JAJSEC4E September 2012 – January 2018
PRODUCTION DATA.
Systems Design Specifications:
, the worst case is when battery voltage is as close as to half of the input voltage.
LOUT = 1.11 μH
Select the output inductor to standard 1 μH. Calculate the total ripple current with using the 1-μH inductor:
ΔIL = 0.42 A
Calculate the maximum output current:
ILPK = 1.46 A
Select 2.5mm by 2mm 1-μH 1.5-A surface mount multi-layer inductor. The suggested inductor part numbers are shown as following.
PART NUMBER | INDUCTANCE | SIZE | MANUFACTURER |
---|---|---|---|
LQM2HPN1R0MJ0 | 1 μH | 2.5 x 2.0 mm | Murata |
MIPS2520D1R0 | 1 μH | 2.5 x 2.0 mm | FDK |
MDT2520-CN1R0M | 1 μH | 2.5 x 2.0 mm | TOKO |
CP1008 | 1 μH | 2.5 x 2.0 mm | Inter-Technical |
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COUT = 15.8 μF
Select two 0603 X5R 6.3V 10-μF ceramic capacitors in parallel i.e., Murata GRM188R60J106M.
The maximum sense voltage across the sense resistor is 85 mV. In order to get a better current regulation accuracy, V(RSNS) should equal 85mV, and calculate the value for the sense resistor.
R(SNS) = 68 mΩ
This is a standard value. If it is not a standard value, then choose the next close value and calculate the real charge current. Calculate the power dissipation on the sense resistor:
P(RSNS) = I(CHARGE)2 × R(SNS)
P(RSNS) = 1.252 × 0.068
P(RSNS) = 0.106 W
Select 0402 0.125-W 68-mΩ 2% sense resistor, i.e. Panasonic ERJ2BWGR068.