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HLSR 10-P/SP33
Current Transducer, HLSR-P Series, Open Loop, 10A, -25A to 25A, 1 %, Voltage Output, 3.3 Vdc
⚠️ Reference pricing provided. In case of supply shortages, we will connect you with our trusted procurement partners to ensure your project's continuity.
- Manufacturer: LEM
- Product type: Current Sensors
- Sensor Output:Voltage; Supply Voltage DC Min:3.135V; Supply Voltage DC Max:3.465V; Current Measuring Range DC:-25A to 25A; Current Measuring Range AC:-25A to 25A; Response Time:2.5µ
- SVHC: No SVHC (25-Jun-2025)
- Accuracy: 1%
- Accuracy %: 1%
- Product Range: HLSR-P/SP33 Series
- Response Time: 2.5µs
- Primary Current: 10A
- Sensor Mounting: Through Hole
- Measured Current: AC / DC / Pulsed
- Sensor Output Type: Voltage
- Supply Voltage Range: 3.135V to 3.465V
- Secondary Signal Type: Voltage
- Supply Voltage DC Max: 3.465V
- Supply Voltage DC Min: 3.135V
- Current Sensor Technology: Open Loop Multi-Range
- Operating Temperature Max: 105°C
- Operating Temperature Min: -40°C
- Current Measuring Range AC: -25A to 25A
- Current Measuring Range DC: -25A to 25A
| Delivery and price | |
|---|---|
| Units per pack | 50 |
| Price | 5.3 € |
| Current stock | 50+ |
| Lead time | 30 days |
## **Current Transducer HLSR-P/SP33 series** _I_ **= 10 ... 50 A** P N **Ref: HLSR 10-P/SP33, HLSR 20-P/SP33, HLSR 32-P/SP33, HLSR 40-P/SP33, HLSR 50-P/SP33** **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 - ●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. ## **Special feature** - ●Single supply +3.3 V. ## **Standards** - ●EN 50178: 1997 ## **Advantages** - ●Extremely low profile: h = 12 mm - ●Low foot-print - ●Low offset drift - ●Over-drivable _U_ ref. - ●IEC 61010-1: 2010 - ●IEC 61326-1: 2012 - ●UL 508: 2010. ## **Application Domain** - ●Industrial. Page 1/12 LEM International SA Route du Nant-d'Avril, 152 1217 Meyrin www.lem.com N°97.J3.13.033.0, N°97.J3.17.033.0, N°97.J3.J3.033.0, N°97.J3.23.033.0, N°97.J3.25.033.0 9January2023/version 9 LEM reserves the right to carry out modifications on its transducers, in order to improve them. **HLSR-P/SP33 series** ## **Absolute maximum ratings** **==> picture [512 x 22] intentionally omitted <==** **----- Start of picture text -----**<br> Parameter Symbol Unit Value<br>**----- End of picture text -----**<br> |**Parameter**|**Symbol**|**Unit**|**Value**| |---|---|---|---| ||||| |Maximum supply voltage (not destructive)|_U_C|V|8| |Maximum supply voltage (not entering non standard<br>modes)|_U_C|V|6.5| |Maximum primary conductor temperature|_T_B|°C|120| |Electrostatic discharge voltage<br>(HBM - Human BodyModel)|_U_ESD HBM|kV|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** **==> picture [511 x 20] intentionally omitted <==** **----- Start of picture text -----**<br> Parameter Symbol Unit Value<br>**----- End of picture text -----**<br> |**Parameter**|**Symbol**|**Unit**|**Value**| |---|---|---|---| ||||| |Primary involved potential||V