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Features

  • Arm® Cortex®-M33: 160MHz
  • 704kB SRAM
  • Wi-Fi 6, 802.11a/b/g/n/ac/ax 2.4/5GHz, 1x1, 20MHz, MCS9 115Mbps, OFDMA, TWT
  • Bluetooth LE 5.1
  • WPA/WPA2- Enterprise/Personal, WPA2 SI, WPA3 SAE, and OWE
  • 8Mbyte QSPI Flash
  • QSPI PSRAM controller
  • 2x SPI, 3x UART, 2x I2C, SDIO 3.0 (Device)
  • 12-bit ADC, I2S, PDM, PWM
  • True Random Number Generator (TRNG)
  • Up to 28x GPIO
  • Worldwide certified module
  • Encryption: AES, DES/3DES, CHACHA, SHA1/224/256, RSA, DH, ECC
  • Dimensions 15mm × 20mm × 3.0mm, 53 pins
  • Operating temperature range -40°C to 85°C

Description

The RRQ61051 is a Wi-Fi 6 and Bluetooth® Low Energy (LE) combo module built on the RA6W1 MCU featuring an Arm® Cortex®-M33 processor. It includes a dual-band 802.11a/b/g/n/ac/ax Wi-Fi subsystem, on-chip memory, flexible peripheral interfaces, and advanced power management capabilities. The module integrates 8MB of Flash, a 40MHz crystal, RF matching components, and offers three antenna options for design flexibility. This module offers a standalone, single-chip solution that supports complex, low-power IoT applications requiring both Wi-Fi and Bluetooth LE connectivity. Extremely low-power operation is achieved by dynamically disabling unused elements of the MCU, allowing near-zero power consumption when the device is not actively transmitting or receiving data.

Parameters

AttributesValue
Temp. Range (°C)-40 to +85°C

Package Options

Pkg. TypePkg. Dimensions (mm)Lead Count (#)Pitch (mm)
Module15.0 x 20.0 x 3.0530.9

Product Comparison

RRQ61051RA6W1RRQ61001
Pkg. TypeModuleFCQFN, WLCSPModule
Data Flash (KB)800008000
Wireless StandardWi-Fi 4 (802.11b/g/n), Wi-Fi 6 (802.11ax)Wi-Fi 4 2.4GHz, Wi-Fi 6 2.4/5GHz, Wi-Fi 6 2.4GHzWi-Fi 6 (802.11ax)
Band2.4GHz, 2.4GHz + 5GHz2.4GHz, 2.4GHz + 5GHz2.4GHz + 5GHz

Application Block Diagrams

Humanoid battery management system block diagram features cell balancing and monitoring, charge and discharge protection, pack voltage and current sensing, battery pack control, communications, auxiliary power, and active cooling.
Humanoid Battery Management System
Integrated humanoid robot BMS enabling safe, real-time power management, protection, and battery-state control.
Essential thermostat with core functionality block diagram features an MCU, wireless connectivity, NFC reader, and relay control.
Mid-Range Thermostat
Mid-range thermostat with Wi‑Fi, integrated sensors, and smart home connectivity for enhanced comfort and efficiency.
TFT instrument cluster block diagram features a high‑performance dual-core MCU, built‑in AI acceleration and extensive connectivity options, including CAN, Wi‑Fi, Bluetooth LE, GPS, and GSM 4G.
TFT Instrument Cluster with Bluetooth Audio and Telematics
TFT instrument cluster with integrated telematics, graphics, and AI for cost‑efficient connected mobility.
Cost-optimized bedside monitor block diagram featuring a high-performance MCU and various connectivity options range from wired Ethernet to wireless Bluetooth LE or Wi-Fi.
Bedside Monitor
Scalable bedside monitoring platform for real‑time patient vitals and connected care.
Block diagram of the scalable HMI design for household appliances enables interaction through capacitive touch, voice commands, and wireless connectivity via Wi-Fi or Bluetooth LE.
Advanced Low-Power Wireless HMI for Household Appliances
Advanced low-power HMI with Wi-Fi 6 and Bluetooth 5.1 enables seamless smart appliance control.
Battery-powered aroma diffuser featuring ultra-low power Wi-Fi 6, battery charger and compact mixed-signal IC.
Household Aroma Diffuser
Household aroma diffuser with connectivity and flexible power options.
Oxygen Concentrator Controller with Smart Connectivity Block Diagram
Oxygen Concentrator Controller with Smart Connectivity
Smart oxygen concentrator control with RTOS-ready MCU, touch UI, and Bluetooth connectivity.
Interactive block diagram of the smart HMI system features 32-bit MCU, supporting GUI creation with an LCD, voice input/output, and IoT connectivity.
Smart HMI System with Voice & Display Interfaces
Smart HMI system with 32-bit MCU supports GUI, voice I/O, IoT connectivity, and fast development tools.
OCPP Interface Card (OIC) for Smart EV Chargers Block Diagram
OCPP Interface Card (OIC) for Smart EV Chargers
OCPP enables EV chargers to connect with servers for remote control, real-time alerts, and flexibility.
Single Board Computer Block Diagram
Single Board Computer for Advanced HMI and Edge AI Applications
Compact SBC supports HMI and Edge AI with dual-core MPU, DRP-AI, Wi-Fi, Bluetooth LE, and NFC connectivity.
The all-in-one smart home controller block diagram combines multiple radio PHYs, a cost-optimized MPU, and versatile connectivity.
Smart Home Controller with Multiple PHYs
All-in-one smart home gateway with multi-standard PHYs, intuitive control, and future-proof design.
HMI SoM with AI Accelerator Block Diagram
HMI SoM with AI Accelerator
Scalable AI-enabled SMARC SoM for high-performance industrial HMI.
Smart Voice-Controlled Clotheshorse with Connectivity Block Diagram
Smart Voice-Controlled Clotheshorse with Connectivity
Smart clotheshorse system provides multiple control options with efficient power for easy laundry drying.
Smart toilet block diagram features a 32‑bit MCU, Bluetooth LE SoC, photocoupler, high‑performance DC/DC converters and LDOs.
Smart Toilet
Smart toilet design with remote control and efficient heating for enhanced comfort and convenience.
OTA‑enabled PLC module block diagram features an MCU with Ethernet connectivity and real‑time system control, buck converters, RS‑485 transceivers, CTSU, speaker, and USB support.
OTA-Enabled PLC Module
High‑performance PLC module enabling fast OTA updates, precise real‑time control, and remote management for reliable, connected industrial systems.

