NVS01YG-M6 [BEL]

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NVS01YG-M6
型号: NVS01YG-M6
厂家: BEL FUSE INC.    BEL FUSE INC.
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The NV Series converters are low profile, single-and dual-output DC-  
DC converters intended for SMT placement and reflow soldering. The  
product provides onboard conversion for a wide range of standard  
telecom and datacom input voltages to isolated low-output voltages.  
Proprietary patented manufacturing process with full process  
automation ensures optimal product quality in an extremely small  
footprint.  
RoHS-compliant for all six substances  
Single-and double-output models available  
Basic insulation  
1500 VDC i/o electric strength test voltage  
Low conducted and radiated EMI  
Extremely-wide input ranges (up to 4:1)  
Wide output range (3.3 V to 48 V)  
Output overcurrent protection  
Parallel and series connection providing flexible output voltages and  
power  
Operating temperature up to 110 °C  
Full rated output power at 71 ºC with convection cooling  
Low profile SMT design, 8.5 mm height  
Excellent co-planarity (within 0.1 mm)  
Safety-approved to IEC/EN 60950-1 2ndEd and UL/CSA 60950-1 2nd Ed  
Distributed power architectures  
Telecommunications equipment  
LAN/WAN applications  
Data processing  
Industrial applications  
2
NV Series  
INPUT  
VOLTAGE  
VDC  
INPUT  
CURRENT, MAX  
A
OUTPUT  
VOLTAGE  
V
OUTPUT  
CURRENT  
A
OUTPUT  
RIPPLE/NOISE,  
mV P-P  
TYPICAL  
EFFICIENCY  
%
MODEL  
NVS01YG-M6G  
NVS0.5YH-M6G  
NVS01ZG-M6G  
NVS0.5ZH-M6G  
NVS0.9CE-M6G  
NVS0.7CG-M6G  
NVS0.3CH-M6G  
NVS0.3CJ-M6G  
NVS0.9EE-M6G  
NVS0.7EG-M6G  
NVS0.3EH-M6G  
NVS0.3EJ-M6G  
18 36  
18 36  
36 75  
36 75  
9 36  
0.27  
0.33  
0.17  
0.17  
0.45  
0.55  
0.65  
0.65  
0.33  
0.33  
0.33  
0.33  
5.0  
1.0  
50  
82  
83  
82  
82  
79  
81  
82  
82  
80  
81  
82  
82  
12  
0.5  
95  
5.0  
12  
1.0  
50  
0.5  
95  
3.3  
5.0  
12  
0.9  
50  
9 36  
0.7  
50  
9 36  
0.34  
0.28  
0.9  
95  
9 36  
15  
120  
50  
18 75  
18 75  
18 75  
18 75  
3.3  
5.0  
12  
0.7  
50  
0.34  
0.28  
95  
15  
120  
To order models which use lead solder exemption remove suffix ‘G’ from model number.  
INPUT  
VOLTAGE  
VDC  
INPUT  
CURRENT, MAX  
A
OUTPUT  
VOLTAGE  
V
OUTPUT  
CURRENT  
A
OUTPUT  
RIPPLE/NOISE,  
mV P-P  
TYPICAL  
EFFICIENCY  
%
MODEL  
NVD0.1YGG-M6G  
NVD0.5YHH-M6G  
NVD0.4YJJ-M6G  
NVD0.7CGG-M6G  
NVD0.3CHH-M6G  
NVD0.3CJJ-M6G  
NVD0.2CKK-M6G  
NVD0.7EGG-M6G  
NVD0.3EHH-M6G  
NVD0.3EJJ-M6G  
NVD0.2EKK-M6G  
18 - 36  
18 - 36  
18 - 36  
9 36  
0.27  
0.33  
0.33  
0.65  
0.65  
0.65  
0.65  
0.33  
0.33  
0.33  
0.33  
±5.0  
±12  
±15  
±5.0  
±12  
±15  
±24  
±5.0  
±12  
±15  
±24  
±0.5  
60  
100  
120  
50  
82  
83  
84  
81  
82  
82  
83  
81  
82  
82  
83  
±0.25  
±0.20  
±0.35  
±0.17  
±0.14  
±0.08  
±0.35  
±0.17  
±0.14  
±0.08  
9 36  
95  
9 36  
120  
190  
50  
9 36  
18 75  
18 75  
18 75  
18 75  
95  
120  
190  
To order models which use lead solder exemption remove suffix ‘G’ from model number.  
