DNS10S0A0R06NFD Delta Electronics, DNS10S0A0R06NFD Datasheet - Page 6

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DNS10S0A0R06NFD

Manufacturer Part Number
DNS10S0A0R06NFD
Description
CONV DC/DC 6A 8.3-14V NEG SIP
Manufacturer
Delta Electronics
Series
DELPHIr
Type
Point of Load (POL) Non-Isolated with Remote On/Off and UVLOr
Datasheets

Specifications of DNS10S0A0R06NFD

Output
0.75 ~ 5V
Number Of Outputs
1
Power (watts)
30W
Mounting Type
Through Hole
Voltage - Input
8.3 ~ 14V
Package / Case
6-SIP Module
1st Output
0.75 ~ 5 VDC @ 6A
Size / Dimension
1.00" L x 0.26" W x 0.50" H (25.4mm x 6.7mm x 12.7mm)
Power (watts) - Rated
30W
Operating Temperature
-40°C ~ 120°C
Efficiency
89.5%
Approvals
CE, cUL, TUV, UL
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
3rd Output
-
2nd Output
-
Other names
941-1011
TEST CONFIGURATIONS
Note: Input reflected-ripple current is measured with a
Figure 17: Input reflected-ripple test setup
Note: Use a 10μF tantalum and 1μF capacitor. Scope
Figure 18: Peak-peak output noise and startup transient
Figure 19: Output voltage and efficiency measurement test
Note: All measurements are taken at the module
DS_DNS10SIP06_03092009
SUPPLY
BATTERY
CONTACT RESISTANCE
GND
Vo
simulated
measured at the input of the module.
measurement should be made using a BNC
connector.
terminals. When the module is not soldered (via
socket), place Kelvin connections at module
terminals to avoid measurement errors due to
contact resistance.
I
setup
measurement test setup
COPPER STRIP
TO OSCILLOSCOPE
η
tantalum
10uF
=
VI
(
source
Vo
GND
Vi
ceramic
Vo
1uF
L
×
×
Tantalum
Io
Ii
2
)
100uF
SCOPE
DISTRIBUTION LOSSES
×
inductance.
100
CONTACT AND
Io
Resistive
%
Load
V
V
LOAD
I
(+)
I
(-)
Current
is
DESIGN CONSIDERATIONS
Input Source Impedance
To maintain low-noise and ripple at the input voltage, it is
critical to use low ESR capacitors at the input to the
module. Figure 20 shows the input ripple voltage
(mVp-p) for various output models using 2x47 uF low
ESR tantalum capacitors (SANYO P/N:16TQC47M,
47uF/16V or equivalent) and 2x22 uF very low ESR
ceramic capacitors (TDK P/N:C3225X7S1C226MT,
22uF/16V or equivalent).
The input capacitance should be able to handle an AC
ripple current of at least:
Figure 20: Input ripple voltage for various Output models,
Irms
300
250
200
150
100
=
50
0
Iout
0
Io = 6A (Cin = 2x47uF tantalum capacitors and
2x22uF ceramic capacitors at the input)
Vout
Vin
1
1
Vout
2
Vin
O utput V oltage (V dc)
3
Arms
4
Tantalum
Ceramic
5
6
6

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