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DS_DNM04SIP10_07162008D 

2

TECHNICAL SPECIFICATIONS   

(T

= 25°C, airflow rate = 300 LFM, V

in 

= 2.8Vdc and 5.5Vdc, nominal Vout unless otherwise noted.)

 

PARAMETER 

NOTES and CONDITIONS 

DNM04S0A0R10 

  

Min. 

Typ. 

Max. 

Units 

ABSOLUTE MAXIMUM RATINGS

 

 

 

 

 

 

Input Voltage (Continuous) 

 

 

5.8 

Vdc 

Tracking Voltage   

 

 

 

Vin,max 

Vdc 

Operating Temperature 

Refer to Figure 45 for measuring point 

-40 

 

125 

°C 

Storage Temperature 

 

-55 

 

125 

°C 

INPUT CHARACTERISTICS 

 

 

 

 

 

Operating Input Voltage 

Vout 

 Vin –0.5 

2.8 

 

5.5 

Input Under-Voltage Lockout 

 

 

 

 

 

Turn-On Voltage Threshold 

 

 

2.2 

 

Turn-Off Voltage Threshold 

 

 

2.0 

 

Maximum Input Current 

Vin=2.8V to 5.5V, Io=Io,max 

 

 

10 

No-Load 

Input 

Current 

 

 70  

mA 

Off Converter Input Current 

 

 

 

mA 

Inrush Transient 

Vin=2.8V to 5.5V, Io=Io,min to Io,max 

 

 

0.1 

A

2

Recommended Input Fuse 

 

 

 

15 

OUTPUT CHARACTERISTICS 

 

 

 

 

 

Output Voltage Set Point 

Vin=5V, Io=100% Io, max, Tc=25

 

-2.0 

Vo,set 

+2.0 

% Vo,set 

Output Voltage Adjustable Range 

 

0.7525 

 

3.63 

Output Voltage Regulation 

 

 

 

 

 

Over Line 

  Vin=2.8V to 5.5V 

 

0.3 

 

% Vo,set 

Over Load 

  Io=Io,min to Io,max 

 

0.4 

 

% Vo,set 

Over Temperature 

  Tc=-40

 to 100

  

0.8 

 

Vo,set 

Total Output Voltage Range 

Over sample load, line and temperature 

-3.0 

 

+3.0 

% Vo,set 

Output Voltage Ripple and Noise 

5Hz to 20MHz bandwidth 

 

 

 

 

Peak-to-Peak 

Full Load, 1µF ceramic, 10µF tantalum 

 

25 

50 

mV 

RMS 

Full Load, 1µF ceramic, 10µF tantalum 

 

15 

mV 

Output Current Range 

 

 

10 

Output Voltage Over-shoot at Start-up 

Vout=3.3V 

 

 

% Vo,set 

Output DC Current-Limit Inception 

 

 

220 

 

% Io 

Output Short-Circuit Current (Hiccup Mode) 

Io,s/c 

 

3.5 

 

Adc 

DYNAMIC CHARACTERISTICS 

 

 

 

 

 

Dynamic Load Response 

10µF Tan & 1µF Ceramic load cap, 2.5A/µs 

 

 

 

 

Positive Step Change in Output Current 

50% Io, max to 100% Io, max 

 

200 

 

mV 

Negative Step Change in Output Current 

100% Io, max to 50% Io, max 

 

200 

 

mV 

Settling Time to 10% of Peak Deviation 

 

 

25 

 

µs 

Turn-On Transient 

Io=Io.max 

 

 

 

 

Start-Up Time, From On/Off Control 

Vin=Vin,min, Vo=10% of Vo,set 

 

 

ms 

Start-Up Time, From Input 

Vo=10% of Vo,set 

 

 

ms 

Output Voltage Rise Time 

Time for Vo to rise from 10% to 90% of Vo,set 

 

ms 

Maximum Output Startup Capacitive Load 

Full load; ESR 

1m

 

 

 

1000 

µF 

 

Full load; ESR 

10m

 

  

5000 

µF 

EFFICIENCY 

 

 

 

 

 

Vo=3.3V 

Vi=5V, 100% Load 

 

96.0 

 

Vo=2.5V Vi=5V, 

100% 

Load 

 

94.2 

 

Vo=1.8V 

Vi=5V, 100% Load 

 

92.4 

 

Vo=1.5V Vi=5V, 

100% 

Load 

 

91.4 

 

Vo=1.2V 

Vi=5V, 100% Load 

 

90.0 

 

Vo=0.75V Vi=5V, 

100% 

Load  

86.3 

 

FEATURE CHARACTERISTICS 

 

 

 

 

 

Switching Frequency 

 

 

300 

 

kHz 

ON/OFF Control, (Negative logic) 

 

 

 

 

 

Logic Low Voltage 

Module On, Von/off   

-0.2 

 

0.3 

Logic High Voltage 

Module Off, Von/off 

1.5 

 

Vin,max 

Logic Low Current 

Module On, Ion/off   

 

 

10 

µA 

Logic High Current 

Module Off, Ion/off 

 

