Current Transducer HLSR-P series
I
P N
= 10 ... 50 A
Ref: HLSR 10-P, HLSR 16-P, HLSR 20-P, HLSR 32-P, HLSR 40-P, HLSR 50-P
For the electronic measurement of current: DC, AC, pulsed..., with galvanic separation between
the primary and the secondary circuit.
Features
●
Open loop multi-range current transducer
●
Voltage output
●
Single supply +5 V
● Galvanic separation between primary and secondary
● Low power consumption
●
Compact design for through-hole PCB mounting
● Factory calibrated
● High bandwidth, very low loss magnetic core.
Applications
● AC variable speed and servo motor drives
●
Static converters for DC motor drives
●
Battery supplied applications
● Uninterruptible Power Supplies (UPS)
● Switched Mode Power Supplies (SMPS)
● Power supplies for welding applications
● Combiner box
● MPPT.
Advantages
● Extremely low profile: h = 12 mm
● Low foot-print
● Low offset drift
● Over-drivable
V
ref
.
Standards
●
EN 50178: 1997
●
IEC 61010-1: 2010
●
IEC 61326-1: 2012
● UL 508: 2010.
Application Domain
● Industrial.
N°97.J3.13.000.0, N°97.J3.J5.000.0, N°97.J3.17.000.0, N°97.J3.J3.000.0, N°97.J3.23.000.0, N°97.J3.25.000.0
Page 1/13
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LEM reserves the right to carry out modifications on its transducers, in order to improve them, without prior notice
www.lem.com
HLSR-P series
Absolute maximum ratings
Parameter
Supply voltage (not destructive)
Supply voltage (not entering non standard modes)
Primary conductor temperature
Electrostatic discharge voltage (HBM - Human Body Model)
Symbol
U
C
U
C
T
B
U
ESD HBM
Unit
V
V
°C
kV
Value
8
6.5
120
2
Stresses above these ratings may cause permanent damage. Exposure to absolute maximum ratings for extended periods may
degrade reliability.
UL 508: Ratings and assumptions of certification
File # E189713 Volume: 2 Section: 5
Standards
● CSA C22.2 NO. 14-10 INDUSTRIAL CONTROL EQUIPMENT - Edition 11 - Revision Date 2011/08/01
● UL 508 STANDARD FOR INDUSTRIAL CONTROL EQUIPMENT - Edition 17 - Revision Date 2010/04/15
Ratings
Parameter
Primary involved potential
Ambient operating temperature
Primary current
Secondary supply voltage
Output voltage
T
A
I
P
U
C
V
out
Symbol
Unit
V AC/DC
°C
A
V DC
V
Value
600
105
According to series primary
current
5
0 to 5
Conditions of acceptability
1 - These devices have been evaluated for overvoltage category III and for use in pollution degree 2 environment.
2 - A suitable enclosure shall be provided in the end-use application.
3 - The terminals have not been evaluated for field wiring.
4 - These devices are intended to be mounted on a printed wiring board of end use equipment. The suitability of the
connections (including spacings) shall be determined in the end-use application.
5 - Primary terminals shall not be straightened since assembly of housing case depends upon bending of the terminals.
6 - Any surface of polymeric housing have not been evaluated as insulating barrier.
7 -
Low voltage control circuit shall be supplied by an isolating source (such as a transformer, optical isolator,
limiting impedance or electro-mechanical relay).
Marking
Only those products bearing the UR Mark should be considered to be Listed or Recognized and covered under UL’s Follow-Up
Service. Always look for the Mark on the product.
Page 2/13
10April2018/Version 12
LEM reserves the right to carry out modifications on its transducers, in order to improve them, without prior notice
www.lem.com
HLSR-P series
Insulation coordination
Parameter
RMS voltage for AC insulation test, 50/60 Hz, 1 min
Impulse withstand voltage 1.2/50 μs
Clearance (pri. - sec.)
Creepage distance (pri. - sec.)
Clearance (pri. - sec.)
