欢迎访问ic37.com |
会员登录 免费注册
发布采购

AMS1082 参数 Datasheet PDF下载

AMS1082图片预览
型号: AMS1082
PDF下载: 下载PDF文件 查看货源
内容描述: 的AMS1082系列的可调和固定电压调节器的设计,以提供10A的输出电流,并降低运营1V的输入至输出差分。 [The AMS1082 series of adjustable and fixed voltage regulators are designed to provide 10A output current and to operate down to 1V input-to-output differential.]
分类和应用: 调节器
文件页数/大小: 8 页 / 244 K
品牌: AMS [ Advanced Monolithic Systems Ltd ]
 浏览型号AMS1082的Datasheet PDF文件第1页浏览型号AMS1082的Datasheet PDF文件第2页浏览型号AMS1082的Datasheet PDF文件第3页浏览型号AMS1082的Datasheet PDF文件第5页浏览型号AMS1082的Datasheet PDF文件第6页浏览型号AMS1082的Datasheet PDF文件第7页浏览型号AMS1082的Datasheet PDF文件第8页  
AMS1082  
APPLICATION HINTS  
The AMS1082 series of adjustable and fixed regulators are easy to  
use and have all the protection features expected in high  
performance voltage regulators: short circuit protection and  
thermal shut-down.  
D1  
Pin compatible with older three terminal adjustable regulators,  
these devices offer the advantage of a lower dropout voltage, more  
precise reference tolerance and improved reference stability with  
temperature.  
AMS1082  
IN OUT  
ADJ  
VOUT  
COUT  
VIN  
+
R1  
R2  
150µF  
Stability  
CADFJ  
10  
µ
The circuit design used in the AMS1082 series requires the use of  
an output capacitor as part of the device frequency compensation.  
The addition of 150µF aluminum electrolytic or a 22µF solid  
tantalum on the output will ensure stability for all operating  
conditions.  
Overload Recovery  
When the adjustment terminal is bypassed with a capacitor to  
improve the ripple rejection, the requirement for an output  
capacitor increases. The value of 22µF tantalum or 150µF  
aluminum covers all cases of bypassing the adjustment terminal.  
Without bypassing the adjustment terminal smaller capacitors can  
be used with equally good results.  
To ensure good transient response with heavy load current  
changes capacitor values on the order of 100µF are used in the  
output of many regulators. To further improve stability and  
transient response of these devices larger values of output  
capacitor can be used.  
When the power is first turned on, as the input voltage rises, the  
output follows the input, permitting the regulator to start up into  
heavy loads. During the start-up, as the input voltage is rising, the  
input-to-output voltage differential remains small, allowing the  
regulator to supply large output currents. A problem can occur  
with a heavy output load when the input voltage is high and the  
output voltage is low, when the removal of an output short will  
not permit the output voltage to recover. The load line for such a  
load may intersect two points on the output current curve. In this  
case, there are two stable output operating points for the regulator.  
With this double intersection, the power supply may need to be  
cycled down to zero and brought up again to make the output  
recover.  
Protection Diodes  
Unlike older regulators, the AMS1082 family does not need any  
protection diodes between the adjustment pin and the output and  
from the output to the input to prevent over-stressing the die.  
Internal resistors are limiting the internal current paths on the  
AMS1082 adjustment pin, therefore even with capacitors on the  
adjustment pin no protection diode is needed to ensure device  
safety under short-circuit conditions.  
Diodes between the input and output are not usually needed.  
Microsecond surge currents of 50A to 100A can be handled by the  
internal diode between the input and output pins of the device. In  
normal operations it is difficult to get those values of surge  
currents even with the use of large output capacitances. If high  
value output capacitors are used, such as 1000µF to 5000µF and  
the input pin is instantaneously shorted to ground, damage can  
occur. A diode from output to input is recommended, when a  
crowbar circuit at the input of the AMS1082 is used. Normal  
power supply cycling or even plugging and unplugging in the  
system will not generate current large enough to do any damage.  
The adjustment pin can be driven on a transient basis ±25V, with  
respect to the output without any device degradation. As with any  
IC regulator, none the protection circuitry will be functional and  
the internal transistors will break down if the maximum input to  
output voltage differential is exceeded.  
Ripple Rejection  
The ripple rejection values are measured with the adjustment pin  
bypassed. The impedance of the adjust pin capacitor at the ripple  
frequency should be less than the value of R1 (normally 100Ω  
to120) for a proper bypassing and ripple rejection approaching  
the values shown. The size of the required adjust pin capacitor is a  
function of the input ripple frequency. If R1=100at 120Hz the  
adjust pin capacitor should be 25µF. At 10kHz only 0.22µF is  
needed.  
The ripple rejection will be a function of output voltage, in  
circuits without an adjust pin bypass capacitor. The output ripple  
will increase directly as a ratio of the output voltage to the  
reference voltage (VOUT / VREF).  
Output Voltage  
The AMS1082 series develops a 1.25V reference voltage between  
the output and the adjust terminal. Placing a resistor between these  
two terminals causes a constant current to flow through R1 and  
down through R2 to set the overall output voltage.  
4
Advanced Monolithic Systems http://www.ams-semitech.com