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TEA5767 FM Stereo Radio Module

5.0(1 review)
SKU: ME-540
JD13.00

The TEA5767 FM Stereo Radio Module is a ready-to-use breakout board built around the Philips/NXP TEA5767HN single-chip FM receiver. It covers the full 76–108 MHz FM band, communicates via I²C bus, and features an onboard 3.5mm audio jack, antenna connector, reverse polarity protection, and a blue power indicator LED. With automatic gain control, soft mute, and no IF tuning required, it delivers clean stereo audio with minimal setup. Perfect for Arduino, ESP32, and Raspberry Pi DIY radio, MP3, and IoT audio projects.

موديول راديو FM ستيريو TEA5767 هو لوحة جاهزة للاستخدام مبنية حول مستقبل FM أحادي الشريحة TEA5767HN من Philips/NXP. يغطي نطاق FM الكامل من 76 إلى 108 ميجاهرتز، ويتواصل عبر ناقل I²C، ويتميز بـ مقبس صوت 3.5 مم مدمج وموصل هوائي وحماية من عكس القطبية ومؤشر LED أزرق للطاقة. مع التحكم التلقائي في الكسب والكتم الناعم وعدم الحاجة لضبط التردد المتوسط، يقدم صوتاً ستيريو نقياً بأقل إعداد ممكن. مثالي لمشاريع الراديو ومشغلات MP3 والصوت في إنترنت الأشياء مع Arduino وESP32 وRaspberry Pi.

Sound & Amplifier Modules

The TEA5767 FM Stereo Radio Module is a high-quality breakout board that makes adding full-featured FM radio reception to any embedded project incredibly simple. At its core is the well-known Philips (NXP) TEA5767HN single-chip FM receiver, an industry-standard radio IC that combines a low-noise RF input amplifier, mixer, intermediate frequency selectivity, FM demodulator, and stereo decoder — all in a single tiny package.

Unlike bare TEA5767 chips that require careful PCB design and component selection, this fully assembled module has all the necessary supporting components already soldered: filtering capacitors, antenna interface, audio output jack, reverse polarity protection diode, power output filtering, and a blue LED power indicator. The only connections you need are power, ground, and an I²C bus (SDA/SCL) to start receiving stations.

The module supports the full 76 MHz to 108 MHz frequency range, covering the FM bands used worldwide — including United States, Europe, Japan, and India. The integrated Phase-Locked Loop (PLL) tuning combined with the LC harmonic oscillator using low-cost chip inductors delivers stable, drift-free reception with no need for manual IF (Intermediate Frequency) tuning. The automatic gain control (AGC) continuously optimizes the signal level, while the soft mute feature silences annoying inter-station noise.

For audio output, the module includes a convenient 3.5mm stereo audio jack — simply plug in your earphones, powered speakers, or audio amplifier and you're ready to listen. The clean, full-range stereo output makes this module a great fit for DIY music systems, smart radios, MP3 players with FM functionality, and embedded audio projects.

Control is handled entirely through the I²C bus, requiring only two wires (SDA and SCL) for full command of the chip — tuning, station search, mute, mono/stereo selection, and standby mode. The module is compatible with Arduino, ESP32, ESP8266, Raspberry Pi, STM32, and PIC microcontrollers, with many free open-source libraries available to get you up and running in minutes.

Whether you're building a smart alarm clock, a portable FM radio, an internet+FM hybrid receiver, a car audio retrofit, an emergency radio, or an Arduino-based audio project, this TEA5767 stereo radio module gives you professional-grade FM performance in an easy-to-use, ready-to-go form factor.

 

Specifications

General

  • Module Type: FM Stereo Radio Breakout Board
  • Main IC: Philips/NXP TEA5767HN
  • Power Supply: 5V DC
  • PCB Size: 31 × 30 mm
  • Communication: I²C bus (SDA / SCL)

RF & Tuning

  • Frequency Range: 76 – 108 MHz (full FM band)
  • Tuning System: PLL synthesizer with LC harmonic oscillator (low-cost chip inductors)
  • IF Tuning: Not required (no manual adjustments)
  • RF Input: High-sensitivity, low-noise RF amplifier

Audio

  • Output: Stereo audio
  • Audio Connector: Onboard 3.5mm audio jack
  • AGC: High-power Automatic Gain Control circuit
  • Soft Mute: Yes (reduces inter-station noise)
  • Stereo Decoding: Automatic

Protection & Filtering

  • Reverse polarity protection diode
  • Power output filtering
  • Multi-capacitor combined filtering

Other

  • Antenna: Direct-plug antenna interface
  • Indicator: Blue LED power indicator

 

Applications

  • DIY portable FM radios built with Arduino, ESP32, or Raspberry Pi
  • Smart alarm clocks with FM radio wake-up functionality
  • Car audio retrofit projects adding FM tuning to classic vehicles
  • MP3 players with integrated FM radio capability
  • Internet radio + FM hybrid receivers for full-range audio entertainment
  • Emergency and survival radios for outdoor and disaster preparedness
  • Kitchen and home appliance radios integrated into custom devices
  • IoT audio devices with cloud-controlled radio tuning
  • Smart home speakers with built-in FM reception
  • Educational STEM projects teaching radio communication and I²C control
  • Bluetooth + FM combo receivers for modernizing old audio equipment
  • Headphone amplifiers with built-in FM tuner for personal listening
  • Pocket and wearable radios for sports and travel
  • Vintage radio replacement in classic radio chassis restorations
  • Test receivers for FM transmitter and broadcast projects
  • Hobbyist audio prototyping platforms in electronics labs
  • Custom guitar amplifier and effects pedal projects with radio features
  • Public address systems with broadcast monitoring
  • Two-way radio monitoring for amateur radio operators
  • Background music systems for stores, cafes, and offices
  • Maker and STEM kits for learning radio basics and embedded audio
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