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This guide outlines steps for signal delay measurement using Integrus Tech equipment, from disconnecting cables to calculating switch positions. Learn how to accurately measure and calibrate signal delays for optimal performance.
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Delay Measuring example 560/2=280ns 316/2=158ns Transmitter 224/2=112ns R3 R4 672/2=336ns Integrus Tech Delay Measuring
Step 1 Disconnect cables from HF Outputs Integrus Tech Delay Measuring
Step 2 Measure Signal Delay to Radiator 1 316 R1=316/2=158ns Integrus Tech Delay Measuring
Step 3 Measure Signal Delay to Radiator 2 560 R1=316/2=158ns R2=560/2=280ns Integrus Tech Delay Measuring
Step 4 Measure Signal Delay to Radiator 3 224 R1=316/2=158ns R3=224/2=112ns R2=560/2=280ns Integrus Tech Delay Measuring
Step 5 Measure Signal Delay to Radiator 4 672 R1=316/2=158ns R3=224/2=112ns R2=560/2=280ns R4=672/2=336ns Integrus Tech Delay Measuring
Step 6 Determine Maximum Signal Delay R1=316/2=158ns R3=224/2=112ns R2=560/2=280ns R4=672/2=336ns Integrus Tech Delay Measuring
7 5 0 2 Step 7 Calculate Delay Switch Positions (336 – 158) / 33 = 5.39 (336 – 112) / 33 = 6.78 Switch Position = (Max. Signal Delay – Delay Rx) / 33 (336 – 280) / 33 = 1.69 (336 – 336) / 33 = 0 Integrus Tech Delay Measuring
Delay Measuring example End of section Integrus Tech Delay Measuring