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Qualité IS-100 Pneumatic Mechanical Shock Testing System For Transducer  Industry usine
Qualité IS-100 Pneumatic Mechanical Shock Testing System For Transducer  Industry usine
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IS-100 Pneumatic Mechanical Shock Testing System For Transducer Industry

Nom de la marque: Jianqiao
Numéro de modèle: IS-5/10/25/50/100/200/300
Attestation: CE
Quantité minimum de commande: 1
Capacité d'approvisionnement: 300

Détails du produit


nom: Système de test de choc Système de contrôle et de mesure: OKS01
Caractéristiques: Contrôle numérique Exigences d&#39;alimentation: 220 V ± 10% monophasé AC 50Hz 2KVA
Standard: GB / T2433.5, GB / T2423.6, IEC68-2-29, JJG497-200
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pneumatic shock testing system for transducer

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mechanical shock test system with warranty

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industrial transducer shock testing equipment

Description du produit

IS-100 Pneumatic Mechanical Shock Testing System For Optical Module Shock Test
The Optical Module Shock Test System is a specialized testing setup designed to evaluate the structural stability, optical performance, and functional reliability of optical modules (e.g., SFP, QSFP, CPON) under simulated shock conditions. It ensures optical modules can withstand shock events encountered in their lifecycle, such as transportation, installation, or equipment operation.
Core Purpose & Testing Objectives
Optical modules rely on precise components (e.g., lasers, photodetectors, fiber connectors) and tight alignment. This system focuses on verifying their performance under shock by measuring key metrics:
  • Structural integrity: Checking for physical damage (e.g., cracked enclosures, loose components, broken fiber links).
  • Optical performance: Monitoring changes in insertion loss, return loss, optical power, and signal-to-noise ratio (SNR) post-shock.
  • Functional stability: Ensuring no communication failures, data packet loss, or protocol errors occur during/after shock exposure.
Key Components of the System
The system integrates mechanical, optical, and data-acquisition components to replicate shocks and capture test data:
  • Shock excitation unit: Generates controlled shock pulses (e.g., half-sine, square, sawtooth) using pneumatic/hydraulic drives or drop-weight mechanisms. It supports adjustable parameters like peak acceleration (50g-2000g), pulse duration (0.1ms-10ms), and shock direction (axial, transverse).
  • Optical performance tester: Equipped with an optical power meter, optical spectrum analyzer (OSA), and bit error rate tester (BERT) to real-time monitor optical signals during testing.
  • Fixture & mounting system: Customized fixtures to securely mount optical modules (matching their actual installation orientation in devices) while avoiding extra mechanical stress.
  • Data acquisition & control software: Records shock acceleration (via accelerometers), optical metrics, and functional data. It generates test reports and compares results against industry standards (e.g., IEEE 802.3, Telcordia GR-468).
Typical Test Standards & Conditions
It adheres to industry-specific standards to ensure test validity:
Standard/Application Peak Acceleration Pulse Duration Shock Direction Key Test Metrics
Telcordia GR-468 (Telecom) 100g - 500g 0.5ms - 2ms X, Y, Z axes Insertion loss (Δ ≤ 0.5dB), no BER increase
IEEE 802.3 (Ethernet) 50g - 200g 1ms - 10ms Axial/Transverse No signal dropout, power stability
IEC 60068-2-27 (General) Up to 2000g 0.1ms - 1ms All axes Structural damage check, functional validation
Application Scenarios
This system is critical for industries dependent on stable optical communication:
  • Telecommunications: Testing optical transceivers for 5G base stations, data centers, and fiber-optic networks.
  • Aerospace & Defense: Validating ruggedized optical modules for aircraft, satellites, or military communication systems (resisting high-g shocks).
  • Industrial Automation: Ensuring optical modules in industrial Ethernet (e.g., PROFINET) withstand shock from machinery vibration or handling.
  • Consumer Electronics: Testing optical modules in high-end devices (e.g., enterprise routers) for transportation and installation shocks.
Technical Specifications
Model IS5 IS10 IS25 IS50 IS100 IS200 IS300
Maximum test load (kg) 5 10 25 50 100 200 300
Table size (mm*mm) 120*120 200*200 350*350 500*500 700*700 750*750 800*800
Shock waveform (m/s²)
Half sine waveform 100~30000 100~20000 100~10000 100~6500 150~6000 150~5000 150~3500
After peak saw-tooth 100~1000 100~1000 100~1000 100~1000 100~1000 150~1000 150~1000
Trapezoidal wave 150~1500 150~1500 150~1200 150~1200 150~1200 150~1000 100~1000
Pulse duration time (m/s)
Half sine waveform 0.5~20 0.6~20 0.8~20 1.5~20 2~20 2.5~20 3~20
After peak saw-tooth 6~18 6~18 6~18 6~18 6~18 6~18 6~18
Trapezoidal wave 6~20 6~20 6~20 6~25 6~25 6~25 6~25
Maximum impact distance (mm) 1550 1500 1400
Anti-secondary impact device Air pressure friction brake Hydraulic friction brake
Table weight (kg) 1300 1500 2800 3800 4350 4900 6250
Dimensions (L*W*H)(mm) 900*450*2600 1000*500*2700 1100*800*2800 1100*750*2800 1350*850*2850 1420*920*2900 1480*1000*2950
Control and measurement system: OKS01
Power requirements: 220V±10% single phase AC 50Hz 2kVA
Hydraulic pump station power requirements: 380V±10% 3 phases AC 50Hz
Hydraulic pump station power consumption (kVA): 2.5 | 2.5 | 4 | 4.6 | 4.6 | 6.2 | 6.5
Applicable standard: GB/T2433.5,GB/T2423.6,IEC68-2-29,JJG497-200
Product Images
IS-100 Pneumatic Mechanical Shock Testing System For Transducer  Industry 0 IS-100 Pneumatic Mechanical Shock Testing System For Transducer  Industry 1 IS-100 Pneumatic Mechanical Shock Testing System For Transducer  Industry 2 IS-100 Pneumatic Mechanical Shock Testing System For Transducer  Industry 3

Points forts du produit

IS-100 Pneumatic Mechanical Shock Testing System For Optical Module Shock Test The Optical Module Shock Test System is a specialized testing setup designed to evaluate the structural stability, optical performance, and functional reliability of optical modules (e.g., SFP, QSFP, CPON) under simulated ...

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