IIOT Pressure Gauge

IIOT Pressure Gauge

$25.00

Model No. : iPG-100; iPG-63
Gauge China

IIoT stands for Industrial Internet of Things, which refers to the network of interconnected devices, sensors, machines, and other equipment in industrial settings that communicate and share data to improve processes and efficiency.

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Description

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IIOT Gauge Specifications

Gauge Size (mm) 100; 63
Connection Location Lower Mount
Case Blow-out back, safety glass face Per EN837-1
Oil filling Fillable
Accuracy 100=1.0;  63=2.5 Per EN837-1

(The accuracy of Mechanical display matches transmitted values)

Temperature Effect On deviation from the reference conditions at the measuring system: ≤ ±0.4 %per 10 °C;

[≤ ±0.4 % per 18 °F] of full scale value

Temperature Conditions
–             Medium temperature range

–             Ambient temperature range

Storage temperature range

-40 … +100 °C  [-40 … +212 °F]

-40 … +60 °C   [-40 … +140 °F]

-40 … +70 °C   [-40 … +158 °F]

–             Measuring Range Max : -1bar~2000bar
Process connection By request (NPT/G/M…)
Material (Wetted) Stainless Steel 316L; Bronze; Monel;
Material ( in accordance with the environment)
Case with bayonet ring style Stainless steel
–           Window Safety glass
–           Movement Brass; stainless steel
–           Antenna TPE / ABS
–           Antenna connection (SMA) Brass with plated
Battery

–           Model

. 100mm

 

–           . 63mm

 

SAFT LS17500, Lithium Thionyl Chloride(Li-SOC2)Battery,  DC3.6V; 3600 mAh

SAFT LS17330 Lithium Thionyl Chloride(Li-SOC2)Battery,  DC3.6V; 2100 mAh

Battery Service Life 5 years

Applies under the following measuring and sending conditions, as well as reference conditions:

Measuring rate: 1 x per minute and sending rate: 1 x per hour, spreading factor: 7, ambient temperature: 20 °C [68 °F], relative humidity: 65 %, gauge pressure: 1,013 mbar

Relative humidity, condensation … 75 % r. H. (non-condensing
Ingress protection (IP code) per IEC 60529 ■ IP54

■ IP65 (case filling)

Operation altitude ≤ 2,000 m above sea level

LoRaWAN® Specification

–           LoRaWAN® Specification LoRa® 868 MHz EU
–           Version 1.0.3
–           Frequency range 863~870MHz
–           Transmission Power 12dBm
–           Transmission Range ≦ 10 km

The range depends on the topography. 10 km can be achieved in free field conditions and with a spreading factor of 12

–           Approved Antennas Rigid Antenna; (Optional: Extended cable Antenna)
–           Antennas gain +3 dBm (rigid antenna)

+0.6dBm(antenna with extended cable)

–           Number Of Channels 10
–           Channel Spacing 200 kHz
–           Brand width 125 kHz
–           Max. output Power 20 dBm
–           Measuring Rate

 

For >  -20 ℃[-4℉]

For ≦ -20 ℃[-4℉]

As-delivered condition: 1 measured value per minute (only adjustable via the IIoT platform).

Adjustable: 10 seconds up to transmission rate, however max. 18 hours

Adjustable: 1 minute up to transmission rate, however max. 18 hours

–           Transmission Rate As-delivered condition: 1 transmission every 30 minutes (only adjustable via the IIoT platform)

Adjustable: 1 minute to 7 days (the maximum sending frequency and duty cycle comply with the standard ETSI  EN300 220 )

–           Security Full end-to-end encryption

→ For details on security, see website: https://lora-alliance.org

ILLUSTRATION OF PG-LoraWan Infrastructure

IIoT stands for Industrial Internet of Things, which refers to the network of interconnected devices, sensors, machines, and other equipment in industrial settings that communicate and share data to improve processes and efficiency.

An IIoT pressure gauge would be a pressure gauge integrated into this network of devices, allowing for real-time monitoring and data collection of pressure levels in industrial environments. These gauges can provide valuable insights into the performance and health of equipment, helping to optimize processes, detect anomalies, and prevent failures

IIoT (Industrial Internet of Things) pressure gauges are instruments used in industrial settings to measure and monitor pressure levels of gases or liquids. These pressure gauges are equipped with IIoT capabilities, allowing them to connect to a network and transmit data for remote monitoring, analysis, and control.

Here are some key features and benefits of IIoT pressure gauges:

  1. Remote Monitoring: IIoT pressure gauges can transmit pressure data in real-time to centralized systems or cloud platforms, enabling remote monitoring from anywhere with internet access. This allows for quick detection of abnormalities or fluctuations in pressure levels.
  2. Data Analysis: The data collected from IIoT pressure gauges can be analyzed to identify trends, predict maintenance needs, and optimize processes. Advanced analytics can help in making informed decisions to improve efficiency and productivity.
  3. Alerts and Notifications: IIoT pressure gauges can be programmed to send alerts and notifications when pressure levels exceed predefined thresholds or when abnormalities are detected. This proactive approach helps in preventing potential issues and minimizing downtime.
  4. Integration with SCADA Systems: IIoT pressure gauges can integrate with Supervisory Control and Data Acquisition (SCADA) systems, allowing for seamless communication and control within industrial automation networks.
  5. Cost Savings: By providing real-time insights and enabling predictive maintenance, IIoT pressure gauges can help in reducing downtime, minimizing equipment failures, and optimizing resource utilization, ultimately leading to cost savings.
  6. Enhanced Safety: Continuous monitoring of pressure levels with IIoT pressure gauges improves safety by quickly detecting any anomalies or leaks that could pose risks to personnel or equipment.
  7. Scalability and Flexibility: IIoT pressure gauge systems can be easily scaled to accommodate changing operational requirements. They offer flexibility in terms of deployment options and can be integrated with existing infrastructure.

Overall, IIoT pressure gauges play a crucial role in modern industrial environments by providing actionable insights, improving operational efficiency, and ensuring safety and reliability

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