................................................12V
IN_A, IN_B, FB_...............................(VEE- 0.3V) to (VCC+ 0.3V)
REF, EN, A/B....................................(VEE- 0.3V) to (VCC+ 0.3V)
Current Into IN_A, IN_B, FB_............................................±20mA
Short-Circuit Duration (OUT_ to GND or VEE)............Continuous
Short-Circuit Duration (OUT_ to VCC)..............................(Note 1)
Continuous Power Dissipation (TA= +70°C)
14-Pin TSSOP (derate 9.1mW/°C above +70°C).........727mW
14-Pin Narrow SO (derate 8.3mW/°C above +70°C)...667mW
16-Pin QSOP (derate 8.3mW/°C above +70°C)...........667mW
16-Pin Narrow SO (derate 8.7mW/°C above +70°C)...696mW
20-Pin TSSOP (derate 10.9mW/°C above +70°C).......879mW
20-Pin Wide SO (derate 10mW/°C above +70°C)........800mW
Operating Temperature Range...........................-40°C to +85°C
Junction Temperature......................................................+150°C
Storage Temperature Range.............................-65°C to +150°C
Lead Temperature (soldering, 10s).................................+300°C
Note 1:
Do not short OUT_ to VCC.
DC ELECTRICAL CHARACTERISTICS—Dual Supply

(VCC= +5V, VEE= -5V, RL= ∞, EN = +5V, VCM= REF = OUT_ = 0V, TA= TMINto TMAX, unless otherwise noted. Typical values are at=+25°C.) (Note 2)
PARAMETERSYMBOLCONDITIONSMINTYPMAXUNITS
p er ati ng S up p l y V ol tag e RangeVSGuaranteed by PSRR±2.25±5.5V
MAX4023/MAX40242536Quiescent Supply CurrentISOUT = 0VMAX4025/MAX40263448mA
MAX4023/MAX40243.66Disable Supply CurrentEN = 0VMAX4025/MAX40264.46mA
MAX4023/MAX4025, inferred from CMRRVEEVCC - 2.8Input Voltage RangeVINMAX4024/MAX4026, inferred from AVCLVEE + 2.9VCC - 2.8V
MAX4023/MAX4025±0.5±15Input Offset VoltageVOSMAX4024/MAX4026±1±18mV
MAX4023/MAX4025±1Input Offset Voltage MatchingΔVOSMAX4024/MAX4026±1.5mV
MAX4023/MAX402515Input Offset Voltage DriftTCVOSMAX4024/MAX402623µV°C
Input Bias CurrentIB414µA
Input Offset CurrentIOSMAX4023/MAX4025±0.1±2µA
Differential Input ResistanceRINDM AX 4023/M AX 4025, - 10m V < V IN D < + 10m V 50kΩ
MAX4023/MAX4025, common mode4.5Input ResistanceRINMAX4024/MAX4026, single ended4.5MΩ
Open loop18MAX4023/MAX4025Cl osed l oop , AVC L = +10.025Output ResistanceROUT
MAX4024/MAX40260.15
MAX4023–MAX4026riple and Quad, 2:1 Video Multiplexer-
Amplifiers with Fixed and Settable Gain
DC ELECTRICAL CHARACTERISTICS—Dual Supply (continued)

(VCC= +5V, VEE= -5V, RL= ∞, EN = +5V, VCM= REF = OUT_ = 0V, TA= TMINto TMAX, unless otherwise noted. Typical values are at=+25°C.) (Note 2)
PARAMETERSYMBOLCONDITIONSMINTYPMAXUNITS