AC/DC|600| |Max surrounding air temperature|_T_A|°C|105| |Primary current|_I_P|A|According to series primary<br>current| |Secondary supply voltage|_U_C|V DC|5| |Output voltage|_U_out|V|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 2/12 LEM International SA Route du Nant-d'Avril, 152 1217 Meyrin www.lem.com 9January2023/version 9 LEM reserves the right to carry out modifications on its transducers, in order to improve them. **HLSR-P/SP33 series** ## **Insulation coordination** **==> picture [511 x 25] intentionally omitted <==** **----- Start of picture text -----**<br> Parameter Symbol Unit Value Comment<br>**----- End of picture text -----**<br> |**Parameter**|**Symbol**|**Unit**|**Value**|**Comment**| |---|---|---|---|---| |||||| |RMS voltage for AC insulation test 50/60 Hz/1 min|_U_d|kV|4.3|| |Impulse withstand voltage 1.2/50 µs|_U_Ni|kV|8|| |Clearance (pri. - sec.)|_d_CI|mm|> 8|Shortest distance through<br>air| |Creepage distance (pri. - sec.)|_d_Cp|mm|> 8|Shortest path along device<br>body| |Clearance (pri. - sec.)|-|mm|8|When mounted on PCB<br>with recommended layout| |Case material|-|-|V0|According to UL 94| |Comparative tracking index|_CTI_||600|| |Application example|-|V|600|Reinforced insulation, non<br>uniform feld according to<br>EN 50178, IEC 61010,<br>CAT III PD2| |Application example|-|V|1000|Simple insulation, non<br>uniform feld according to<br>EN 50178, IEC 61010,<br>CAT III PD2| |Application example|-|V|600|According to UL 508,<br>CAT III PD2| ## **Environmental and mechanical characteristics** **==> picture [511 x 22] intentionally omitted <==** **----- Start of picture text -----**<br> Parameter Symbol Unit Min Typ Max Comment<br>**----- End of picture text -----**<br> |**Parameter**|**Symbol**|**Unit**|**Min**|**Typ**|**Max**|**Comment**| |---|---|---|---|---|---|---| |||||||| |Ambient operating temperature|_T_A|°C|−40||105|| |Ambient storage temperature|_T_A st|°C|−40||105|| |Mass|_m_|g|||5|| Page 3/12 LEM International SA Route du Nant-d'Avril, 152 1217 Meyrin www.lem.com 9January2023/version 9 LEM reserves the right to carry out modifications on its transducers, in order to improve them. **HLSR-P/SP33 series** ## **Electrical data HLSR 10-P/SP33** At _T_ A = 25 °C, _U_ C = +3.3 V, _R_ L = 10 kΩ unless otherwise noted (see Min, Max, typ. definition paragraph in page 9). **==> picture [512 x 19] intentionally omitted <==** **----- Start of picture text -----**<br> Parameter Symbol Unit Min Typ Max Comment<br>**----- End of picture text -----**<br> |**Parameter**|**Symbol**|**Unit**|**Min**|**Typ**|**Max**|**Comment**| |---|---|---|---|---|---|---| |||||||| |Primary nominal RMS current|_I_P N|A||10||| |Primary current, measuring range|_I_P M|A|−25||25|For_U_C= 3.3 V ±5 %| |Number of primary turns|_N_P|-||1||| |Resistance of primary jumper @_T_A= 25 °C|_R_P|mΩ||0.21||| |Resistance of primary jumper @_T_A= 105 °C|_R_P|mΩ||0.29||_T_jumper = 120 °C| |Supply voltage|_U_C|V|3.135|3.3|3.465|| |Current consumption|_I_C|mA||19|25|| |Reference