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AFL12008SX/CH PDF预览

AFL12008SX/CH

更新时间: 2024-02-01 05:18:46
品牌 Logo 应用领域
英飞凌 - INFINEON 转换器局域网
页数 文件大小 规格书
12页 242K
描述
28V Input, Single Output HYBRID-HIGH RELIABILITY DC/DC CONVERTER

AFL12008SX/CH 技术参数

是否无铅: 不含铅是否Rohs认证: 符合
生命周期:Obsolete零件包装代码:MODULE
包装说明:,针数:12
Reach Compliance Code:compliantECCN代码:EAR99
风险等级:5.73模拟集成电路 - 其他类型:DC-DC REGULATED POWER SUPPLY MODULE
最大输入电压:160 V最小输入电压:80 V
标称输入电压:120 VJESD-30 代码:R-XDMA-P12
最大负载调整率:1%功能数量:1
输出次数:1端子数量:12
最高工作温度:85 °C最低工作温度:-20 °C
最大输出电压:9.6 V标称输出电压:8 V
封装主体材料:UNSPECIFIED封装形状:RECTANGULAR
封装形式:MICROELECTRONIC ASSEMBLY峰值回流温度(摄氏度):260
认证状态:Not Qualified表面贴装:NO
技术:HYBRID温度等级:OTHER
端子形式:PIN/PEG端子位置:DUAL
处于峰值回流温度下的最长时间:40最大总功率输出:80 W
微调/可调输出:YESBase Number Matches:1

AFL12008SX/CH 数据手册

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AFL28XXS Series  
Input Filter  
Figure V. Connection for VOUT Adjustment  
The AFL28XXS series converters incorporate a two stage  
LC input filter whose elements dominate the input load  
impedance characteristic during the turn-on. The input  
circuit is as shown in Figure IV.  
Enable 2  
Share  
RADJ  
+ Sense  
AFL28xxS  
Figure IV. Input Filter Circuit  
- Sense  
Return  
To Load  
900nH  
130nH  
+ Vout  
Pin 1  
Pin 2  
Note: Radj must be set 500Ω  
Attempts to adjust the output voltage to a value greater than  
120% of nominal should be avoided because of the potential  
of exceeding internal component stress ratings and  
subsequent operation to failure. Under no circumstance  
should the external setting resistor be made less than 500Ω.  
By remaining within this specified range of values, completely  
safe operation fully within normal component derating limits  
6 µfd  
11.2 µfd  
Undervoltage Lockout  
is assured.  
A minimum voltage is required at the input of the converter  
to initiate operation. This voltage is set to 14V ± 0.5V. To  
preclude the possibility of noise or other variations at the  
input falsely initiating and halting converter operation, a  
hysteresis of approximately 1.0V is incorporated in this  
circuit. Thus if the input voltage droops to 13V ± 0.5V, the  
converter will shut down and remain inoperative until the  
input voltage returns to 14V.  
Examination of the equation relating output voltage and  
resistor value reveals a special benefit of the circuit topology  
utilized for remote sensing of output voltage in the AFL28XXS  
series of converters. It is apparent that as the resistance  
increases, the output voltage approaches the nominal set  
value of the device. In fact the calculated limiting value of  
output voltage as the adjusting resistor becomes very large  
is 25mV above nominal device voltage.  
Output VoltageAdjust  
The consequence is that if the +sense connection is  
unintentionally broken, an AFL28XXS has a fail-safe output  
voltage of Vout + 25mV, where the 25mV is independent of  
the nominal output voltage. It can be further demonstrated  
that in the event of both the + and - sense connections  
being broken, the output will be limited to Vout + 440mV.  
This 440mV is also essentially constant independent of the  
In addition to permitting close voltage regulation of remotely  
located loads, it is possible to utilize the converter sense  
pins to incrementally increase the output voltage over a  
limited range. The adjustments made possible by this method  
are intended as a means to “trim” the output to a voltage  
setting for some particular application, but are not intended  
to create an adjustable output converter. These output  
voltage setting variations are obtained by connecting an  
appropriate resistor value between the +sense and -sense  
pins while connecting the -sense pin to the output return pin  
as shown in Figure V. below. The range of adjustment and  
corresponding range of resistance values can be determined  
nominal output voltage.  
General Application Information  
The AFL28XXS series of converters are capable of  
providing large transient currents to user loads on demand.  
Because the nominal input voltage range in this series is  
relatively low, the resulting input current demands will be  
correspondingly large. It is important therefore, that the line  
impedance be kept very low to prevent steady state and  
transient input currents from degrading the supply voltage  
between the voltage source and the converter input. In  
applications requiring high static currents and large  
transients, it is recommended that the input leads be made  
of adequate size to minimize resistive losses, and that a  
good quality capacitor of approximately 100µfd be  
connected directly across the input terminals to assure an  
adequately low impedance at the input terminals. Table I  
relates nominal resistance values and selected wire sizes.  
by use of the following equation.  
VNOM  
Radj = 100•  
VOUT - VNOM -.025  
Where VNOM = device nominal output voltage, and  
VOUT = desired output voltage  
Finding a resistor value for a particular output voltage, is  
simply a matter of substituting the desired output voltage  
and the nominal device voltage into the equation and solving  
for the corresponding resistor value.  
8
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