MAX4023/MAX4025, EN = 0V75Disable Output ResistanceROUTMAX4024/MAX4026, EN = 0V1kΩ
Power-Supply Rejection RatioPSRR±2.25V < VS < ±5.5V5064dB
Common-Mode Rejection RatioCMRRM AX4023/M AX4025, V E E < V C M < V C C - 2.8V5068dB
Open-Loop GainAVOLMAX4023/MAX4025, RL = 150Ω,
-4.3V < VOUT < +4.3V7085dB
Voltage GainAVCLMAX4024/MAX4026, RL = 150Ω,
VEE + 2.9V < VIN < VCC - 2.8V5.56.06.5dB
Gain MatchingΔAVCLMAX4024/MAX40261%C C - 0.7VCC - 0.5RL = 150ΩVEE + 0.5VEE + 0.7
VCC - 1.2VCC - 0.8MAX4023/MAX4025
RL = 75ΩVEE + 0.8VEE + 1.2C C - 0.7V C C - 0.5RL = 150ΩVEE + 0.3VEE + 0.7
VCC - 1.2VCC - 0.8
Output Voltage SwingVOUT
MAX4024/MAX4026
RL = 75ΩVEE + 0.5VEE + 1.2
LOGIC INPUT CHARACTERISTICS

Logic-Low ThresholdVILEN, A/BVCC - 3.85V
Logic-High ThresholdVIHEN, A/BVCC - 3.3V
Logic-Low Input CurrentIILEN, A/B; EN or A/B = 0V510µA
Logic-High Input CurrentIIHEN, A/B; EN or A/B = VCC28µA
MAX4023–MAX4026riple and Quad, 2:1 Video Multiplexer-
Amplifiers with Fixed and Settable Gain
DC ELECTRICAL CHARACTERISTICS—Single Supply

(VCC= +5V, VEE= 0V, RL= ∞, EN = +5V, VCM= REF = OUT = 0.5V, TA= TMINto TMAX, unless otherwise noted. Typical values are at= +25°C.) (Note 2)
PARAMETERSYMBOLCONDITIONSMINTYPMAXUNITS
p er ati ng S up p l yol tag e Rang eVSGuaranteed by PSRR4.511V
MAX4023/MAX4024, OUT = 0V1932Quiescent Supply
CurrentISMAX4025/MAX4026, OUT = 0V3143mA
MAX4023/MAX4024, EN = 0V3.36Disable Supply CurrentMAX4025/MAX4026, EN = 0V3.96mA
MAX4023/MAX4025, inferred from CMRRVEEVCC - 2.8Input Voltage RangeVINMAX4024/MAX4026, inferred from AVCLVEE + 0.28VCC - 2.8V
MAX4023/MAX4025±1±18Input Offset VoltageVOSMAX4024/MAX4026±3±20mV
MAX4023/MAX4025±1Input Offset Voltage
MatchingΔVOSMAX4024/MAX4026±1.5mV
MAX4023/MAX40259Input Offset Voltage DriftTCVOSMAX4024/MAX402613µV°C
Input Bias CurrentIB4.514µA
Input Offset CurrentIOSMAX4023/MAX4025±0.1±2µA
Differential Input
ResistanceRINDM AX 4023/M AX 4025, - 10m V < V IN D < + 10m V 50kΩ
MAX4023/MAX4025, common mode4.5Input ResistanceRINMAX4024/MAX4026, single ended4.5MΩ
Open loop18MAX4023/MAX4025C l osed l oop , AV C L = + 10.025Output ResistanceROUT
MAX4024/MAX40260.15
MAX4023/MAX4025, EN = 0V75Disable Output
ResistanceROUTMAX4024/MAX4026, EN = 0V1kΩ
Power-Supply Rejection
RatioPSRR±4.5V < VS < ±11V5064dB
Common-Mode
Rejection RatioCMRRMAX4023/MAX4025, VEE < VCM < VCC - 2.8V5091dB
Open-Loop GainAVOLM AX 4023/M AX 4025, RL = 150Ω,
0.3V < V OU T < 4.3V 7085dB
Voltage GainAVCLMAX4024/MAX4026, RL = 150Ω,
VEE + 0.28V < VIN < VCC - 2.8V5.56.06.5dB
Gain MatchingΔAVCLMAX4024/MAX40261%
MAX4023–MAX4026riple and Quad, 2:1 Video Multiplexer-
Amplifiers with Fixed and Settable Gain
DC ELECTRICAL CHARACTERISTICS—Single Supply (continued)

(VCC= +5V, VEE= 0V, RL= ∞, EN = +5V, VCM= REF = OUT = 0.5V, TA= TMINto TMAX, unless otherwise noted. Typical values are at= +25°C.) (Note 2)
PARAMETERSYMBOLCONDITIONSMINTYPMAXUNITS

