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Advanced explosive and drug trace detection systems implement sophisticated photoionization high-resolution ion mobility spectrometry technology for detecting contraband substances

Advanced explosive and drug trace detection systems implement sophisticated photoionization high-resolution ion mobility spectrometry technology for detecting contraband substances
Advanced explosive and drug trace detection systems implement sophisticated photoionization high-resolution ion mobility spectrometry technology for detecting contraband substances
Advanced explosive and drug trace detection systems implement sophisticated photoionization high-resolution ion mobility spectrometry technology for detecting contraband substances Advanced explosive and drug trace detection systems implement sophisticated photoionization high-resolution ion mobility spectrometry technology for detecting contraband substances Advanced explosive and drug trace detection systems implement sophisticated photoionization high-resolution ion mobility spectrometry technology for detecting contraband substances Advanced explosive and drug trace detection systems implement sophisticated photoionization high-resolution ion mobility spectrometry technology for detecting contraband substances Advanced explosive and drug trace detection systems implement sophisticated photoionization high-resolution ion mobility spectrometry technology for detecting contraband substances Advanced explosive and drug trace detection systems implement sophisticated photoionization high-resolution ion mobility spectrometry technology for detecting contraband substances Advanced explosive and drug trace detection systems implement sophisticated photoionization high-resolution ion mobility spectrometry technology for detecting contraband substances Advanced explosive and drug trace detection systems implement sophisticated photoionization high-resolution ion mobility spectrometry technology for detecting contraband substances Advanced explosive and drug trace detection systems implement sophisticated photoionization high-resolution ion mobility spectrometry technology for detecting contraband substances Advanced explosive and drug trace detection systems implement sophisticated photoionization high-resolution ion mobility spectrometry technology for detecting contraband substances Advanced explosive and drug trace detection systems implement sophisticated photoionization high-resolution ion mobility spectrometry technology for detecting contraband substances Advanced explosive and drug trace detection systems implement sophisticated photoionization high-resolution ion mobility spectrometry technology for detecting contraband substances Advanced explosive and drug trace detection systems implement sophisticated photoionization high-resolution ion mobility spectrometry technology for detecting contraband substances Advanced explosive and drug trace detection systems implement sophisticated photoionization high-resolution ion mobility spectrometry technology for detecting contraband substances Advanced explosive and drug trace detection systems implement sophisticated photoionization high-resolution ion mobility spectrometry technology for detecting contraband substances Advanced explosive and drug trace detection systems implement sophisticated photoionization high-resolution ion mobility spectrometry technology for detecting contraband substances
기본 정보
원래 장소: 중국
브랜드 이름: MYT
인증: CNAS、CMA、CAL、ILAC-MRA
모델 번호: DY-150P
문서: MYT User Manual.pdf
최소 주문 수량: 1
가격: Pricing is negotiable based on order quantity
지불 조건: l/c, t/t
공급 능력: 달 당 1000units
최고의 가격 Chat Now
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무게: 4.4kg(리튬이온 배터리 제외) 4.8kg(리튬이온 배터리 포함) 감지기 크기(mm): 430 세로 × 190, 세로 × 180, 가로
배터리 설정: 전압: 21V, 용량: 6400mAh, 감지기에 3시간 이상 지속적으로 전원을 공급할 수 있으며 대기 전원 공급 장치는 ≥8시간입니다. 데이터 인터페이스: USB
소프트웨어 기능: 자체 점검 및 교정을 지원합니다. 최소 100만개 이상의 저장 용량으로 실시간 데이터 저장, 검색, 내보내기 기능을 제공하며, 데이터 추가도 가능합니다. 작업 환경: -5℃ ~ 55℃, 상대습도 93%RH 이하, 비응축
강조하다:

