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968-001

968-001

  • 厂商:

    SPECSENSORS

  • 封装:

    -

  • 描述:

    SENSORGASCO2ANALOGVLTGMOD

  • 详情介绍
  • 数据手册
  • 价格&库存
968-001 数据手册
ULPSM-CO 968-001 October 2016 Ultra-Low Power Analog Sensor Module for Carbon Monoxide BENEFITS • • • • • • 0 to 3 V Analog Signal Output Low Power Consumption < 45 µW Fast Response (< 30 seconds) On-board Temperature Sensor Easy Sensor Replacement Standard 8-pin connector APPLICATIONS • • • • Residential and Commercial CO Monitoring Industrial CO Monitors Ventilation Control RV and Marine CO Monitoring DESCRIPTION Quickly integrate Carbon Monoxide Sensing into your system with very low power consumption and a simple analog sensor signal output. The ULPSM converts the Carbon Monoxide sensor’s linear current signal output to a linear voltage signal, while maintaining the sensor at its ideal biased operation settings. Incorporates SPEC Sensors’ 100-102 ETL and UL Recognized Component Conforms to UL STDS 2034 & 2075 File E471165 Certified to CSA STD 6.19-01 PRODUCTION DATA information is current as of publication date. Products conform to specifications per the terms of the SPEC Sensors standard warranty. Production processing does not necessarily include testing of all parameters. Copyright © 2011-2016, SPEC Sensors LLC ULPSM-CO 968-001 October 2016 MEASUREMENT PERFORMANCE CHARACTERISTICS Measurement Range Lower Detection Limit Resolution Accuracy Response Time T90 Power-On Stabilization Time 0 to 500 ppm 2 ppm 1 ppm < 3 % of reading < 30 seconds 15 minutes recommended ABSOLUTE MAXIMUM RATINGS Parameter Supply Voltage Storage Temperature Storage Humidity Storage Pressure Storage Time Operating Temperature Operating Humidity Operating Temperature Operating Humidity Operating Pressure Conditions Vapor Sealed @ 50% RH Non-condensing, Vapor Sealed Vapor Sealed Vapor Sealed < 10 hours < 10 hours, Non-Condensing Continuous Continuous, Non-Condensing Continuous Min. 2.7 5 20 0.8 -40 0 -20 15 0.8 Rec. 3 20 50 1 12 25 50 1 Max. 3.3 30 80 1.2 50 100 40 95 1.2 Units V ̊C % RH atm. Months ̊C % RH ̊C % RH Atm. ELECTRICAL CHARACTERISTICS Parameter Supply Current Power Consumption Vref Vgas Zero Vgas Span (M) Conditions Min. Room temperature V+/2 – 0.005 0.200 V+ = 3.0 V V+ = 3.0 V PRODUCTION DATA information is current as of publication date. Products conform to specifications per the terms of the SPEC Sensors standard warranty. Production processing does not necessarily include testing of all parameters. 5 15 Typ. Max. Units 0.475 V+/2 + 0.005 0.750 mV/ppm 10 30 V+/2 V+/2 15 45 µA µW Volts Volts Copyright © 2011-2016, SPEC Sensors LLC ULPSM-CO 968-001 October 2016 CALCULATING GAS CONCENTRATION The target gas concentration is calculated by the following method: ∙ , where Cx is the gas concentration (ppm), Vgas is the voltage output gas signal (V), Vgas0 is the voltage output gas signal in a clean-air environment (free of analyte gas) and M is the sensor calibration factor (V/ppm). The value, M, is calculated by the following method: 10 10 , where the Sensitivity Code is provided on the sensor label and the TIA Gain is the gain of the trans-impedance amplifier (TIA) stage of the ULPSM circuit. Standard gain configurations are listed in the table below. The value Vgas0 can also be represented by: , where, Vref is the voltage output reference signal (V) and Voffset is a voltage offset factor. The Vref output acts as the reference voltage for zero concentration even as the battery voltage decreases. Measuring Vref in-situ compensates for variations in battery or supply voltage, minimizing these effects on Cx. A difference amplifier or instrumentation amplifier can be used to subtract Vref from Vgas. Alternatively, when measuring Vref directly, always use a unity gain buffer. Voffset, accounts for a small voltage offset that is caused by a normal sensor background current and circuit background voltage. To start, Voffset = 0 is an adequate approximation. To achieve higher-precision measurements, Voffset must be quantified. Once the sensor has been powered-on and allowed to stabilize in a clean-air environment (free of the analyte gas) and is providing a stable output within your application’s measurement goals, the value of Vgas may be stored as Vgas0 and used in subsequent calculations of gas concentration, Cx. Target Gas Carbon Monoxide Hydrogen Sulfide Nitrogen Dioxide Sulfur Dioxide Ozone Ethanol Indoor Air Quality Respiratory Irritants PRODUCTION DATA information is current as of publication date. Products conform to specifications per the terms of the SPEC Sensors standard warranty. Production processing does not necessarily include testing of all parameters. TIA Gain (kV/A) 100 49.9 499 100 499 249 100 499 Copyright © 2011-2016, SPEC Sensors LLC ULPSM-CO 968-001 October 2016 TEMPERATURE COMPENSATION Temperature fluctuations have a predictable, easily compensated effect on the sensor signal. The figures below show the typical Temperature dependency of the output and baseline of 3SP_CO_1000 sensors under constant humidity of 40-50% RH. This is a very uniform and repeatable effect, easily compensated for in hardware or software. From the graphs above:   The temperature effect of zero shift is expressed as ppm change. The temperature effect of span (sensitivity) is expressed with respect to sensitivity at the calibration temperature of 20 °C. When implementing temperature compensation, first correct the temperature effect on the zero (offset) and then correct the temperature effect on the span (sensitivity) of the sensor. These corrections can be done in software by implementing one of the following:    Curve fit Look up table A set of linear approximations, as outline in the following table. Temperature Coefficient of Span (%/°C) (Typical) Temperature Coefficient of Zero Shift (ppm/°C) (Typical) PRODUCTION DATA information is current as of publication date. Products conform to specifications per the terms of the SPEC Sensors standard warranty. Production processing does not necessarily include testing of all parameters. -20 °C to 20 °C -0.8%/°C 20 °C to 40 °C 0.25%/°C -20 °C to 0 °C 0.06 ppm/°C 0 °C to 25 °C 0.3 ppm/°C 25 °C to 40 °C 1.4 ppm/°C Copyright © 2011-2016, SPEC Sensors LLC ULPSM-CO 968-001 October 2016 CROSS SENSITIVITY Most chemical sensors exhibit some cross-sensitivity to other gases. The following table lists the relative response of common potential interfering gases, and the concentration at which the data was gathered. Gas/Vapor Carbon Dioxide Hydrogen Methane Ammonia Nitrogen Dioxide Hydrogen Sulfide Carbon Monoxide Ozone Sulfur Dioxide Chlorine n-Heptane Toluene Isopropyl Alcohol Acetone Applied Concentration (PPM) PRODUCTION DATA information is current as of publication date. Products conform to specifications per the terms of the SPEC Sensors standard warranty. Production processing does not necessarily include testing of all parameters. 5,000 100 3,000 100 10 25 400 5 20 10 500 200 200 200 Typical Response (PPM CO)
968-001
物料型号:ULPSM-CO 968-001