VCC - 1.1VCC - 0.5RL = 150Ω to GNDV E E + 0.03V E E + 0.175
VCC - 1.1VCC - 0.8MAX4023/MAX4025
RL = 75Ω to GNDV E E + 0.03V E E + 0.175
VCC - 1.1VCC - 0.5RL = 150Ω to GNDV E E + 0.03V E E + 0.09
VCC - 1.1VCC - 0.8
Output Voltage SwingVOUT
MAX4024/MAX4026
RL = 75Ω to GNDV E E + 0.04V E E + 0.08
LOGIC INPUT CHARACTERISTICS

Logic-Low ThresholdVILEN, A/BVCC - 3.85V
Logic-High ThresholdVIHEN, A/BVCC - 3.3V
Logic-Low Input CurrentIILEN, A/B; EN or A/B = 0V510µA
Logic-High InputIIHEN, A/B; EN or A/B = VCC28µA
MAX4023–MAX4026riple and Quad, 2:1 Video Multiplexer-
Amplifiers with Fixed and Settable Gain
AC ELECTRICAL CHARACTERISTICS—Dual Supply

(VCC= +5V, VEE= -5V, RIN= 75Ωto GND, RL= 150Ωto GND, EN = +5V, VCM= 0V, REF = 0V, AVCL= +1 (MAX4023/MAX4025).
Typical values are at TA= +25°C, unless otherwise noted.)
PARAMETERSYMBOLCONDITIONSMINTYPMAXUNITS

MAX4023/MAX4025260Small-Signal -3dB BandwidthBWSSVOUT = 100mVP-PMAX4024/MAX4026200MHz
MAX4023/MAX402585Large-Signal -3dB BandwidthBWLSVOUT = 2VP-PMAX4024/MAX4026110MHz
MAX4023/MAX402530Small-Signal 0.1dB Gain-Flatness
BandwidthBW0.1dBSSVOUT = 100mVP-PMAX4024/MAX402632MHz
MAX4023/MAX402522Large-Signal 0.1dB Gain-Flatness
BandwidthBW0.1dBLSVOUT = 2VP-PMAX4024/MAX402624MHz
MAX4023/MAX4025300Slew RateSRVOUT = 2VP-PMAX4024/MAX4026363V/µs
MAX4023/MAX402532Settling Time to 0.1%tSVOUT = 2V stepMAX4024/MAX402632ns
Power-Supply Rejection RatioPSRRf = 100kHz60dB
Output Impedancef = 10MHz1.5Ω
MAX4023/MAX40250.012Differential Gain ErrorDGN TS C , P AL, AV C L = + 2
MAX4024/MAX40260.015
MAX4023/MAX40250.05Differential Phase ErrorDPN TS C , P AL, AV C L = + 2
MAX4024/MAX40260.077eg r ees
MAX4023/MAX40251.6Group DelayD/dTf = 3.58MHz or
4.43MHz, AVCL = +2MAX4024/MAX40261.8
MAX4023/MAX402590Peak Signal to RMS NoiseSNRVOUT = 2VP-P, 10MHz
BW, AVCL = +2MAX4024/MAX402686
Crosstalkf = 10MHz-61dB
SWITCHING CHARACTERISTICS

MAX4023/MAX402525Channel Switching TimetSWMAX4024/MAX402625ns
Enable TimetONVIN = 0.5V60ns
Disable TimetOFFVIN = 0.5V0.45µs
MAX4023/MAX402520Switching TransientMAX4024/MAX402620mVP-P
MAX4023–MAX4026riple and Quad, 2:1 Video Multiplexer-
Amplifiers with Fixed and Settable Gain
AC ELECTRICAL CHARACTERISTICS—Single Supply

(VCC= +5V, VEE= 0V, RIN= 75Ωto VCM, RL= 150Ωto GND, EN = +5V, VCM= 0.5V, REF = VCM, AVCL= +1 (MAX4023/MAX4025).
Typical values are at TA= +25°C, unless otherwise noted.)
PARAMETERSYMBOLCONDITIONSMINTYPMAXUNITS

