IHL0212D1509 [XPPOWER]

DC-DC, 2W, DUAL OUTPUT, HIGH ISO;
IHL0212D1509
型号: IHL0212D1509
厂家: XP POWER LIMITED    XP POWER LIMITED
描述:

DC-DC, 2W, DUAL OUTPUT, HIGH ISO

输出元件
文件: 总4页 (文件大小:423K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
DC-DC Converter  
IHL02 Series  
2 Watts  
• High Isolation, 5200 V  
xxx Series  
• 250 VAC Working Voltage  
• Single and Dual Outputs  
• Bipolar Outputs for MOSFET and IGBT Drives  
• SIP7 Package  
• -40 °C to +95 °C Operation  
• Full Load at 65 °C Ambient  
• MTBF 2.5 MHrs  
• 3 Year Warranty  
Dimensions:  
IHL02:  
0.77 x 0.28 x 0.39” (19.5 x 7.2 x 10.0 mm)  
Input  
Characteristic  
Minimum  
4.5  
Typical  
maximum  
5.5  
Units  
VDC  
Notes & Conditions  
5 V nominal  
10.8  
13.2  
12 V nominal  
Input Voltage Range  
Input Reflected Ripple Current  
Input Surge  
13.5  
21.6  
16.5  
26.4  
15 V nominal  
24 V nominal  
Through 12 µH inductor and 47 µF capacitor  
5 V nominal  
12 V nominal  
15 V nominal  
24 V nominal  
20  
mA pk-pk  
VDC for 100 ms  
9
18  
20  
30  
Output  
Characteristic  
Output Voltage  
Initial Set Accuracy  
Minimum Load  
Minimum  
Typical  
maximum  
Units  
VDC  
%
Notes & Conditions  
See Models and Ratings table  
At full load  
Minimum load required to meet specified regulation  
Output changes by max of 1.2% for each 1% change in  
input voltage  
3.3  
30  
5
10  
%
Line Regulation  
Load Regulation  
Cross Regulation  
Ripple & Noise  
1.2  
%/1%  
For IHL0205S3V3 and IHL0205S05/Other Models.  
From 10% to full load, see application note  
12/10  
%
On dual output models, when one output is at 25% load  
and other is varied from 10% load to full load  
20 MHz bandwidth.Measured using 10 µF electrolytic in  
parallel with 0.1 µF ceramic capacitor  
5
%
150  
mV pk-pk  
Short Circuit Protection  
Maximum Capacitive Load  
Temperature Coefficient  
Continuous  
See Models and Ratings table  
0.03  
%/˚C  
Mechanical Details  
0.28  
(7.2)  
0.28  
(7.2)  
0.76 (19.5)  
0.01  
(0.25)  
Printed  
Face  
0.12  
(3.0)  
0.39  
(10.0)  
0.37  
(9.5)  
0.02  
(0.5)  
Pin Connections  
0.08  
(2.0)  
0.02 0.02  
(0.5) (0.5)  
Pin  
1
2
5
6
Single  
+Vin  
-Vin  
Dual  
+Vin  
-Vin  
0.10 (2.54)  
0.60 (15.24)  
0.08  
(2.13)  
0.08  
(2.13)  
