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Do domu > produkty > Ultradźwiękowy licznik energii > ST502 Ultrasonic Energy Meter with PT100 Temperature Sensor RS485 Communication and IP65 Enclosure for Commercial Buildings

ST502 Ultrasonic Energy Meter with PT100 Temperature Sensor RS485 Communication and IP65 Enclosure for Commercial Buildings

Szczegóły produktu

Miejsce pochodzenia: Shenzhen

Nazwa handlowa: Flo-Instru

Orzecznictwo: CE; ISO9001

Numer modelu: ST501

Warunki płatności i wysyłki

Minimalne zamówienie: 1

Szczegóły pakowania: Konwencjonalne opakowanie

Czas dostawy: 3-5 dni roboczych

Zasady płatności: T/T

Najlepszą cenę
Podkreślić:
Rozmiar rury:
DN25-DN1200
Powtarzalność:
0,3%
Wyjście:
4-20MA, wyjście impulsu OCT, wyjście przekaźnika, RS-232 / RS-485, RTD Temp. wejście
Temperatura pracy:
32℉ ~ +140℉ (0℃~+60℃)
Zasilanie:
24 V prądu stałego
zakres prędkości:
0,03 ~±16 stóp/s (0,01~±5 m/s)
Rozmiar rury:
DN25-DN1200
Powtarzalność:
0,3%
Wyjście:
4-20MA, wyjście impulsu OCT, wyjście przekaźnika, RS-232 / RS-485, RTD Temp. wejście
Temperatura pracy:
32℉ ~ +140℉ (0℃~+60℃)
Zasilanie:
24 V prądu stałego
zakres prędkości:
0,03 ~±16 stóp/s (0,01~±5 m/s)
ST502 Ultrasonic Energy Meter with PT100 Temperature Sensor RS485 Communication and IP65 Enclosure for Commercial Buildings
ST502 Energy Meter for Commercial Buildings
ST501-PT100 Ultrasonic Energy Meter

Clamp-on type ultrasonic energy meters that use transit-time methods to measure flow.

Introduction

ST501 Ultrasonic Energy meter uses the most reliable digital signal processing technology, transmitting flow measurement for a wide range of liquid and pipe sizes with high accuracy and reliability. Combined with outstanding performance transducers and higher industrial level materials, Flo-Instruments ensures long-term operation without concerns.

Clear menu display selections make instrument use very convenient. Clamp-on transducers provide flexibility across a wide range of applications.

The ST501 ultrasonic Energy Meter is based on Transit-Time technology, which delivers high measurement accuracy. Using clamp-on transducers, the ST501 collects flow data simply by clamping onto the outside of the pipe, never contacting the fluid, and avoiding liquid pollution, pressure reduction, leakage, and other issues.

Benefits
  • Measures actual flow and total consumption of various liquids
  • No loss of process control, optimization of assets and efficiency, no downtime or expense from calibration
  • Adaptive signal processing algorithms optimize performance, ensuring accurate measurements even in challenging flow conditions
  • Clear display interface and LCD display with alarm function, easy to operate and debug
  • Utilizes transit-time ultrasonic technology to realize bidirectional flow measurement by precisely measuring ultrasonic signal travel times
  • Leverages data logging capabilities to analyze historical flow patterns for system optimization
  • Built-in keypad and simple menu system for fast and easy programming of pipe diameter, pipe material, liquid type, and measurement units
Principle
Introduction to TVT

TVT (Transit-Time Vortex) technology represents a cutting-edge approach to ultrasonic flow measurement, combining transit-time ultrasonics with vortex shedding phenomenon capabilities, delivering unparalleled accuracy and versatility in ultrasonic flow meters. This innovative integration technology enhances accuracy, versatility, and performance, making these meters well-suited for a wide range of applications across various industries.

The device features a pair (or more) of ultrasonic transducers installed on the exterior of the pipe (clamp-on) or inserted in-line. One transducer sends an ultrasonic pulse downstream with the flow, while the other sends it upstream against the flow. Since fluid movement affects ultrasound transit time, the time difference between signals is directly proportional to flow velocity.