voltage (output)|_U_ref|V|1.63|1.65|1.67|Internal reference| |Reference voltage (input)|_U_ref|V|0.5||1.7|External reference| |Output voltage range @_I_P M|_U_out−_U_ref|V|−1.15||1.15|Over operating<br>temperature range| |_U_refoutput resistance|_R_ref|Ω|130|200|300|series| |_U_outoutput resistance|_R_out|Ω||2|5|series| |Load capacitance|_C_L|nF|0||6|| |Electrical ofset voltage @_I_P= 0|_U_O E|mV|−5||5|_U_out−_U_ref| |Electrical ofset current referred to primary|_I_O E|mA|−109||109|| |Temperature coefcient of_U_ref|_TCU_ref|ppm/K|−150||150|−40 °C … 105 °C| |Temperature coefcient of_U_O E|_TCU_O E|mV/K|−0.075||0.075|| |Temperature coefcient of_I_O E|_TCI_O E|mA/K|−1.63||1.63|| |Nominal sensitivity|_S_N|mV/A||46||460 mV @_I_P N| |Sensitivity error|_ε_S|%|−0.5||0.5|Factory adjustment| |Temperature coefcient of_S_|_TCS_|ppm/K|−200||200|| |Linearity error 0 …_I_P N|_ε_L|% of_I_P N|−0.5||0.5|| |Linearity error 0 …_I_P M|_ε_L|% of_I_P M|−0.8||0.8|| |Magnetic ofset current<br>(@ 10 ×_I_P N) referred to primary|_I_O M|A|−0.25||0.25|| |Delay time @ 10 % of the fnal output value_I_P Nstep|_t_D 10|µs|||2|@ 50 A_/_µs| |Delay time @ 90 % of the fnal output value_I_P Nstep|_t_D 90|µs|||2.5|@ 50 A_/_µs| |Frequency bandwidth (−3 dB)|_BW_|kHz||450||| |RMS noise voltage spectral density<br>100 Hz … 100 kHz|_u_no|µV/ Hz<br>~~√~~|||16|| |RMS noise voltage<br>DC … 10 kHz<br>DC … 100 kHz<br>DC … 1 MHz|_U_no|mVpp||9<br>22<br>40||| |Sum of sensitivity and linearity @_I_P N|_εS _L|% of_I_P N|−1||1|| |Sum of sensitivity and linearity @_I_P N@_T_A= +85 °C|_εS _L 85|% of_I_P N|−3.2||3.2|See formula note1)| |Sum of sensitivity and linearity @_I_P N@_T_A= +105 °C|_εS _L 105|% of_I_P N|−3.9||3.9|See formula note1)| Note:[1)] εS L ( _T_ A ) = εS L 25 + _TCS_ + _TCII_ P NO E × _T_ A − 25 Page 4/12 LEM International SA Route du Nant-d'Avril, 152 1217 Meyrin www.lem.com 9January2023/version 9 LEM reserves the right to carry out modifications on its transducers, in order to improve them. **HLSR-P/SP33 series** ## **Electrical data HLSR 20-P/SP33** At _T_ A = 25 °C, _U_ C = +3.3 V, _R_ L = 10 kΩ unless otherwise noted (see Min, Max, typ. definition paragraph in page 9). **==> picture [512 x 19] intentionally omitted <==** **----- Start of picture text -----**<br> Parameter Symbol Unit Min Typ Max Comment<br>**----- End of picture text -----**<br> |**Parameter**|**Symbol**|**Unit**|**Min**|**Typ**|**Max**|**Comment**| |---|---|---|---|---|---|---| |||||||| |Primary nominal RMS current|_I_P N|A||20||| |Primary current, measuring range|_I_P M|A|−50||50|For_U_C= 3.3 V ±5 %| |Number of primary turns|_N_P|-||1||| |Resistance of primary jumper @_T_A= 25 °C|_R_P|mΩ||0.21||| |Resistance of primary jumper @_T_A= 105 °C|_R_P|mΩ||0.29||_T_jumper = 120 °C| |Supply voltage|_U_C|V|3.135|3.3|3.465|| |Current consumption|_I_C|mA||19|25|| |Reference voltage (output)|_U_ref|V|1.63|1.65|1.67|Internal reference| |Reference voltage (input)|_U_ref|V|0.5||1.7|External reference| |Output