Stresses in excess of the absolute maximum ratings may cause performance degradation, adversely affect long term reliability, and  
cause permanent damage to the converter.  
All specifications apply over input voltage, output load, and temperature range, unless otherwise noted.  
PARAMETER  
CONDITIONS / DESCRIPTION  
MIN  
NOM  
MAX  
UNITS  
Operating Case Temperature (TC)  
Storage Temperature (TS)  
-40  
-55  
110  
100  
°C  
°C  
tech.support@psbel.com  
3
NV Series  
PARAMETER  
Shock  
CONDITIONS / DESCRIPTION  
IEC68-2-27  
MIN  
NOM  
MAX  
100  
UNITS  
gn  
gn  
Sinusoidal Vibration  
Weight  
IEC68-2-6  
10  
0.4/12  
oz/g  
N/A  
Water Washing  
Standard process  
Yes  
Per Bellcore TR-NWT-000332  
(100% load @25 °C, GB)  
MTBF  
4.902  
1000 h  
PARAMETER  
CONDITIONS / DESCRIPTION  
MIN  
10  
NOM  
Basic  
1500  
1100  
MAX  
UNITS  
N/A  
Insulation Safety Rating  
Vin = Vin.Min Vin.Max  
VDC  
pF  
Electric Strength Test Voltage  
Insulation Capacitance (Cps)  
Insulation Resistance (Rps)  
M  
PARAMETER  
CONDITIONS / DESCRIPTION  
Continuous  
MIN  
9
NOM  
10  
MAX  
UNITS  
Input Voltage Range (Vi)  
Transient Input Voltage (Vint)  
Input Current when Shutdown  
36  
40  
20  
V
V
Transient, 100 ms  
Vin.Nom, Iout = 0 A  
To Output Regulation Band  
Rise Time  
mA  
250  
10  
ms  
ms  
Turn-On Time  
500  
Input Reflected Ripple Current  
Input Capacitance  
Vin.Max, Io.Max  
30  
mApp  
μF  
0.6  
PARAMETER  
CONDITIONS / DESCRIPTION  
Continuous  
MIN  
18  
NOM  
10  
MAX  
UNITS  
Input Voltage Range (Vi)  
Transient Input Voltage (Vint)  
Input Current when Shutdown  
36  
40  
20  
V
V
Transient, 100 ms  
Vin.Nom, Iout = 0 A  
To Output Regulation Band  
Rise Time  
mA  
250  
10  
ms  
ms  
Turn-On Time  
500  
Input Reflected Ripple Current  
Input Capacitance  
Vin.Max, Io.Max  
30  
mApp  
μF  
0.6  
North America  
+1 408 785 5200  
Asia-Pacific  
+86 755 298 85888  
Europe, Middle East  
+353 61 225 977  
© 2016 Bel Power Solutions & Protection  
BCD.00014_AB 27-April-2016  
4
NV Series  
PARAMETER  
CONDITIONS / DESCRIPTION  
Continuous  
MIN  
18  
NOM  
8
MAX  
UNITS  
Input Voltage Range (Vi)  
Transient Input Voltage (Vint)  
Input Current when Shutdown  
75  
100  
10  
V
V
Transient, 100 ms  
Vin.Nom, Iout = 0 A  
To Output Regulation Band  
Rise Time  
mA  
250  
10  
ms  
ms  
Turn-On Time  
500  
Input Reflected Ripple Current  
Input Capacitance  
Vin.Max, Io.Max  
30  
mApp  
μF  
0.3  
PARAMETER  
CONDITIONS / DESCRIPTION  
Continuous  
MIN  
36  
NOM  
8
MAX  
UNITS  
Input Voltage Range (Vi)  
Transient Input Voltage (Vint)  
Input Current when Shutdown  
75  
100  
10  
V
V
Transient, 100 ms  
Vin.Nom, Iout = 0 A  
To Output Regulation Band  
Rise Time  
mA  
250  
10  
ms  
ms  
Turn-On Time  
500  
Input Reflected Ripple Current  
Input Capacitance  
Vin.Max, Io.Max  
30  
mApp  
μF  
0.3  
All specifications apply over input voltage, output load, and temperature range, unless otherwise noted.  
