Kamoer FX-STP 3
Kamoer FX-STP 3
The Kamoer FX-STP 3 is a high-precision peristaltic pump designed for continuous duty applications, offering stable flow control for systems like calcium reactors where even small flow changes can impact aquarium stability. With dual connectivity options for local and remote control, the FX-STP 3 ensures accurate and consistent performance, perfect for demanding aquarium environments.
Key Features:
- High-Precision Stepper Drive: Closed-loop stepper motor with stall alarm for precise, consistent flow delivery.
- Continuous Running Capability: Ideal for applications requiring stable, constant flow, like calcium reactors and other delicate systems.
- Dual Connectivity: Control locally via the onboard screen or remotely using Bluetooth or WiFi with the Kamoer Remote app.
- Flow Calibration: Ensures real-world output matches your setup for accurate flow measurement and control.
- Memory Backup: Retains settings through power loss, restoring your last configuration for hassle-free operation.
- Low Maintenance Design: Long-life tubing and a robust construction reduce maintenance intervals, ensuring reliable daily operation.
Specifications:
- Power Supply: DC 24V 2A power adapter
- Maximum Power: 50W
- Maximum Speed: 350 rpm
- Speed Regulation Resolution: 0.1 rpm
- Maximum Flow Rate: 150 mL/min (at 350 rpm)
- Weight: Approximately 1145g
- Motor Type: Stepper motor
- Motor Life: 6000 hours or greater
- Work Environment: 0°C to 40°C, relative humidity under 80% RH (non-condensing)
- Reference Noise Value: 56 dB or less
- Pump Tube Size: 3.2 mm ID x 6.4 mm OD
The Kamoer FX-STP 3 Bluetooth & WiFi Peristaltic Pump offers precise, continuous flow control for your aquarium’s essential systems. With remote access through Bluetooth or WiFi and a reliable onboard display, this pump ensures that your setup runs smoothly and accurately. Whether you're feeding a calcium reactor or managing other constant-flow applications, the FX-STP 3 provides the stability and precision you need to maintain a balanced aquatic environment.
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