voltage range @_I_P M|_U_out−_U_ref|V|−1.15||1.15|Over operating<br>temperature range| |_U_refoutput resistance|_R_ref|Ω|130|200|300|series| |_U_outoutput resistance|_R_out|Ω||2|5|series| |Load capacitance|_C_L|nF|0||6|| |Electrical ofset voltage @_I_P= 0|_U_O E|mV|−5||5|_U_out−_U_ref| |Electrical ofset current referred to primary|_I_O E|mA|−217||217|| |Temperature coefcient of_U_ref|_TCU_ref|ppm/K|−150||150|−40 °C … 105 °C| |Temperature coefcient of_U_O E|_TCU_O E|mV/K|−0.075||0.075|| |Temperature coefcient of_I_O E|_TCI_O E|mA/K|−3.26||3.26|| |Nominal sensitivity|_S_N|mV/A||23||460 mV @_I_P N| |Sensitivity error|_ε_S|%|−0.5||0.5|Factory adjustment| |Temperature coefcient of_S_|_TCS_|ppm/K|−200||200|| |Linearity error 0 …_I_P N|_ε_L|% of_I_P N|−0.5||0.5|| |Linearity error 0 …_I_P M|_ε_L|% of_I_P M|−0.8||0.8|| |Magnetic ofset current<br>(@ 10 ×_I_P N) referred to primary|_I_O M|A|−0.25||0.25|| |Delay time @ 10 % of the fnal output value_I_P Nstep|_t_D 10|µs|||2|@ 50 A_/_µs| |Delay time @ 90 % of the fnal output value_I_P Nstep|_t_D 90|µs|||2.5|@ 50 A_/_µs| |Frequency bandwidth (−3 dB)|_BW_|kHz||450||| |RMS noise voltage spectral density<br>100 Hz … 100 kHz|_u_no|µV/ Hz<br>~~√~~|||8|| |RMS noise voltage<br>DC … 10 kHz<br>DC … 100 kHz<br>DC … 1 MHz|_U_no|mVpp||6<br>13<br>23||| |Sum of sensitivity and linearity @_I_P N|_εS _L|% of_I_P N|−1||1|| |Sum of sensitivity and linearity @_I_P N@_T_A= +85 °C|_εS _L 85|% of_I_P N|−3.2||3.2|See formula note1)| |Sum of sensitivity and linearity @_I_P N@_T_A= +105 °C|_εS _L 105|% of_I_P N|−3.9||3.9|See formula note1)| Note:[1)] εS L ( _T_ A ) = εS L 25 + _TCS_ + _TCII_ P NO E × _T_ A − 25 Page 5/12 LEM International SA Route du Nant-d'Avril, 152 1217 Meyrin www.lem.com 9January2023/version 9 LEM reserves the right to carry out modifications on its transducers, in order to improve them. **HLSR-P/SP33 series** ## **Electrical data HLSR 32-P/SP33** At _T_ A = 25 °C, _U_ C = +3.3 V, _R_ L = 10 kΩ unless otherwise noted (see Min, Max, typ. definition paragraph in page 9). **==> picture [512 x 19] intentionally omitted <==** **----- Start of picture text -----**<br> Parameter Symbol Unit Min Typ Max Comment<br>**----- End of picture text -----**<br> |**Parameter**|**Symbol**|**Unit**|**Min**|**Typ**|**Max**|**Comment**| |---|---|---|---|---|---|---| |||||||| |Primary nominal RMS current|_I_P N|A||32||| |Primary current, measuring range|_I_P M|A|−80||80|For_U_C= 3.3 V ±5 %| |Number of primary turns|_N_P|-||1||| |Resistance of primary jumper @_T_A= 25 °C|_R_P|mΩ||0.21||| |Resistance of primary jumper @_T_A= 105 °C|_R_P|mΩ||0.29||_T_jumper = 120 °C| |Supply voltage|_U_C|V|3.135|3.3|3.465|| |Current consumption|_I_C|mA||19|25|| |Reference voltage (output)|_U_ref|V|1.63|1.65|1.67|Internal reference| |Reference voltage (input)|_U_ref|V|0.5||1.7|External reference| |Output voltage range @_I_P M|_U_out−_U_ref|V|−1.15||1.15|Over operating<br>temperature range| |_U_refoutput resistance|_R_ref|Ω|130|200|300|series| |_U_outoutput