PARAMETER  
CONDITIONS / DESCRIPTION  
Vi nom, 50% Io. Max  
Vi min to Vi max, 50% Io max  
Vin.Nom, Io.Min to Io.Max  
3.3 Vo  
MIN  
NOM  
MAX  
UNITS  
Output Voltage Accuracy  
Line Regulation  
± 1  
± 1  
%Vo  
%Vo  
Load Regulation  
±4  
±3  
%Vo  
%Vo  
Other Output Voltages  
Total, for single and dual outputs  
3.3 Vo  
μF  
μF  
μF  
μF  
μF  
680  
680  
150  
100  
47  
5 Vo, ±5 Vo  
Maximum Output Capacitance  
12 Vo, ±12 Vo  
15 Vo, ±15 Vo  
±24 Vo  
Dynamic Regulation  
Peak Deviation  
Settling Time  
50-100% Io.Max load step  
change  
5
1
%Vo  
ms  
to 1% error band  
tech.support@psbel.com  
5
NV Series  
PARAMETER  
CONDITIONS / DESCRIPTION  
Vin.Min to Vin.Max, Io.Min to Io  
Max, 20 MHz Bandwidth  
3.3 Vo  
MIN  
NOM  
MAX  
UNITS  
Output Voltage Ripple  
50  
50  
80  
80  
1
mVpp  
mVpp  
5 Vo, ±5 Vo  
12 Vo, ±15 Vo, ±24 Vo  
Output Current Limit Threshold  
Vin.Nom, Io.Max  
0.8  
%Vopp  
%Iomax  
kHz  
Output Current Limit Threshold  
Switching Frequency  
120  
200  
400  
Temperature Coefficient  
0.02  
%Vo/°C  
TYPICAL CHARACTERISTIC CURVES  
7.1  
This series of converters does not require any external components for proper operation. However, if the distribution of the  
input voltage to the converter contains significant inductance, a capacitor across the input terminals may be required to  
stabilize the input voltage. A minimum of 0.47μF, quality electrolytic or ceramic capacitor, is recommended for this purpose.  
For output decoupling it is recommended to connect, directly across the output pins, a 0.47 μF ceramic capacitor (for 3.3 V  
and 5 V outputs) or a 0.27 μF ceramic capacitor (for other outputs). Care must be taken to ensure the maximum rated output  
capacitance for the device is not exceeded, when dimensioning decoupling capacitors in the system, as this could cause  
the unit to detect an overload and enter a ‘hiccup’ mode of operation.  
7.2  
7.3  
When the output is overloaded above the maximum output current rating, the voltage will start to reduce to maintain the  
output power to a safe level. In a condition of high overload or short-circuit where the output voltage is pulled below  
approximately 30% of Vo.nom, the unit will enter a ‘Hiccup’ mode of operation. Under this condition the unit will attempt to  
restart, approximately every 100 ms until the overload has cleared.  
Paralleling of two converters is possible by direct connection of the output voltage terminal pins. The load regulation  
characteristic is designed to facilitate current sharing (typically ± 20%). However, this may cause start-up problems at initial  
start-up, and is only recommended in applications where one converter is able to deliver the full load current (true redundant  
systems).  
7.4  
The outputs of two units may be connected in series to achieve a higher system voltage.  
North America  
+1 408 785 5200  
Asia-Pacific  
+86 755 298 85888  
Europe, Middle East  
+353 61 225 977  
© 2016 Bel Power Solutions & Protection  
BCD.00014_AB 27-April-2016  
6
NV Series  
The derating curves below give an indication of the output power achievable with and without forced-air cooling. However in the  
final application the temperature rise of the converter is also influenced by factors such as heat conduction through the leads to  
the PCB, orientation, the temperature of surrounding components and the input voltage. To ensure the reliability of the converter,  
care must be taken to guarantee that the maximum case temperature is not exceeded under any conditions. The measurement  
point for case temperature is specified on the mechanical drawing (Tc).  
Temperature derating for 18 36 V and 36 75 V input voltage ranges:  
The 9 36 V and 18 75 V input voltage versions of this series feature a 4:1 input voltage range and can operate at full power at  
85 ºC ambient temperature with only convection cooling.  
