01306 Simpson, 01306 Datasheet - Page 64

Current Transformer

01306

Manufacturer Part Number
01306
Description
Current Transformer
Manufacturer
Simpson
Type
Inductiver
Datasheets

Specifications of 01306

Input Current
75A
Turns Ratio
15
Transformer Mounting
Chassis
Secondary Current Nom
5A
Power Rating
2VA
Peak Reflow Compatible (260 C)
No
Output Current
5A
Mounting Type
Donut
Transformer Type
Current
Accuracy
2 %
Current, Primary
75 A
Current, Ratio
75:5
Current, Secondary
5 A
Diameter, Inside
1.56 in.
Diameter, Outside
3.56 in.
Frequency Response
50 to 400 Hz
Function
Current
Material, Stud
Brass
Primary Type
Current
Range, Measurement
75 A
Standards
UL and CSA Approved
Technology
Inductive
Thickness
1.1 in.
Dimensions
27.94 mm W
Number Of Outputs
1
Primary Voltage Rating
75 V
Secondary Voltage Rating
5 V
Termination Style
Round Crimp Terminals
Current Ratio
75
Leaded Process Compatible
No
Rohs Compliant
No
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
For Use With
The primary wire passing through the core, or by wrapping the secondary wires leading to the meter
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
Formula:
Where:
The ratio of the current transformer can be modified by adding
more primary turns to the transformer. By adding primary
turns, the current required to maintain five amps on the sec-
ondary is reduced.
Example:
1 Primary Turn
2 Primary Turns
4 Primary Turns
Donut Current Transformer Wrapping Information
Donut Current Transformer Wrapping Information
Nameplate
Nameplate
Nameplate
Primary Turn Ratio Modification
100:5
100:5
100:5
Ratio
Ratio
Ratio
A 100:5 current transformer designed for one
primary turn.
Ka = Kn x Nn / Na
Ka = Actual Transformer Ratio
Kn = Nameplate Transformer Ratio
Na = Actual Number of Primary Turns
Nn = Nameplate Number of Primary Turns
Actual
Actual
Actual
Ratio
100:5
Ratio
Ratio
50:5
25:5
Formula:
Where:
Example:
(In practicality one turn is dropped from the secondary as a ratio correc-
tion factor.)
The ratio of the current transformer can be modified by altering the
number of secondary turns by forward or backwinding the secondary
lead through the window of the current transformer. By adding second-
ary turns, the same primary current will result in a decrease in second-
ary output. By subtracting turns, the same primary current will result in
greater secondary output.
Again using the 300:5 example adding five secondary turns will require
325 amps on the primary to maintain the 5 amp secondary output or
Deducting 5 secondary turns will only require 275 amps on the primary
to maintain the 5 amp secondary output or
The above ratio modifications are achieved in the following manner:
Primary Turn Ratio Modification
lp
ls
lp - Primary Current
ls - Secondary Current
Np - Number of Primary Turns
Ns - Number of Secondary Turns
A 300:5 Current Transformer.
300p
325p
325p
5s
5s
5s
Ns
Np
60s
1p
65s
1p
65s
1p

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