resistance|_R_out|Ω||2|5|series| |Load capacitance|_C_L|nF|0||6|| |Electrical ofset voltage @_I_P= 0|_U_O E|mV|−5||5|_U_out−_U_ref| |Electrical ofset current referred to primary|_I_O E|mA|−348||348|| |Temperature coefcient of_U_ref|_TCU_ref|ppm/K|−150||150|−40 °C … 105 °C| |Temperature coefcient of_U_O E|_TCU_O E|mV/K|−0.075||0.075|| |Temperature coefcient of_I_O E|_TCI_O E|mA/K|−5.22||5.22|| |Nominal sensitivity|_S_N|mV/A||14.375||460 mV @_I_P N| |Sensitivity error|_ε_S|%|−0.5||0.5|Factory adjustment| |Temperature coefcient of_S_|_TCS_|ppm/K|−200||200|| |Linearity error 0 …_I_P N|_ε_L|% of_I_P N|−0.5||0.5|| |Linearity error 0 …_I_P M|_ε_L|% of_I_P M|−0.8||0.8|| |Magnetic ofset current<br>(@ 10 ×_I_P N) referred to primary|_I_O M|A|−0.25||0.25|| |Delay time @ 10 % of the fnal output value_I_P Nstep|_t_D 10|µs|||2|@ 50 A_/_µs| |Delay time @ 90 % of the fnal output value_I_P Nstep|_t_D 90|µs|||2.5|@ 50 A_/_µs| |Frequency bandwidth (−3 dB)|_BW_|kHz||450||| |RMS noise voltage spectral density<br>100 Hz … 100 kHz|_u_no|µV/ Hz<br>~~√~~|||5|| |RMS noise voltage<br>DC … 10 kHz<br>DC … 100 kHz<br>DC … 1 MHz|_U_no|mVpp||4<br>10<br>16||| |Sum of sensitivity and linearity @_I_P N|_εS _L|% of_I_P N|−1||1|| |Sum of sensitivity and linearity @_I_P N@_T_A= +85 °C|_εS _L 85|% of_I_P N|−3.2||3.2|See formula note1)| |Sum of sensitivity and linearity @_I_P N@_T_A= +105 °C|_εS _L 105|% of_I_P N|−3.9||3.9|See formula note1)| Note:[1)] εS L ( _T_ A ) = εS L 25 + _TCS_ + _TCII_ P NO E × _T_ A − 25 Page 6/12 LEM International SA Route du Nant-d'Avril, 152 1217 Meyrin www.lem.com 9January2023/version 9 LEM reserves the right to carry out modifications on its transducers, in order to improve them. **HLSR-P/SP33 series** ## **Electrical data HLSR 40-P/SP33** At _T_ A = 25 °C, _U_ C = +3.3 V, _R_ L = 10 kΩ unless otherwise noted (see Min, Max, typ. definition paragraph in page 9). **==> picture [512 x 19] intentionally omitted <==** **----- Start of picture text -----**<br> Parameter Symbol Unit Min Typ Max Comment<br>**----- End of picture text -----**<br> |**Parameter**|**Symbol**|**Unit**|**Min**|**Typ**|**Max**|**Comment**| |---|---|---|---|---|---|---| |||||||| |Primary nominal RMS current|_I_P N|A||40||| |Primary current, measuring range|_I_P M|A|−100||100|For_U_C= 3.3 V ±5 %| |Number of primary turns|_N_P|-||1||| |Resistance of primary jumper @_T_A= 25 °C|_R_P|mΩ||0.21||| |Resistance of primary jumper @_T_A= 105 °C|_R_P|mΩ||0.29||_T_jumper = 120 °C| |Supply voltage|_U_C|V|3.135|3.3|3.465|| |Current consumption|_I_C|mA||19|25|| |Reference voltage (output)|_U_ref|V|1.63|1.65|1.67|Internal reference| |Reference voltage (input)|_U_ref|V|0.5||1.7|External reference| |Output voltage range @_I_P M|_U_out−_U_ref|V|−1.15||1.15|Over operating<br>temperature range| |_U_refoutput resistance|_R_ref|Ω|130|200|300|series| |_U_outoutput resistance|_R_out|Ω||2|5|series| |Load capacitance|_C_L|nF|0||6|| |Electrical ofset voltage @_I_P= 0|_U_O E|mV|−5||5|_U_out−_U_ref| |Electrical