الوصف
Podcaster and Youtuber upgrade your end game
Condition: Like-New / Mint Condition (1.5 years old, rarely used, works perfectly as new)
Reason for Selling: Summer Garage Sale Clearance – COLLECT ONLY from France Cluster International City Dubai
Price: 379 DHS
Saramonic Blink 500 B6 TX+TX+RX 2.4GHz Micro-Wireless Dual Lavalier System w/USB-C Dual-Receiver for Android, Mobile Devices & Computers
The Problem This Item Solves for Creators
If you film content using a smartphone or tablet, you know how frustrating bad audio can be.
• The Problem: Built-in phone microphones capture everything you do not want—wind noise, distracting echoes, and background traffic. If you step away from the screen or turn your back, your voice drops out completely, ruining your video.
The Solution: The Saramonic Blink 500 B6 provides instant, broadcast-quality audio directly to your device. Its dual-channel system allows you to clip mic transmitters onto two separate people simultaneously, transmitting clear dialogue from up to 50 meter away
What is Included in Your Box:
• 2 × Blink 500 TX Transmitters with Built-In Microphones and Clips
• 1 × Blink 500 RXUC Dual-Receiver with USB-C Connector
• 2 × SR-M1 Omnidirectional Lavalier Microphones
• All necessary USB charging cables and alligator clips
Why This is an Incredible Deal
• Plug-and-Play Simplicity: The Blink 500 UC Receiver plugs directly into your Android device, laptop, or iPad via USB-C. There are no complex settings or batteries required for the receiver—it powers up automatically.
Dual-Transmitter Capability: Perfect for two-person interviews, podcasts, YouTube collaborations, or TikTok skits without needing to pass a single microphone back and fort
Ultra-Compact & Disreet: The featherweight clip-on transmitters can be attached directly to shirt collars, or used with the included professional omnidirectional lavalier microphones for an invisible look
Interference-Free Performance: Operates on the reliable 2.4GHz spectrum, automatically hopping channels to avoid static drops and signal interference