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Metering Closed Loop Hall Effect Current Sensor Pulsed Current Measurement
TBC-PS3.3 series current sensor is two closed loop device based on the measuring principle of the hall effect,
with a galvanic isolation between primary and secondary circuit. It provides accurate electronic measurement of DC,AC or pulsed currents.
Electrical data(Ta=25℃±5℃) |
Type Parameter | TBC5PS3.3 | TBC10PS3.3 | TBC15PS3.3 | TBC25PS3.3 | TBC30PS3.3 | Unit |
Rated input (Ipn) | 5 | 10 | 15 | 25 | 30 | A |
Measuring crange(Ip) | 12 | 24 | 36 | 50 | 60 | A |
Turns ratio(Np/Ns) | 5:1000 | 3:960 | 2:960 | 1:1000 | 1:960 | T |
Inside resistance | 25±0.1% | 20±0.1% | 20±0.1% | 25±0.1% | 20±0.1% | Ω |
Rated output | 0.625±0.5% | 0.625±0.5% | 0.625±0.5% | 0.625±0.5% | 0.625±0.5% | V |
Size of input pins | ø 0.6 | ø 0.8 | ø 1.0 | ø 1.4 | ø 1.6 | mm |
Supply voltage |
+3.3±5% | V | ||||
Power consumption | ≤20+IpX(Np/Ns) | mA | ||||
Zero voltage |
@ Is=0 1.65±0.5% | V | ||||
Offset drift |
@ -40~+85℃ ≤±0.5 | mV/℃ | ||||
Linearity |
@ Ip=0-±Ipn ≤0.1 | %FS | ||||
Total precision |
≤±0.7 | % | ||||
di/dt accurately followed |
>50 | nS | ||||
Response time | @ Ip=Ipn, 50 A/µS , 90% <500 | nS | ||||
Bandwidth | @ -1db DC~100 | KHZ | ||||
Galvanic isolation | @ 50HZ, AC, 1min 2.5 | KV |
Applications |
Variable speed drives
Welding machine
Battery supplied applications
Uninterruptible Power Supplies (UPS)
Electrochemical
DC motor drives
Mechanical dimension(for reference only) |
Remarks:
1. All dimensions are in mm.
2. General tolerance ±1mm.
Directions for use |
When the current will be measured goes through a sensor, the voltage will be measured at the output end.
(Note: The false wiring may result in the damage of the sensor).
Custom design in the different rated input current and the output voltage available.
Standards |
General date |
Value | Unit | Symbol | |
Operating temperature | -40 to +85 | ºC | TA |
Storage temperature | -40 to +125 | ºC | TS |
Mass(approx) | 12 | g | M |
Characteristics chart |
Pulse current signal response characteristic Effects of impulse noise