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R1221N33AD 参数 Datasheet PDF下载

R1221N33AD图片预览
型号: R1221N33AD
PDF下载: 下载PDF文件 查看货源
内容描述: 降压型DC / DC转换器电压检测器 [Step-down DC/DC Converter with Voltage Detector]
分类和应用: 转换器稳压器开关式稳压器或控制器电源电路开关式控制器光电二极管
文件页数/大小: 21 页 / 220 K
品牌: RICOH [ RICOH ELECTRONICS DEVICES DIVISION ]
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n TYPICAL APPLICATIONS AND APPLICATION HINTS  
PMOS  
L
EXT  
VIN  
Vcc  
OUT  
V
R1  
COUT  
SD1  
CIN  
CE  
VDOUT  
Reset/  
GND  
CE CONTROL  
CPU  
PMOS: HAT1020R (Hitachi), Si3443DV (Siliconix)  
SD1 : RB491D (Rohm)  
L : CD105(Sumida, 27mH)  
COUT : 47mF(Tantalum Type)  
R1 : 100kW  
CIN  
:10mF(Tantalum Type)  
When you use these ICs, consider the following issues;  
l As shown in the block diagram, a parasitic diode is formed in each terminal, each of these diodes is not formed  
for load current, therefore do not use it in such a way. When you control the CE pin by another power supply,  
do not make its "H" level more than the voltage level of VIN pin.  
l Detector threshold hysteresis is set at 3 percent of detector threshold voltage. (Min. 1 percent, Max. 5 percent)  
l Setting Detector threshold voltage range depends on Output voltage of DC/DC converter.  
Release Voltage from Reset condition must not be more than Output voltage of DC/DC converter.  
(Detector Threshold Voltage´1.07 < Output Voltage of DC/DC converter´0.98  
l When the R1221NXXXX is on stand-by mode, the output voltage of VDOUT is GND level, therefore if the pull-up  
resistor for VDOUT pin is pulled up another power supply, a certain amount of current is loading through the  
resistor.  
l The operation of Latch-type protection circuit is as follows;  
When the maximum duty cycle continues longer than the delay time for protection circuit, (Refer to the Electrical  
Characteristics) the protection circuit works to shut-down the external Power MOS with its latching operation.  
Therefore when an input/output voltage difference is small, the protection circuit may work even at small load  
current.  
To release the protection state, after disable this IC with a chip enable circuit, enable it again, or restart this IC  
with power-on. However, in the case of restarting this IC with power-on, after the power supply is turned off, if  
a certain amount of charge remains in C , or some voltage is forced to V from C , this IC might not be  
IN  
IN  
IN  
restarted even after power-on.  
If rising transition speed of supply voltage is too slow, or the time which is required for V voltage to reach  
IN  
Output Voltage of DC/DC converter is longer than soft-starting time plus delay time for protection circuit,  
protection circuit works before V voltage reaches Output Voltage of DC/DC converter. To avoid this condition,  
IN  
make this IC disable(CE=”L”) first, then force V voltage, and after V voltage becomes equal or more than  
IN  
IN  
V
OUT  
, make this IC enable(CE=“H”).  
l
Set external components as close as possible to the IC and minimize the connection between the components  
and the IC. In particular, a capacitor should be connected to VOUT pin with the minimum connection. And make  
sufficient grounding and reinforce supplying. A large switching current flows through the connection of power  
supply, an inductor and the connection of VOUT. If the impedance of power supply line is high, the voltage level of  
power supply of the IC fluctuates with the switching current. This may cause unstable operation of the IC.  
12345  
Rev. 1.11  
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