SYPRIS Model PI-600
Specifications
AC Bandwidth (+3 dB of reading) (2)
kHz DC to 1
Aperture opening
inches (mm) 0.8 (20.3)
Dielectric test (4)
kV 6
Excitation change of +1% - Max. sensitivity change
+ % 1
Full Scale (FS) DC or AC peak
+ A 600
Full Scale output (1)
+ mV 150 to 330
Input resistance
ohms 30 to 120
Linearity
0-600 A:+12 A
Maximum excitation current (Ic)
mA 40
Maximum hysteresis of offset (3)
+ mV 1.4
Maximum offset drift with temperature
+ V/oC 50
Maximum sensitivity drift with temperature
% /oC -0.07
Maximum zero current offset
+ m V 16
Minimum load resistance
k ohms >10
Mounting
Hold down tabs secure sensor to PCB
Operating temperature range
oC -40 to +100
Output reference
To obtain a differentially positive output on pin marked +VH, positive conventional current must flow as per the direction of arrow marked on sensor.
Output resistance
ohms 70 to 300
Output short or open
No Damage
Package
Potted, flame retardant plastic case
Sensitivity
mV/A 0.25 to 0.55
Storage temperature range
oC -40 to +110
Typical offset drift with temperature
+ V/oC 20
Typical sensitivity drift with temperature
% /oC -0.05
Typical zero current offset
+ mV 3
Weight
grams 1 7
Features
- Excellent linearity
- High accuracy
- P.C. board mount
- Safety isolation
- Wide frequency range
Datasheet
Extracted Text
Current Sensors PI and PI-600 Open Loop Hall Effect Description The PI and PI-600 Hall effect current sensors accurately measure DC and AC currents and provide electrical isolation between the output of the sensor and the current carrying conductor. Applications Features • High accuracy • Industrial • Appliances • Automotive • Wide frequency range • Ideal Replacement for Shunt or CT • Excellent linearity • Battery Monitoring • Safety isolation • Load Monitoring at the point of Distribution • P.C. board mount process control on PCB, the back plane or fuse • U.P.S. (Uninterruptable Power Supply) Measuring Circuit Units PI PI-600 Full Scale (FS) DC or AC peak..................................... + A 350 600 Full Scale output (1) ................................................ + m V 175 to 385 150 to 330 AC Bandwidth (+3 dB of reading) (2) ....................... kHz DC to 1 Response time ........................................................ <50 ms Excitation Circuit Maximum excitation current (Ic) ............................... mA 40 Input resistance ...................................................... ohms 30 to 120 Output Sensitivity ............................................................... mV/A 0.5 to 1.1 0.25 to 0.55 Linearity ................................................................. 0-100 A +1.5 A 100-350 A +5.25 A 0-600 A +12 A Typical zero current offset ........................................ + mV 3 Maximum zero current offset. ................................... + m V 16 Maximum hysteresis of offset (3) ............................. + mV 2 1.4 Minimum load resistance ........................................ k ohms >1 0 Output resistance .................................................... ohms 70 to 300 Influences On Accuracy o Typical offset drift with temperature .......................... + V/ C 20 m o Maximum offset drift with temperature ..................... + m V/ C 50 Excitation change of +1% - Max. sensitivity change ....... + % 1 o Typical sensitivity drift with temperature .................... % / C -0.05 o % /C -0.07 Maximum sensitivity drift with temperature ................ Withstand Capabilities Dielectric test (4) .....................................................kV 6 Output short or open .............................................. No Damage General Information o Operating temperature range ..................................... C -40 to +100 o Storage temperature range ....................................... C -40 to +110 Package ................................................................. Potted, flame retardant plastic case Aperture opening..................................................... inches (mm) 0.8 (20.3) Weight ................................................................... grams 7 1 Mounting ................................................................ Hold down tabs secure sensor to PCB Output reference ..................................................... To obtain a differentially positive output on pin marked +V , positive conventional current must flow as per the H direction of arrow marked on sensor. 6120 Hanging Moss Road • Orlando, Florida 32807 Phone (407) 678-9748 • Fax (407) 677-5765 • www.fwbell.com Current Sensors Mechanical Dimensions All dimensions are in inches (millimeters) Models PI and PI-600 1.400 .800 I.D. (MIN.) (35.6) (20.3) 1.811 O.D. (MAX.) (46.0) 1.938 2.124 (49.2) (53.9) .319 ( 8.1 ) .975 + _ .025 ( 24.8 + _ .63 ) Pin Identification .343 I 1 – C Negative Control Current (8.7) +l V 2 + H Positive Output Voltage .030 V 3 – H Negative Output Voltage ( .76 ) I 4 + C Positive Control Current .670 MAX. (17) 1234 .170 Approx. (4.3 ) 4 Pins. .025 x .010 Solderable Post (2) ( .63 x .25 ) .125 x .012 (3.2 x .30 ) .100 ( 2.5 ) on centers. for Mounting to PWB Hall Sensor Connections Typical Amplifier Circuit for Current Measurements Calibration Input 1N914 78L05 78L05 +15v 500 100 10 GND Output 7 to 40mA R* .1uF 1.0 K – 4 7 2 3 ZERO 6 2 OP–07 1 10K 1.0 K Output = 1V/100A 4 + 3 R* .1uF R* = 22.1k for a PI R* = 44.2k for a PI – 600 All resistances in ohms. –15v 10 Notes 1. All specifications are given with a control current (Ic) of 40 mA. 2. Consult F.W. Bell if the product of the aper ture current and frequency exceeds 400 ampere-kilohertz. 3. Hysteresis specifications given for Full Scale aperture current remnant. 4. The dielectric test consist of 6 kVac at 60 Hz for one minute between a bare 0.750 inch diameter conductor. (loca ted concentricall y through the aper ture) and the output of the sensor. 5. Due to continuous process improvement, all specifications are subject to change without notice. 6120 Hanging Moss Road • Orlando, Florida 32807 Phone (407) 678-9748 • Fax (407) 677-5765 • www.fwbell.com Rev. date 04/2003
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