The MC68HC908JL3E is a member of the low-cost, high-performance M68HC08 family of 8-bit microcontroller units (MCUs). It features the enhanced CPU08 core, providing efficient processing capabilities and full upward compatibility with earlier M68HC05 family members. The microcontroller includes 4KB of on-chip Flash memory with security features, allowing for reliable code storage and flexibility in firmware development. Additionally, it offers 128 bytes of on-chip RAM for data handling.
Equipped with a 12-channel, 8-bit ADC, the MC68HC908JL3E enables precise analog signal processing, making it suitable for sensor interfacing and other analog applications. The 2-channel, 16-bit Timer Interface Module (TIM) supports accurate timing and event counting, essential for control applications. The microcontroller operates at internal bus frequencies up to 8MHz at 5V and 4MHz at 3V, catering to various performance requirements.
Designed with low-power applications in mind, the MC68HC908JL3E supports fully static operation and includes stop and wait modes to minimize power consumption. It operates within a voltage range of 2.7V to 5.5V, providing flexibility for different power supply configurations. The device is available in a 28-pin Dual In-Line Package (DIP), facilitating easy integration into through-hole designs.
This microcontroller is ideal for applications such as consumer electronics, home appliances, and other embedded systems that require a compact and efficient solution.
Key Features :- High-Performance M68HC08 Architecture: Enhanced 8-bit CPU08 core compatible with M6805, M146805, and M68HC05 families.
- 4KB Flash Memory: On-chip Flash memory with security features for reliable code storage.
- 128 Bytes of On-Chip RAM: Provides internal static RAM for efficient data handling.
- 12-Channel, 8-Bit Analog-to-Digital Converter (ADC): Facilitates precise analog signal processing.
- 2-Channel, 16-Bit Timer Interface Module (TIM): Supports accurate timing and event counting.
- Low-Power Design: Fully static operation with stop and wait modes to optimize power consumption.