0.2 

mA 

ON/OFF Control, (Positive Logic)   

 

 

 

 

 

Logic High Voltage 

Module On, Von/off 

 

 

Vin,max 

Logic Low Voltage 

Module Off, Von/off 

-0.2 

 

0.3 

Logic Low Current 

Module On, Ion/off   

 

0.2 

mA 

Logic High Current 

Module Off, Ion/off 

 

 

10 

µA 

Tracking Slew Rate Capability 

 

0.1 

 

V/msec 

Tracking Delay Time 

Delay from Vin.min to application of tracking voltage 

10 

 

 

ms 

Tracking Accuracy 

Power-up     2V/mS 

 

100 

200 

mV 

 

Power-down  1V/mS 

 

200 

400 

mV 

Remote Sense Range 

 

 

 

0.1 

GENERAL SPECIFICATIONS 

 

 

 

 

 

MTBF 

Io=80% of Io, max; Ta=25°C 

 

21.91 

 

M hours 

Weight  

 

10 

 

grams 

Over-Temperature Shutdown 

Refer to Figure 45 for measuring point 

 

130 

 

°C 

 

Summary of Contents for DNM04S0A0R10

Page 1: ...Negative On Off logic Tracking feature SIP package Delphi DNM Non Isolated Point of Load DC DC Power Modules 2 8 5 5Vin 0 75 3 3V 10A out The Delphi Series DNM04 2 8 5 5V input single output non isola...

Page 2: ...rent Hiccup Mode Io s c 3 5 Adc DYNAMIC CHARACTERISTICS Dynamic Load Response 10 F Tan 1 F Ceramic load cap 2 5A s Positive Step Change in Output Current 50 Io max to 100 Io max 200 mV Negative Step C...

Page 3: ...t 0 75V out 75 80 85 90 95 100 1 2 3 4 5 6 7 8 9 10 OUTPUR CURRENT A EFFICIENCY Vin 5 0V Vin 4 5V Vin 5 5V 75 80 85 90 95 100 1 2 3 4 5 6 7 8 9 10 OUTPUR CURRENT A EFFICIENCY Vin 5 0V Vin 3 0V Vin 5 5...

Page 4: ...oise at 3 3Vin 2 5V 10A out Figure 8 Output ripple noise at 3 3Vin 1 8V 10A out Figure 9 Output ripple noise at 5Vin 3 3V 10A out Figure 10 Output ripple noise at 5Vin 1 8V 10A out Figure 11 Turn on d...

Page 5: ...1 8V 10A out Figure 15 Turn on delay time at remote turn on 5Vin 3 3V 16A out Figure 16 Turn on delay time at remote turn on 3 3Vin 2 5V 16A out Figure 17 Turn on delay time at remote turn on with ext...

Page 6: ...Typical transient response to step load change at 2 5A S from 50 to 100 of Io max at 5Vin 3 3Vout Cout 1uF ceramic 10 F tantalum Figure 21 Typical transient response to step load change at 2 5A S fro...

Page 7: ...rom 50 to 100 of Io max at 3 3Vin 2 5Vout Cout 1uF ceramic 10 F tantalum Figure 25 Typical transient response to step load change at 2 5A S from 100 to 50 of Io max at 3 3Vin 1 8Vout Cout 1uF ceramic...

Page 8: ...ERATIONS 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 32 shows the input ripple voltage mVp p...

Page 9: ...sitive and negative On Off logic options are available in the DNM DNL series power modules For positive logic module connect an open collector NPN transistor or open drain N channel MOSFET between the...

Page 10: ...ins of the module Without this external resistor the output voltage of the module is 0 7525 Vdc To calculate the value of the resistor Rtrim for a particular output voltage Vo please use the following...

Page 11: ...the DNL modules by connecting a resistor R margin up from the Trim pin to the ground pin for margining up the output voltage and by connecting a resistor Rmargin down from the Trim pin to the output...

Page 12: ...e TRACK pin of PS2 Please note the voltage apply to TRACK pin needs to always higher than the VoPS2 set point voltage TRACK VoPS1 PS2 VoPS2 PS1 Vin Vin On Off On Off Ratio Metric Ratio metric Figure 4...

Page 13: ...uses vertically mounted circuit cards in cabinet racks in which the power modules are mounted The following figure shows the wind tunnel characterization setup The power module is mounted on a test PW...

Page 14: ...emperature Output Current A Natural Convection Figure 46 DNM04S0A0R10 Standard Output current vs ambient temperature and air velocity Vin 5V Vo 0 75V Either Orientation DNM04S0A0R10 Standard Output Cu...

Page 15: ...DS_DNM04SIP10_07162008D 15 MECHANICAL DRAWING SMD PACKAGE OPTIONAL SIP PACKAGE...

Page 16: ...A 96 0 3 3V CONTACT www delta com tw dcdc USA Telephone East Coast 888 335 8201 West Coast 888 335 8208 Fax 978 656 3964 Email DCDC delta corp com Europe Phone 41 31 998 53 11 Fax 41 31 998 53 53 Emai...

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