• Induskey INK600 Multi-Parameter Intelligent Gas Detection Module
  • Induskey INK600 Multi-Parameter Intelligent Gas Detection Module

Induskey INK600 Multi-Parameter Intelligent Gas Detection Module

No.INK600
The INDUSKEY INK600 is an advanced, modular multi-parameter intelligent box engineered for the simultaneous detection of up to four distinct gases. Designed for micro air quality stations, chemical park boundaries, and odor detection systems, it resolves industry challenges of high integration barriers and inconsistent quality. Offering ultimate flexibility, users can freely combine 1 to 4 sensors with unrestricted measurement ranges and technical principles. Featuring an imported vacuum pump for highly responsive active sampling, the INK600 operates as a standalone unit or integrates seamlessly within broader environmental monitoring frameworks
  • Induskey INK600 Multi-Parameter Intelligent Gas Detection Module

Description

Multi-Parameter Intelligent Gas Detection Module

Technical Data Sheet

1. Product Overview

The INDUSKEY INK600 is a highly advanced, standardized, and modular atmospheric environment monitoring product engineered for the simultaneous detection of up to four different gases. Developed specifically to meet the rigorous demands of micro air quality stations, chemical park boundary monitoring, and odor detection systems, the INK600 resolves industry-wide challenges related to high integration barriers and inconsistent quality control.

The system offers ultimate flexibility, allowing users to freely combine 1 to 4 distinct gas sensors with unrestricted measurement ranges and operational principles. It features an integrated imported vacuum pump for highly responsive active sampling, ensuring rapid detection. The INK600 can be operated as a standalone unit connected directly to a PC or seamlessly integrated as a core module within larger environmental monitoring frameworks.


2. Key Features

The INK600 is designed for rapid deployment, extreme accuracy, and low-maintenance operation across diverse industrial landscapes.

  • Versatile Sensor Integration: Supports the customized combination of 1 to 4 parameters, compatible with Infrared, Electrochemical, Catalytic, Semiconductor, and Photoionization Detector (PID) principles


  • High-Fidelity Detection: Utilizes originally imported four-electrode gas sensors, guaranteeing stable performance, high resolution, and data consistency that aligns with national control station standards

  • Intelligent Modular Architecture: Features a plug-and-play smart gas module design with automatic address code recognition, eliminating the need for fixed positioning and facilitating effortless maintenance


  • Active Sampling System: Equipped with an imported vacuum pump delivering a stable 1.1 L/min flow rate for superior longevity, efficiency, and responsive target gas detection via a one-in, one-out sequential gas path


  • Advanced Data Processing: Includes built-in temperature compensation and precise factory calibration, entirely removing the need for end-user calibration prior to deployment.

  • Robust & Safe Design: Incorporates intrinsically safe circuit design, targeted mesh cooling technology for optimal gas circulation, and compact housing for secondary OEM integration


  • Universal Interface: Engineered with uniform physical dimensions, unified signaling, and standardized usage protocols capable of supporting over 1,000 types of combustible, toxic, and volatile gases


3. Core Technical Specifications

The following specifications detail the operational parameters and communication standards of the INK600 module.


Specification

Technical Value

Product Model

INDUSKEY INK600 (Based on SGA-100H-4 architecture)

Supported Parameters

Up to 4 Gases (Gas types unrestricted)

Sampling Method

Selectable: Diffusion or Pump-Suction

Pump Flow Rate

1.1 L/min

Power Supply

24V DC

Signal Output

Simultaneous Output: RS485-RTU, RS232, and USB

Communication Protocol

8 Data bits, 1 Stop bit, No parity

Baud Rate

9600

Optional Upgrades

LCD display and localized data storage

4. Default Ambient Air Quality Configuration (Example)

While the INK600 can be customized for over 1,000 gas types , the following table illustrates the performance metrics for a standard four-gas environmental monitoring configuration utilizing electrochemical principles.


Gas Type

Carbon Monoxide (CO)

Nitrogen Dioxide (NO2)

Sulfur Dioxide (SO2)

Ozone (O3)

Measurement Range

0-20 PPM

0-10 PPM

0-1 PPM

0-1 PPM

Resolution

0.01 PPM

0.001 PPM

0.001 PPM

0.001 PPM

Accuracy

±3%

±3%

±3%

±3%

Response Time

≤30S

≤30S

≤30S

≤30S

Technology Principle

Electrochemical

Electrochemical

Electrochemical

Electrochemical

Theoretical Lifespan

2-3 Years

2-3 Years

2-3 Years

2-3 Years

5. Mechanical & Environmental Specifications

  • Dimensions: 160 mm x 130 mm x 75 mm

  • Weight: Approximately 1.5 KG

  • Operating Temperature: -20℃ ~ +50℃

  • Operating Humidity: ≤95% RH (Non-condensing)

  • Operating Pressure: 86 ~ 106 Kpa

6. Application Scenarios

The INK600's lightweight, standardized, and intelligent design makes it the ideal OEM integration component for a wide array of high-tech environmental and industrial applications:


  • Micro Air Quality Monitoring Stations

  • Chemical Industrial Park Boundary Monitoring

  • Online Odor Monitoring Systems

  • Multi-Parameter Atmospheric Monitors

  • Industrial Automation and Robotics

  • Unmanned Aerial Vehicles (UAVs / Drones)

7. Regulatory & Design Compliance

The INK600 is engineered and tested to comply with stringent national environmental and industrial safety standards:


  • GB 50493-2009: Design Code for Combustible Gas and Toxic Gas Detection and Alarm for Petrochemical Industry

  • GB 12358-2006: General Technical Requirements for Gas Monitors in Workplace Environments

  • GB 3095-2012: Ambient Air Quality Standards

  • GB 16297-1996: Comprehensive Emission Standard of Air Pollutants

  • GB 31571-2015: Emission Standard of Pollutants for Petroleum Chemistry Industry

  • HJ 663-2013: Technical Regulation for Ambient Air Quality Assessment (Trial)

  • HJ-654-2013: Technical Requirements and Test Procedures for Continuous Automated Monitoring Systems of Ambient Air Gaseous Pollutants (SO2, NO2, O3, CO)

HJT 38-1999: Stationary Source Emission - Determination of Total Non-Methane Hydrocarbons

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