• 放大器
  • 模数转换器 (ADC)
  • 接口和隔离
  • 音频和视频
  • 光通信和光学传感
  • 射频与微波
  • 数模转换器 (DAC)
  • 高速逻辑和数据路径管理
  • 嵌入式安全和1-Wire
  • 线性产品
  • 处理器和微控制器
  • iButton和存储器
  • 开关和多路复用器
  • 工业以太网
  • 传感器与MEMS
  • 时钟与定时
  • 电机(步进和直流无刷电机)驱动器
  • 运动控制模块和系统
  • 电源监视器,控制器和保护
  • 电源管理
    • 电池管理
    • 电流源
    • 能量收集
    • 无电感式(充电泵)DC/DC 转换器
    • isoPower(隔离电源)
    • LDO 线性稳压器
    • 多功能电源管理 IC
    • 功率控制
    • 超级电容器充电器
    • 开关稳压器
    • μModule 稳压器

请求资料

带*号的为必填项

Tab Three

ADI Maxim MAX32520 ChipDNA Secure Arm Cortex M4 Microcontroller

DeepCover® embedded security solutions cloak sensitive data under multiple layers of advanced physical security to provide the most secure key storage possible.

The DeepCover secure microcontroller MAX32520 provides an interoperable, secure, and cost-effective solution to build new generations of trusted embedded systems and communication devices such as IoT, IoT gateways, and wireless access points.

The MAX32520 incorporates Maxim’s patented ChipDNA™ PUF technology. ChipDNA technology involves a physically unclonable function (PUF) that enables cost-effective protection against invasive physical attacks. Using the random variation of semiconductor device characteristics that naturally occur during wafer fabrication, the ChipDNA circuit generates a unique output value that is repeatable over time, temperature, and operating voltage. Attempts to probe or observe ChipDNA operation modifies the underlying circuit characteristics, preventing discovery of the unique value used by the chip cryptographic functions. The MAX32520 utilizes the ChipDNA output as key content to cryptographically secure all device stored data including user firmware. User firmware encryption provides ultimate software IP protection. The ChipDNA can also generate a private key for the ECDSA signing operation.

The MAX32520 integrates an Arm® Cortex® -M4 processor, 2MB of Flash, 136KB of system RAM + 34KB ECC, 8KB of one-time-programmable (OTP) memory and 128KB of boot ROM.

The MAX32520 provides a FIPS/NIST compliant TRNG, environmental and tamper detection circuitry to facilitate system-level security.

Multiple high-speed interfaces are supported including SPI, UART, and an I2C. The four on-chip timers also support PWM output generation for direct control of external devices. One of the SPI ports has a serial flash emulation mode allowing direct code fetching enabling secure boot for a host microcontroller.

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