Insulation Voltage | Industrial Control Systems | Insulation Voltage (IEC 60747-5-5): 2.5kVrms (Base) ▲5kVrms (Advanced) (Industry standard: 2kVrms) | Enhanced safety in high-voltage applications (e.g., motor control) | Advanced version requires thicker insulation, increasing cost (▲ indicates 100% improvement over Base) |
Propagation Delay | High-Speed Data Communication | Propagation Delay (Typ): 10ns (Base) ▲5ns (Advanced) (Industry standard: 15ns) | Faster signal transmission for real-time systems (▲ halves latency vs Base) | Advanced may need matched impedance circuits for optimal performance (▲ indicates 50% reduction vs Base) |
Current Transfer Ratio | Sensor Signal Amplification | CTR (Min @ 5mA): 100% (Base) ▲150% (Advanced) (Industry standard: 50%) | Stronger output signal for weak inputs (▲ improves sensitivity by 50% vs Base) | Higher CTR may require more precise current control (▲ indicates doubled performance vs Base) |
Operating Temperature | Automotive Electronics | Operating Temp Range: -40°C to +105°C (Base) ▲-55°C to +125°C (Advanced) (Industry standard: -20°C to +70°C) | Reliable operation in engine compartments (▲ extends range by 15°C colder/20°C hotter) | Advanced version may have higher thermal resistance, affecting heat dissipation (▲ indicates expanded range) |
Noise Immunity | Industrial Automation | Noise Immunity: 40dB (Base) ▲50dB (Advanced) (Industry standard: 30dB) | Reduced interference in electrically noisy environments (▲ improves by 25% vs Base) | Advanced requires additional shielding for optimal performance (▲ indicates enhanced resistance) |
Package Type | Compact Consumer Electronics | Package Type: DIP-8 (Base) ▲SMT (Advanced) (Industry standard: Through-hole DIP) | SMT allows denser PCB layouts (▲ reduces footprint by 40% vs Base) | Base easier for prototyping; Advanced needs specialized assembly (▲ indicates form factor improvement) |