欧美成人福利一区二区三区-日本激情五月婷婷-国产一区精品成人-国产三级在线观看免费-欧美韩日国产在线-欧美黄色一级录影带-久久亚洲精品三区

Hi,歡迎
+86 135 5637 6665 +852 2632 9637 6*12小時(shí)在線電話
圖片僅供參考

GY-MCUSC40-SCD41 serial port high-performance and high-precision carbon dioxide CO2 temperature and humidity sensor module

GY-SCD40

Model:GY-SCD40

Manufacturer:ANSC/OEM

Package:module

詳情

Product Introduction


High performance and high-precision carbon dioxide temperature and humidity sensor module


Module model: GY-SCD40-SCD41


Supply voltage: 2.4-5.5v


Interface: Standard IIC interface


Measurement range:


SCD40 CO2 measurement accuracy2 400 ppm – 2’000 ppm ± (50 ppm + 5% of reading)


SCD41 CO2 measurement accuracy2 400 ppm – 5’000 ppm ± (40 ppm + 5% of reading)



New SCD40 sensor and photoacoustic technology


The SCD40 miniaturized CO2 sensor provides a new approach for product design and will lay the foundation for various new sensing applications. Sensirion's experience has enabled it to innovate its CO2 sensor technology, providing a new device that is one seventh smaller in volume than its predecessor SCD30. The photoacoustic principle can reduce the size of the cavity used in SCD30 without affecting performance.


Advanced CO2 sensors, such as Sensirion's SCD30, are based on non dispersive (NDIR) optical detection principles. Due to their size and cost, the use of these NDIR sensors is limited to a few applications.


NDIR type sensors are optical sensors commonly used for gas analysis. The main components are an infrared light source with a wavelength filter, a sample chamber, and an infrared detector (Figure 2 and 3). The NDIR detector can measure the volumetric concentration of CO2 in the sample by irradiating an infrared beam passing through the sample cell (containing CO2) and measuring the amount of infrared light absorbed by the sample at the desired wavelength.


The sensitivity of sensors based on the NDIR principle is proportional to the beam path. The significant reduction in paths can lead to performance degradation, thereby limiting the miniaturization potential of this technology. In addition, sensors based on the NDIR principle do not have an economical BOM structure due to their size, structure, and large number of discrete components.


Gysel said, "In terms of miniaturization, NDIR technology seems to have reached the limit of CO2 sensors because the sensitivity of the sensor is proportional to the length of the beam path, and therefore proportional to the size of the sensor Sensirion has always aimed to disrupt the sensor market by making components smaller and more cost-effective without compromising performance. For CO2 sensing, we believe that photoacoustic technology is the most promising method: in addition to reducing the size and cost of CO2 sensors, this technology also allows SMT assembly to replace laborious through-hole soldering. Combining these three factors may open up new markets for CO2 sensing. I personally believe that photoacoustic technology has the potential to replace NDIR as the standard CO2 in the next five to ten years


The new SCD40 is based on Sensirion's photoacoustic PASens technology. The principle of photoacoustic detection can miniaturize sensors without affecting performance. This is because the sensitivity of the sensor is independent of the size of the optical cavity. By simultaneously using Sensirion's CMOSens technology for miniaturization, these two technologies can be combined to create a new type of sensor (Figure 4).


Figure 4: Size comparison between NDIR (SCD30) and PASenstechnology (SCD40) (Image: Sensirion)


The principle of photoacoustic is relatively simple: 4.26 μ m modulated narrowband light corresponding to the absorption band of CO2 molecules


Launch in a small enclosed space. Measure the absorption of CO2 molecules in the pool by partially illuminating the light. The absorption energy of CO2 molecules mainly excites molecular vibration, which leads to an increase in translational energy, resulting in periodic changes in pressure in the measurement unit, which can be measured using a microphone.


Giselle said, "After absorption, the energy of photons is first transferred to CO2 molecules, and then to surrounding molecules." "The absorbed energy leads to an increase in microscopic pressure. Due to millions of absorption events occurring inside the optical cavity, pressure increase becomes a macroscopic phenomenon. By tuning the IR emitter, we sense the increase and decrease in pressure at a clearly defined frequency - just sound waves. The frequency of sound is determined by the modulation frequency of the infrared emitter, but the amplitude of sound is proportional to the concentration of CO2


The microphone signal is then used to measure the number of CO2 molecules in the measurement unit and can be used to calculate CO2 concentration.


