Pintech
Pintech PT-227 AC/DC current probe 70 A 2 MHz measurement tool
Measures AC and DC current up to 70 A with 2 MHz bandwidth and ±3 % accuracy using a 5 mm jaw and BNC output
- Size/Dimensions144*17*29 mm
- Accuracy±1%+5mV
- Standards/CertificationsCE
- Measures DC and AC currents up to 70 A peak
- 2 MHz bandwidth captures fast transients with 175 ns rise time
- ±1 % typical accuracy backed by magneto-electric sensor
- 5 mm jaw diameter fits tight conductors
- Standard BNC connector works with any oscilloscope
AC/DC current probe for oscilloscopes
The Pintech PT-227 measures both AC and DC currents up to 70 Ap-p with a DC to 2 MHz bandwidth. It connects to any oscilloscope through a standard BNC connector and uses a magneto-electric sensor to capture waveforms with a 175 ns rise time. The transformation ratio is 0.1 V/A and typical accuracy is ±1% ±5 mV.
Suited for engineers and technicians measuring
This probe fits users who need to view DC and AC signals on a single instrument with a 5 mm jaw opening. It is not for buyers who must measure currents above 70 Ap-p or bandwidths beyond 2 MHz. The 24 A rms continuous limit also rules out sustained high-power applications.
70 Ap-p AC and 35 A DC measurement range
The maximum AC peak-to-peak current is 70 A while the DC limit is 35 A, with a 20 mA minimum test current. These figures decide whether the probe covers the signal amplitudes in your test setup.
Highlights
- Measures DC and AC currents up to 70 A peak
- 2 MHz bandwidth captures fast transients with 175 ns rise time
- ±1 % typical accuracy backed by magneto-electric sensor
- 5 mm jaw diameter fits tight conductors
- Standard BNC connector works with any oscilloscope
Specifications
| Brand | PINTECH |
|---|---|
| Model | PT-227 |
| Size/Dimensions | 144*17*29 mm |
| Accuracy | ±1%+5mV |
| Standards/Certifications | CE |
Questions about this item
Should I pick the 70 A peak AC or the 35 A DC range for my PT-227?
The PT-227 handles both simultaneously; use the 70 A peak AC rating for alternating signals and the 35 A limit for steady DC, staying within the 24 A RMS ceiling for continuous heating.
What does the 2 MHz bandwidth mean when I connect the probe to my oscilloscope?
It lets you capture current transients with a 175 ns rise time, so edges up to a few hundred nanoseconds are displayed without significant attenuation.
How does the standard BNC connector limit what I can measure with this probe?
The BNC output carries a 0.1 V/A scaled signal into any oscilloscope with 1 MΩ input, capping the measurable bandwidth at the probe's 2 MHz specification.
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