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25FV201T Specifications

Detailed technical information and Application Scenarios

Product Details

PartNumberManufactorQuantityAvailability
25FV201T100Yes

25FV201T** is a **2.

The 25FV201T is a 2.0-inch TFT LCD display module manufactured by Powertip. Below are its specifications, descriptions, and features:

Specifications:

  • Display Type: TFT (Thin Film Transistor) LCD
  • Screen Size: 2.0 inches (diagonal)
  • Resolution: 240 (H) × 320 (V) pixels (QVGA)
  • Active Area: 24.96mm (H) × 33.28mm (V)
  • Pixel Pitch: 0.104mm × 0.104mm
  • Color Depth: 262K colors (RGB 6-bit interface)
  • Viewing Direction: 12 o’clock (standard)
  • Backlight: LED (white)
  • Interface: 8-bit/16-bit parallel
  • Supply Voltage (VDD): 3.3V (typical)
  • Operating Temperature: -20°C to +70°C
  • Storage Temperature: -30°C to +80°C

Descriptions:

  • The 25FV201T is a compact, high-brightness TFT LCD module designed for embedded applications.
  • It supports parallel RGB interface for direct connection to microcontrollers or display drivers.
  • The module includes an integrated LED backlight for uniform illumination.

Features:

  • High Brightness: Suitable for indoor and outdoor visibility.
  • Wide Viewing Angle: Provides clear visibility from different angles.
  • Low Power Consumption: Optimized for battery-powered devices.
  • RoHS Compliant: Meets environmental safety standards.
  • Compact Form Factor: Ideal for portable and space-constrained applications.

This module is commonly used in industrial control panels, medical devices, handheld instruments, and consumer electronics.

(Note: Always refer to the official datasheet for precise technical details.)

# Application Scenarios and Design Phase Pitfall Avoidance for the 25FV201T Electronic Component

The 25FV201T is a versatile electronic component widely used in various applications due to its reliability and performance characteristics. Understanding its key use cases and potential design challenges is essential for engineers to maximize its effectiveness while avoiding common implementation pitfalls.

## Key Application Scenarios

1. Power Supply Circuits

The 25FV201T is often employed in power supply circuits, particularly in voltage regulation and filtering applications. Its ability to handle moderate current loads while maintaining stability makes it suitable for DC-DC converters, linear regulators, and low-noise power management systems. Engineers frequently integrate it into consumer electronics, industrial control systems, and embedded devices where consistent voltage delivery is critical.

2. Signal Conditioning and Filtering

In signal processing circuits, the 25FV201T serves as an effective filtering component, reducing noise and improving signal integrity. Its characteristics make it useful in audio amplifiers, sensor interfaces, and communication modules where clean signal transmission is necessary. Proper implementation ensures minimal distortion and enhanced system performance.

3. Automotive and Industrial Systems

Due to its robustness, the 25FV201T is well-suited for automotive and industrial environments, where components must endure temperature fluctuations, vibrations, and electrical noise. Applications include engine control units (ECUs), battery management systems (BMS), and motor drive circuits. Its reliability under harsh conditions makes it a preferred choice in these sectors.

4. Consumer Electronics

In consumer electronics, the component is commonly found in smart home devices, wearables, and portable gadgets. Its compact size and efficiency contribute to extended battery life and optimized power consumption, making it ideal for space-constrained designs.

## Design Phase Pitfall Avoidance

1. Thermal Management Considerations

While the 25FV201T is designed for stable operation, improper thermal management can lead to overheating, reducing its lifespan. Engineers should ensure adequate heat dissipation through proper PCB layout techniques, such as thermal vias, copper pours, or additional cooling mechanisms if high ambient temperatures are expected.

2. Voltage and Current Limitations

Exceeding the component’s rated voltage or current can cause premature failure. Designers must verify operating conditions and incorporate protective measures like fuses, current-limiting resistors, or transient voltage suppressors (TVS diodes) to safeguard against electrical stress.

3. PCB Layout Optimization

Poor PCB layout can introduce parasitic capacitance, inductance, or unwanted noise coupling. To mitigate these issues, traces should be kept short, ground planes should be well-defined, and high-frequency signals should be routed away from sensitive analog sections.

4. Component Aging and Derating

Over time, environmental factors can degrade performance. Implementing derating guidelines—operating the component below its maximum specifications—enhances long-term reliability, especially in mission-critical applications.

5. Compatibility with Other Components

Ensuring compatibility with surrounding circuitry is crucial. Engineers should verify impedance matching, signal levels, and power requirements to prevent mismatches that could lead to inefficiencies or malfunctions.

## Conclusion

The 25FV201T is a dependable component with broad applicability across multiple industries. By carefully considering its operational limits and optimizing design strategies, engineers can leverage its strengths while avoiding common pitfalls. Proper thermal management, adherence to electrical specifications, and thoughtful PCB design are key to achieving optimal performance in any application.

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