-Vout  
No Pin  
+Vout  
-Vout  
Common  
+Vout  
Notes  
1. All dimensions are in inches (mm)  
2. Weight: 0.006 lbs (2.7 g) approx.  
3. Pin diameter: 0.02 0.002 (0.5 0.05)  
4. Pin pitchand length tolerance: 0.014 ( 0.35)  
5. Case tolerance: 0.02 ( 0.5)  
7
www.xppower.com  
1
DC-DC Converter  
IHL02 Series  
Models & Ratings  
Input current  
No Load  
Maximum Capacitive  
Input Voltage  
Output Voltage  
Output Current  
Efficiency  
Model Number  
Load  
1000 µF  
470 µF  
Full Load  
435 mA  
505 mA  
480 mA  
475 mA  
470 mA  
505 mA  
490 mA  
480 mA  
475 mA  
480 mA  
185 mA  
210 mA  
205 mA  
205 mA  
200 mA  
210 mA  
205 mA  
200 mA  
200 mA  
210 mA  
150 mA  
170 mA  
165 mA  
165 mA  
160 mA  
170 mA  
165 mA  
160 mA  
165 mA  
165 mA  
95 mA  
3V3  
5 V  
500 mA  
400 mA  
222 mA  
167 mA  
133 mA  
200 mA  
111 mA  
83.3 mA  
66.7 mA  
+66.7/-111 mA  
500 mA  
40 mA  
40 mA  
40 mA  
40 mA  
40 mA  
40 mA  
40 mA  
40 mA  
40 mA  
40 mA  
30 mA  
30 mA  
30 mA  
30 mA  
30 mA  
30 mA  
30 mA  
30 mA  
30 mA  
30 mA  
25 mA  
25 mA  
25 mA  
25 mA  
25 mA  
25 mA  
25 mA  
25 mA  
25 mA  
25 mA  
20 mA  
20 mA  
20 mA  
20 mA  
20 mA  
20 mA  
20 mA  
20 mA  
20 mA  
20 mA  
76%  
79%  
83%  
84%  
85%  
79%  
82%  
83%  
84%  
83%  
74%  
79%  
82%  
82%  
83%  
79%  
81%  
83%  
83%  
80%  
74%  
78%  
81%  
82%  
83%  
79%  
81%  
83%  
82%  
81%  
73%  
78%  
81%  
81%  
81%  
79%  
80%  
81%  
82%  
80%  
IHL0205S3V3  
IHL0205S05  
IHL0205S09  
IHL0205S12  
IHL0205S15  
IHL0205D05  
IHL0205D09  
IHL0205D12  
IHL0205D15  
IHL0205D1509  
IHL0212S3V3  
IHL0212S05  
IHL0212S09  
IHL0212S12  
IHL0212S15  
IHL0212D05  
IHL0212D09  
IHL0212D12  
IHL0212D15  
IHL0212D1509  
IHL0215S3V3  
IHL0215S05  
IHL0215S09  
IHL0215S12  
IHL0215S15  
IHL0215D05  
IHL0215D09  
IHL0215D12  
IHL0215D15  
IHL0215D1509  
IHL0224S3V3  
IHL0224S05  
IHL0224S09  
IHL0224S12  
IHL0224S15  
IHL0224D05  
IHL0224D09  
IHL0224D12  
IHL0224D15  
IHL0224D1509  
9 V  
470 µF  
12 V  
15 V  
5 V  
220 µF  
220 µF  
4.5-5.5V  
220 µF  
9 V  
220 µF  
12 V  
15 V  
+15/-9 V  
3V3  
100 µF  
100 µF  
+100/-220 µF  
1000 µF  
470 µF  
5 V  
400 mA  
9 V  
222 mA  
470 µF  
12 V  
15 V  
5 V  
167 mA  
220 µF  
133 mA  
220 µF  
10.8-13.2V  
13.5-16.5V  
21.6-26.4V  
200 mA  
220 µF  
9 V  
111 mA  
220 µF  
12 V  
15 V  
+15/-9V  
3V3  
83.3 mA  
66.7 mA  
+66.7/-111 mA  
500 mA  
100 µF  
100 µF  
+100/-220 µF  
1000 µF  
470 µF  
5 V  
400 mA  
9 V  
222 mA  
470 µF  
12 V  
15 V  
5 V  
167 mA  
220 µF  
133 mA  
220 µF  
200 mA  
220 µF  
9 V  
111 mA  
220 µF  
12 V  
15 V  
+15/-9V  
3V3  
83.3 mA  
66.7 mA  
+66.7/-111 mA  
500 mA  
100 µF  
100 µF  
+100/-220 µF  
1000 µF  
470 µF  
5 V  
400 mA  
105 mA  
105 mA  
105 mA  
105 mA  
105 mA  
105 mA  
105 mA  
100 mA  
105 mA  
9 V  
222 mA  
470 µF  
12 V  
15 V  
5 V  
167 mA  
220 µF  
133 mA  
220 µF  
200 mA  
220 µF  
9 V  
111 mA  
220 µF  
12 V  
15 V  
+15/-9V  
83.3 mA  
66.7 mA  
+66.7/-111 mA  
100 µF  
100 µF  
+100/-220 µF  
Notes  
Input currents measured at nominal input voltage.  
