欢迎访问ic37.com |
会员登录 免费注册
发布采购

TL431AIDR2G 参数 Datasheet PDF下载

TL431AIDR2G图片预览
型号: TL431AIDR2G
PDF下载: 下载PDF文件 查看货源
内容描述: 可编程精密基准 [PROGRAMMABLE PRECISION REFERENCES]
分类和应用: 光电二极管输出元件
文件页数/大小: 18 页 / 176 K
品牌: ONSEMI [ ONSEMI ]
 浏览型号TL431AIDR2G的Datasheet PDF文件第8页浏览型号TL431AIDR2G的Datasheet PDF文件第9页浏览型号TL431AIDR2G的Datasheet PDF文件第10页浏览型号TL431AIDR2G的Datasheet PDF文件第11页浏览型号TL431AIDR2G的Datasheet PDF文件第13页浏览型号TL431AIDR2G的Datasheet PDF文件第14页浏览型号TL431AIDR2G的Datasheet PDF文件第15页浏览型号TL431AIDR2G的Datasheet PDF文件第16页  
TL431, A, B Series, NCV431A  
V
CC  
R
L
C
L
Input  
3
15 k  
Cathode  
9.0 mF  
Go  
1.0 mmho  
R
10 M  
P2  
Ref  
V
ref  
1.78 V  
1
C
20 pF  
G
M
P1  
C
P2  
+
R
ref  
16  
R
1.0 M  
GM  
0.265 pF  
R
Z1  
500 k  
15.9 k  
8.25 k  
Anode  
2
Figure 31. Simplified TL431 Device Model  
TL431 OPEN−LOOP VOLTAGE GAIN VERSUS FREQUENCY  
Note that the transfer function now has an extra pole  
formed by the load capacitance and load resistance.  
Note that the crossover frequency in this case is about  
250 kHz, having a phase margin of about −46 degrees.  
Therefore, instability of this circuit is likely.  
60  
50  
40  
30  
20  
10  
0
TL431 OPEN−LOOP BODE PLOT WITH LOAD CAP  
80  
60  
40  
20  
−10  
−20  
1
2
3
4
5
6
7
10  
10  
10  
10  
10  
10  
10  
f, FREQUENCY (Hz)  
Figure 32. Example 1 Circuit Open Loop Gain Plot  
Example 2.  
0
I = 7.5 mA, R = 2.2 kW, C = 0.01 mF. Cathode tied to  
C
L
L
reference input pin. An examination of the data sheet  
stability boundary curve (Figure 15) shows that this value of  
load capacitance and cathode current is on the boundary.  
Define the transfer gain.  
−20  
1
2
3
4
5
6
10  
10  
10  
10  
10  
10  
f, FREQUENCY (Hz)  
Figure 33. Example 2 Circuit Open Loop Gain Plot  
The DC gain is:  
With three poles, this system is unstable. The only hope  
for stabilizing this circuit is to add a zero. However, that can  
only be done by adding a series resistance to the output  
capacitance, which will reduce its effectiveness as a noise  
filter. Therefore, practically, in reference voltage  
applications, the best solution appears to be to use a smaller  
value of capacitance in low noise applications or a very  
large value to provide noise filtering and a dominant pole  
rolloff of the system.  
G + G R  
GoR +  
M GM  
L
(2.323)(1.0 M)(1.25 m)(2200) + 6389 + 76 dB  
The resulting open loop Bode plot is shown in Figure 33.  
The asymptotic plot may be expressed as the following  
equation:  
jf  
ǒ1 )  
Ǔǒ1 )  
Ǔ
500 kHz  
Av + 615  
jf  
jf  
jf  
ǒ
Ǔǒ1 )  
Ǔ
1 )  
8.0 kHz  
60 kHz  
7.2 kHz  
http://onsemi.com  
12