NCF0100201B0C [MURATA]

DC-DC Regulated Power Supply Module, 1 Output, 20W, Hybrid, SIP-11;
NCF0100201B0C
型号: NCF0100201B0C
厂家: muRata    muRata
描述:

DC-DC Regulated Power Supply Module, 1 Output, 20W, Hybrid, SIP-11

文件: 总15页 (文件大小:331K)
中文:  中文翻译
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Volant NCF010 Series  
Non-Isolated 10A SIP DC/DC Converters  
NOT RECOMMENDED  
FOR NEW DESIGNS  
9 Small size, minimal footprint/low profile  
9 10A Output Current (all voltages)  
9 High Efficiency: up to 95%  
9 High reliability  
9 RoHS Compliant  
9 Cost efficient open frame design  
9 Pre-bias monotonic start-up  
9 Over-current and Over-temperature protection  
Output  
Input  
Efficiency  
Full Load  
PARD  
(mVp-p)  
Regulation  
Max  
Vin  
Nom.  
(V)  
Range  
(V)  
Iin  
Max  
(A)  
Vout  
(V)  
Iout  
(A)  
Typ. Max.  
Line  
Load  
Typ.  
86%  
88%  
89%  
91%  
92%  
93%  
95%  
1
10  
10  
10  
10  
45  
45  
40  
40  
50  
50  
50  
50  
+/-0.1% +/-0.25%  
+/-0.1% +/-0.25%  
+/-0.1% +/-0.25%  
+/-0.1% +/-0.25%  
5
5
5
5
3 –5  
3 –5  
3 –5  
3 –5  
4.0  
1.2  
1.5  
1.8  
4.75  
5.75  
6.75  
2
10  
10  
10  
40  
40  
40  
50  
50  
50  
+/-0.1% +/-0.25%  
+/-0.1% +/-0.25%  
+/-0.1% +/-0.25%  
5
5
5
3 –5  
3 –5  
7.4  
9.1  
7.8  
2.5  
3.3  
4.5-5.5  
Technical enquiries email: sales@murata-ps.com, tel: +508 339 3000  
1
NCF010_6200810000_B01_21/04/08  
Volant NCF010 Series  
Murata Power Solutions  
Non-Isolated 10A SIP DC/DC Converters  
Input Characteristics  
Notes & Conditions  
Min  
3.0  
Typ. Max  
Units  
Vdc  
mA p-p  
A2s  
Input Voltage Operating Range  
Input Reflected Ripple Current  
Inrush Current Transient  
Input Filter Type (external)  
Input Turn ON Threshold  
Input Turn OFF Threshold  
ON Control  
5
5.5  
100  
0.4  
100  
2.8  
2.7  
μF  
V
V
Open or 0 to +0.4V  
+2.8V to Vin (<3mA)  
OFF Control  
Output Characteristics  
Vout Accuracy  
Output Loading  
Notes & Conditions  
50% load  
Min  
-1.5  
0
Typ. Max  
Units  
%
A
+1.5  
10  
Output Ripple & Noise  
@ 20Mhz Bandwidth.  
