DESCRIZIONE PRODOTTO
KEYENCE CORP FD-Q10C - Clamp-on Flow Sensor
The KEYENCE FD-Q10C is a non-invasive, clamp-on ultrasonic flow sensor designed for precise fluid measurement in industrial environments. Utilizing transit-time technology, this sensor provides accurate flow rate and totalizer data for various liquids without requiring pipe modification or direct fluid contact. It is engineered for critical process monitoring, cooling water management, and chemical dosing applications across diverse industries.
Technical Specifications:
- SERIES/FAMILY: FD-Q Series
- COMPONENT TYPE: Clamp-on Ultrasonic Flow Sensor
- ELECTRICAL SPECS:
- POWER SUPPLY: 24 VDC +/- 10%
- CURRENT CONSUMPTION: 150 mA or less
- OUTPUTS: Digital (NPN/PNP selectable), Analog (4-20mA), IO-Link
- MECHANICAL/PHYSICAL:
- MEASUREMENT PRINCIPLE: Transit-time ultrasonic
- PIPE DIAMETER COMPATIBILITY: 10 mm to 27.2 mm Outer Diameter (OD)
- PIPE MATERIALS: Metal (e.g., stainless steel, carbon steel, copper), Plastic (e.g., PVC, PVDF, PFA, PP, PE)
- FLUID TYPES: Water, deionized water, oils, chemicals, coolants
- FLOW RATE RANGE: 0.5 to 10 L/min (typical for specified pipe diameter)
- ACCURACY: +/- 2% of reading (typical)
- REPEATABILITY: +/- 0.5% of reading (typical)
- DISPLAY: Integrated 3-digit 7-segment LED display
- INTERFACE/CONTROL:
- COMMUNICATION PROTOCOLS: IO-Link (V1.1/COM2)
- DIGITAL OUTPUTS: 2 x NPN/PNP selectable (configurable for flow rate, totalizer, alarm)
- ANALOG OUTPUT: 1 x 4-20mA (scalable)
- INPUTS: 1 x External input (e.g., totalizer reset)
- ENVIRONMENTAL/MOUNTING:
- IP RATING: IP65/IP67 (sensor head)
- AMBIENT TEMPERATURE: -10 to +60 degrees C
- FLUID TEMPERATURE: 0 to +85 degrees C (dependent on fluid type and pipe material)
- MOUNTING STYLE: Clamp-on, non-invasive
- COMPATIBILITY/APPLICATION:
- APPLICATIONS: Process fluid monitoring, cooling water management, chemical dosing, HVAC systems, semiconductor manufacturing, food and beverage
- COMPATIBILITY: Compatible with various pipe materials and liquid types without direct contact or process interruption