MAX4023/MAX4025260Small-Signal -3dB BandwidthBWSSVOUT = 100mVP-PMAX4024/MAX4026200MHz
MAX4023/MAX402583Large-Signal -3dB BandwidthBWLSVOUT = 2VP-PMAX4024/MAX4026110MHz
MAX4023/MAX402540Small-Signal 0.1dB Gain-Flatness
BandwidthBW0.1dBSSVOUT = 100mVP-PMAX4024/MAX402644MHz
MAX4023/MAX402522Large-Signal 0.1dB Gain-Flatness
BandwidthBW0.1dBLSVOUT = 2VP-PMAX4024/MAX402625MHz
MAX4023/MAX4025300Slew RateSRVOUT = 2VP-PMAX4024/MAX4026363V/µs
MAX4023/MAX402532Settling Time to 0.1%tSVOUT = 2V stepMAX4024/MAX402632ns
Power-Supply Rejection RatioPSRRf = 100kHz60dB
Output Impedancef = 10MHz1.5Ω
MAX4023/MAX40250.016
Differential Gain ErrorDGN TS C , P AL, AV C L = + 2
MAX4024/MAX40260.02
MAX4023/MAX40250.054
Differential Phase ErrorDPN TS C , P AL, AV C L = + 2
MAX4024/MAX40260.085eg r ees
MAX4023/MAX40251.6Group DelayD/dTf = 3.58MHz or
4.43MHz, AVCL = +2MAX4024/MAX40261.9
MAX4023/MAX402590Peak Signal to RMS NoiseSNRVOUT = 2VP-P, 10MHz
BW, AVCL = +2MAX4024/MAX402686
Crosstalkf = 10MHz-61dB
SWITCHING CHARACTERISTICS

MAX4023/MAX402525Channel Switching TimetSWMAX4024/MAX402625ns
Enable TimetONVIN = 0.5V90ns
Disable TimetOFFVIN = 0.5V0.45µs
MAX4023/MAX402510Switching TransientMAX4024/MAX402610mVP-P
Note 2:
All devices are 100% production tested at TA= +25°C. Specifications over temperature are guaranteed by design.
MAX4023–MAX4026riple and Quad, 2:1 Video Multiplexer-
Amplifiers with Fixed and Settable Gain
Typical Operating Characteristics—±5V Dual Supply

(VCC= +5V, VEE= -5V, VCM= REF = 0V, EN = +5V, RIN= 75Ωto GND, RL= 150Ωto GND, AVCL= +1V/V (MAX4023/MAX4025),
AVCL= +2V/V (MAX4024/MAX4026), TA= +25°C, unless otherwise noted.)
MAX4023/MAX4025
SMALL-SIGNAL BANDWIDTH vs. FREQUENCY

MAX4023/25 toc01
FREQUENCY (MHz)
GAIN (dB)
MAX4023/MAX4025
SMALL-SIGNAL GAIN FLATNESS vs. FREQUENCY
MAX4023/25 toc02
FREQUENCY (MHz)
GAIN (dB)
MAX4023/MAX4025
LARGE-SIGNAL BANDWIDTH vs. FREQUENCY
MAX4023/25 toc03
FREQUENCY (MHz)
GAIN (dB)
MAX4023/MAX4025
LARGE-SIGNAL GAIN FLATNESS
vs. FREQUENCY
MAX4023/25 toc04
FREQUENCY (MHz)
GAIN (dB)
MAX4024/MAX4026
SMALL-SIGNAL BANDWIDTH vs. FREQUENCY
MAX4023/25 toc05
FREQUENCY (MHz)
NORMALIZED GAIN (dB)
MAX4024/MAX4026
SMALL-SIGNAL GAIN FLATNESS
vs. FREQUENCY
MAX4023/25 toc06
FREQUENCY (MHz)
NORMALIZED GAIN (dB)
MAX4024/MAX4026
LARGE-SIGNAL BANDWIDTH vs. FREQUENCY
MAX4023/25 toc07
NORMALIZED GAIN (dB)
MAX4024/MAX4026
LARGE-SIGNAL GAIN FLATNESS
vs. FREQUENCY
MAX4023/25 toc08
NORMALIZED GAIN (dB)
6th5th4th3rd2nd1st
6th5th4th3rd2nd1st
MAX4023/MAX4025
DIFFERENTIAL GAIN AND PHASE

