ESP32 P4 WIFI6 Dev Kit Basierend auf und C6, Unterstützt Wi Fi 6 / BLE 5, Integrierte MIPI CSI, DSI, USB 2.0 OTG, ETH, SDIO 3.0 TF Card Slot, PoE Modul Header, Mikrofon usw.
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€ 27,83 |
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€ 27,83 |
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Beschreibung
Amazon
ESP32-P4-WIFI6-DEV-KIT high-performance development board, based on ESP32-P4 and ESP32-C6, with RISC-V 32-bit dual-core and single-core processors, supports 2.4GHz Wi-Fi 6 and Bluetooth 5 / BLE 5 128 KB HP ROM, 16 KB LP ROM, 768 KB HP L2MEM, 32 KB LP S-R-A-M, 8 KB TCM. 32MB PSRAM in the chip's package, with onboard 16MB Nor Flash Supports AI speech interaction, allows access to online large model platforms. Provides image and voice processing interfaces including JPEG Codec, Pixel Processing Accelerator, Image Signal Processor, H264 encoder Rich human-machine interfaces such as MIPI-CSI, MIPI-DSI, USB 2.0 OTG, Ethernet, SDIO 3.0 TF card slot, microphone, speaker header, etc. Reserved PoE Module header. Adtaping 2*20 GPIO headers with 28 x remaining programmable GPIOs Security features: Secure Boot, Flash Encryption, cryptographic accelerators, and TRNG. Additionally, hardware access protection mechanisms help to enable Access Permission Management and Privilege Separation
ESP32-P4-WIFI6-DEV-KIT high-performance development board, based on ESP32-P4 and ESP32-C6, with RISC-V 32-bit dual-core and single-core processors, supports 2.4GHz Wi-Fi 6 and Bluetooth 5 / BLE 5 128 KB HP ROM, 16 KB LP ROM, 768 KB HP L2MEM, 32 KB LP S-R-A-M, 8 KB TCM. 32MB PSRAM in the chip's package, with onboard 16MB Nor Flash Supports AI speech interaction, allows access to online large model platforms. Provides image and voice processing interfaces including JPEG Codec, Pixel Processing Accelerator, Image Signal Processor, H264 encoder Rich human-machine interfaces such as MIPI-CSI, MIPI-DSI, USB 2.0 OTG, Ethernet, SDIO 3.0 TF card slot, microphone, speaker header, etc. Reserved PoE Module header. Adtaping 2*20 GPIO headers with 28 x remaining programmable GPIOs Security features: Secure Boot, Flash Encryption, cryptographic accelerators, and TRNG. Additionally, hardware access protection mechanisms help to enable Access Permission Management and Privilege Separation