Temperature derating for 9 36 V and 18 75 V input voltage ranges:  
tech.support@psbel.com  
7
NV Series  
These converters are tested with 1500 VDC from input to output. The input-to-output resistance is greater than 10 MΩ. These  
converters are provided with Basic Insulation between input and output. Nevertheless, if the system using the converter needs to  
receive safety agency approval, certain rules must be followed in the design of the system. In particular, all of the creepage and  
clearance requirements of the end-use application must be observed.  
In order to consider the output of the converter as SELV (Safety Extra Low Voltage) or TNV-1, according to IEC/EN 60950-1 and  
UL/CSA 60950-1, one of the following requirements must be met in the system design:  
(i)  
Fuse: The converter has no internal fuse. An external fuse must be provided to protect the system from catastrophic failure.  
Recommended fuses are listed in the table below:  
INPUT VOLTAGE RANGE  
36 75V  
RECOMMENDED FUSE  
F0.315A  
F0.5A  
18 36V  
9 -6V  
F1.0A  
18 -5V  
F0.5A  
(ii) The user can select a lower rating fuse based upo the inrush transient and the maximum input curren of the converter, which  
occurs at the minimu input voltage. Both input traces and the chassis ground trace (if applicable) must be capable of  
conducting a current of 1.5 times the value of the fuse without opening. The fuse must not be placed in the grounded input  
line, if any.  
(iii) If the voltage source feeding the module is SELV, TNV-1, or TNV-2, the output of the converter is considered SELV and may  
be grounded or ungrounded.  
(iv) The circuitry of the converter may generate transients, which exceed the input voltage. Even if the input voltage is SELV (<60V)  
the components on the primary side of the converter may have to be considered as hazardous. A safety interlock may be  
needed to prevent the user from accessing the converter while operational.  
10.1  
The converters meet the requirements of EN 55011/55022, (conducted noise on the input terminals) without any external  
components. The results for this solution are displayed below.  
To meet class B for the above standards, it is necessary to fit a 3.3 μF ceramic capacitor across the input terminals.  
North America  
+1 408 785 5200  
Asia-Pacific  
+86 755 298 85888  
Europe, Middle East  
+353 61 225 977  
© 2016 Bel Power Solutions & Protection  
BCD.00014_AB 27-April-2016  
8
NV Series  
10.2  
STANDARD  
APPLIED STRESS  
2 kV to pins  
CLASS LEVEL  
PERFORMANCE CRITERION1  
Electrostatic Discharge EN 61000-4-2  
Electromagnetic Field EN 61000-4-3  
Electrical Fast Transient EN 61000-4-4  
Conducted Disturbances EN 61000-4-6  
1
B
3 V/m  
2
3
2
A
B
B
2000 Vp to input  
3 VAC to input  
1)  
A denotes normal operation, no deviation from specification. B denotes temporary deviation from specification is possible.  
The following soldering instructions must be observed to prevent failure or significant degradation of the module  
performance. Power Bel Solutions will not honor any warranty claims arising from failure to observe these instructions. The  
lead-frame is constructed for a high temperature glass filled, UL94 V-0 flame retardant, dually orthophthalate molding  
compound commonly used for packaging of electronics components. It has passed NASA outgassing tests, and is certified  
to MIL-M-14. The coefficient of thermal expansion is equivalent to FR4. The gull wing leads are formed to ensure optimal  
solder joint strength and structure. Furthermore they facilitate visual inspection (manual or automatic). The leads are formed  
from a 97 Cu alloy plated with Ni and matte Sn. This material is commonly used in the manufacture of integrated circuits. It  
has good corrosion resistance and exhibits the nobility inherent to all high copper alloys. Unlike brasses, this material is  
essentially immune to stress corrosion cracking. It also exhibits excellent solderability. It is readily wetted by solders and  
performs well in standard solderability tests. (Dip of Class II or better). The product is manufactured with a patented process,  
which is fully automated, and ‘in-line’. This ensures that there is no contamination or mechanical stress on the lead-frame  
so that the co planarity and solderability are maintained. The product is shipped in JEDEC trays to ensure preservation of  
the co-planarity and enable fully automated assembly in the final application. Mind the marking for pin 1! These products  
are approved for forced convection reflow soldering only. Products RoHS-compliant for all 6 substance (model designation  
ending with -M6G) allow for a solder profile with higher temperatures; see tables below.  
RECOMMENDED REFLOW PROFILE (measured at the leads of the converter)  
RAMP  
PRE-HEAT RAMP  
PRE-HEAT SOAKING  
TO  
REFLOW  
COOLING  
REFLOW  
Time  
above  
liquids  
Time within  
±5 ºC of  
peak temp  
Time  
to  
peak  
Peak  
temp.  
