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MAX496CSEMAXIMN/a10avai375MHz Quad Closed-Loop Video Buffers, AV = +1 and +2
MAX497CPEMAXIMN/a22avai375MHz Quad Closed-Loop Video Buffers, AV = +1 and +2
MAX497CPEN/a5avai375MHz Quad Closed-Loop Video Buffers, AV = +1 and +2
MAX497CPEMAXIM ?N/a10avai375MHz Quad Closed-Loop Video Buffers, AV = +1 and +2
MAX497CSEMAXN/a40avai375MHz Quad Closed-Loop Video Buffers, AV = +1 and +2


MAX497CSE ,375MHz Quad Closed-Loop Video Buffers, AV = +1 and +2MAX496/MAX49719-0373; Rev 1; 12/98375MHz Quad Closed-Loop Video Buffers, A = +1 and +2V____________ ..
MAX497CSE+ ,375MHz Quad Closed Loop Video Buffers, AV = +1 and +2Applications♦ Low Distortion: 64dBc (f = 10MHz)Computer Workstations♦ Directly Drives 50Ω or 75Ω B ..
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MAX496CSE-MAX497CPE-MAX497CSE
375MHz Quad Closed-Loop Video Buffers, AV = +1 and +2
________________General Description
The MAX496 and MAX497 are quad, closed-loop, ±5V
video buffers that feature extremely high bandwidth and
slew rate for both component video (RGB or YUV) and
composite video (NTSC, PAL, SECAM). The MAX496 is
a unity-gain (0dB) buffer with a 375MHz -3dB bandwidth
and a 1600V/µs slew rate. The MAX497 gain of +2 (6dB)
buffer, optimized for driving back-terminated coaxial
cable, features a 275MHz -3dB bandwidth and a
1500V/µs slew rate. The MAX496/MAX497 are not slew-
rate limited, thus providing a high full-power bandwidth
of 230MHz and 215MHz, respectively.
The MAX496/MAX497 incorporate a unique two-stage
architecture that combines the low offset and noise
benefits of voltage feedback with the high bandwidth
and slew-rate advantages of current-mode-feedback.
________________________Applications

Computer Workstations
Surveillance Video
Broadcast and High-Definition TV Systems
Multimedia Products
Medical Imaging
High-Speed Signal Processing
Video Switching and Routing
____________________________Features
MAX496 Fixed Gain: +1V/V
MAX497 Fixed Gain: +2V/V
High Speed:
Small-Signal -3dB Bandwidth: 375MHz (MAX496)
275MHz (MAX497)
Full-Power -3dB Bandwidth: 230MHz (MAX496)
215MHz (MAX497)
0.1dB Gain Flatness: 65MHz (MAX496)
120MHz (MAX497)
1600V/µs Slew Rate (MAX496)
1500V/µs Slew Rate (MAX497)
Fast Settling Time: 12ns to 0.1%Lowest Differential Phase/Gain Error: 0.01°/0.01% 2pF Input Capacitance5.6nV/√HzInput-Referred Voltage NoiseLow Distortion: 64dBc (f = 10MHz)Directly Drives 50Ωor 75ΩBack-Terminated CablesHigh ESD Protection: 5000VOutput Short-Circuit Protected
MAX496/MAX497
375MHz Quad Closed-Loop
Video Buffers, AV= +1 and +2
___________________Pin Configuration
_______________Frequency Response

19-0373; Rev 1; 12/98
_______________Ordering Information

* Dice are specified at TA = +25°C, DC parameters only.
MAX496/MAX497
375MHz Quad Closed-Loop
Video Buffers, AV= +1 and +2
ABSOLUTE MAXIMUM RATINGS
DC ELECTRICAL CHARACTERISTICS

(VCC= +5V, VEE= -5V, VIN= 0V, RL= 150Ω, TA= TMINto TMAX, unless otherwise noted. Typical values are at 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 specifications is not implied. Exposure to
absolute maximum rating conditions for extended periods may affect device reliability.
Supply Voltage (VCCto VEE).................................................12V
Voltage on Any Input Pin to GND ....(VCC+ 0.3V) to (VEE- 0.3V)
Output Short-Circuit Current Duration ...............................60sec
Continuous Power Dissipation (TA= +70°C)
Plastic DIP (derate 10.53mW/°C above +70°C)..........842mW
Narrow SO (derate 8.70mW/°C above +70°C)............696mW
Operating Temperature Range...............................0°C to +70°C
Storage Temperature Range.............................-65°C to +150°C
Lead Temperature (soldering, 10sec).............................+300°C
MAX496/MAX497
375MHz Quad Closed-Loop
Video Buffers, AV= +1 and +2ELECTRICAL CHARACTERISTICS

(VCC= +5V, VEE= -5V, VIN= 0V, RL= 100Ω, TA= +25°C.)
Note 1:
Voltage Gain = (VOUT- VOS) / VIN, measured at VIN= ±1V.
Note 2:
Voltage Gain = (VOUT- VOS) / VIN, measured at VIN= ±2V.
Note 3:
Input test signal is a 3.58MHz sine wave of amplitude 40 IRE superimposed on a linear ramp (0 IRE to 100 IRE). = 150Ω, see Figure 2.
Note 4:
Input of channel under test grounded through 75Ω. Adjacent channel driven at f = 10MHz (Figure 4a). For All-Hostile
Crosstalk, all inputs are driven except the channel under test (Figure 4b).
MAX496/MAX497
375MHz Quad Closed-Loop
Video Buffers, AV= +1 and +2
__________________________________________Typical Operating Characteristics

(VCC= +5V, VEE= -5V, RL= 100Ω, TA= +25°C, unless otherwise noted.)
MAX496/MAX497
375MHz Quad Closed-Loop
Video Buffers, AV= +1 and +2
_____________________________Typical Operating Characteristics (continued)

(VCC= +5V, VEE= -5V, RL= 100Ω, TA= +25°C, unless otherwise noted.)
MAX496/MAX497
375MHz Quad Closed-Loop
Video Buffers, AV= +1 and +2
_____________________________Typical Operating Characteristics (continued)

(VCC= +5V, VEE= -5V, RL= 100Ω, TA= +25°C, unless otherwise noted.)
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