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XC6207B122MR Datasheet(PDF) 10 Page - Torex Semiconductor

Part # XC6207B122MR
Description  High Speed "Green Operation" LDO Voltage Regulators
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Manufacturer  TOREX [Torex Semiconductor]
Direct Link  http://www.torex.co.jp
Logo TOREX - Torex Semiconductor

XC6207B122MR Datasheet(HTML) 10 Page - Torex Semiconductor

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XC6207Series
SETTING VOLTAGE
CIN (μF)
CL (μF)
More than 1.2V ~ Under 1.8V
1.0
4.7
More than 1.8V ~ Under 2.5V
1.0
1.0
More than 2.5V ~ Less than 5.0V
2.2
1.0
■OPERATIONAL EXPLANATION (Continued)
<Green Operation> (Continued)
● Load Transient Response by GO mode
○ GO mode (GO pin voltage: Low)
○ Fixed high speed mode via GO pin signal (GO pin voltage: Low to High)
Output Current: IOUT=0.1mA⇔100mA
Output Current: IOUT=0.1mA⇔100mA
○ GO mode (GO pin voltage: Low)
○ Fixed high speed mode via GO pin signal (GO pin voltage: Low to High)
Output Current: IOUT=0.1mA⇔5mA
Output Current: IOUT=0.1mA⇔5mA
<Low ESR capacitor>
With the XC6207 series, a stable output voltage is achievable even if used with low ESR capacitors, as a phase
compensation circuit is built-in. In order to ensure the effectiveness of the phase compensation, we suggest that an
output capacitor (CL) is connected as close as possible to the output pin (VOUT) and the VSS pin. Please use an output
capacitor with a capacitance value of at least 1μF when the setting output voltage (VOUT(T)) is less than or equal to 1.8V.
Also, when the setting output voltage (VOUT(T)) is less than or equal to 2.5V, please connect an input capacitor (CIN) of
2.2μF between the VIN pin and the VSS pin in order to ensure a stable power input. The capacitor is possible to
decrease depends on bias and temperature. Therefore the phase compensation cannot be ensured effectiveness.
Stable phase compensation may not be ensured if the capacitor runs out capacitance when depending on bias and
temperature. In case the capacitor depends on the bias and temperature, please make sure the capacitor can ensure
the actual capacitance.
<Recommended conditions of CIN and CL>
*Note: Input a “H” level signal to the GO pin before the output
current fluctuation (△T) occurs.


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