Maximum Capacitive Load  
Vout Trim Range  
30  
mV  
Low ESR  
8000  
+10  
μF  
%
-10  
Total Accuracy  
Over line/load temperature  
<3%  
Current Limit  
13  
-0.1  
+0.25  
16  
20  
+0.1  
-0.25  
1
A
Output Line Regulation  
Output Load Regulation  
Turn-on Overshoot  
SC Protection Technique  
Pre-bias Start-up at output  
%
%
%
Hiccup with auto recovery  
Unit starts monotonically with pre-  
bias  
Dynamic Characteristics  
Load Transient  
Notes & Conditions  
50% step, 2.5A/μs  
Settling Time  
Min  
Typ. Max  
100  
Units  
mV  
μs  
100  
Frequency  
300  
khz  
Start-Up Time  
Vin to Vout and On/Off to Vout  
Vout rise to monotonic  
<20  
ms  
General Specifications  
MTBF  
Notes & Conditions  
Calculated (MIL-HDBK-217F)  
Demonstrated @ 60% Confidence  
Level  
Min  
1.5  
1
Typ. Max  
Units  
x106 Hrs  
x106 Hrs  
Thermal Protection  
Operating Temperature  
Dimensions  
Hotspot  
110  
120  
60  
°C  
°C  
Without derating  
2”Lx0.34”Wx0.5”H  
(50.8x8.64x12.7mm)  
0.03” (0.76mm)  
Matte Sn Finish on component  
Leads  
-40  
Pin Dimensions  
Pin Material  
Weight  
Flammability Rating  
0.3 ounces (8.5g)  
UL94V-0  
Standards Compliance  
CSA C22.2, No.60950/UL 60950, Third Edition (2000), File UL E165113  
2
NCF010_6200810000_A03_025Jun07  
Volant NCF010 Series  
Murata Power Solutions  
Non-Isolated 10A SIP DC/DC Converters  
Thermal Considerations  
The power module operates in a variety of thermal environments; however, sufficient cooling  
should be provided to help ensure reliable operation of the unit. Heat is removed by  
conduction, convection, and radiation to the surrounding environment. The thermal data  
presented is based on measurements taken in a set-up as shown in fig 1. when the airflow is  
parallel to the long axis of the module. The de-rating applies accordingly.  
The temperature at either location should not exceed 110 °C. The output power of the module  
should not exceed the rated power for the module (VO, set x IO, max).  
Figure 1: Thermal Measurement Setup  
Convection Requirements for Cooling  
To predict the approximate cooling needed for the module, refer to the Power Derating Curve in  
Figure 2 to Figure 8.  
These derating curve are approximations of the ambient temperature and airflow required to keep the  
power module temperature below it's maximum rating. Once the module is assembled in the actual  
system, the module's temperature should be verified.  
Proper cooling can be verified by measuring the power module's temperature at Q1-pin 6 and Q2-pin  
6 as shown in Figure 1.  
3
NCF010_6200810000_A03_025Jun07  
Volant NCF010 Series  
Murata Power Solutions  
Non-Isolated 10A SIP DC/DC Converters  
TYPICAL DERATING CURVES  
NCF0100100B (5Vin) Derating Curve  
12  
10  
8
0 LFM  
6
100 LFM  
200 LFM  
4
2
0
0
20  
30  
40  
50  
60  
70  
80  
90  
Ambient Temperature (C)  
Figure 2. Typical Power Derating vs Output Current for 5Vi and 1.0Vo.  
NCF0100120B (5Vin) Derating Curves  
12  
10  
8
0 LFM  
6
4
2
0
100 LFM  
200 LFM  
0
20  
30  
40  
50  
69  
70  
80  
90  
Ambient Temperature (C)  
Figure 3. Typical Power Derating vs Output Current for 5Vi and 1.2Vo.  
4
NCF010_6200810000_A03_025Jun07  
Volant NCF010 Series  
Murata Power Solutions  
Non-Isolated 10A SIP DC/DC Converters  
NCF0100150B (5Vin) Derating Curve  
12  
10  
8
0 LFM  
6
100 LFM  
200 LFM  
4
2
0
0
20  
30  
40  
50  
66  
70  
80  
90  
Ambient Temperature (C)  
Figure 4. Typical Power Derating vs Output Current for 5Vi and 1.5Vo.  
NCF0100180B (5Vin) Derating Curve  
12  
10  
8
0 LFM  
6
4
2
0
100 LFM  
200 LFM  
0
20  
30  
40  
50  
60  
70  
80  
90  
Ambient Temperature (C)  
Figure 5. Typical Power Derating vs Output Current for 5Vi and 1.8Vo.  