DIFFERENTIAL
PHASE (
DIFFERENTIAL
GAIN (%)
MAX4023/25 toc09
MAX4023–MAX4026riple and Quad, 2:1 Video Multiplexer-
Amplifiers with Fixed and Settable Gain

6th5th4th3rd2nd1st
6th5th4th3rd2nd1st
MAX4024/MAX4026
DIFFERENTIAL GAIN AND PHASE

DIFFERENTIAL
PHASE (
DIFFERENTIAL
GAIN (%)
MAX4023/25 toc10
POWER-SUPPLY REJECTION RATIO
vs. FREQUENCY

MAX4023/25 toc11
FREQUENCY (MHz)
PSRR (dB)10.1
MAX4023/MAX4025
COMMON-MODE REJECTION RATIO
vs. FREQUENCY
MAX4023/25 toc12
FREQUENCY (MHz)
CMRR (dB)
OFF-ISOLATION vs. FREQUENCY
MAX4023/25 toc13
FREQUENCY (MHz)
OFF-ISOLATION (dB)
FREQUENCY (MHz)
CROSSTALK (dB)
ALL-HOSTILE CROSSTALK
vs. FREQUENCY
MAX4023/25 toc14
OUTPUT IMPEDANCE
vs. FREQUENCY
MAX4023/25 toc15
FREQUENCY (MHz)
OUTPUT IMPEDANCE (
INPUT VOLTAGE-NOISE DENSITY
vs. FREQUENCY
MAX4023/25 toc16
VOLTAGE-NOISE DENSITY (nV/
Hz)
MAX4023/MAX4025
LARGE-SIGNAL TRANSIENT RESPONSE

MAX4023/25 toc17
20ns/div
INPUT
1V/div
OUTPUT
1V/div
MAX4023/MAX4025
SMALL-SIGNAL TRANSIENT RESPONSE

MAX4023/25 toc18
20ns/div
INPUT
50mV/div
OUTPUT
50mV/div
Typical Operating Characteristics—±5V Dual Supply (continued)

(VCC= +5V, VEE= -5V, VCM= REF = 0V, EN = +5V, RIN= 75Ωto GND, RL= 150Ωto GND, AVCL= +1V/V (MAX4023/MAX4025),
AVCL= +2V/V (MAX4024/MAX4026), TA= +25°C, unless otherwise noted.)
MAX4023–MAX4026riple and Quad, 2:1 Video Multiplexer-
Amplifiers with Fixed and Settable Gain
MAX4024/MAX4026
LARGE-SIGNAL TRANSIENT RESPONSE

MAX4023/25 toc19
20ns/div
INPUT
500mV/div
OUTPUT
1V/div
MAX4024/MAX4026
SMALL-SIGNAL TRANSIENT RESPONSE

MAX4023/25 toc20
20ns/div
INPUT
25mV/div
OUTPUT
50mV/div
CHANNEL SWITCHING TRANSIENT

MAX4023/25 toc21
20ns/div
VA/B
5V/div
VOUT
20mV/div
ENABLE RESPONSE TIME

MAX4023/25 toc22
20ns/div
VEN
5V/div
VOUT
500mV/div
MAX4023/MAX4025
SMALL-SIGNAL BANDWIDTH
vs. FREQUENCY vs. CL

MAX4023/25 toc23
FREQUENCY (MHz)
GAIN (dB)
CL = 15pF
CL = 10pF
CL = 5pF
CL = 0pF
OPTIMAL ISOLATION RESISTOR
vs. CAPACITIVE LOAD

MAX4023/25 toc24
CAPACITIVE LOAD (pF)
OPTIMAL ISOLATION RESISTOR (
MAX4023
RL = 150Ω
Typical Operating Characteristics—±5V Dual Supply (continued)

(VCC= +5V, VEE= -5V, VCM= REF = 0V, EN = +5V, RIN= 75Ωto GND, RL= 150Ωto GND, AVCL= +1V/V (MAX4023/MAX4025),
AVCL= +2V/V (MAX4024/MAX4026), TA= +25°C, unless otherwise noted.)
MAX4023–MAX4026riple and Quad, 2:1 Video Multiplexer-
Amplifiers with Fixed and Settable Gain
MAX4023/MAX4025
SMALL-SIGNAL BANDWIDTH vs. FREQUENCY

