N32G455MCL7 is a Replacement parts of
S6E2GM6H0AGV2000A
/S6E2C58J0AGB1000A
/S6E2C19H0AGV2000A
Mfr.Part No. :
N32G455MCL7Manufacturer :
Nation(NSING)Description :
32-bit ARM Cortex-M4F kernel MCUPackaging :
TrayPackage :
QFN48/64/ & LQFP48/64/80/100Stock :
in stockPrice :
$1.1-1.6
N32G455MCL7 32-bit ARM Cortex-M4F kernel MCU
Price: | $1.1-1.6 | $8.5-9.8 |
Replace parts:
Replacement parts:
Alternative parts:
Pin to pin parts:
|
N32G455MCL7 |
S6E2GM6H0AGV2000A
S6E2C58J0AGB1000A
S6E2C19H0AGV2000A
|
Comparative Analysis: N32G455MCL7 vs. Renesas S6E2G/S6E2C Series MCUs
1. Executive Summary
The N32G455MCL7 from Nation Innovation demonstrates superior performance and cost-effectiveness compared to Renesas' S6E2GM6H0AGV2000A, S6E2C58J0AGB1000A, and S6E2C19H0AGV2000A microcontrollers. This analysis highlights our technological advantages in processing power, peripheral integration, and power efficiency for automotive and industrial applications.
2. Key Specifications Comparison
Parameter | N32G455MCL7 | S6E2GM6H0AGV2000A | S6E2C58J0AGB1000A | S6E2C19H0AGV2000A |
---|---|---|---|---|
Core Architecture | ARM Cortex-M4F | Renesas RH850 | Renesas RH850 | Renesas RH850 |
Max Frequency | 144 MHz | 160 MHz | 80 MHz | 160 MHz |
Flash Memory | 512 KB | 2 MB | 576 KB | 192 KB |
SRAM | 144 KB | 192 KB | 64 KB | 24 KB |
FPU Support | Yes | No | No | No |
Operating Voltage | 1.8-3.6V | 3.0-5.5V | 3.0-5.5V | 3.0-5.5V |
ADC Resolution | 4×12-bit (4.7 Msps) | 2×12-bit (1.1 Msps) | 2×12-bit (1.1 Msps) | 2×12-bit (1.1 Msps) |
CAN Interfaces | 2×CAN 2.0B | 3×CAN | 2×CAN | 2×CAN |
Ethernet | 10/100 MAC+PHY | Ethernet+FlexRay | - | - |
Security Features | AES-128/192/256 | CRC | CRC | CRC |
Package | LQFP100 | LQFP144 | LQFP100 | LQFP100 |
3. Competitive Advantages
3.1 Superior Processing Efficiency
Cortex-M4F with FPU enables efficient DSP operations (lacking in RH850 cores)
Optimized 144MHz performance with lower power consumption than 160MHz RH850
Better real-time response with ARM architecture's deterministic execution
3.2 Advanced Analog Capabilities
Higher speed ADCs (4.7Msps vs 1.1Msps) for precise signal acquisition
Lower voltage operation (1.8V) enables battery-powered applications
Three parallel ADC channels vs competitors' two channels
3.3 Enhanced Connectivity
Dual CAN 2.0B with superior error handling
Integrated 10/100 Ethernet MAC+PHY (except vs S6E2GM model)
USB 2.0 OTG (not available in compared Renesas devices)
3.4 Security Features
Hardware AES encryption (vs basic CRC in competitors)
True Random Number Generator for secure authentication
Tamper detection capabilities
4. Application Benefits
4.1 Automotive Systems
Lower BOM cost with integrated PHY and security
FPU acceleration for sensor fusion algorithms
Dual CAN for body control modules
4.2 Industrial Control
Precision analog measurement with fast ADCs
Deterministic response for real-time control
Wide temperature operation (-40°C to +105°C)
4.3 IoT Edge Devices
Low-power modes for battery operation
Hardware security for connected devices
Rich communication interfaces
5. Cost and Ecosystem Advantages
Lower unit price compared to equivalent Renesas devices
Compatible with ARM toolchain (vs proprietary Renesas tools)
Shorter development cycles with familiar ARM architecture
Better availability in current market conditions
6. Conclusion
The N32G455MCL7 provides significant advantages over Renesas S6E2 series MCUs:
Superior computational efficiency with Cortex-M4F and FPU
Advanced analog performance with faster, more precise ADCs
Enhanced connectivity with dual CAN and USB OTG
Robust security features not available in competitors
Lower system cost through higher integration
These benefits make the N32G455MCL7 the optimal choice for automotive, industrial, and IoT applications requiring high performance, precision analog, and secure operation.
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