5
NCF010_6200810000_A03_025Jun07  
Volant NCF010 Series  
Murata Power Solutions  
Non-Isolated 10A SIP DC/DC Converters  
NCF0100200B (5Vin) Derating Curve  
12  
10  
8
0 LFM  
6
100 LFM  
200 LFM  
4
2
0
0
20  
30  
40  
50  
64  
70  
80  
90  
Ambient Temperature (C)  
Figure 6. Typical Power Derating vs Output Current for 5Vi and 2.0Vo.  
NCF0100250B (5Vin) Derating Curve  
12  
10  
8
0 LFM  
6
4
2
0
100 LFM  
200 LFM  
0
20  
30  
40  
50  
66  
70  
80  
90  
Ambient Temperature (C)  
Figure 7. Typical Power Derating vs Output Current for 5Vi and 2.5Vo.  
6
NCF010_6200810000_A03_025Jun07  
Volant NCF010 Series  
Murata Power Solutions  
Non-Isolated 10A SIP DC/DC Converters  
NCF0100330B0 (5Vin) Derating Curve  
12  
10  
8
0 LFM  
6
100 LFM  
200 LFM  
4
2
0
0
20  
30  
40  
50  
60  
70  
80  
90  
Ambient Temperature (C)  
Figure 8. Typical Power Derating vs Output Current for 5Vi and 3.3Vo.  
TYPICAL EFFICIENCY CURVES  
NCF0100330B0 (25C) Eff vs Output Load  
98.00%  
96.00%  
94.00%  
92.00%  
Vin=4.5V  
90.00%  
88.00%  
86.00%  
84.00%  
82.00%  
80.00%  
Vin=5.0V  
Vin=5.5V  
1
2
3
4
5
6
7
8
9
10  
Output Load (A)  
Figure 9. Efficiency Curves for Vout=3.3V (25C)  
7
NCF010_6200810000_A03_025Jun07  
Volant NCF010 Series  
Murata Power Solutions  
Non-Isolated 10A SIP DC/DC Converters  
NCF0100250B0 (25C) Eff vs Output Load  
100.00%  
95.00%  
90.00%  
85.00%  
80.00%  
75.00%  
70.00%  
Vin=3.0V  
Vin=5.0V  
Vin=5.5V  
1
2
3
4
5
6
7
8
9
10  
Output Load (A)  
Figure 10. Efficiency Curves for Vout=2.5V (25C)  
NCF0100200B0 (25C) Eff vs Output Load  
100.00%  
95.00%  
90.00%  
85.00%  
80.00%  
75.00%  
70.00%  
Vin=3.0V  
Vin=5.0V  
Vin=5.5V  
1
2
3
4
5
6
7
8
9
10  
Output Load (A)  
Figure 11. Efficiency Curves for Vout=2.0V (25C)  
8
NCF010_6200810000_A03_025Jun07  
Volant NCF010 Series  
Murata Power Solutions  
Non-Isolated 10A SIP DC/DC Converters  
NCF0100180B0 (25C) Eff vs Output Load  
100.00%  
90.00%  
80.00%  
70.00%  
60.00%  
50.00%  
40.00%  
30.00%  
20.00%  
10.00%  
0.00%  
Vin=3.0V  
Vin=5.0V  
Vin=5.5V  
Output Load (A)  
Figure 12. Efficiency Curves for Vout=1.8V (25C)  
NCF0100150B0 (25C) Eff vs Output Load  
100.00%  
90.00%  
80.00%  
70.00%  
60.00%  
50.00%  
40.00%  
30.00%  
20.00%  
10.00%  
0.00%  
Vin=3.0V  
Vin=5.0V  
Vin=5.5V  
1
2
3
4
5
6
7
8
9
10  
Output Load (A)  
Figure 13. Efficiency Curves for Vout=1.5V (25C)  
9
NCF010_6200810000_A03_025Jun07  
Volant NCF010 Series  
Murata Power Solutions  
Non-Isolated 10A SIP DC/DC Converters  
NCF0100120B0 (25C) Eff vs Output Load  
100.00%  
90.00%  
80.00%  
70.00%  
60.00%  
50.00%  
40.00%  
30.00%  
20.00%  
10.00%  
0.00%  
Vin=3.0V  
Vin=5.0V  
Vin=5.5V  
1
2
3
4
5
6
7
8
9
10  
Output Load (A)  
Figure 14. Efficiency Curves for Vout=1.2V (25C)  
NCF0100100B0 (25C) Eff vs Output Load  
100.00%  
90.00%  
80.00%  
70.00%  
60.00%  
50.00%  
40.00%  
30.00%  
20.00%  
10.00%  
0.00%  
Vin=3.0V  
Vin=5.0V  
Vin=5.5V  
1
2
3
4
5
6
7
8
9
10  
Output Load (A)  
Figure 15. Efficiency Curves for Vout=1.0V (25C)  
10  
NCF010_6200810000_A03_025Jun07  
Volant NCF010 Series  
Murata Power Solutions  
Non-Isolated 10A SIP DC/DC Converters  
Typical Start Up  
Ch 1. Vin  
Ch2. Vout.  
