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 2
nd
Ed and UL/CSA 60950-1 2
nd
Ed
Distributed power architectures
Telecommunications equipment
LAN/WAN applications
Data processing
Industrial applications
2
NV Series
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
INPUT
VOLTAGE
VDC
18 – 36
18 – 36
36 – 75
36 – 75
9 – 36
9 – 36
9 – 36
9 – 36
18 – 75
18 – 75
18 – 75
18 – 75
INPUT
CURRENT, MAX
A
0.27
0.33
0.17
0.17
0.45
0.55
0.65
0.65
0.33
0.33
0.33
0.33
OUTPUT
VOLTAGE
V
5.0
12
5.0
12
3.3
5.0
12
15
3.3
5.0
12
15
OUTPUT
CURRENT
A
1.0
0.5
1.0
0.5
0.9
0.7
0.34
0.28
0.9
0.7
0.34
0.28
OUTPUT
RIPPLE/NOISE,
mV P-P
50
95
50
95
50
50
95
120
50
50
95
120
TYPICAL
EFFICIENCY
%
82
83
82
82
79
81
82
82
80
81
82
82
To order models which use lead solder exemption remove suffix ‘G’ from model number.
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
INPUT
VOLTAGE
VDC
18 - 36
18 - 36
18 - 36
9 – 36
9 – 36
9 – 36
9 – 36
18 – 75
18 – 75
18 – 75
18 – 75
INPUT
CURRENT, MAX
A
0.27
0.33
0.33
0.65
0.65
0.65
0.65
0.33
0.33
0.33
0.33
OUTPUT
VOLTAGE
V
±5.0
±12
±15
±5.0
±12
±15
±24
±5.0
±12
±15
±24
OUTPUT
CURRENT
A
±0.5
±0.25
±0.20
±0.35
±0.17
±0.14
±0.08
±0.35
±0.17
±0.14
±0.08
OUTPUT
RIPPLE/NOISE,
mV P-P
60
100
120
50
95
120
190
50
95
120
190
TYPICAL
EFFICIENCY
%
82
83
84
81
82
82
83
81
82
82
83
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
Operating Case Temperature (T
C
)
Storage Temperature (T
S
)
CONDITIONS / DESCRIPTION
MIN
-40
-55
NOM
MAX
110
100
UNITS
°C
°C
tech.support@psbel.com
NV Series
PARAMETER
Shock
Sinusoidal Vibration
Weight
Water Washing
MTBF
Standard process
Per Bellcore TR-NWT-000332
(100% load @25 °C, GB)
Yes
4.902
3
CONDITIONS / DESCRIPTION
IEC68-2-27
IEC68-2-6
MIN
NOM
MAX
100
10
0.4/12
UNITS
g
n
g
n
oz/g
N/A
1000 h
PARAMETER
Insulation Safety Rating
Electric Strength Test Voltage
Insulation Capacitance (Cps)
Insulation Resistance (Rps)
CONDITIONS / DESCRIPTION
Vin = Vin.Min – Vin.Max
MIN
NOM
Basic
1500
1100
MAX
UNITS
N/A
VDC
pF
MΩ
10
PARAMETER
Input Voltage Range (Vi)
Transient Input Voltage (Vint)
Input Current when Shutdown
Turn-On Time
CONDITIONS / DESCRIPTION
Continuous
MIN
9
NOM
MAX
36
40
UNITS
V
V
mA
ms
ms
Transient, 100 ms
Vin.Nom, Iout = 0 A
To Output Regulation Band
Rise Time
10
250
10
20
500
30
0.6
Input Reflected Ripple Current
Input Capacitance
Vin.Max, Io.Max
mApp
μF
PARAMETER
Input Voltage Range (Vi)
Transient Input Voltage (Vint)
Input Current when Shutdown
Turn-On Time
CONDITIONS / DESCRIPTION
Continuous
MIN
18
NOM
MAX
36
40
UNITS
V
V
mA
ms
ms
Transient, 100 ms
Vin.Nom, Iout = 0 A
To Output Regulation Band
Rise Time
10
250
10
20
500
30
0.6
Input Reflected Ripple Current
Input Capacitance
Vin.Max, Io.Max
mApp
μF
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+86 755 298 85888
Europe, Middle East
+353 61 225 977
North America
+1 408 785 5200
27-April-2016
© 2016 Bel Power Solutions & Protection
BCD.00014_AB
4
NV Series
PARAMETER
Input Voltage Range (Vi)
Transient Input Voltage (Vint)
Input Current when Shutdown
Turn-On Time
CONDITIONS / DESCRIPTION
Continuous
MIN
18
NOM
MAX
75
100
UNITS
V
V
mA
ms
ms
Transient, 100 ms
Vin.Nom, Iout = 0 A
To Output Regulation Band
Rise Time
8
250
10
10
500
30
0.3
Input Reflected Ripple Current
Input Capacitance
Vin.Max, Io.Max
mApp
μF
PARAMETER
Input Voltage Range (Vi)
Transient Input Voltage (Vint)
Input Current when Shutdown
Turn-On Time
CONDITIONS / DESCRIPTION
Continuous
MIN
36
NOM
MAX
75
100
UNITS
V
V
mA
ms
ms
Transient, 100 ms
Vin.Nom, Iout = 0 A
To Output Regulation Band
Rise Time
8
250
10
10
500
30
0.3
Input Reflected Ripple Current
Input Capacitance
Vin.Max, Io.Max
mApp
μF
All specifications apply over input voltage, output load, and temperature range, unless otherwise noted.
PARAMETER
Output Voltage Accuracy
Line Regulation
CONDITIONS / DESCRIPTION
Vi nom, 50% Io. Max
Vi min to Vi max, 50% Io max
Vin.Nom, Io.Min to Io.Max
MIN
NOM
MAX
±1
±1
UNITS
%Vo
%Vo
Load Regulation
3.3 Vo
Other Output Voltages
Total, for single and dual outputs
3.3 Vo
5 Vo, ±5 Vo
±4
±3
%Vo
%Vo
680
680
150
100
47
μF
μF
μF
μF
μF
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
to 1% error band
5
1
%Vo
ms
tech.support@psbel.com
NV Series
PARAMETER
CONDITIONS / DESCRIPTION
Vin.Min to Vin.Max, Io.Min to Io
Max, 20 MHz Bandwidth
Output Voltage Ripple
3.3 Vo
5 Vo, ±5 Vo
12 Vo, ±15 Vo, ±24 Vo
Output Current Limit Threshold
Switching Frequency
Temperature Coefficient
Output Current Limit Threshold
Vin.Nom, Io.Max
120
400
0.02
50
50
0.8
80
80
1
200
5
MIN
NOM
MAX
UNITS
mVpp
mVpp
%Vopp
%Iomax
kHz
%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
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.
7.3
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.
Asia-Pacific
+86 755 298 85888
Europe, Middle East
+353 61 225 977
North America
+1 408 785 5200
27-April-2016
© 2016 Bel Power Solutions & Protection
BCD.00014_AB