Case material
Comparative tracking index
Application example
Symbol
U
d
Û
W
d
CI
d
Cp
d
CI
-
CTI
-
Unit
kV
kV
mm
mm
mm
-
-
V
Value
4.3
8
>8
>8
8
V0
600
600
Comment
Shortest distance through air
Shortest path along device body
When mounted on PCB with
recommended layout
According to UL 94
Reinforced insulation,
CAT III, PD 2,
non uniform field according to
EN 50178, IEC 61010
Basic insulation,
CAT III, PD 2,
non uniform field according to
EN 50178, IEC 61010
Basic insulation,
CAT III, PD 2,
according to IEC 62109-1
Altitude ≤ 3000 m
CAT III, PD 2,
according to UL 508
Application example
-
V
1000
Application example
-
V
1500
Application example
-
V
600
Environmental and mechanical characteristics
Parameter
Ambient operating temperature
Ambient storage temperature
Mass
Symbol
T
A
T
S
m
Unit
°C
°C
g
Min
−40
−40
Typ
Max
105
105
5
Comment
Page 3/13
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LEM reserves the right to carry out modifications on its transducers, in order to improve them, without prior notice
www.lem.com
HLSR-P series
Electrical data HLSR 10-P
At
T
A
= 25 °C,
U
C
= +5,
R
L
= 10 kΩ unless otherwise noted (see Min, Max, typ. definition paragraph in page 10).
Parameter
Primary nominal RMS current
Primary current, measuring range
Number of primary turns
Resistance of primary jumper @
T
A
= 25 °C
Resistance of primary jumper @
T
A
= 105 °C
Supply voltage
1)
Current consumption
Reference voltage (output)
Reference voltage (input)
Output voltage range @
I
P M
V
ref
output resistance
V
out
output resistance
Capacitive loading
Electrical offset voltage @
I
P
= 0
Electrical offset current, referred to primary
Temperature coefficient of
V
ref
Temperature coefficient of
V
O E
Temperature coefficient of
I
O E
Theoretical sensitivity
Sensitivity error
Temperature coefficient of
G
Linearity error 0 ...
I
P N
Linearity error 0 ...
I
P M
Magnetic offset current (@ 10 ×
I
P N
)
referred to primary
Output RMS noise voltage spectral density
100 Hz… 100 kHz
Output RMS noise voltage
DC … 10 kHz
DC … 100 kHz
DC … 1 MHz
Reaction time @ 10 % of
I
P N
Step response time to 90 % of
I
P N
Frequency bandwidth (−3 dB)
Accuracy @
I
P N
Accuracy @
I
P N
@
T
A
= +85 °C
Accuracy @
I
P N
@
T
A
= +105 °C
Notes:
1)
Symbol
I
P N
I
P M
N
P
R
P
R
P
U
C
I
C
V
ref
V
ref
V
out
−
V
ref
R
ref
R
out
C
L
V
O E
I
O E
TCV
ref
TCV
O E
TCI
O E
G
th
ε
G
TCG
ε
L
ε
L
I
O M
e
no
Unit
A
A
mΩ
mΩ
V
mA
V
V
V
Ω
Ω
nF
mV
mA
ppm/K
mV/K
mA/K
mV/A
%
ppm/K
% of
I
P N
% of
I
P M
A
µV/
√
Hz
Min
−25
Typ
10
Max
25
Comment
For
U
C
>
4.6 V
1
0.21
0.29
4.5
2.48
0.5
−2
130
0
−5
−62.5
−170
−0.075
−0.94
80
−0.5
−200
−0.5
−0.5
−0.25
0.5
200
0.5
0.5
0.25
28
17.5
46.1
65.7
2
2.5
400
−1
−2.9
−3.4
1
2.9
3.4
See formula note
2)
See formula note
2)
@ 50 A/µs
@ 50 A/µs
200
2
5
19
2.5
5.5
25
2.52
2.65
2
300
5
6
5
62.5
170
0.075
0.94
−40 °C … 105 °C
−40 °C … 105 °C
−40 °C … 105 °C
800 mV @
I
P N
Factory adjustment
−40 °C … 105 °C
V
out
−
V
ref
@
V
ref
= 2.5 V
Internal reference
External reference
Over operating
temperature range
series
series
T jumper = 120
°C
V
no
t
ra
t
r
BW
X
X
X
mVpp
µs
µs
kHz
% of
I
P N
% of
I
P N
% of
I
P N
3.3 V SP version available
Accuracy @
T
A
(% of
I
P N
)
=
X
+ (
2)
TCI
O E
TCG
× (T
A
– 25) +
× 100 ×
(
T
A
– 25)).