Typical Start Up with pre-bias  
Ch1 : Enable  
Ch2 : Vout  
11  
NCF010_6200810000_A03_025Jun07  
Volant NCF010 Series  
Murata Power Solutions  
Non-Isolated 10A SIP DC/DC Converters  
Typical Output Noise and Ripple  
Output Voltage Set point adjustment.  
The following relationship establish the calculation of external resistors:  
Trim-Up  
For trim_Up an external resistor is connected between the TRIM and Ground Pin.  
Vr R1  
Rtrim_Up  
Rt  
V
Where, Rt = internal buffer resistor. For calculation choose value as per table below:  
Vo, set (Volts)  
Rt (KΩ)  
59  
3.3  
2.5  
2.0  
1.8  
1.5  
1.2  
1.0  
78.7  
100  
100  
100  
59  
30.1  
12  
NCF010_6200810000_A03_025Jun07  
Volant NCF010 Series  
Murata Power Solutions  
Non-Isolated 10A SIP DC/DC Converters  
R1 = 30.1 KΩ  
ΔV = Change in adjustment voltage required ( example 8% of 2Volts = 0.16).  
Vr = 0.8  
Trim_Down  
For trim down an external resistor is to be connected between TRIM and Vout pins of the module.  
The value of Rtrim_Down is calculated from the following relationship.  
Vout Vr  
Rtrim_Down  
1 R1 Rt  
V
The values of Vr , R1 and Rt are as defined above.  
ΔV is the adjustment trim required.  
Examples:  
Vout = 1.5V Trim_Up required 8% to 1.62V  
30100 0.8  
Rtrim_Up  
100000  
0.12  
Rtrim_Up 100.66 k  
Vout = 1.5V Trim_Down required 8% to 1.38V  
1.5 0.8  
Rtrim_Down  
1 30100 100000  
0.12  
Rtrim_Down 45.483 k  
Remote Sense:  
All Murata Power Solutions SIP power modules offer an option for remote sense. The remote sense  
compensates for any distribution drops to accurately control voltage at the point of load. The voltage between  
the sense pin to Vout pin should not exceed 0.5V.  
Safety Considerations  
The NCF series of converters are certified to IEC/EN/CSA/UL 60950. If this product is built into information technology  
equipment, the installation must comply with the above standard. An external input fuse of less than 50 Amps (5A to  
30A recommended), must be used to meet the above requirements. The output of the converter [Vo(+)/Vo(-)] is  
considered to remain within SELV limits when the input to the converter meets SELV or TNV-2 requirements.  
The converters and materials meet UL 94V-0 flammability ratings.  