Specifications
Performance Specifications
Velocity range 0.03 ~ ±16ft/s (0.01 ~ ±5m/s)
Accuracy ±1.0%
Pipe size 1"~48" (25mm~1200mm)
Repeatability 0.3% of measured value
Linearity ±1.0%
Fluid Water, Sea water, Oil, Alcohol...
Pipe material PVC, stainless steel, carbon steel, copper...
Function Specifications
Communication & Outputs Communication: ModBus RS485
Analog output: 4~20mA, max load 750Ω
Pulse output: 0~9999Hz, OCT (min. and max. frequency adjustable)
Relay output: max 1Hz (1A@125V AC or 2A@30V DC)
Flow Unit Cubic Meters(m³), Liters(l), USA Gallons(gal). Factory default unit is m³/h
Time Unit /Day/Hour, /Min, /Sec
Power supply 24V DC/1A@ max
Keypad 16(4×4) key with tactile action
Display 20×2 lattice alphanumeric, back lit LCD
Temperature Transmitter: 32℉~140℉ (0℃~60℃)
Transducer: -40℉~176℉ (-40℃~80℃)
PT100 Temp. Sensor: 32°F~257°F (0℃~125℃)
Humidity Up to 99% RH, non-condensing
Physical Specifications
Transmitter Aluminum alloy, IP65
Transducer Encapsulated design, IP68
Transducer cable Standard cable length: 33ft (10m)
Weight Transmitter: approximately 0.7kg; Transducer: approximately 0.4kg
Product Dimensions
ST501 Ultrasonic Energy Meter Transmitter Dimensions Diagram
Transmitter
ST501 Ultrasonic Energy Meter Transducer Dimensions Diagram
Transducer
ST501 Ultrasonic Energy Meter Temperature Transducer Dimensions Diagram
Temperature Transducer
Product Display
ST501 Ultrasonic Energy Meter Display Interface
Communication and Output Functions
ST501 Ultrasonic Energy Meter Communication and Output Diagram

The ST501 Fixed Ultrasonic Flow Meter is equipped with multiple communication and output options to ensure seamless integration into various industrial control systems. These outputs enable real-time data acquisition, remote monitoring, and control of flow-related processes.

ST501 Ultrasonic Energy Meter Output Capabilities Overview
Output Type Function Application Examples
RS485 (Modbus) Digital communication Remote monitoring, SCADA, system integration
4-20mA Analog output PLC input, process feedback, DCS systems
OCT Pulse Flow totalization output Batch controllers, energy meters, flow loggers
Relay Alarm/control output Trigger alarms, control valves/pumps, flow safety protection
Wiring Diagram
ST501 Ultrasonic Energy Meter Wiring Diagram
Installation Methods

V Method

The V method is considered the standard method. It usually provides more accurate readings and is used on pipe diameters ranging from 25mm to 400mm (1"~16") approximately. It is convenient to use but requires proper transducer installation, contact on the pipe at the pipe's centerline, and equal spacing on either side of the centerline.

V Method Installation Diagram

Z Method

The signal transmitted in a Z method installation has less attenuation than a signal transmitted with the V method because it utilizes a directly transmitted signal that traverses the liquid only once. The Z method can measure pipe diameters ranging from 100mm to 3000mm (4"~120").

Z Method Installation Diagram

N Method

With the N method, sound waves traverse the fluid twice and bounce three times off the pipe walls. It is suitable for small pipe diameter measurement. Measurement accuracy can be improved by extending the transit distance with the N method (uncommonly used).

N Method Installation Diagram

W Method

As with the N method, measurement accuracy can be improved by extending the transit distance with the W method. The sound wave traverses the fluid four times and bounces four times off the pipe walls. It is suitable for very small pipes (diameters less than 50mm, 2").

W Method Installation Diagram