KANE-VCT KIT Voltage & Continuity Tester with 690V AC Proving Unit
The KANE-VCT KIT combines the KANE-VCT Voltage & Continuity Tester with the KANE-PU690V Proving Unit, providing voltage and continuity testing, single-pole detection, phase rotation sequencing and voltage tester proving in one convenient package.
The KANE-VCT provides 12–690V AC/DC voltage testing with LED and digital voltage indication, while the included KANE-PU690V is designed for compliance safety checking of voltage testers before testing on a live circuit.
Buy the KANE-VCT KIT online today.
Why Choose the KANE-VCT KIT?
The kit brings together two complementary electrical testing instruments. The KANE-VCT provides voltage and continuity testing with additional single-pole and phase rotation functions, while the KANE-PU690V provides a dedicated source for proving voltage testers.
KANE describes the VCT as a three-in-one tester housed in a rugged, ergonomically formed body. The current kit page also states that the tester remains operational when its batteries are discharged and conforms to BS EN 61243-3:2014.
The proving unit is compact and lightweight and is compatible with both high and low Z impedance, allowing it to be used for proving voltage on multimeters as well as voltage testers.
KANE-VCT KIT Key Features:
KANE-VCT Voltage & Continuity Tester
- 12–690V AC/DC voltage testing
- LED and digital voltage indication
- Digital LCD display
- Audible continuity test
- Single-pole detection
- Phase rotation sequencing
- LED work light
- GS38 shrouded test probes
- Meets BS 61243-3:2014
KANE-PU690V Proving Unit
- AC voltage output up to 690V
- High and low Z impedance compatible
- 200 kΩ load
- Low battery indication
- Portable and compact design
- Designed for checking voltage testers before testing on a live circuit
Specifications:
KANE-VCT
| Features | |
| Voltage range | 12–690V AC/DC |
| Voltage indication | LED & digital |
| Display | Digital LCD |
| Continuity | Audible |
| Single-pole detection | Yes |
| Phase rotation sequencing | Yes |
| Work light | LED |
| Test probes | GS38 shrouded |
| Standard | BS 61243-3:2014 |
KANE-PU690V
| Features | |
| AC voltage output | Up to 690V |
| Impedance compatibility | High & Low Z |
| Load | 200 kΩ |
| Low battery indication | Yes |
| Design | Portable & compact |
Testing Functions
✓ Voltage Testing
The KANE-VCT provides AC/DC voltage testing from 12 to 690V, with both LED and digital voltage indication for clear checking of electrical circuits.
✓ Continuity Testing
An audible continuity function is included, allowing continuity checks to be carried out using the same handheld tester.
✓ Single-Pole Detection
Single-pole detection is included as one of the VCT‘s core functions alongside voltage and continuity testing.
✓ Phase Rotation Sequencing
The KANE-VCT also provides phase rotation sequencing, extending its functionality beyond standard voltage and continuity testing.
✓ Voltage Tester Proving
The KANE-PU690V is designed for the compliance safety checking of voltage testers before testing on a live circuit. It provides an AC voltage output of up to 690V and is also compatible with high and low Z impedance for proving voltage on multimeters.
What Comes with the KANE-VCT KIT?

The kit includes:
- KANE-VCT Voltage & Continuity Tester
- KANE-PU690V 690V AC Proving Unit
- Batteries
- MSC00125 Protective Pouch
❓ Frequently Asked Questions (FAQ)
Q1: What is the KANE-VCT KIT used for?
A. It combines voltage and continuity testing with single-pole detection, phase rotation sequencing and a dedicated proving unit for checking voltage testers.
Q2: What voltage range does the KANE-VCT cover?
A. The tester covers 12–690V AC/DC.
Q3: Does it test continuity?
A. Yes. The KANE-VCT includes an audible continuity test.
Q4: Can it check phase rotation?
A. Yes. Phase rotation sequencing is one of the listed functions of the KANE-VCT.
Q5: What is the KANE-PU690V used for?
A. The proving unit is designed for checking voltage testers before testing on a live circuit and is also high and low Z compatible for proving voltage on multimeters.