
We import fiber test instruments for resale, and Aevumix delivers the full range on schedule with complete certifications. Consistent quality across OTDRs, meters and locators means fewer supplier headaches. Dependable partner.
Multimode OTDR testers that characterize LAN and data-center multimode links — event mapping, loss and reflectance. Request a quote.
A multimode OTDR tester characterizes the shorter, multimode links of LANs and data centers — mapping the splices, connectors and bends along the fiber with their loss and reflectance. Multimode presents its own challenges: links are short, events are closely spaced, and the tester needs short dead zones and appropriate wavelengths (typically 850 and 1300nm) to resolve them. A multimode-capable OTDR is what turns a failing multimode link into a located, quantified fault.
Aevumix supplies multimode OTDR testers with the wavelengths and short dead zones multimode work requires, so the tightly packed events in a data-center channel resolve clearly. Event mapping presents each connector and splice with its loss and reflectance, and results store for documented certification. For enterprises and data centers running multimode alongside single-mode, we also offer units covering both, so one instrument serves the whole plant.
Because the right OTDR depends on your wavelengths, link lengths and dead-zone needs, we help you specify the correct unit. Send your fiber types and topology and we will recommend a multimode OTDR and provide a quote.
Based on 10 customer reviews

We import fiber test instruments for resale, and Aevumix delivers the full range on schedule with complete certifications. Consistent quality across OTDRs, meters and locators means fewer supplier headaches. Dependable partner.

Aevumix combined meter, OTDR, locator and probe into a single field test set for our crews. One case, everything certified. It streamlined our field kit and the instruments have proven accurate and durable in daily use.

As a distributor we needed OTDR testers under our own brand. The OEM housing and firmware customization is genuine, MOQs are realistic for a first run, and customers keep coming back. The margins work for us.
Tell us what you need and our team will get back to you with pricing and availability as soon as possible.
How an OTDR works: it sends a laser pulse and measures returning light. Rayleigh scattering reveals attenuation; Fresnel reflection locates events. Learn the working principle.
A PON power meter tests live PON links inline, reading upstream and downstream wavelengths at once; an optical power meter measures one wavelength on dark fiber. Learn when to use each.
How to use a visual fault locator: connect the fiber, turn on the red laser, and find breaks, bends, and bad connectors by the light escaping. Plus VFL safety and range.
Multimode links are short with closely spaced events and use 850/1300nm wavelengths. A multimode OTDR has the wavelengths and short dead zones to resolve these, which a single-mode-only unit may not.
Yes. We offer units covering both so one instrument serves a mixed plant. Tell us your fiber types and we will recommend the right configuration.
Typically 850nm and 1300nm. We supply multimode OTDRs calibrated at these wavelengths. Confirm your requirements and we will specify.
Yes. Multimode OTDRs store traces and results for documented certification and export. Request the datasheet for details.
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