Study Online. Train at Your Own Pace.

SANS 10142 Testing Principles Series (10)

SANS 10142 Testing Principles Series (10)

⚡ SANS 10142 Testing Principles Series

Test 10: Voltage With Load — Verifying Voltage Drop Under Real Conditions

Introduction

Up to now, we’ve established:

  • Test 9: The correct voltage at no load (baseline supply)

Now we ask the next critical question:

👉 What happens to that voltage when the system is actually in use?

Because voltage is not static…

👉 It drops when current flows.

🧠 1. Foundation (Understanding): What Are We Actually Testing?

This test measures:

👉 The voltage at the point of control under load conditions

And compares it to:

👉 The value measured in Test 9 (no load)

🔑 What This Test Proves

👉 That voltage drop is within acceptable limits
👉 That conductors are correctly sized
👉 That the installation performs under real conditions

⚠️ Why This Matters

If voltage drop is too high:

🚨 Equipment malfunctions
🚨 Motors draw more current
🚨 Overheating occurs
🚨 Efficiency drops

🛠️ 2. Application (Doing): How Must the Test Be Done?

⚠️ IMPORTANT

👉 Test is done at the same point of control as Test 9
👉 But now with load applied to the installation

🔧 Correct Method

  1. Take your Test 9 reading (No Load)
  2. Apply load to the installation
  3. Measure voltage again at the same point
  4. Compare the two values

⚡ Measurement Points

Single Phase (1Φ):

👉 L – N

Three Phase (3Φ):

👉 L1 – N
👉 L2 – N
👉 L3 – N

📊 Voltage Drop Calculation

👉 Always compare:

Test 9 (No Load) vs Test 10 (With Load)

⚡ Example (Realistic)

  • Test 9 (No Load): 238.8 V

👉 Maximum allowable drop:

  • 5% of 238.8 V = 11.94 V

🎯 Minimum Acceptable Voltage Under Load:

👉 238.8 V – 11.94 V = 226.86 V

✅ Final Interpretation

👉 Under load, voltage must NOT drop below:

🔥 226.86 V

⚠️ If It Drops Below This

❌ Voltage drop exceeds 5%
❌ Installation is not compliant

Possible causes:

  • Undersized conductors
  • Long cable runs
  • Poor connections
  • Overloaded circuits
⚡ 3. Mastery (Owning Responsibility): What Are the Limitations?

This is where professionals stand out.

🔍 The Professional Must Ask:

👉 What load is applied during the test?
👉 Is it representative of real usage?
👉 Are all circuits contributing to voltage drop?
👉 Is the supply already weak (from Test 9)?
👉 Are long cable runs affecting results?

⚠️ Real Risks

Excessive voltage drop leads to:

🚨 Poor equipment performance
🚨 Increased current draw
🚨 Heat build-up in conductors
🚨 Premature equipment failure

⚠️ Common Mistakes

  • Not referencing Test 9 value
  • Measuring at different points
  • Not applying sufficient load
  • Ignoring 5% limit
  • Assuming supply is the issue
💡 Final Thought

Test 10 connects theory to reality.

Because this is where we see:

👉 How the installation behaves when it is actually used

At TDMI Training, we emphasise:

👉 Don’t just test voltage…
👉 Test performance under load

✅ The Standard

  • Use Test 9 as baseline
  • Measure at same point
  • Apply realistic load
  • Calculate voltage drop
  • Confirm within 5% limit

👉 Because voltage that looks good with no load…
must still perform when it matters.

Ready to Take the Next Step in Your Electrical Training?

Choose the course that matches your current requirements and continue with training designed around practical progress and support.

View Courses