Serial TTL output GY-MCUSCD40 41, providing upper computer display software:

詳情-01


Product Photograph


SKU-01-GY-SCD40

SKU-03-GY-MCUSCD40串口TTL

SKU-04-GY-MCUSCD41串口TTL

主圖-00


Payment&Transportation


詳情8.1


Official Certificate&Certificate



詳情頁(yè)3.1



Multiple product supply



詳情5.1


Company office environment


詳情6.1


Warehouse Real Shot


170019007688325e.png


Standard packaging



詳情修改1.jpg

We also provide :


Part NoManufacturerDate CodeQuantityDescription
LM22676ADJNS19+250SOP8
TPS562201DDCRTI22+795500SOT23-6
NJG1806K75JRC22+500000DFN6
TLV74318PDQNRTI22+402000X2SON-4
NJG1801K75JRC22+300000SMD
NJG1804K64JRC22+300000DFN8
LM27761DSGRTI22+151000WSON8
TLV62565DBVRTI22+138000SOT23-5
TPS613222ADBVRTI22+108000SOT23-5
LNK625DG-TLPOWER22+100000SOP-8
OPA4322AIPWRTI22+100000TSSOP14
TLV75528PDRVRTI22+99000WSON-6
TPS7A2025PDQNRTI22+78500X2SON-4
TLV62568DBVRTI22+72000SOT23-5
STM32L051K8U6TRST22+60000QFN32
SKY66421-11SKYWORKS22+56500QFN16
TPS7A1111PDRVRTI22+54000WSON6
TLV62569PDDCRTI22+52000SOT23-6
TLV62569DBVRTI22+48000SOT23-5
TPS23753APWRTI22+40000TSSOP14
NB691GG-ZMPS22+30000QFN
SN74AHC1G02DBVRTI22+27939SOT-23
TPS63000DRCRTI22+23238VSON10
TLV75533PDRVRTI22+21500WSON6
NB687BGQ-ZMPS22+20000QFN
A3916GESTR-T-1ALLEGRO22+17150QFN-20
TPS62135RGXRTI22+15000VQFN11
TLE2022AMDRTI0803+12500SOP8
TPS23756PWPRTI22+12000HTSSOP-20



用戶信息:
電話號(hào)碼
中國(guó)大陸+86
  • 中國(guó)大陸+86
  • 中國(guó)臺(tái)灣+886
  • 中國(guó)香港+852
公司名稱
郵箱
產(chǎn)品型號(hào)
產(chǎn)品數(shù)量
備注留言
日本人妻JAPANESEXXXXHD | 免费的人成黄网站在线观看视频 | 蜜桃羞羞小视频在线观看 | 加勒比AV一本大道香蕉大在线 | 无码137片内射在线影院 | 欧洲美女高清一级毛片 | 亚洲国产婷婷综合在线精品 | 黑人啊灬啊灬啊灬快灬深 | 99久热国产精品视频 | chinese老头黄al片 | 国产 浪潮AV性色四虎 | 国产成人综合精品无码 | 色成人网站WWW永久在线观看 | 在线观看白嫩美乳e奶大胸美女 | 999在线视频精品免费播放观看 | 性一交一乱一伦一色一情孩 | 性满足BBWBBWBBW | 亚洲国产成人久久一区WWW | 伊人久久大香线蕉亚洲五月天 | 国产午夜无码精品免费看性色 | 精品蜜臀AV在线天堂 | 日本免费在线观看视频 | 豪妇荡乳1一5潘金莲2 | 中文熟妇人妻又伦精品 | 亚洲欧美乱日韩乱国产 | 成人片在线观看地址KK4444 | 免费精品国产自产拍在线观看图片 | 亚洲精品免费视频观看视频 | 国产精品久久久久国产A级 999国内精品永久免费视频 | 国产秦先生大战白丝97在线 | 荡公乱妇蒂芙尼中文字幕 | 大香区一二三四区2021 | 亚洲国产精品高清免费在线观看 | 国产裸体美女永久免费无遮挡 | 无敌神马影院在线高清观看视频 | 456性欧美在线播放 亚洲最大成人综合网720P | 国产女人高潮叫床男人桶到爽 | 国产精品日本一区二区在线播放 | 国产网红在线_电影频道 | 香蕉国产片一级一级一级一级 | 国产无遮挡无码视频在线观看不卡 |