| Motor de Búsqueda de Datasheet de Componentes Electrónicos |
|
AD810 Datasheet(PDF) 12 Page - Analog Devices |
|
|
|||||||||||||||||||||||||||||
AD810 Datasheet(HTML) 12 Page - Analog Devices |
|
12 / 16 page ![]() AD810 REV. A –12– CAPACITIVE LOADS When used with the appropriate feedback resistor, the AD810 can drive capacitive loads exceeding 1000 pF directly without oscillation. By using the curves in Figure 45 to chose the resistor value, less than 1 dB of peaking can easily be achieved without sacrificing much bandwidth. Note that the curves were generated for the case of a 10 k Ω load resistor, for smaller load resistances, the peaking will be less than indicated by Figure 45. Another method of compensating for large load capacitances is to insert a resistor in series with the loop output as shown in Figure 43. In most cases, less than 50 Ω is all that is needed to achieve an extremely flat gain response. Figures 44 to 46 illustrate the outstanding performance that can be achieved when driving a 1000 pF capacitor. AD810 RF RG 7 3 2 3 0.1µF +VS 6 –VS 4 0.1µF RL VIN VO CL RS (OPTIONAL) RT 1.0µF 1.0µF Figure 43. Circuit Options for Driving a Large Capacitive Load 0 1 10 100 –3 –6 –9 3 6 9 G = +2 VS = ±15V RL= 10kΩ CL = 1000pF RF = 750Ω RS = 11Ω RF = 4.5kΩ RS = 0 FREQUENCY – MHz Figure 44. Performance Comparison of Two Methods for Driving a Large Capacitive Load 2k 1k 4k 3k 1 10 100 1000 FEEDBACK RESISTOR – Ω 0 VS = ±15V GAIN = +2 RL = 1kΩ VS = ±5V Figure 45. Max Load Capacitance for Less than 1 dB of Peaking vs. Feedback Resistor 90 100 0% 5V 5V 100nS V IN VOUT Figure 46. AD810 Driving a 1000 pF Load, Gain = +2, RF = 750 Ω, R S = 11 Ω, R L = 10 k Ω DISABLE MODE By pulling the voltage on Pin 8 to common (0 V), the AD810 can be put into a disabled state. In this condition, the supply current drops to less than 2.8 mA, the output becomes a high impedance, and there is a high level of isolation from input to output. In the case of a line driver for example, the output impedance will be about the same as for a 1.5 k Ω resistor (the feedback plus gain resistors) in parallel with a 13 pF capacitor (due to the output) and the input to output isolation will be better than 65 dB at 1 MHz. Leaving the disable pin disconnected (floating) will leave the AD810 operational in the enabled state. In cases where the amplifier is driving a high impedance load, the input to output isolation will decrease significantly if the input signal is greater than about 1.2 V peak to peak. The isolation can be restored back to the 65 dB level by adding a dummy load (say 150 Ω) at the amplifier output. This will attenuate the feedthrough signal. (This is not an issue for multiplexer applications where the outputs of multiple AD810s are tied together as long as at least one channel is in the ON state.) The input impedance of the disable pin is about 35 k Ω in parallel with a few pF. When grounded, about 50 µA flows out |
|
|
Enlace URL |
| ¿ALLDATASHEET es útil para Ud.? [ DONATE ] |
Todo acerca de Alldatasheet | Publicidad | Contáctenos | Política de Privacidad | Enlace a la hoja de datos | Intercambio de Enlaces | Lista de Fabricantes All Rights Reserved©Alldatasheet.com |
| Russian : Alldatasheetru.com | Korean : Alldatasheet.co.kr | Spanish : Alldatasheet.es | French : Alldatasheet.fr | Italian : Alldatasheetit.com Portuguese : Alldatasheetpt.com | Polish : Alldatasheet.pl | Vietnamese : Alldatasheet.vn Indian : Alldatasheet.in | Mexican : Alldatasheet.com.mx | British : Alldatasheet.co.uk | New Zealand : Alldatasheet.co.nz |
|
Family Site : ic2ic.com |
icmetro.com |