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AHE2815S/MSTR PDF预览

AHE2815S/MSTR

更新时间: 2024-01-02 12:22:15
品牌 Logo 应用领域
其他 - ETC 转换器
页数 文件大小 规格书
8页 66K
描述
DC to DC Converter

AHE2815S/MSTR 技术参数

是否Rohs认证: 符合生命周期:Active
包装说明:,Reach Compliance Code:compliant
风险等级:5.77其他特性:ADDITIONAL -15V OUTPUT AVAILABLE
模拟集成电路 - 其他类型:DC-DC REGULATED POWER SUPPLY MODULE最大输入电压:40 V
最小输入电压:17 V标称输入电压:28 V
JESD-30 代码:R-XDMA-P10最大负载调整率:1%
功能数量:1输出次数:1
端子数量:10最高工作温度:85 °C
最低工作温度:-20 °C最大输出电压:15.3 V
最小输出电压:14.7 V标称输出电压:15 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:20 W
微调/可调输出:NOBase Number Matches:1

AHE2815S/MSTR 数据手册

 浏览型号AHE2815S/MSTR的Datasheet PDF文件第1页浏览型号AHE2815S/MSTR的Datasheet PDF文件第2页浏览型号AHE2815S/MSTR的Datasheet PDF文件第3页浏览型号AHE2815S/MSTR的Datasheet PDF文件第5页浏览型号AHE2815S/MSTR的Datasheet PDF文件第6页浏览型号AHE2815S/MSTR的Datasheet PDF文件第7页 
AHE28XXS Series  
Specifications  
ABSOLUTE MAXIMUM RATINGS  
Input Voltage1  
Power Output  
Soldering  
-0.5V to 50V  
Internally limited, 17.5W typical for AHE2805S/HB&CH, 22.5W typical for AHE281XS/HB&CH  
300°C for 10 seconds  
Operating -55°C to +125°C case  
Temp Range1  
Storage -65°C to +135°C  
Parameter  
Conditions  
AHE2805S/HB&CH  
AHE2812S/HB&CH  
AHE2815S/HB&CH  
-55°C Tc +125°C  
Vin = 28 Vdc ±5%,CL = 0  
Unless otherwise specified  
Min  
Typ  
Max  
Min  
Typ  
Max  
Min  
Typ  
Max  
Units  
Static Characteristic  
OUTPUT  
Voltage  
Current  
Ripple  
V
IN=17 to 40 VDC  
4.90  
0.0  
5.00  
20  
5.10  
3000  
60  
11.76  
0.0  
12.00  
30  
12.24  
1667  
60  
14.70  
0.0  
15.00  
30  
15.30  
1333  
60  
VDC  
mADC  
mVp-p  
I
OUT=0 to Full Load  
Full Load, DC to 1MHz  
TCASE = 25°C, IOUT = 0  
Accuracy  
Power1  
4.95  
15  
5.00  
5.05  
11.88  
20  
12.00  
12.12  
14.85  
20  
15.00  
15.15  
VDC  
W
REGULATION  
Line  
V
IN = 17 to 40 VDC  
TCASE = 25°C  
OUT = 0 to Full Load  
5
30  
35  
mV  
mV  
Load  
10  
50  
50  
120  
50  
150  
I
INPUT  
Voltage Range4  
Current  
17.0  
28.0  
8
40.0  
18  
35  
17.0  
28.0  
8
40.0  
18  
35  
17.0  
28.0  
8
40.0  
18  
35  
VDC  
mADC  
mADC  
mV p-p  
%
Inhibited  
No Load  
Full Load  
TCASE = +25°C  
No effect on performance  
Ripple Current  
Efficiency  
Capacitive Load  
20  
82  
1000  
50  
25  
83  
1000  
50  
25  
84  
1000  
50  
80  
500  
80  
200  
80  
200  
µF  
W
W
Load fault power  
4.5  
6
4.5  
6
4.5  
6
Short Circuit TC =25°C  
Overload TC = 25°C  
dissipation5  
Isolation  
Input to Output @ 500Vdc  
100  
100  
100  
MΩ  
Dynamic  
Characteristic  
Step Load Changes  
Output TC =25°C  
Transient  
50% Load 100% Load  
No Load 50% Load  
50% Load No Load  
50% Load 100% Load  
No Load 50% Load  
50% Load No Load  
mVpk  
mVpk  
mVpk  
µsec  
µsec  
msec  
±150  
-300  
+300  
25  
±300  
-500  
+500  
70  
200  
5
±200  
-400  
+400  
25  
±300  
-500  
+500  
70  
1500  
5
±200  
-400  
+400  
25  
±300  
-500  
+500  
70  
1500  
5
Recovery2  
100  
500  
500  
Step Line Changes  
Output TC = 25°C  
Transient  
Input step 17 to 40VDC  
Input step 40 to 17VDC  
Input step 17 to 40VDC  
Input step 40 to 17VDC  
+180  
-600  
400  
+300  
1000  
800  
+180  
-600  
400  
+500  
-1500  
800  
+180  
-600  
400  
+500  
-1500  
800  
mVpk  
mVpk  
µsec  
µsec  
Recovery2  
400  
800  
400  
800  
400  
800  
TURN –ON  
Overshoot  
Delay3  
VIN = 17 to 40VDC  
IOUT = 0 to Full Load  
VIN = 17 to 40VDC  
Standard Package  
Flange Package  
0
8
8
55  
58  
550  
10  
10  
300  
8
8
55  
58  
600  
10  
10  
300  
8
8
500  
10  
10  
55  
58  
mVpk  
msec  
msec  
grams  
grams  
Load Fault Recovery4  
Weight  
Notes to Specifications  
1.  
2.  
Above +125°C case temperature, derate output power linearly to 0 at 135°C case.  
Recovery time is measured from the initiation of the transient to where VOUT has returned to within ±1% of VOUT at 50% load.  
See typical waveforms.  
3.  
4.  
5.  
Turn-on delay time measurement is for either an application of power at the input or a signal at the shutdown pin.  
For operation at 16VDC, derate output power by 33%.  
An overload is that condition with a load in excess of the rated load but less than that necessary to trigger the short circuit  
protection and is the condition of maximum power dissipation.  
4
www.irf.com  

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