器件简介:这是一个超低功耗的模拟传感器模块,用于检测一氧化碳(CO),适用于住宅和商业环境的一氧化碳监测,工业监测器,通风控制,房车和海洋环境监测。

引脚分配: - 1号引脚:Vgas,电压输出,与目标气体浓度成正比。 - 2号引脚:Vref,电压输出,大约是供电电压的一半,作为固定参考,相当于Vgas的零点。 - 3号引脚:Vtemp,电压输出,与温度成正比。 - 4号和5号引脚:N/C(不连接)。 - 6号引脚:GND,电源和信号的通用地。 - 7号和8号引脚:V+,电压供电输入,2.7到3.3伏。

参数特性: - 测量范围:0至500ppm - 检测下限:2ppm - 分辨率:1ppm - 准确度:读数的小于3% - 响应时间T90:小于30秒 - 电源开启稳定时间:推荐15分钟

功能详解: - 该传感器模块将一氧化碳传感器的线性电流信号输出转换为线性电压信号,同时保持传感器在其理想的偏置操作设置。 - 包含SPEC Sensors的100-102 ETL和UL认可组件,符合UL STDS 2034 & 2075和CSA STD 6.19-01标准。

应用信息: - 适用于需要快速集成一氧化碳检测的系统,具有非常低的功耗和简单的模拟传感器信号输出。

封装信息: - 标准8针连接器,提供了电气连接和机械刚性。
968-001 价格&库存

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