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MAX4310ESAMAXAMN/a50avaiHigh-Speed / Low-Power / Single-Supply / Multichannel / Video Multiplexer-Amplifiers
MAX4310ESAMAXIMN/a10avaiHigh-Speed / Low-Power / Single-Supply / Multichannel / Video Multiplexer-Amplifiers
MAX4311EEEMAXIMN/a2avaiHigh-Speed / Low-Power / Single-Supply / Multichannel / Video Multiplexer-Amplifiers
MAX4313ESAMAXIMN/a82avaiHigh-Speed / Low-Power / Single-Supply / Multichannel / Video Multiplexer-Amplifiers
MAX4313EUAMAXIMN/a2500avaiHigh-Speed / Low-Power / Single-Supply / Multichannel / Video Multiplexer-Amplifiers
MAX4314ESDMAXIMN/a42avaiHigh-Speed / Low-Power / Single-Supply / Multichannel / Video Multiplexer-Amplifiers
MAX4315EEEMAXIMN/a1avaiHigh-Speed / Low-Power / Single-Supply / Multichannel / Video Multiplexer-Amplifiers
MAX4315ESEMAXIMN/a2500avaiHigh-Speed / Low-Power / Single-Supply / Multichannel / Video Multiplexer-Amplifiers


MAX4313EUA ,High-Speed / Low-Power / Single-Supply / Multichannel / Video Multiplexer-AmplifiersELECTRICAL CHARACTERISTICS (continued)(V = +5V, V = 0, SHDN ‡ 4V, R = ¥ , V = 2.5V, T = T to T , un ..
MAX4314EEE+ ,High-Speed, Low-Power, Single-Supply Multichannel, Video Multiplexer-AmplifiersELECTRICAL CHARACTERISTICS(V = +5V, V = 0V, SHDN≥ 4V, R =∞, V = 2.5V, T = T to T , unless otherwise ..
MAX4314EEE+ ,High-Speed, Low-Power, Single-Supply Multichannel, Video Multiplexer-AmplifiersApplicationsMAX4315EEE -40ºC to +85°C 16 QSOPVideo Signal Multiplexing Broadcast VideoMAX4315ESE -4 ..
MAX4314ESD ,High-Speed / Low-Power / Single-Supply / Multichannel / Video Multiplexer-AmplifiersMAX4310–MAX431519-1379; Rev 1; 4/99High-Speed, Low-Power, Single-Supply, Multichannel, Video Multip ..
MAX4314ESD+T ,High-Speed, Low-Power, Single-Supply Multichannel, Video Multiplexer-Amplifiersapplications.MAX4314ESD -40ºC to +85°C 14 Narrow SO____
MAX4315EEE ,High-Speed / Low-Power / Single-Supply / Multichannel / Video Multiplexer-Amplifiersapplications. MAX4313EUA -40°C to +85°C 8 µMAXMAX4313ESA -40°C to +85°C 8 SO
MAX813L ,Low-Cost, µP Supervisory CircuitsGeneral Description Beneits and
MAX813LCPA ,Low-Cost / uP Supervisory CircuitsFeaturesThe MAX705-MAX708/MAX813L microprocessor (µP) ' µMAX Package: Smallest 8-Pin SOsupervisory ..
MAX813LCPA+ ,Low-Cost, µP Supervisory CircuitsMAX705–MAX708/MAX813L Low-Cost, μP Supervisory Circuits
MAX813LCSA ,Low-Cost / uP Supervisory CircuitsMAX705–MAX708/MAX813L19-4334; Rev. 5; 9/95Low-Cost, µP Supervisory Circuits_______________
MAX813LCSA ,Low-Cost / uP Supervisory CircuitsApplicationsComputers_________________Pin ConfigurationsControllersIntelligent Instruments TOP VIEW ..
MAX813LCSA ,Low-Cost / uP Supervisory CircuitsELECTRICAL CHARACTERISTICS(V = 4.75V to 5.5V for MAX705/MAX707/MAX813L, V = 4.5V to 5.5V for MAX706 ..


