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XCL201 数据表(PDF) 9 Page - Torex Semiconductor

部件名 XCL201
功能描述  Inductor Built-in Step-Down ?쐌icro DC/DC??Converters
PDF  21 Pages
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制造商  TOREX [Torex Semiconductor]
网页  http://www.torex.co.jp
标志 TOREX - Torex Semiconductor

XCL201 数据表(HTML) 9 Page - Torex Semiconductor

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XCL201/XCL202
Series
OPERATIONAL DESCRIPTION (Continued)
<PFM Switch Current>
In PFM control operation, until coil current reaches to a specified level (IPFM), the IC keeps the P-ch MOSFET on. In this case, on-time (tON) that
the P-ch MOSFET is kept on can be given by the following formula.
tON = L
×IPFM / (VINVOUT) →IPFM①
<PFM Duty Limit>
In the PFM control operation, the PFM Duty Limit (DTYLIMIT_PFM) is set to 200% (TYP.). Therefore, under the condition that the duty increases (e.g.
the condition that the step-down ratio is small), it’s possible for P-ch MOSFET to be turned off even when coil current doesn’t reach to IPFM. →IPFM②
<CL High Speed Discharge>
The XCL201/XCL202 series can quickly discharge the electric charge at the output capacitor (CL) when a low signal to the CE pin which enables
a whole IC circuit put into OFF state, is inputted via the N-channel transistor located between the LX pin and the VSS pin. When the IC is disabled,
electric charge at the output capacitor (CL) is quickly discharged so that it may avoid application malfunction. Discharge time of the output
capacitor (CL) is set by the CL auto-discharge resistance (R) and the output capacitor (CL). By setting time constant of a CL auto-discharge
resistance value [R] and an output capacitor value (CL) as τ(τ=C x R), discharge time of the output voltage after discharge via the N channel
transistor is calculated by the following formula.
V = VOUT(T) x e
–t/τ or t=τln (V
OUT(T) / V)
V : Output voltage after discharge
VOUT(T) : Output voltage
t: Discharge time,
τ: C x R
C=Capacitance of output capacitor (CL)
R=CL auto-discharge resistance
0
20
40
60
80
100
0
20
40
60
80
100
Discharge Time t(ms)
CL=10μF
CL=20μF
CL=50μF
tON
Lx
IPFM
0mA
IPFM
IPFM
0mA
Lx
fOSC
最大 IPFM 制限
Output Voltage Discharge Characteristics
RDCHG=300Ω(TYP.)
ILx
ILx
IPFM
DTY LIMIT_PFM



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