FTTH fiber-to-the-home solutions
Optical communication component solutions

Handheld Xrf Spectrometers For Elemental Analysis

Browse technical resources about fiber optic tools, passive components, network infrastructure, and deployment solutions.

  • Analysis of the Causes of Fiber Bragg Grating Wavelength Misalignment

    Analysis of the Causes of Fiber Bragg Grating Wavelength Misalignment

    Fiber Bragg Gratings face significant angular misalignment challenges in contemporary optical systems, primarily stemming from manufacturing tolerances, installation imprecision, and operational environmental factors. These wavelength-selective devices, formed by creating periodic refractive index modulations within optical fiber cores, have revolutionized. High-temperature-resistant fiber Bragg gratings (FBGs) are the main competitors to thermocouples as sensors in applications for high temperature environments defined as being in the 600–1200 °C temperature range. Due to their small size, capacity to be multiplexed into high density distributed. A novel approach to fibre Bragg grating spectra processing is proposed. The method is based on the use of nonlinear filtration and raising the spectrum value to the second power.

    [PDF Version]
  • Vulnerability Analysis of Network Security Devices

    Vulnerability Analysis of Network Security Devices

    Five-step methodology: List assets, map data flows using Nmap/Wireshark, identify threats with MITRE ATT&CK, assess impact, recommend technical mitigations. Compliance mandates: HIPAA, ISO, NIST, PCI DSS, GDPR require regular security assessments to maintain compliance and. A cybersecurity vulnerability assessment is a systematic security evaluation that identifies, analyzes, and prioritizes potential security weaknesses across your IT infrastructure. Modern vulnerability scanners provide actionable remediation guidance, severity scoring, and integrations with IT and.


  • Analysis of the Composite Optical Cable Industry

    Analysis of the Composite Optical Cable Industry

    Segments - by Type (Layer Stranding Structure, Central Tube Structure), Application (Telecommunications, Power Utilities, Aerospace and Defense, Industrial, and Others), Installation (Aerial, Underground, Submarine), and Region (Asia Pacific, North America, Latin America . Segments - by Type (Layer Stranding Structure, Central Tube Structure), Application (Telecommunications, Power Utilities, Aerospace and Defense, Industrial, and Others), Installation (Aerial, Underground, Submarine), and Region (Asia Pacific, North America, Latin America . The Camera Composite Optical Cable Market was valued at USD 1. 2 billion in 2024 and is projected to reach USD 2. This robust growth is driven by advancements in camera technology, increasing demand for. The market for "Camera Composite Optical Cable Market" is examined in this report, along with the factors that are expected to drive and restrain demand over the projected period.

    [PDF Version]
  • Primary and Secondary Spectrometers

    Primary and Secondary Spectrometers

    In 1910, British physicist observed a release of positive ions and neutral atoms from a solid surface induced by ion bombardment. Improved technology in the 1940s enabled the first prototype experiments on SIMS by Herzog and Viehböck in 1949, at the, Austria. In the mid-1950s, Honig constructed a SIMS instrument at in. Then in the early 1960s, two SIMS instruments were developed independently. One was an American proje.


  • Photomultiplication of Spectrometers

    Photomultiplication of Spectrometers

    Photomultiplier tubes (photomultipliers or PMTs for short) are extremely sensitive detectors of light in the,, and ranges of the. They are members of the class of, more specifically vacuum. These detectors multiply the current produced by incident light by as much as 100 million times or 10 (i.e., 160 ), in multiple stages, enabling (for.


More industry information

Contact Us

We Look Forward to Working with You

Contact Information

Phone +27 64 827 3915
Address Unit 9, Highveld Technopark, 43 Atlas Road, Johannesburg, 2196, South Africa

Send an Inquiry