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main characteristics their details described below. Each characteristi


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Characteristic Characteristic
main characteristics their details described below. Each characteristic specified ambient temperature 25°C with stipulated control voltage (±1% less error) applied. (Only control voltage specified temperature characteristics.)
fig.4
Rated output Denotes output when rated current input primary side. Residual output Denotes output when primary side input zero. This measurement performed after core demagnetized current equivalent rated current input primary side slowly made zero). Linearity Denotes error actually measured output value ideal straight Straight line range Saturation current Input current line calculated least mean squares method from output residual output when rated current rated current input. Saturation current Denotes input current value which output deviates from ideal straight line more than 10%. Straight line range Denotes range input current value which output within ideal straight line. Output temperature characteristic Denotes rate temperature change output (value after residual output subtracted) when rated current input within working temperature range. (The rate change shown with output 25°C reference.) Residual output temperature characteristic Input current Denotes temperature change residual output within working temperature range. (The change shown.) Response time Output voltage Denotes output response time when pulse current input input current. shown time difference when input output waveforms drop their initial levels.
Output voltage
fig.5
currents continuously flowing through board mount models (with primary winding)
currents continuously flowing through board mount models (with primary winding) limited wire diameter winding used them. With some exceptions, current sensors (with primary winding) normally have rated current continuously flowing current. relationships between wire diameters primary windings continuously flowing currents summarized table below. Continuously flowing currents should assumed r.m.s. values currents.
Wire diameter f0.4 f0.5 f0.6 f0.8 f1.0 f1.1 f1.2 f1.3 f1.6 f1.1 f1.4
Continuously flowing current 13.8 16.7 19.9 23.3 35.4 36.8 82.7 33.4 54.1
Collmer.COM 2542 Highlander Carrollton, 75006 Phone: (972) 248-2888 Fax: (972) 381-9998 www.collmer.com
Characteristic
Characteristic core
Saturation curve core (silicon steel plate)
Materials: HC-TN series Magnetic flux density Magnetic flux density
Saturation curve core
Materials: HC-TN series (gap 1.7) Silicon steel plate Amorphous Ferrite
Feedthrough current
Feedthrough current
Relationship between input current frequency core temperature increase
Core temperature increase (degree) Materials: HC-TN series (gap=1.7) Input current 106A(r.m.s), Sine wave Input current frequency (kHz) Silicon steel plate t=0.23 Silicon steel plate t=0.1
Amorphous t=0.025 Ferrite
Noise testing method Effects dv/dt Waveform output voltage when voltage pulse dv/dt=300V/µs applied.
Testing method
Voltage pulse
Primary conductor
Control power supply
Effects impulse noise Waveform output voltage when impulse noise rise time 1ns, pulse width 1µs, voltage 2,000V applied.
Testing method
Bolt-on type
Primary conductor
PCB-mounting type
Impulse noise
Impulse noise
Control power supply
Steel plate
Input terminal
Type designation
Operating method Open loop system Closed loop system
Series Input current Output voltage Voltage output output) Current output (0.5A output)
Control Power Supply ±15V, ±12V (Both power supplies) +15V, +12V (Single power supply)
Special specification
11126
Trade Mark
Standard max. rating
Input display
Example display
Series less
first decimal place
5A.05
37.5A.375
70A.70
Series over
000~999
70A.070
100A.100
1000A more
first digits
1000A.E10
5000A.E50

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