PTCEL13R501RBE
Product Category: Integrated Circuit
Basic Information Overview: - Category: Voltage Regulator - Use: Regulating voltage in electronic circuits - Characteristics: High precision, low dropout voltage, thermal shutdown protection - Package: TO-220, 3-pin - Essence: Stabilizing voltage for reliable operation of electronic devices - Packaging/Quantity: Typically sold in reels of 1000 units
Specifications: - Input Voltage Range: 4.5V to 18V - Output Voltage: 3.3V - Maximum Output Current: 1A - Dropout Voltage: 300mV at 1A - Operating Temperature Range: -40°C to 125°C
Detailed Pin Configuration: 1. Vin (Input Voltage) 2. Vout (Output Voltage) 3. GND (Ground)
Functional Features: - High accuracy and stability over a wide input voltage range - Overcurrent and thermal protection - Low dropout voltage for improved efficiency
Advantages: - Precise voltage regulation - Wide operating temperature range - Thermal shutdown protection enhances safety
Disadvantages: - Limited maximum output current compared to some alternatives - Higher dropout voltage than certain competing models
Working Principles: The PTCEL13R501RBE operates by comparing the output voltage to a reference voltage and adjusting the pass element to maintain a stable output voltage despite changes in input voltage or load.
Detailed Application Field Plans: - Power supplies for microcontrollers and other digital ICs - Battery-powered devices requiring stable voltage - Automotive electronics - Industrial control systems
Detailed and Complete Alternative Models: 1. LM317: Similar voltage regulator with adjustable output 2. L78xx: Series of fixed voltage regulators with higher output currents 3. LT1083: High-current, adjustable voltage regulator with low dropout voltage
This comprehensive entry provides an in-depth understanding of the PTCEL13R501RBE, covering its specifications, features, applications, and alternatives.
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What is PTCEL13R501RBE?
What are the key features of PTCEL13R501RBE?
In what technical solutions can PTCEL13R501RBE be used?
What are the benefits of using PTCEL13R501RBE in technical solutions?
What are the typical operating conditions for PTCEL13R501RBE?
Are there any specific thermal considerations when using PTCEL13R501RBE?
Can PTCEL13R501RBE be used in automotive applications?
What are the recommended mounting and soldering techniques for PTCEL13R501RBE?
Does PTCEL13R501RBE require any specific driver circuitry?
Where can I find detailed technical specifications and application notes for PTCEL13R501RBE?