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NCP500SN25T1G
+Lista de MateriaisIC REG LINEAR 2.5V 150MA 5-TSOP
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Fabricanteonsemi
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Peça do Fabricante #NCP500SN25T1G
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Especificações
| Atributo | Valor |
| Part Status | Active |
| Output Configuration | Positive |
| Output Type | Fixed |
| Number of Regulators | 1 |
| Voltage - Input (Max) | 6V |
| Voltage - Output (Min / Fixed) | 2.5V |
| Voltage Dropout (Max) | 0.27V @ 150mA |
| Current - Output | 150mA |
| Current - Quiescent (Iq) | 1 µA |
| Current - Supply (Max) | 300 µA |
| PSRR | 62dB (1kHz) |
| Control Features | Enable |
| Protection Features | Over Current, Over Temperature |
| Operating Temperature | -40°C ~ 85°C (TA) |
| Mounting Type | Surface Mount |
| Package / Case | SOT-23-5 Thin, TSOT-23-5 |
| Supplier Device Package | 5-TSOP |
| Base Product Number | NCP500 |
Visão Geral
Description
Key features of the NCP500SN25T1G include its small footprint, which is ideal for compact devices, and thermal protection to prevent overheating. It also includes current limiting to protect against output short circuits. The regulator is available in a small SOT-23-5 package, contributing to its adaptability in space-constrained environments.
Overall, the NCP500SN25T1G is a reliable choice for engineers looking for an efficient, compact, and precise voltage regulation solution in portable electronics, communication devices, and other low-power applications.
Equivalent
1. MCP1700T-2502E/TT by Microchip Technology
2. LP2980AIM5-2.5/NOPB by Texas Instruments
3. MIC5219-2.5YM5 by Microchip Technology
4. AP1117E25G-13 by Diodes Incorporated
These alternatives provide similar voltage regulation capabilities and may be used in place of the NCP500SN25T1G based on specific application needs. Always verify specifications to ensure compatibility.
Features
1. Low Dropout Voltage: Ensures efficient operation with minimal input-output voltage differential, which is crucial for battery longevity.
2. Output Voltage: Fixed output voltage options are available, such as 2.5V, facilitating precise voltage regulation.
3. Output Current: Capable of delivering up to 150mA output current, making it suitable for small to medium power applications.
4. Low Quiescent Current: Features a low quiescent current, typically around 40µA, enhancing battery efficiency during no-load conditions.
5. Thermal Protection: Integrated protection against overheating, ensuring safe operation under varying environmental conditions.
6. Stability: Designed to be stable with low ESR ceramic capacitors, which helps in minimizing output noise.
7. Package Options: Available in compact packaging (SOT-23), facilitating easy integration in space-constrained designs.
8. Operating Temperature: Supports a broad operating temperature range, typically from -40°C to +85°C, making it suitable for diverse applications.
These features make the NCP500SN25T1G ideal for low-power, portable devices where space and power efficiency are critical.
Pinout
1. VIN - Input voltage pin where the unregulated input voltage is supplied.
2. GND - Ground pin that serves as the common ground reference for the regulator.
3. VOUT - Output voltage pin where the regulated output voltage is provided.
4. EN (Enable) - Enable or disable pin used to turn the regulator on or off.
5. NC or Bypass - This pin may be a no-connect (NC) or used for additional functions like noise bypass (depending on specific configuration).
This LDO regulator is generally used to provide a stable, low-noise output voltage ideal for powering sensitive electronics. The specific version NCP500SN25T1G provides a regulated output voltage of 2.5V.
Manufacturer
Application
1. Consumer Electronics: Power supply for portable devices like smartphones, tablets, and digital cameras.
2. Wearable Devices: Ensuring efficient power management in fitness trackers and smartwatches.
3. Communication Equipment: Stabilizing power for RF modules and other communication components.
4. Automotive Systems: Providing reliable voltage regulation in infotainment or sensor systems.
5. Industrial Equipment: Supporting sensor circuits and low-power microcontrollers in automation systems.
These applications benefit from the device's low quiescent current and precise voltage regulation capabilities.