MAX4310ESA-MAX4311EEE-MAX4313ESA-MAX4313EUA-MAX4314ESD-MAX4315EEE-MAX4315ESE
High-Speed / Low-Power / Single-Supply / Multichannel / Video Multiplexer-Amplifiers
General Description
The MAX4310–MAX4315 single-supply mux-amps com-
bine high-speed operation, low-glitch switching, and excel-
lent video specifications. The six products in this family are
differentiated by the number of multiplexer inputs and the
gain configuration. The MAX4310/MAX4311/MAX4312 inte-
grate 2-/4-/8-channel multiplexers, respectively, with an
adjustable gain amplifier optimized for unity-gain stability.
The MAX4313/MAX4314/MAX4315 integrate 2-/4-/8-chan-
nel multiplexers, respectively, with a +2V/V fixed-gain
amplifier. All devices have 40ns channel switching time
and low 10mVp-p switching transients, making them ideal
for video-switching applications. They operate from a sin-
gle +4V to +10.5V supply, or from dual supplies of ±2V to
±5.25V, and they feature Rail-to-Rail®outputs and an input
common-mode voltage range that extends to the negative
supply rail.
The MAX4310/MAX4311/MAX4312 have a -3dB bandwidth
of 280MHz/345MHz/265MHz and up to a 460V/µs slew rate.
The MAX4313/MAX4314/MAX4315, with 150MHz/127MHz/
97MHz -3dB bandwidths up to a 540V/µs slew rate, and a
fixed gain of +2V/V, are ideally suited for driving back-
terminated cables. Quiescent supply current is as low as
6.1mA, while low-power shutdown mode reduces supply
current to as low as 560µA and places the outputs in a
high-impedance state. The MAX4310–MAX4315’s internal
amplifiers maintain an open-loop output impedance of onlyover the full output voltage range, minimizing the gain
error and bandwidth changes under loads typical of most
rail-to-rail amplifiers. With differential gain and phase errors
of 0.06% and 0.08°, respectively, these devices are ideal
for broadcast video applications.
Applications

Video Signal MultiplexingBroadcast Video
Video Crosspoint SwitchingMedical Imaging
Flash ADC Input BuffersMultimedia Products
75ΩVideo Cable Drivers
High-Speed Signal Processing
Features
Single-Supply Operation Down to +4V345MHz -3dB Bandwidth (MAX4311)
150MHz -3dB Bandwidth (MAX4313)
540V/µs Slew Rate (MAX4313)Low 6.1mA Quiescent Supply Current40ns Channel Switching TimeUltra-Low 10mVp-p Switching Transient0.06%/0.08°Differential Gain/Phase ErrorRail-to-Rail Outputs: Drives 150Ωto within
730mV of the Rails
Input Common-Mode Range Includes
Negative Rail
Low-Power Shutdown ModeAvailable in Space-Saving 8-Pin µMAX and
16-Pin QSOP Packages
MAX4310–MAX4315
High-Speed, Low-Power, Single-Supply,
Multichannel, Video Multiplexer-Amplifiers
Ordering Information
Pin Configurations and Typical Operating Circuit appear at
end of data sheet.

Rail-to-Rail is a registered trademark of Nippon Motorola, Ltd.
Selector Guide
MAX4310–MAX4315
High-Speed, Low-Power, Single-Supply,
Multichannel, Video Multiplexer-Amplifiers
ABSOLUTE MAXIMUM RATINGS
DC ELECTRICAL CHARACTERISTICS

(VCC= +5V, VEE= 0, SHDN‡4V, RL = ¥, VOUT= 2.5V, TA = TMINto TMAX, unless otherwise noted. Typical values are at= +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 specifications is not implied. Exposure to
absolute maximum rating conditions for extended periods may affect device reliability.
Supply Voltage (VCCto VEE)..................................................12V
Input Voltage....................................(VEE- 0.3V) to (VCC+ 0.3V)
All Other Pins...................................(VEE- 0.3V) to (VCC+ 0.3V)
Output Current................................................................±120mA
Short-Circuit Duration (VOUTto GND, VCCor VEE)....Continuous
Continuous Power Dissipation (TA= +70°C)
8-Pin SO (derate 5.9mW/°C above +70°C)...................471mW
8-Pin µMAX (derate 4.1mW/°C above +70°C)..............330mW
14-Pin SO (derate 8.3mW/°C above +70°C).................667mW
16-Pin SO (derate 8.7mW/°C above +70°C).................696mW
16-Pin QSOP (derate 8.3mW/°C above +70°C)............667mW
Operating Temperature Range...........................-40°C to +85°C
Storage Temperature Range.............................-65°C to +150°C
Lead Temperature (soldering, 10sec).............................+300°C
MAX4310–MAX4315
High-Speed, Low-Power, Single-Supply,
Multichannel, Video Multiplexer-Amplifiers
DC ELECTRICAL CHARACTERISTICS (continued)