Additional Applications

  • Smart home appliances
  • Smart home
  • Home automation
  • Wearables
  • Access control
  • Smart sensors
  • Connected agriculture
  • IP camera
  • Smart medical
  • Industrial sensors

Complete Your Design

Explore complementary products to elevate your design

Part NumberStatusSamplesStockPackageBudgetary Price (USD)Lead Count (#)Carrier TypePb (Lead) FreeWireless StandardBandFunctionCountry of AssemblyTemp. Range (°C)
RRQ61051-008ActiveAvailableOut of StockModule1ku | $5.82853#Tape & ReelYesWi-Fi 6 (802.11ax)2.4GHz + 5GHzPCB trace antennaChina-40 to +85°C
RRQ61051-009ActiveAvailableOut of StockModule1ku | $6.02753#Tape & ReelYesWi-Fi 6 (802.11ax)2.4GHz + 5GHzu.FL connectorChina-40 to +85°C
RRQ61051-010ActiveAvailableOut of StockModule1ku | $5.82853#Tape & ReelYesWi-Fi 6 (802.11ax)2.4GHz + 5GHzRF antenna pinChina-40 to +85°C
RRQ61051-208ActiveAvailableOut of StockModule1ku | $5.28253#Tape & ReelYesWi-Fi 4 (802.11b/g/n)2.4GHzPCB trace antennaChina-40 to +85°C
RRQ61051-408ActiveAvailableOut of StockModule1ku | $5.51353#Tape & ReelYesWi-Fi 6 (802.11ax)2.4GHzPCB trace antennaChina-40 to +85°C

Complete Your Design

Explore complementary products to elevate your design

Renesas Boards & Kits

Support Communities

  1. RRQ61051 GPIO

    I need a list of the default GPIO state during bootloader stage. We are seeing that some pins are hugh which causes an issue

    May 13, 2026
  2. Check out our new RA6W1 WiFi family !

    ... Arm Cortex-M33 MCU | Renesas Module  RRQ61001 - Ultra-Low Power Wi-Fi 6 Module 160MHz Arm Cortex-M33 with Integrated Flash | Renesas Module with BLE RRQ61051 - Ultra-Low Power Wi-Fi 6 and Bluetooth LE Module 160MHz Arm Cortex-M33 with Integrated Flash | Renesas This thread was automatically locked due ...

    Dec 17, 2025
  3. Check out our great new WiFI devices !

    ... Power Dual-Band Wi-Fi 6 Arm Cortex-M33 MCU | Renesas Module  RRQ61001 - Ultra-Low Power Wi-Fi 6 Module 160MHz Arm Cortex-M33 with Integrated Flash | Renesas Module with BLE RRQ61051 - Ultra-Low Power Wi-Fi 6 and Bluetooth LE Module 160MHz Arm Cortex-M33 with Integrated Flash | Renesas

    Dec 10, 2025
View All Results from Support Communities (5)

Knowledge Base

  1. How quickly does RA6W1 wake up from Sleep Mode 3 to RX-ready state?

    ... AP and Server. Thus, the chip can process Rx during DPM sleep state. About 70 ms is required to be ready for WLAN initialization after wake-up. Each system application and user application will take slightly longer depending on implementation. Suitable Products RA6W1, RRQ61051, RRQ61001   日本語 中文

    Dec 10, 2025
  2. RA6W1: What is Matter?

    ... secure, standardized, and interoperable protocol for smart home and IoT devices, and Renesas equips developers with robust SDKs, open source stacks, flexible architecture, OTA update capability, multiple communication interfaces, and extensive documentation to streamline development on the RA6W1 (RRQ61xxx) platform. Suitable Products RA6W1, RRQ61051, RRQ61001   日本語 中文

    Dec 10, 2025
  3. How does the host power on RA6W1 and establish communication?

    ... is recommended to send a test packet or use GPIO control to verify communication readiness. Note that it may take 50–120 ms after power-on for the RA6W1 to be ready for communication, depending on the application and timing. Suitable Products RA6W1, RRQ61051, RRQ61001   日本語 中文

    Dec 10, 2025
View All Results from Knowledge Base (21)
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