1000
×
I
P N
10000
Page 4/13
10April2018/Version 12
LEM reserves the right to carry out modifications on its transducers, in order to improve them, without prior notice
www.lem.com
HLSR-P series
Electrical data HLSR 16-P
At
T
A
= 25 °C,
U
C
= +5,
R
L
= 10 kΩ unless otherwise noted (see Min, Max, typ. definition paragraph in page 10).
Parameter
Primary nominal RMS current
Primary current, measuring range
Number of primary turns
Resistance of primary jumper @
T
A
= 25 °C
Resistance of primary jumper @
T
A
= 105 °C
Supply voltage
1)
Current consumption
Reference voltage (output)
Reference voltage (input)
Output voltage range @
I
P M
V
ref
output resistance
V
out
output resistance
Capacitive loading
Electrical offset voltage @
I
P
= 0
Electrical offset current, referred to primary
Temperature coefficient of
V
ref
Temperature coefficient of
V
O E
Temperature coefficient of
I
O E
Theoretical sensitivity
Sensitivity error
Temperature coefficient of
G
Linearity error 0 ...
I
P N
Linearity error 0 ...
I
P M
Magnetic offset current (@ 10 ×
I
P N
)
referred to primary
Output RMS noise voltage spectral density
100 Hz … 100 kHz
Output RMS noise voltage
DC … 10 kHz
DC … 100 kHz
DC … 1 MHz
Reaction time @ 10 % of
I
P N
Step response time to 90 % of
I
P N
Frequency bandwidth (−3 dB)
Accuracy @
I
P N
Accuracy @
I
P N
@
T
A
= +85 °C
Accuracy @
I
P N
@
T
A
= +105 °C
Notes:
1)
Symbol
I
P N
I
P M
N
P
R
P
R
P
U
C
I
C
V
ref
V
ref
V
out
−
V
ref
R
ref
R
out
C
L
V
O E
I
O E
TCV
ref
TCV
O E
TCI
O E
G
th
ε
G
TCG
ε
L
ε
L
I
O M
e
no
Unit
A
A
mΩ
mΩ
V
mA
V
V
V
Ω
Ω
nF
mV
mA
ppm/K
mV/K
mA/K
mV/A
%
ppm/K
% of
I
P N
% of
I
P M
A
µV/
√
Hz
Min
−40
Typ
16
Max
40
Comment
For
U
C
>
4.6 V
1
0.21
0.29
4.5
2.48
0.5
−2
130
0
−5
−100
−170
−0.075
−1.5
50
−0.5
−200
−0.5
−0.5
−0.25
0.5
200
0.5
0.5
0.25
28
11.3
28.6
41.2
2
2.5
400
−1
−2.9
−3.4
1
2.9
3.4
See formula note
2)
See formula note
2)
@ 50 A/µs
@ 50 A/µs
200
2
5
19
2.5
5.5
25
2.52
2.65
2
300
5
6
5
100
170
0.075
1.5
−40 °C … 105 °C
−40 °C … 105 °C
−40 °C … 105 °C
800 mV @
I
P N
Factory adjustment
−40 °C … 105 °C
V
out
−
V
ref
@
V
ref
= 2.5 V
Internal reference
External reference
Over operating
temperature range
series
series
T jumper = 120
°C
V
no
t
ra
t
r
BW
X
X
X
mVpp
µs
µs
kHz
% of
I
P N
% of
I
P N
% of
I
P N
3.3 V SP version available
Accuracy @
T
A
(% of
I
P N
)
=
X
+ (
2)
TCI
O E
TCG
× (T
A
– 25) +
× 100 ×
(
T
A
– 25)).
1000
×
I
P N
10000
Page 5/13
10April2018/Version 12
LEM reserves the right to carry out modifications on its transducers, in order to improve them, without prior notice
www.lem.com