(VCC= +5V, VEE= 0, SHDN‡4V, RL = ¥, VOUT= 2.5V, TA = TMINto TMAX, unless otherwise noted. Typical values are at= +25°C.)
AC ELECTRICAL CHARACTERISTICS

(VCC= +5V; VEE= 0; SHDN‡4V; RL= 150Ω; VCM= 1.5V; AVCL= +1V/V (MAX4310/MAX4311/MAX4312), AVCL= +2V/V
(MAX4313/MAX4314/MAX4315); TA= +25°C; unless otherwise noted.)
MAX4310–MAX4315
High-Speed, Low-Power, Single-Supply,
Multichannel, Video Multiplexer-Amplifiers
AC ELECTRICAL CHARACTERISTICS (continued)

(VCC= +5V; VEE= 0; SHDN‡4V; RL= 150Ω; VCM= 1.5V; AVCL= +1V/V (MAX4310/MAX4311/MAX4312), AVCL= +2V/V
(MAX4313/MAX4314/MAX4315); TA= +25°C; unless otherwise noted.)
MAX4310–MAX4315
High-Speed, Low-Power, Single-Supply,
Multichannel, Video Multiplexer-Amplifiers
Typical Operating Characteristics

(VCC= +5V; VEE= 0; SHDN‡4V; RL= 150Ωto VCC/2; VCM= 1.5V; AVCL= +1V/V (MAX4310/MAX4311/MAX4312), AVCL= +2V/V
(MAX4313/MAX4314/MAX4315); TA= +25°C; unless otherwise noted.)
AC ELECTRICAL CHARACTERISTICS (continued)

(VCC= +5V; VEE= 0; SHDN‡4V; RL= 150Ω; VCM= 1.5V; AVCL= +1V/V (MAX4310/MAX4311/MAX4312), AVCL= +2V/V
(MAX4313/MAX4314/MAX4315); TA= +25°C; unless otherwise noted.)
MAX4310–MAX4315
High-Speed, Low-Power, Single-Supply,
Multichannel, Video Multiplexer-Amplifiersypical Operating Characteristics (continued)

(VCC= +5V; VEE= 0; SHDN‡4V; RL= 150Ωto VCC/2; VCM= 1.5V; AVCL= +1V/V (MAX4310/MAX4311/MAX4312), AVCL= +2V/V
(MAX4313/MAX4314/MAX4315); TA= +25°C; unless otherwise noted.)
MAX4310–MAX4315
High-Speed, Low-Power, Single-Supply,
Multichannel, Video Multiplexer-Amplifiers
Typical Operating Characteristics (continued)

(VCC= +5V; VEE= 0; SHDN‡4V; RL= 150Ωto VCC/2; VCM= 1.5V; AVCL= +1V/V (MAX4310/MAX4311/MAX4312), AVCL= +2V/V
(MAX4313/MAX4314/MAX4315); TA= +25°C; unless otherwise noted.)
MAX4310–MAX4315
High-Speed, Low-Power, Single-Supply,
Multichannel, Video Multiplexer-Amplifiersypical Operating Characteristics (continued)

(VCC= +5V; VEE= 0; SHDN‡4V; RL= 150Ωto VCC/2; VCM= 1.5V; AVCL= +1V/V (MAX4310/MAX4311/MAX4312), AVCL= +2V/V
(MAX4313/MAX4314/MAX4315); TA= +25°C; unless otherwise noted.)
High-Speed, Low-Power, Single-Supply,
Multichannel, Video Multiplexer-Amplifiers
Typical Operating Characteristics (continued)

(VCC= +5V; VEE= 0; SHDN‡4V; RL= 150Ωto VCC/2; VCM= 1.5V; AVCL= +1V/V (MAX4310/MAX4311/MAX4312), AVCL= +2V/V
(MAX4313/MAX4314/MAX4315); TA= +25°C; unless otherwise noted.)
MAX4310–MAX4315
High-Speed, Low-Power, Single-Supply,
Multichannel, Video Multiplexer-Amplifiersypical Operating Characteristics (continued)

(VCC= +5V; VEE= 0; SHDN‡4V; RL= 150Ωto VCC/2; VCM= 1.5V; AVCL= +1V/V (MAX4310/MAX4311/MAX4312), AVCL= +2V/V
(MAX4313/MAX4314/MAX4315); TA= +25°C; unless otherwise noted.)
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