Multi-ch Galvanic Isolated Signal Conditioning

Galvanic isolation is a fundamental technique used in signal conditioning systems to prevent unwanted current flow (both DC and AC) between interconnected components—while still allowing the safe transmission of signals and power. It’s a critical feature for ensuring safety, signal integrity, and system reliability in industrial, medical, and high-voltage environments.

Key Features

A ground loop caused by ground potential differences

Eliminating differential ground potential problems via isolation

Why Galvanic Isolation is Important:

Eliminates Ground Loops

Breaks potential ground loops, which are common sources of electrical noise, interference, and measurement inaccuracies—especially over long-distance connections.

Enhances System & Operator Safety

Protects users, devices, and control systems from high voltage surges, transients, and common-mode voltages, which can otherwise damage sensitive electronics or pose safety risks.

Preserves Signal Integrity

Ensures accurate and reliable signal transmission in harsh or noisy environments by isolating sensitive parts of the system from disruptive electrical paths.

Enables Use in Hazardous Environments

Crucial for explosive or electrically hazardous areas (e.g., chemical plants, power substations), where direct electrical connections must be avoided to meet safety standards.

Industries

Our fiber optic-based signal conditioning solutions feature built-in galvanic isolation to ensure performance, reliability, and safety—especially where traditional copper transmission falls short.

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Case Studies

Automated Vehicle Level Diagnostic Validation (VDV)Test Setup with Fault Insertion Unit (FIU)

The ATE system was designed to provide a versatile testbed with 204 pins, capable of performing various fault techniques like...

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Optimized Solutions delivered a comprehensive ATE system tailored to meet the specific needs of the manufacturer. 

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Ex + Ls Test Stands & Ls Test Stand

To address the complex testing requirements, Optimized Solutions delivered high-capacity transformers (600 KVA, 40 KVA) and RL load banks with...

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