explosive trace detection system

,

drug detection ion mobility spectrometry

,

contraband detection photoionization technology

Portable Trace Explosive and Drug Detector

1, Sensor Features

  The DY-150P represents a new generation of trace detection and analysis instruments for explosives and drugs, developed and manufactured by MYT Technology Co., LTD.
  This advanced detector utilizes state-of-the-art photoionization high-resolution ion mobility spectrometry technology, featuring a vacuum ultraviolet photoionization source that contains no radioactive components. The device eliminates radiation hazards to human operators while offering exceptional ease of maintenance, storage, and repair.
Key features include:
  • User-friendly interface with one-touch detection capability
  • Rapid analysis speed and high sensitivity
  • Excellent portability and strong environmental adaptability
  • Comprehensive detection of military explosives and civilian homemade explosives (including black powder, fireworks, and five additional categories)
  • Flexible expansion of prohibited substance database to include multiple hazardous materials based on specific user requirements
  • Integrated self-cleaning functionality for rapid purification of internal component
  The DY-150P is ideally suited for security applications in critical public venues such as airports, subways, ports, hotels, churches, business centers, and large gatherings. It effectively performs trace detection of explosives and other prohibited substances, while also serving valuable purposes in educational and scientific research environments.

2, Qualification

Can detect 6 types of explosives TNT (TNT), RDX (RDX), PETN (PETN)
Nitroglycerin (NG), nitrate-based explosives (ammonium nitrate, AN), and black powder (sulfur, BP) may also be mixed with prohibited substances as required by users.
Core technology Non-radioactive photoionization high-resolution ion mobility spectrometry (PIMS)
Sample mode Wipe and sample
Sensitivity Nak class (ng, 10-9 g)
Alarm method Sound + display sample information + color indicator light
Parsing time <5 seconds (s)
Cold start time <15 minutes (min)
False positive rate ≤ 1%
Display screen 3.5 TFT color LCD touch screen
Relevance ratio ≥99%
Tyrant detection limit <1 nanogram (ng)
Overload recovery time ≤1 minute (min)
Probe mode switching time ≤10 minutes (min)


Work environment -5℃ to 55℃, with relative humidity ≤93%RH and non-condensation
Software function Supports self-check and calibration; provides real-time data storage, retrieval, and export capabilities with a storage capacity of at least 1 million, and allows data addition.
Data interface Has a USB port
Wi-Fi function It supports remote monitoring of detector operation status and remote downloading of alarm data
Source Power adapter/lithium-ion battery pack power
Power adapter parameters Input voltage 100-240V/AC 50-60Hz, 160W; output voltage 24V/DC
Battery Settings Voltage: 21V, capacity: 6400mAh, can power the detector continuously for more than 3 hours, standby power supply is ≥8 hours
Dimensions of the detector (mm) 430 Long * 190, High * 180, Wide
Weight of the main body 4.4 kg (excluding lithium-ion batteries); 4.8 kg (including lithium-ion batteries)

3, Basic Working Principle

  The detector employs next-generation ion mobility spectrometry technology, as illustrated in Figure 1.2.1. When the sample molecules undergo thermal desorption through the injection system, they enter the ionization zone of the ion mobility tube via the injection channel and are ionized by a non-radioactive ionization source. The ionized molecules transform from neutral to charged ions. These charged ions then pass through the ion gate-controlled reaction zone into the ion mobility region, where they travel under a uniform electric field to the ion reception zone, where they are converted into electrical signals. The weak electrical signals are amplified by an amplifier and transmitted to the data processing system, ultimately forming the detection spectrum of the ion mobility spectrometry.

Advanced explosive and drug trace detection systems implement sophisticated photoionization high-resolution ion mobility spectrometry technology for detecting contraband substances 0

Figure 1.2.1 Ion Migration Spectrum Working Principle

The mass-to-charge ratio (m/z) of ions formed from the tested sample molecules varies, resulting in different collision cross-sectional areas. Consequently, ions exhibit distinct migration rates within the migration zone, leading to varying arrival times in the reception zone. Ion mobility spectrometry leverages these differential migration rates to identify specific sample components.

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