PRODUCT  
From  
ºC  
To  
Rate  
ºC/s  
From  
ºC  
To  
ºC  
Time  
s
Rate  
ºC  
Rate  
ºC  
s
ºC  
s
s
ºC/s  
M6  
25  
25  
150  
180  
2
2
150  
180  
183  
217  
90-120  
90-120  
2
2
45  
45  
220±5  
240±5  
10  
10  
180  
210  
3
(Sn-Pb eutectic)  
M6G (lead free)  
3
WORST CASE REFLOW PARAMETERS FOLLOWING J-STD-020D (measured in the center, on top side of the converter)  
RAMP  
PRE-HEAT RAMP  
PRE-HEAT SOAKING  
TO  
REFLOW  
COOLING  
REFLOW  
Max.  
time  
above  
liquids  
Max. time  
Max.  
time  
to  
Max.  
peak  
temp.  
Max.  
within ±5  
ºC of peak  
temp  
From  
ºC  
To  
ºC  
Rate  
ºC/s  
From  
ºC  
To  
ºC  
Rate  
ºC  
Rate  
PRODUCT  
Time  
s
peak  
s
ºC  
s
s
ºC/s  
M6  
25  
25  
150  
180  
3
3
100  
150  
150  
200  
120  
120  
3
3
45  
45  
230  
260  
10  
10  
360  
480  
6
(Sn-Pb eutectic)  
M6G (lead free)  
6
tech.support@psbel.com  
9
NV Series  
The product is designed with a large flat area in the center of the top surface to serve as a pick up point for automated  
vacuum pick and place equipment. The ‘open board’ construction of the unit ensures that weight is kept to a minimum.  
However due to the relatively large size of the component, a large nozzle (>6.0mm, depending on vacuum pressure) is  
recommended for picking and placing.  
The unit may also be automatically handled using ‘odd-form’ placement equipment, with mechanical grippers. For this type  
of equipment the end edges of the device, which have no leads and also feature the greatest dimensional accuracy, should  
be used as pick-up points.  
Dimensions in mm [inches]  
Dimensions in mm [inches]  
North America  
+1 408 785 5200  
Asia-Pacific  
+86 755 298 85888  
Europe, Middle East  
+353 61 225 977  
© 2016 Bel Power Solutions & Protection  
BCD.00014_AB 27-April-2016  
10  
NV Series  
FUNCTION  
REFERENCE  
PIN  
Single Output Models  
Dual Output Models  
1
+Vin  
+Vin  
Primary  
2
-Vin  
-Vin  
Primary  
3
-Vin  
-Vin  
Primary  
4
No pin  
No pin  
No pin  
No pin  
No pin  
No Connection  
No Connection  
-Vo  
No pin  
-
5
No pin  
-
6
No pin  
-
7
No pin  
-
8
No pin  
-
9
No connection  
Secondary  
Secondary  
Secondary  
Secondary  
Secondary  
Secondary  
Secondary  
Secondary  
-
10  
11  
12  
13  
14  
15  
16  
17  
18  
19  
20  
21  
22  
23  
24  
Vo Return / Common  
-Vo  
-Vo  
-Vo  
+Vo  
-Vo  
+Vo  
+Vo  
+Vo  
+Vo  
-Vo  
Vo Return / Common  
No pin  
No pin  
No pin  
No pin  
No pin  
No pin  
No pin  
+Vin  
-
No pin  
No pin  
No pin  
+Vin  
-
-
-
Primary  
Primary  
Primary  
+Vin  
+Vin  
-Vin  
-Vin  
tech.support@psbel.com  
11  
NV Series  
Dimensions in mm [inches]  
NUCLEAR AND MEDICAL APPLICATIONS - Products are not designed or intended for use as critical components in life support systems,  
equipment used in hazardous environments, or nuclear control systems.  
TECHNICAL REVISIONS - The appearance of products, including safety agency certifications pictured on labels, may change depending on the  
date manufactured. Specifications are subject to change without notice.  
North America  
+1 408 785 5200  
Asia-Pacific  
+86 755 298 85888  
Europe, Middle East  
+353 61 225 977  
© 2016 Bel Power Solutions & Protection  
BCD.00014_AB 27-April-2016  

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