




Razer Seiren X Quartz Streaming Microphone Pink RZ19-02290300-R3M1, Compact USB Condenser Microphone, Built-in Shock Absorber, Super cardioid Recording Pattern for Diffuser and Streamer
The Razer Seiren X Quartz is designed for streamers, content creators, and voice talent seeking a sleek, high-performance USB mic. With a super cardioid pickup pattern, built-in shock absorber, and zero-latency monitoring, this mic delivers clean, focused audio with minimal background noise.
Key Features
- Super cardioid recording pattern — minimizes ambient noise and focuses on your voice
- Built-in shock absorber / shock mount — reduces vibrations and handling noise
- Zero-latency 3.5 mm headphone monitoring — monitor your voice in real time without delay
- Mute button for quick silencing when needed
- Compact and stylish quartz / pink color option for unique aesthetics
Technical Specifications
- Power / Consumption: 5V, 100 mA
- Sample Rate: 44.1 kHz – 48 kHz
- Bit Rate: 16 bit
- Capsule: Ø25 mm condenser
- Polar Pattern: Super cardioid
- Frequency Response: 20 Hz – 20 kHz
- Sensitivity: 17.8 mV/Pa (at 1 kHz)
- Max SPL: 110 dB (THD < 1% at 1 kHz)
- Headphone Amp: ≥ 16 Ω impedance, 125 mW (at 32 Ω)
- S/N Ratio: ≥ 85 dB
- Compatibility: Windows 7/8/10, macOS; works with OBS, Streamlabs, XSplit
Ideal For
- Streamers and content creators needing clear vocal capture without background noise
- Home studios and small setups with limited space
- Users who value plug-and-play simplicity with USB connectivity
- Anyone wanting real-time monitoring and mute control
Why Buy from IT Splendid – UAE’s Trusted Gaming & Streaming Gear Provider
- Fast delivery across all UAE emirates — Dubai, Abu Dhabi, Sharjah, Ajman, Fujairah, Ras Al Khaimah, Umm Al Quwain, Al Ain
- Genuine Razer products with warranty & support
- Competitive pricing and localized stock
- Assistance in setup, software configuration & streaming optimizations
Elevate your voice capture with the Razer Seiren X Quartz — a compact yet powerful USB mic for serious streaming and recording.