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NTV

Description
2-OUTPUT 1 W DC-DC REG PWR SUPPLY MODULE
Categoryaccessories   
File Size333KB,2 Pages
ManufacturerCANDD
Websitehttp://www.cdpowerelectronics.com/
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NTV Overview

2-OUTPUT 1 W DC-DC REG PWR SUPPLY MODULE

NTV SERIES
3kVDC Isolated 1W Dual Output SM DC-DC Converters
SELECTION GUIDE
Nominal
Input
Voltage
Output
Voltage
Output
Current
Input
Current at
Rated Load Efficiency
Isolation
Capacitance MTTF
1
OrderCode
5
NTV0505M
NTV0509M
NTV0512M
NTV0515M
NTV1205M
(V)
5
5
5
5
12
12
12
12
(V)
5
9
12
15
5
9
12
15
(mA)
±100
±55
±42
±33
±100
±55
±42
±33
(mA)
282
260
253
250
114
105
104
101
(%)
71
77
79
80
73
79
80
82
(pF)
33
38
44
43
50
72
89
100
kHrs
1697
682
343
188
559
375
243
154
FEATURES
s
3kVDC Isolation (1 Minute)
s
Wide Temperature Performance at
Full 1 Watt Load, -40°C to 85°C
s
Lead Frame Technology
s
CECC00802 Reflow (280°C)
s
Dual Isolated Output
s
Efficiency to 82%
s
Power Density 1.5W/cm
3
s
5V & 12V Input
s
5V, 9V, 12V and 15V Output
s
Footprint Over Pins 1.64cm
2
s
UL 94V-0 Package Material
s
No Heatsink Required
s
Internal SMD Construction
s
Toroidal Magnetics
s
Plastic Encapsulated
s
MTTF up to 2.1 Million Hours
s
Custom Solutions Available
s
Multi Layer Ceramic Capacitors
s
Lead Free Compatibility
s
Tape and Reel Option
DESCRIPTION
The NTV series of 3kV isolation miniature
surface mounted DC-DC Converters employ
leadframe technology and transfer moulding
techniques to bring all of the benefits of IC
style packaging to hybrid circuitr y. The
devices are fully compatible with
CECC00802 to 280°C which allows them to
be placed and reflowed with IC’s, thus
reducing time and cost in production. The co-
planarity of the pin positions is based upon
IEC 191-6:1990. The devices are suitable for
all applications where high volume
production is envisaged.
NTV1209M
NTV1212M
NTV1215M
When operated
with
additional external load capacitance the rise time of the input voltage will determine the
maximum external capacitance value for guaranteed start up. The slower the rise time of the input voltage the
greater the maximum value of the additional external capacitance for reliable start up.
INPUT CHARACTERISTICS
Parameter
Conditions
MIN
TYP
MAX
Units
Voltage Range
Reflected Ripple Current
Continuous operation, 5V input types
4.5
Continuous operation, 12V input types 10.8
5
12
41
5.5
V
13.2
47 mA p-p
OUTPUT CHARACTERISTICS
Parameter
Conditions
2
MIN
TYP
MAX
Units
Rated Power
Voltage Set Point
Accuracy
Line regulation
T
A
= -40°C to 85°C
See tolerance envelope
1.0
10
6.5
6.0
6.0
50
40
40
40
1.0
W
High V
IN
to low V
IN
10% load to rated load, 5V output types
Load Regulation
3
10% load to rated load, 9V output types
10% load to rated load, 12V output types
10% load to rated load, 15V output types
BW=DC to 20MHz, 5V output types
BW=DC to 20MHz, 9V output types
Ripple and Noise
BW=DC to 20MHz, 12V output types
BW=DC to 20MHz, 15V output types
1.2
12
8.0
8.5
7.0
75
65
60
60
%/%
%
mV p-p
ABSOLUTE MAXIMUM RATINGS
Short circuit duration
4
Internal power dissipation
Lead temperature 1.5mm from case for 10 seconds
Input Voltage V
IN
, NTV05 types
Input voltage V
IN
, NTV12 types
1
2
3
4
5
1second
550mW
300°C
7V
15V
Calculated using MIL-HDBK-217F with nominal input voltage at full load.
See derating curve.
12V input types have typically 3% less load regulation change.
Supply voltage must be discontinued at the end of the short circuit duration.
If components are required in tape and reel format suffix order code with -R, e.g. NTV0505M-R.
All specifications typical at T
A
=25°C, nominal input voltage and rated output current unless otherwise specified.
www.dc-dc.com

NTV Related Products

NTV NTV1215M NTV1212M NTV1209M NTV1205M NTV0515M NTV0512M NTV0509M NTV0505M
Description 2-OUTPUT 1 W DC-DC REG PWR SUPPLY MODULE 2-OUTPUT 1 W DC-DC REG PWR SUPPLY MODULE 2-OUTPUT 1 W DC-DC REG PWR SUPPLY MODULE 2-OUTPUT 1 W DC-DC REG PWR SUPPLY MODULE 2-OUTPUT 1 W DC-DC REG PWR SUPPLY MODULE 2-OUTPUT 1 W DC-DC REG PWR SUPPLY MODULE 2-OUTPUT 1 W DC-DC REG PWR SUPPLY MODULE 2-OUTPUT 1 W DC-DC REG PWR SUPPLY MODULE 2-OUTPUT 1 W DC-DC REG PWR SUPPLY MODULE
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