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LTC3607EUD 参数 Datasheet PDF下载

LTC3607EUD图片预览
型号: LTC3607EUD
PDF下载: 下载PDF文件 查看货源
内容描述: [Dual 600mA 15V Monolithic Synchronous Step-Down DC/DC Regulator]
分类和应用:
文件页数/大小: 20 页 / 365 K
品牌: Linear Systems [ Linear Systems ]
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LTC3607  
applicaTions inForMaTion  
For cost reasons, a ceramic capacitor will be used. C  
As an example, consider the case when the LTC3607 is in  
dropout on both channels at an input voltage of 5V with  
a load current of 600mA and an ambient temperature  
of 25°C. From the Typical Performance Characteristics  
OUT  
selection is then based on load step droop instead of ESR  
requirements. For a 5% output droop:  
600mA  
2.25MHz (5%3.3V)  
COUT15•  
COUT2 5•  
=8.1µF  
graph of Switch Resistance, the R  
resistance of  
DS(ON)  
the main switch is 0.9Ω. Therefore, power dissipated by  
each channel is:  
600mA  
2.25MHz (5%2.5V)  
2
=10.7µF  
P = I • R  
= 324mW  
D
DS(ON)  
Running the two regulator channels under the same con-  
ditions will result in a total power dissipation of 0.648W.  
TheMSEpackagejunction-to-ambientthermalresistance,  
For both outputs, a close standard value is 10µF. Since  
the output impedance of a lithium-ion battery is very low,  
each C is chosen to be 10µF also.  
θ , is 37°C/W. Therefore, the junction temperature of  
IN  
JA  
the regulator operating in a 25°C ambient temperature is  
approximately:  
Theoutputvoltagescannowbeprogrammedbychoosing  
the values of R1 thru R4. To maintain high efficiency, the  
current in these resistors should be kept small. Choosing  
5µA with the 0.6V feedback voltage makes R2 and R4 ~  
120k. Close standard 1% resistor values is 121k and then  
R1 and R3 are 549k and 383k, respectively.  
T = 0.648W • 37°C/W + 25°C = 49°C  
J
Design Example  
As a design example, consider using the LTC3607 in a  
portable application with a dual lithium-ion battery. The  
The PGOOD pins are common drain outputs, thus requir-  
ing pull-up resistors. Two 100k resistors are used for  
adequate speed.  
battery provides a V = 5.6V to 8.4V. The loads require a  
IN  
maximum of 600mA in active mode and 2mA in standby  
mode. The output voltages are V  
= 3.3V and V  
OUT1  
OUT2  
Figure 1 shows the complete schematic for this design  
example. The specific passive components chosen allow  
for a 1mm height power supply that maintains a high ef-  
ficiency across load.  
= 2.5V. Since the load still needs power in standby, Burst  
Mode operation is selected for good light load efficiency.  
First, calculate the inductor values for about 240mA ripple  
current at maximum V :  
IN  
Board Layout Considerations  
3.3V  
L1=  
3.3V  
8.4V  
When laying out the printed circuit board, the following  
checklist should be used to ensure proper operation of  
the LTC3607. These items are also illustrated graphically  
in the layout diagram of Figure 2. Check the following in  
your layout:  
1–  
=3.7µH  
2.25MHz 240mA  
Choosingthecloseststandardizedinductorvalueof3.3μH  
results in a maximum ripple current of:  
1. Do the input capacitors C connect to PV , PV  
,
IN2  
IN  
IN1  
3.3V  
2.25MHz 3.3µH  
3.3V  
8.4V  
∆IL1=  
1–  
=270mA  
PGND1, and PGND2 as closely as possible? These ca-  
pacitors provides the AC current to the internal power  
MOSFETs and their drivers.  
The same calculations for L2 result in a standard inductor  
value of 3.3µH and a maximum current ripple of 236mA.  
2. Are C  
and L closely connected? The (–) plate of  
OUT  
C
returns current to GND and the (–) plate of C .  
OUT  
IN  
3607fb  
For more information www.linear.com/LTC3607  
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