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XC9509E036AR Datasheet(PDF) 11 Page - Torex Semiconductor |
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XC9509E036AR Datasheet(HTML) 11 Page - Torex Semiconductor |
11 / 41 page 11/41 XC9509 Series ● Voltage Detector The detector block of the XC9509 series detects output voltage from the VDOUT pin while sensing either VDD, DCOUT, or VROUT internally. (N-channel Open Drain Type) <CE Pin Function> The operation of the XC9509 series' DC/DC converter block and voltage regulator block will enter into the shut down mode when a low level signal is input to the CE pin. During the shut down mode, the current consumption occurs only in the detector and is 3.0μA (TYP.), with a state of high impedance at the Lx pin and the DCOUT pin. The IC starts its operation by inputting a high level signal to the CE pin. The input to the CE pin is a CMOS input and the sink current is 0μA (TYP.). <MODE Pin Function> The operation of the XC9509A to C series' voltage detector block will enter into stand-by mode when a high level signal is input to the MODE pin. When a low level signal is input, the voltage regulator block will enter into stand-by mode. However, if the IC enters into stand-by mode via the CE pin, the voltage regulator block also shuts down. Likewise, if the XC9509D to F series enters into stand-by mode via the CE pin, the DC/DC converter block can also shut down. With the XC9509H to L series control can be PWM control when the MODE pin is 'H' level and PWM/PFM automatic switching control when the MODE pin is 'L' level. ● Application Information 1. The XC9509 series is designed for use with a ceramic output capacitor. If, however, the potential difference between dropout voltage or output current is too large, a ceramic capacitor may fail to absorb the resulting high switching energy and oscillation could occur on the output. If the input-output potential difference is large, connect an electrolytic capacitor in parallel to compensate for insufficient capacitance. 2. Spike noise and ripple voltage arise in a switching regulator as with a DC/DC converter. These are greatly influenced by external component selection, such as the coil inductance, capacitance values, and board layout of external components. Once the design has been completed, verification with actual components should be done. 3. When the difference between VIN and VOUT is large in PWM control, very narrow pulses will be outputted, and there is the possibility that some cycles may be skipped completely. 4. When the difference between VIN and VOUT is small, and the load current is heavy, very wide pulses will be outputted and there is the possibility that some cycles may be skipped completely: in this case, the Lx pin may not go low at all. ■ NOTES ON USE ● DC/DC Waveform (3.3V, 1.2MHz) <External Components> L :4.7μH(CDRH4D28C,SUMIDA) CIN :4.7μF(ceramic) CL :10μF(ceramic) <External Components> L :4.7μH(CDRH4D28C,SUMIDA) CIN :4.7μF(ceramic) CL :10μF(ceramic) ■ OPERATIONAL EXPLANATION (Continued) <External Components> L :4.7μH(CDRH4D28C,SUMIDA) CIN :4.7μF(ceramic) CL :10μF(ceramic) |
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