Details
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Parameter | Symbol | Conditions | Min | Typ | Max | Unit |
---|---|---|---|---|---|---|
Input Voltage | V_IN | Operating Condition | 2.7 | - | 5.5 | V |
Output Voltage | V_OUT | Fixed Output | - | 3.3 | - | V |
Quiescent Current | I_Q | No Load | - | 10 | - | μA |
Dropout Voltage | V_DROPOUT | I_OUT = 100mA | - | 300 | - | mV |
Load Regulation | - | I_OUT: 0 to 100mA | - | 2 | - | % |
Line Regulation | - | V_IN: 2.7 to 5.5V | - | 0.2 | - | % |
PSRR (Power Supply Rejection Ratio) | - | @ 1kHz | - | 60 | - | dB |
Operating Temperature | T_OP | - | -40 | - | 85 | °C |
Instructions for MC10124L:
Input Voltage (V_IN):
- Ensure the input voltage is within the range of 2.7V to 5.5V to avoid damage or improper operation.
Output Voltage (V_OUT):
- The device provides a fixed output voltage of 3.3V. No external components are required for setting this voltage.
Quiescent Current (I_Q):
- Under no-load conditions, the quiescent current is typically 10μA. This helps in minimizing power consumption in low-power applications.
Dropout Voltage (V_DROPOUT):
- At an output current of 100mA, the dropout voltage is typically 300mV. Ensure that the input voltage exceeds the output voltage by at least this amount for proper regulation.
Load Regulation:
- The load regulation is typically 2% over the load current range from 0 to 100mA. This ensures stable output voltage under varying load conditions.
Line Regulation:
- Line regulation is typically 0.2% for input voltages ranging from 2.7V to 5.5V, maintaining a consistent output despite changes in input voltage.
PSRR (Power Supply Rejection Ratio):
- At 1kHz, the PSRR is 60dB, indicating good noise rejection from the input supply.
Operating Temperature (T_OP):
- The device operates reliably over the temperature range of -40°C to +85°C.
Installation and Usage:
- Place the device on the PCB with appropriate bypass capacitors close to the input and output pins to ensure stability and reduce noise.
- Follow the manufacturer's guidelines for PCB layout and thermal considerations to maximize performance and reliability.
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