13  
NCF010_6200810000_B01_21/04/08  
Volant NCF010 Series  
Murata Power Solutions  
Non-Isolated 10A SIP DC/DC Converters  
SMT Lead free Reflow profile  
1. Ramp up rate during preheat : 1.33 /Sec ( From 30to 150)  
2. Soaking temperature : 0.29 /Sec ( From 150to 180)  
3. Ramp up rate during reflow : 0.8 /Sec ( From 220to 250)  
4. Peak temperature : 250, above 22040 to 70 Seconds  
5. Ramp up rate during cooling : -1.56 /Sec ( From 220to 150)  
Mechanical Information  
SIZE SIP  
0.327(8.3)  
2.00(50.8)  
0.23(5.8)  
PIN CONNECTION  
Pin FUNCTION  
+Output  
+Output  
+Sense  
+Output  
1
2
0.50(12.7)  
9 11  
10  
1 2  
3
4
5
6 7  
8
3
0.139(3.53)  
4
0.025(0.64)  
1.00(25.4)  
0.05(1.3)  
0.10(2.54)  
0.28(7.10)  
5
Common  
Common  
0.025(0.64)  
0.40(10.2)  
6
7
+V Input  
+V Input  
No Pin  
8
LAYOUT PATTREN  
TOP VIEW  
0.33(8.4)  
0.29(7.4)  
9
Trim  
10  
11  
All Dimmension In Inches(mm)  
Tolerance :  
On/Off Control  
1.1mm PLATED THROUGH HOLE  
1.6mm PAD SIZE  
.XX= ± 0.04  
.XXX= ± 0.010  
14  
NCF010_6200810000_A03_025Jun07  
Volant NCF010 Series  
Non-Isolated 10A SIP DC/DC Converters  
Ordering Information  
Part Number  
Vin  
Vout  
1.0V  
1.2V  
1.5V  
1.8V  
2.0V  
2.5V  
3.3V  
1.0V  
1.2V  
1.5V  
1.8V  
2.0V  
2.5V  
3.3V  
Iout Enable Logic Pin Length  
NCF0100100B0C  
NCF0100120B0C  
NCF0100150B0C  
NCF0100180B0C  
NCF0100200B0C  
NCF0100250B0C  
NCF0100330B0C  
NCF0100101B0C  
NCF0100121B0C  
NCF0100151B0C  
NCF0100181B0C  
NCF0100201B0C  
NCF0100251B0C  
NCF0100331B0C  
3.0V - 5.5V  
3.0V - 5.5V  
3.0V - 5.5V  
3.0V - 5.5V  
3.0V - 5.5V  
3.0V - 5.5V  
4.5V - 5.5V  
3.0V - 5.5V  
3.0V - 5.5V  
3.0V - 5.5V  
3.0V - 5.5V  
3.0V - 5.5V  
3.0V - 5.5V  
4.5V - 5.5V  
10A  
10A  
10A  
10A  
10A  
10A  
10A  
10A  
10A  
10A  
10A  
10A  
10A  
10A  
Negative  
Negative  
Negative  
Negative  
Negative  
Negative  
Negative  
Positive  
Positive  
Positive  
Positive  
Positive  
Positive  
Positive  
0.139"  
0.139"  
0.139"  
0.139"  
0.139"  
0.139"  
0.139"  
0.139"  
0.139"  
0.139"  
0.139"  
0.139"  
0.139"  
0.139"  
Label Information  
N C F 0 1 0 x x x 0 B 0 – X C  
C = RoHS Compliant  
X = Factory control character  
(not required when ordering)  
Iout  
Vout  
0 = Standard. (No PGood option)  
P = Power Good Option  
Place Holder  
Vout Range  
F=Fixed  
A=Adjustable  
Pin Length Option  
B=0.139”  
S=SMT  
Vin (value or range)  
C= 3.3V-5.0V  
E= 8.3V-14V  
Enable Logic, 0 for–ve, 1 for +ve  
F= 6.0V-14V  
Non-Isolated Family  
RoHS Compliant  
The NCF010 series of converters is in compliance with the European Union Directive 2002/95/EC (RoHS) with repsect to the following sustances:  
lead (Pb), mercury (Hg), cadmium (Cd), hexavalent chromium, polybrominated biphenyls (PBB) or polybrominated diphenyl ethers (PBDE).  
15  
NCF010_6200810000_B01_21/04/08  

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