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MAX4100 Datasheet(PDF) 8 Page - Maxim Integrated Products |
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MAX4100 Datasheet(HTML) 8 Page - Maxim Integrated Products |
8 / 12 page ![]() _______________Detailed Description The MAX4100/MAX4101 are low-power, high-bandwidth operational amplifiers optimized for driving back-termi- nated cables in composite video, RGB, and RF systems. The MAX4100 is unity-gain stable, and the MAX4101 is optimized for closed-loop gains greater than or equal to 2V/V (AVCL ≥ 2V/V). While consuming only 5mA (6mA max) supply current, both devices can drive 50 Ω back- terminated cables to ±3.1V minimum. The MAX4100 features a bandwidth in excess of 500MHz and a 0.1dB gain flatness of 65MHz. It offers differential gain and phase errors of 0.06%/0.04°, respectively. The MAX4101 features a -3dB bandwidth of 200MHz, a 0.1dB bandwidth of 50MHz, and 0.07%/0.04° differential gain and phase. Available in small 8-pin SO and µMAX packages, these ICs are ideally suited for use in portable systems (in RGB, broadcast, or consumer video applications) that benefit from low power consumption. __________Applications Information Layout and Power-Supply Bypassing The MAX4100/MAX4101 have an RF bandwidth and, consequently, require careful board layout. Depending on the size of the PC board used and the frequency of operation, it may be desirable to use constant-imped- ance microstrip or stripline techniques. To realize the full AC performance of this high-speed amplifier, pay careful attention to power-supply bypass- ing and board layout. The PC board should have at least two layers: a signal and power layer on one side, and a large, low-impedance ground plane on the other side. The ground plane should be as free of voids as possible. With multilayer boards, locate the ground plane on a layer that incorporates no signal or power traces. Regardless of whether a constant-impedance board is used, it is best to observe the following guidelines when designing the board. Wire-wrap boards are much too inductive, and breadboards are much too capaci- tive; neither should be used. IC sockets increase para- sitic capacitance and inductance, and should not be used. In general, surface-mount components give bet- ter high-frequency performance than through-hole components. They have shorter leads and lower para- sitic reactances. Keep lines as short and as straight as possible. Do not make 90° turns; round all corners. High-frequency bypassing techniques must be observed to maintain the amplifier accuracy. The bypass capaci- tors should include a 1000pF ceramic capacitor between each supply pin and the ground plane, located as close to the package as possible. Next, place a 0.01µF to 0.1µF ceramic capacitor in parallel with each 1000pF capacitor, and as close to each as possible. Then place a 10µF to 15µF low-ESR tantalum at the point of entry (to the PC board) of the power-supply pins. The power-sup- ply trace should lead directly from the tantalum capacitor to the VCC and VEE pins. To minimize parasitic induc- tance, keep PC traces short and use surface-mount components. 500MHz, Low-Power Op Amps 8 _______________________________________________________________________________________ MAX4100 MAX4101 VOUT = (RF / RG)VIN VIN VOUT RF RG MAX4100 MAX4101 MAX4100 MAX4101 VOUT = [1 + (RF / RG)]VIN VIN VOUT RF RG MAX4100 MAX4101 Figure 1b. Noninverting Gain Configuration MAX4100 MAX4101 VOUT = VIN VIN VOUT 24 Ω MAX4100 MAX4101 Figure 1c. MAX4100 Unity-Gain Buffer Configuration Figure 1a. Inverting Gain Configuration |
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