The S-1313C25-M5T1U3 belongs to the category of voltage regulators.
It is used to regulate voltage in electronic circuits and devices.
The S-1313C25-M5T1U3 comes in a SOT-23-5 package.
This voltage regulator provides stable and reliable voltage regulation for electronic applications.
The S-1313C25-M5T1U3 is typically available in reels with a quantity of 3000 units per reel.
The S-1313C25-M5T1U3 has the following pin configuration: 1. VOUT 2. GND 3. NC 4. VIN 5. CE
The S-1313C25-M5T1U3 utilizes a feedback control mechanism to maintain a stable output voltage despite variations in input voltage and load conditions. It employs a reference voltage and error amplifier to adjust the output voltage as needed.
The S-1313C25-M5T1U3 is suitable for various battery-powered applications, portable devices, and low-power microcontroller systems where a stable and efficient voltage supply is required. It can be used in handheld consumer electronics, IoT devices, and wearable technology.
Some alternative models to the S-1313C25-M5T1U3 include the S-1313B25-M5T1U3, S-1313D25-M5T1U3, and S-1313E25-M5T1U3. These models offer similar voltage regulation capabilities with slight variations in input/output voltage ranges and package sizes.
In conclusion, the S-1313C25-M5T1U3 is a versatile voltage regulator with a wide input voltage range, making it suitable for a variety of low-power electronic applications. Its compact package and efficient performance make it an ideal choice for designers seeking reliable voltage regulation in space-constrained designs.
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Sure, here are 10 common questions and answers related to the application of S-1313C25-M5T1U3 in technical solutions:
Question: What is the operating voltage range for S-1313C25-M5T1U3?
Answer: The operating voltage range for S-1313C25-M5T1U3 is 2.0V to 6.0V.
Question: What is the maximum output current of S-1313C25-M5T1U3?
Answer: The maximum output current of S-1313C25-M5T1U3 is 250mA.
Question: Can S-1313C25-M5T1U3 be used in battery-powered applications?
Answer: Yes, S-1313C25-M5T1U3 is suitable for battery-powered applications due to its low operating voltage and low quiescent current.
Question: What is the typical dropout voltage of S-1313C25-M5T1U3?
Answer: The typical dropout voltage of S-1313C25-M5T1U3 is 160mV at 100mA load.
Question: Is S-1313C25-M5T1U3 suitable for use in portable devices?
Answer: Yes, S-1313C25-M5T1U3 is ideal for portable devices due to its low power consumption and small package size.
Question: Does S-1313C25-M5T1U3 have built-in overcurrent protection?
Answer: Yes, S-1313C25-M5T1U3 features built-in overcurrent protection to safeguard the device and the load.
Question: What is the thermal shutdown temperature of S-1313C25-M5T1U3?
Answer: The thermal shutdown temperature of S-1313C25-M5T1U3 is typically 160°C.
Question: Can S-1313C25-M5T1U3 be used in automotive applications?
Answer: Yes, S-1313C25-M5T1U3 is suitable for automotive applications as it meets the necessary quality and reliability standards.
Question: What is the typical quiescent current of S-1313C25-M5T1U3?
Answer: The typical quiescent current of S-1313C25-M5T1U3 is 30μA.
Question: Does S-1313C25-M5T1U3 require external capacitors for stability?
Answer: No, S-1313C25-M5T1U3 is stable without the need for external capacitors, simplifying the design process.
I hope these questions and answers are helpful for your technical solutions involving S-1313C25-M5T1U3! Let me know if you need further assistance.