| 数据搜索系统,热门电子元器件搜索 |
|
ADA4830-1BCPZ-R7 数据表(PDF) 17 Page - Analog Devices |
|
|
|||||||||||||||||||||||||||||
ADA4830-1BCPZ-R7 数据表(HTML) 17 Page - Analog Devices |
|
17 / 22 page ![]() Data Sheet ADA4830-1/ADA4830-2 Rev. C | Page 17 of 22 DRIVING CAPACITIVE LOADS The ADA4830-1 and ADA4830-2 are capable of driving large capacitive loads while maintaining its rated performance. Several performance curves vs. capacitive load are shown in Figure 12 and Figure 25. Capacitive loads interact with an op amp’s output impedance to create an extra delay in the feedback path. This reduces circuit stability and can cause unwanted ringing and oscillation. The capacitive load drive of the ADA4830-1and ADA4830-2 can be increased by adding a low valued resistor, RS, in series with the capacitive load. Figure 35 shows the test circuit. ADA4830-1 + – CL = 47pF RS = 49.9Ω RL = 1kΩ Figure 35. RS Test Circuit Introducing a series resistor tends to isolate the capacitive load from the feedback loop, thereby diminishing its influence. One drawback to this approach is a slight loss of signal amplitude. Figure 36 shows the effects of a series resistor on the capacitive drive. For very large capacitive loads, the frequency response of the amplifier is dominated by the roll-off of the series resistor and capacitive load. 1.0 1.5 2.0 2.5 3.0 3.5 4.0 0 50 100 150 200 250 TIME (ns) +VS = 5V RL = 1kΩ CL = 47pF NO RS RS = 49.9Ω Figure 36. Pulse Response With and Without Series Resistor Another method of reducing the resonant peaking caused by driving large capacitive loads at the output of the ADA4830-1 and ADA4830-2 is with the use of a R-C shunt circuit or a snubber circuit. This method acts to resistively load the amplifier output, thus reducing frequency response peaking. One drawback to this approach is a slight loss of signal bandwidth. Figure 37 shows a simple circuit representation of the implementation of the R-C snubber circuit with RSNT and CSNT. Figure 38 shows the effects of a R-C snubber circuit driving 47 pF, where RSNT = 73.2 Ω and CSNT = 0.1 µF. ADA4830-1 + – CL = 47pF CSNT = 0.1uF RL = 1kΩ RSNT = 73.2Ω Figure 37. R-C Test Circuit 1.0 1.5 2.0 2.5 3.0 3.5 4.0 0 50 100 150 200 250 TIME (ns) +VS = 5V RL = 1kΩ CL = 47pF NO SNUBBER CIRCUIT RSNT = 73.2Ω CSNT = 0.1µF Figure 38. Pulse Response With and Without R-C Snubber Circuit |
|
|
链接网址 |
| ALLDATASHEET是否为您带来帮助? [ DONATE ] |
关于 Alldatasheet | 广告服务 | 联系我们 | 隐私政策 | 数据表链接 | 链接交换 | 制造商名单 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 |