MAX4023/25 toc25
FREQUENCY (MHz)
NORMALIZED GAIN (dB)
MAX4023/MAX4025
SMALL-SIGNAL GAIN FLATNESS
vs. FREQUENCY
MAX4023/25 toc26
FREQUENCY (MHz)
GAIN (dB)
MAX4023/MAX4025
LARGE-SIGNAL BANDWIDTH
vs. FREQUENCY
MAX4023/25 toc27
FREQUENCY (MHz)
GAIN (dB)
MAX4023/MAX4025
LARGE-SIGNAL GAIN FLATNESS
vs. FREQUENCY
MAX4023/25 toc28
FREQUENCY (MHz)
GAIN (dB)
MAX4024/MAX4026
SMALL-SIGNAL BANDWIDTH vs. FREQUENCY
MAX4023/25 toc29
FREQUENCY (MHz)
NORMALIZED GAIN (dB)
MAX4024/MAX4026
SMALL-SIGNAL GAIN FLATNESS
vs. FREQUENCY
MAX4023/25 toc30
FREQUENCY (MHz)
NORMALIZED GAIN (dB)
MAX4024/MAX4026
LARGE-SIGNAL BANDWIDTH vs. FREQUENCY
MAX4023/25 toc31
NORMALIZED GAIN (dB)
MAX4024/MAX4026
LARGE-SIGNAL GAIN FLATNESS
vs. FREQUENCY
MAX4023/25 toc32
NORMALIZED GAIN (dB)
Typical Operating Characteristics—+5V Single Supply
(VCC= +5V, VEE= 0V, VCM= 0.5V, VREF= VCM, EN = +5V, RIN= 75Ωto VCM, RL= 150Ωto GND, AVCL= +1V/V
(MAX4023/MAX4025), AVCL= +2V/V (MAX4024/MAX4026), TA= +25°C, unless otherwise noted.)
MAX4023–MAX4026riple and Quad, 2:1 Video Multiplexer-
Amplifiers with Fixed and Settable Gainypical Operating Characteristics—+5V Single Supply (continued)

(VCC= +5V, VEE= 0V, VCM= 0.5V, VREF= VCM, EN = +5V, RIN= 75Ωto VCM, RL= 150Ωto GND, AVCL= +1V/V
(MAX4023/MAX4025), AVCL= +2V/V (MAX4024/MAX4026), TA= +25°C, unless otherwise noted.)
6th5th4th3rd2nd1st
6th5th4th3rd2nd1st
MAX4023/MAX4025
DIFFERENTIAL GAIN AND PHASE

DIFFERENTIAL
PHASE (
DIFFERENTIAL
GAIN (%)
MAX4023/25 toc33
6th5th4th3rd2nd1st
6th5th4th3rd2nd1st
MAX4024/MAX4026
DIFFERENTIAL GAIN AND PHASE

DIFFERENTIAL
PHASE (
DIFFERENTIAL
GAIN (%)
MAX4023/25 toc34
PIN
MAX4023
SO/QSOP
MAX4024
SO/TSSOP
MAX4025
SO/TSSOP
MAX4026
SO/TSSOP
NAMEFUNCTION
111IN1AAmplifier Input 1A222IN2AAmplifier Input 2A333IN3AAmplifier Input 3A455, 6VEE
Negative Power-Supply Voltage. Bypass VEE to GND with
a 0.1µF capacitor. Connect VEE to GND for single-supply
operation.13617A/BChannel Select Input. Pull A/B high to select channel A.
Drive A/B low to select channel B.577IN1BAmplifier Input 1B688IN2BAmplifier Input 2B799IN3BAmplifier Input 3B—14—FB3Amplifier Feedback Input for Amplifier 391313OUT3Amplifier Output 3101818OUT2Amplifier Output 2—17—FB2Amplifier Feedback Input for Amplifier 2111514ENEnable Input. Pull EN high for normal operation. Drive EN
low to disable all outputs.
Pin Description
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