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quality fast response R454B refrigerant gas sensor with MEMS metal oxide semiconductor Aosong AGS0513 sensor factory
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quality fast response R454B refrigerant gas sensor with MEMS metal oxide semiconductor Aosong AGS0513 sensor factory
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Specifications
Voltage - Supply:
4.75V~5.25V
Operating Temperature:
-25℃~+60℃
Interface:
I2C
Mfr. Part #:
AGS0513
Package:
SIP-4
Key Attributes
Model Number: AGS0513
Product Description

Product Overview

The AGS0513 is a high-sensitivity, low-power, and fast-response R454B refrigerant gas sensor based on MEMS technology. It is designed for real-time monitoring of R454B gas concentrations, featuring strong anti-interference capabilities and excellent long-term stability. Utilizing a high-performance semiconductor silicon-based resistive sensing chip and specialized digital module acquisition technology, this sensor offers high reliability, low power consumption, and a simple drive circuit. It is factory-calibrated and tested for large-scale applications in household and automotive air conditioning, cold chain transportation, environmental protection, chemical industries, and refrigeration systems.

Product Attributes

  • Brand: ASAIR
  • Model: AGS0513
  • Refrigerant Compatibility: R454B
  • Sensing Principle: MEMS, Metal Oxide Semiconductor
  • Origin: Guangzhou Aosong Electronics Co., Ltd.

Technical Specifications

Specification Value
Working Voltage 4.755.25VDC
Working Current 244mA
Sampling Period 2s
Measurement Range 1%LEL25%LEL (LEL for R454B is 11.25% or 112500ppm)
Output Interface I2C
Typical Accuracy (25/50%RH) (1%LEL+40%RD)
Preheating Time 120s
Response Time (at 25%LEL) 30 seconds
Operating Temperature -2560
Operating Humidity 2095%RH (non-condensing)
Dimensions (LWH) 12mm 12mm 16.5mm
Weight Approx. 2g
Lifespan Over 10 years (at 25 in clean air)
I2C Device Address 0x1A (7-bit)
I2C Write Command 0x34
I2C Read Command 0x35
I2C Communication Rate 100kHz
CRC Calculation CRC8, Initial Value: 0xFF, Polynomial: 0x31 (x^8 + x^5 + x^4 + 1)
Warranty 12 months

Important Notes & Warnings

  • Avoid water splashing or immersion, as it can degrade performance or cause damage.
  • Condensation on the sensitive material can lead to performance degradation.
  • Freezing on the sensor surface can cause material layer cracking.
  • Prolonged exposure to high concentrations of VOC gases (e.g., butane, hydrocarbons, hydrogen) can damage the sensor.
  • High CO2 concentrations may slightly affect measurement accuracy.
  • Avoid excessive airflow or direct airflow onto the sensor, as it can lead to inaccurate measurements.
  • Do not exceed the working voltage (5.5VDC); reverse polarity can cause permanent damage.
  • Avoid contamination from alkaline, acidic liquids, halogenated substances, or volatile silicon compounds.
  • Long periods of power-off can cause reversible resistance drift; extended preheating may be required.
  • Exposure to extreme conditions (high humidity, temperature, pollution) can severely impact performance.
  • Frequent or excessive vibration and strong impacts can cause internal connection failures.
  • Manual soldering is recommended (flux: chlorine-free resin; temperature: <250, time: <5s).
  • When cleaning, prevent liquids from entering the sensor.
  • Ensure sensor detection holes in instruments have access to external airflow.
  • Use high-quality shielded cables for signal transmission.
  • Continuous power supply is required for accurate measurements; intermittent power can lead to inaccuracies.
  • DO NOT use this product in safety protection devices, emergency stop equipment, or any application where its failure could result in personal injury, unless specifically authorized.

2504101957_Aosong-AGS0513_C45354805.pdf

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