-
Telephone:400-000-0000Telephone:400-000-0000
-
wechat:abcdefg
-
-
Email:admin@yourdomain.com

Level meters are designed to monitor the height, volume, and
dynamic changes of solid or liquid materials in silos, tanks, or
pipelines in real time, ensuring process continuity and safety.
Widely used in steel, chemical, power, cement, food processing,
and other industries.
High-frequency sound waves are
emitted and echoes received to calculate material distance via
non-contact measurement.
Microwave signals penetrate dust, steam,
and harsh environments for precise measurement with strong
anti-interference capability
Detects capacitance changes
between material and sensor, suitable for continuous monitoring
of conductive/non-conductive media.
Adaptive algorithms for material
fluctuations and harsh conditions, 99.9% data stability.
Self-check function with real-time status
feedback, fault alerts, and remote maintenance.
Explosion-proof option for
high-temperature, high-pressure, dusty, or corrosive
environments.
Modular design for top/side/flange
mounting, commissioning without shutdown.
Low-power consumption compliant with
industrial standards, reducing operational costs.
Flow meters are designed to monitor real-time flow rate,
velocity, and cumulative volume of liquids, gases, and steam in
pipelines or containers, ensuring precise process control and
energy efficiency optimization. Widely used in petrochemical,
water treatment, pharmaceuticals, food & beverage, and energy
management industries
Based on Faraday’s Law of
electromagnetic induction, measuring voltage generated by
conductive fluid cutting magnetic lines.
Utilizes time-of-flight or Doppler effect
to determine flow velocity via ultrasonic wave propagation.
Detects vortex shedding frequency caused
by fluid passing a bluff body to calculate flow rate.
Digital signal processing with strong
anti-interference capability, long-term stability ±0.2%.
Suitable for liquids, gases, steam,
and corrosive media, with optional linings and electrodes
Supports HART protocol, wireless
transmission, and integration with Sonding Intelligent Control
System for remote monitoring
No moving parts (electromagnetic/ultrasonic
type), minimizing wear and extending service life
Low-pressure loss design (vortex/ultrasonic
type), reducing energy consumption and meeting industrial
standards.