General  
Characteristic  
Minimum  
Typical  
maximum  
Units  
%
Notes & Conditions  
Efficiency  
80  
See Models and Ratings table  
Isolation: Input to Output  
Isolation Working Voltage  
Isolation Resistance  
Isolation Capacitance  
Switching Frequency  
Power Density  
5200  
VDC  
250  
VAC  
Ω
9
10  
7
pF  
50  
100  
23.7  
kHz  
W/in  
3
Mean Time Between Failure  
Weight  
3.3  
MHrs  
lb (g)  
MIL-HDBK-217F, +25 °C GB  
0.006 (2.7)  
www.xppower.com  
2
DC-DC Converter  
IHL02 Series  
Environmental  
Characteristic  
Operating Temperature  
Storage Temperature  
Case Temperature  
Humidity  
Minimum  
Typical  
maximum  
+95  
Units  
°C  
Notes & Conditions  
-40  
-40  
Derate Linearly from 100% at 65 °C to no load at 95 °C  
+125  
+100  
95  
°C  
°C  
2.5  
%RH  
Non-condensing  
Cooling  
Natural convection  
EMC: Emissions  
Phenomenon  
Conducted  
Radiated  
Standard  
Test Level  
Notes & Conditions  
EN55032  
EN55032  
Class B  
Class B  
See Application Note  
EMC: Immunity  
Phenomenon  
Standard  
Test Level  
6/ 8 kV  
Criteria  
Notes & Conditions  
ESD Immunity  
Radiated Immunity  
EN61000-4-2  
EN61000-4-3  
A
A
Contact/Air Discharge  
10 Vrms  
External components required,  
see application notes  
EFT/Burst  
EN61000-4-4  
2 kV  
A
Conducted Immunity  
magnetic Fields  
EN61000-4-6  
EN61000-4-8  
10 V rms  
1 A/m  
A
A
Mechanical Details  
0.28  
(7.2)  
0.28  
(7.2)  
0.76 (19.5)  
0.01  
(0.25)  
Printed  
Face  
0.12  
(3.0)  
0.39  
(10.0)  
0.37  
(9.5)  
0.02  
(0.5)  
0.08  
(2.0)  
0.02 0.02  
(0.5) (0.5)  
0.10 (2.54)  
0.60 (15.24)  
0.08  
(2.13)  
0.08  
Pin Connections  
(2.13)  
Pin  
Single  
+Vin  
Dual  
+Vin  
1
2
5
6
7
-Vin  
-Vin  
-Vout  
No Pin  
+Vout  
-Vout  
Common  
+Vout  
Notes  
1. All dimensions are in inches (mm)  
2. Weight: 0.006 lbs (2.7 g) approx.  
3. Pin diameter: 0.02 0.002 (0.5 0.05)  
4. Pin pitch and length tolerance: 0.014 ( 0.35)  
5. Case tolerance: 0.02 ( 0.5)  
www.xppower.com  
3
3
DC-DC Converter  
IHL02 Series  
Application Note  
Regulation  
EFT Filter  
Input components C1 and D1 are used to help meet EFT and surge test requirements for the module.  
C1  
D1  
IHL0205XXXX  
330 µF/50 V  
330 µF/50 V  
330 µF/50 V  
1000 µF/35 V  
SMDJ9.0 A  
SMDJ13 A  
SMDJ18 A  
SMDJ24 A  
IHL02  
IHL0212XXXX  
IHL0215XXXX  
IHL0224XXXX  
D1  
EMI Filter  
Input filter components (C1,C2, C3 and L) are used to help meet conducted emissions requirements for the module. These components should be  
mounted as close as possible to the module, and all leads should be minimised to decrease radiated noise.  
C1  
L
C2  
C3  
IHL0205XXXX 1206, 4.7 µF/ 16 V 6.8 µH  
IHL0212XXXX 1206, 22 µF/ 25 V 6.8 µH  
IHL0215XXXX 1206, 22 µF/ 25 V 6.8 µH  
L
IHL02  
C3  
IHL0224XXXX 1210, 10 µF/ 35 V 10 µH 1210, 10 µF/ 35 V 1210, 10 µF/ 35 V  
www.xppower.com  
23 Aug 16  

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