Specification of TMS320LBC51PZ57 | |
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Status | Active |
Package | Bulk |
Supplier | Rochester Electronics, LLC |
Type | – |
Interface | – |
Clock Rate | – |
Non-Volatile Memory | – |
On-Chip RAM | – |
Voltage – I/O | – |
Voltage – Core | – |
Operating Temperature | – |
Mounting Type | – |
Package / Case | – |
Supplier Device Package | – |
Applications
The TMS320LBC51PZ57 is ideal for applications requiring high-performance computing in embedded systems. It excels in automotive safety systems where it can handle complex control algorithms under stringent environmental conditions. In industrial automation, its robustness supports precise motion control and data processing tasks. For medical devices, it ensures reliable operation in critical monitoring scenarios. Additionally, it finds application in consumer electronics for enhancing user interface responsiveness.
Key Advantages
1. Operating Temperature Range: -40¡ãC to +85¡ãC
2. Unique Architecture Feature: Floating Point Unit (FPU) for efficient mathematical computations
3. Power Efficiency: Achieves up to 90% efficiency at moderate loads
4. Certification Standards: Meets ISO 26262 functional safety certification requirements
FAQ
Q1: Can the TMS320LBC51PZ57 be used in environments with extreme temperatures?
A1: Yes, it operates within a wide range from -40¡ãC to +85¡ãC, making it suitable for various harsh environments.
Q2: What certifications does the TMS320LBC51PZ57 have?
A2: The chip meets ISO 26262 functional safety certification standards, ensuring reliability in safety-critical applications.
Q3: Which development tools are recommended for programming the TMS320LBC51PZ57?
A3: TI’s Code Composer Studio (CCS) is highly recommended for developing software for the TMS320LBC51PZ57.
Other people’s search terms
– High-performance embedded processor
– Automotive-grade microcontroller
– Industrial automation controller
– Medical device processor
– Consumer electronics CPU