Details
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| Parameter | Symbol | Conditions | Min | Typ | Max | Unit |
|---|---|---|---|---|---|---|
| Supply Voltage | VCC | Operating | 2.7 | 5.5 | V | |
| Output Current | IOUT | Continuous | 100 | mA | ||
| Shutdown Current | ISD | VCC = 5V | 1 | μA | ||
| Output Voltage | VOUT | No Load, VCC = 5V | 1.24 | V | ||
| Quiescent Current | IQ | VCC = 5V | 60 | μA | ||
| Dropout Voltage | VDROPOUT | IOUT = 100mA | 300 | mV |
Instructions for LTC1290CCSW
Power Supply Connection:
- Connect the supply voltage (VCC) between 2.7V and 5.5V to the VCC pin.
- Ensure a stable power supply to avoid fluctuations that can affect performance.
Output Configuration:
- The output voltage (VOUT) is set internally to 1.24V under no load conditions with VCC at 5V.
- For different output voltages, external components or configurations may be required.
Current Handling:
- The device can provide up to 100mA of continuous output current.
- Ensure that the load does not exceed this limit to prevent damage or overheating.
Shutdown Mode:
- To minimize power consumption, use the shutdown feature which reduces the current draw to approximately 1μA.
- Apply a logic low signal to the shutdown pin to activate this mode.
Thermal Considerations:
- Monitor the dropout voltage, especially when operating near the maximum output current, as it can increase to 300mV.
- Provide adequate heat sinking if operating in high ambient temperatures or under heavy loads.
Quiescent Current:
- The quiescent current is typically 60μA at VCC = 5V.
- This value should be considered in low-power applications.
Installation and Handling:
- Handle the component with care to avoid ESD damage.
- Follow standard surface mount technology (SMT) procedures for installation.
Note: Always refer to the manufacturer's datasheet for detailed specifications and application notes specific to your design requirements.
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