ESP32 LCSC Part Verification

Verified the ESP32-S3-WROOM-1-N8R8 / LCSC C2913201 part project.
Findings
  • Symbol pin numbers/names 1–40 look correct against the Espressif datasheet, including:
    • pin 2 = 3V3
    • pin 3 = EN
    • pin 16 = IO46
    • pin 26 = IO45
    • pin 27 = IO0
    • pin 36 = RXD0
    • pin 37 = TXD0
    • pin 40 = GND
  • Exposed pad mapping is not fully proven. The datasheet has EPAD / pin 41 as GND. The project represents this as 41_1 through 41_9, which is reasonable for a split thermal pad array, but the indexed footprint data did not expose enough pad-number detail to confirm every footprint pad maps cleanly to the symbol terminals.
  • Key metadata is incomplete. The project has the datasheet URL and part type, but appears to be missing explicit:
    • Manufacturer: Espressif
    • MPN: ESP32-S3-WROOM-1-N8R8
    • LCSC number: C2913201
    • Description
    • Package / footprint name
    • Operating voltage: 3.0–3.6 V, typical 3.3 V
    • Required supply current: 0.5 A
    • Operating temperature for N8R8: –40 to 65 °C
  • Terminal electrical types are weak. All symbol terminals appear to have Pin Type: Unspecified / Terminal Type: unspecified. That should be fixed so ERC and downstream users understand power, ground, input, output, bidirectional GPIO, enable, and UART pins.
  • Documentation should flag ESP32-S3 variant caveats.
    • IO0, IO45, IO46, and IO3 are strapping-related.
    • RXD0 / TXD0 are also GPIO44 / GPIO43; aliases or descriptions would reduce confusion.
    • For the N8R8 PSRAM variant, IO35, IO36, and IO37 should be documented as restricted / not generally available due to internal Octal SPI PSRAM usage.
Recommended fixes
  1. Add explicit project metadata: manufacturer, MPN, LCSC PN, package, description, supply voltage/current, temp range.
  2. Set terminal types instead of leaving everything unspecified.
  3. Verify the actual footprint file pad names/numbers for pads 1–40 and EPAD 41 / 41_1–41_9.
  4. Add pin notes for strapping pins, UART GPIO aliases, and PSRAM-restricted pins.
  5. Keep the footprint/model naming consistent with ESP32-S3-WROOM-1-N8R8.
Overall: the symbol pin table appears correct, but the part project is not yet production-quality because footprint pad mapping is not fully verified and the electrical/sourcing metadata is incomplete.
Fix metadata issues
Verify pad mapping
Add ESP32 pin notes
Compare library match
Run component review


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ESP32-S3-WROOM-1-N8R8

ESP32-S3-WROOM-1-N8R8 thumbnail
Bluetooth, WiFi 802.11b/g/n, Bluetooth v5.0 Transceiver Module 2.4GHz PCB Trace Surface Mount
The ESP32-S3-WROOM-1-N8R8 is a high-performance Wi-Fi and Bluetooth Low Energy (BLE) module from Espressif Systems, designed for advanced IoT, edge AI, smart devices, industrial automation, and embedded applications. It is based on the ESP32-S3 SoC featuring a dual-core Xtensa® LX7 processor running up to 240 MHz, integrated wireless connectivity, and enhanced AI acceleration capabilities. The N8R8 variant includes 8 MB Flash memory and 8 MB Octal SPI PSRAM, making it suitable for memory-intensive applications such as machine learning, image processing, graphical user interfaces, and data logging.
Key Features Dual-core 32-bit Xtensa LX7 CPU operating up to 240 MHz Integrated 2.4 GHz Wi-Fi (802.11 b/g/n) Bluetooth 5 LE (Low Energy) support 8 MB Flash memory 8 MB Octal SPI PSRAM Vector instructions and hardware acceleration for AI/ML workloads Integrated PCB trace antenna USB OTG and USB Serial/JTAG support Rich peripheral set including: GPIO ADC UART SPI I²C I²S PWM USB Operating voltage: 3.0 V to 3.6 V Wireless data rates up to 150 Mbps RF output power up to 20.5 dBm High receiver sensitivity down to –104.5 dBm Surface-mount 41-pin module package Industrial operating temperature range up to -40°C to +85°C (module-dependent specification)
#Module #RF-Transceiver #Esp32

Properties

ESPRESSIF(乐鑫)

U

ESP32-S3-WROOM-1-N8R8

C2913201

WIRELM-SMD_ESP32-S3-WROOM-1

Extended Part

2.4G

Hz

3V ~ 3.6V

V

97mA ~ 100mA

A

273mA ~ 330mA

A

-40°C ~ 65°C (TA)

Module

parametric-v1

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