ofset current referred to primary|_I_O E|mA|−435||435|| |Temperature coefcient of_U_ref|_TCU_ref|ppm/K|−150||150|−40 °C … 105 °C| |Temperature coefcient of_U_O E|_TCU_O E|mV/K|−0.075||0.075|| |Temperature coefcient of_I_O E|_TCI_O E|mA/K|−6.52||6.52|| |Nominal sensitivity|_S_N|mV/A||11.5||460 mV @_I_P N| |Sensitivity error|_ε_S|%|−0.5||0.5|Factory adjustment| |Temperature coefcient of_S_|_TCS_|ppm/K|−200||200|| |Linearity error 0 …_I_P N|_ε_L|% of_I_P N|−0.5||0.5|| |Linearity error 0 …_I_P M|_ε_L|% of_I_P M|−0.8||0.8|| |Magnetic ofset current<br>(@ 10 ×_I_P N) referred to primary|_I_O M|A|−0.25||0.25|| |Delay time @ 10 % of the fnal output value_I_P Nstep|_t_D 10|µs|||2|@ 50 A_/_µs| |Delay time @ 90 % of the fnal output value_I_P Nstep|_t_D 90|µs|||2.5|@ 50 A_/_µs| |Frequency bandwidth (−3 dB)|_BW_|kHz||450||| |RMS noise voltage spectral density<br>100 Hz … 100 kHz|_u_no|µV/ Hz<br>~~√~~|||4.5|| |RMS noise voltage<br>DC … 10 kHz<br>DC … 100 kHz<br>DC … 1 MHz|_U_no|mVpp||4<br>9<br>14||| |Sum of sensitivity and linearity @_I_P N|_εS _L|% of_I_P N|−1||1|| |Sum of sensitivity and linearity @_I_P N@_T_A= +85 °C|_εS _L 85|% of_I_P N|−3.2||3.2|See formula note1)| |Sum of sensitivity and linearity @_I_P N@_T_A= +105 °C|_εS _L 105|% of_I_P N|−3.9||3.9|See formula note1)| Note:[1)] εS L ( _T_ A ) = εS L 25 + _TCS_ + _TCII_ P NO E × _T_ A − 25 Page 7/12 LEM International SA Route du Nant-d'Avril, 152 1217 Meyrin www.lem.com 9January2023/version 9 LEM reserves the right to carry out modifications on its transducers, in order to improve them. **HLSR-P/SP33 series** ## **Electrical data HLSR 50-P/SP33** At _T_ A = 25 °C, _U_ C = +3.3 V, _R_ L = 10 kΩ unless otherwise noted (see Min, Max, typ. definition paragraph in page 9). **==> picture [511 x 19] intentionally omitted <==** **----- Start of picture text -----**<br> Parameter Symbol Unit Min Typ Max Comment<br>**----- End of picture text -----**<br> |**Parameter**|**Symbol**|**Unit**|**Min**|**Typ**|**Max**|**Comment**| |---|---|---|---|---|---|---| |||||||| |Primary nominal RMS current|_I_P N|A||50||| |Primary current, measuring range|_I_P M|A|−125||125|For_U_C= 3.3 V ±5 %| |Number of primary turns|_N_P|-||1||| |Resistance of primary jumper @_T_A= 25 °C|_R_P|mΩ||0.21||| |Resistance of primary jumper @_T_A= 105 °C|_R_P|mΩ||0.29||_T_jumper = 120 °C| |Supply voltage|_U_C|V|3.135|3.3|3.465|| |Current consumption|_I_C|mA||19|25|| |Reference voltage (output)|_U_ref|V|1.63|1.65|1.67|Internal reference| |Reference voltage (input)|_U_ref|V|0.5||1.7|External reference| |Output voltage range @_I_P M|_U_out−_U_ref|V|−1.15||1.15|Over operating<br>temperature range| |_U_refoutput resistance|_R_ref|Ω|130|200|300|series| |_U_outoutput resistance|_R_out|Ω||2|5|series| |Load capacitance|_C_L|nF|0||6|| |Electrical ofset voltage @_I_P= 0|_U_O E|mV|−5||5|_U_out−_U_ref| |Electrical ofset current referred to primary|_I_O E|mA|−543||543|| |Temperature coefcient of_U_ref|_TCU_ref|ppm/K|−150||150|−40 °C … 105 °C| |Temperature coefcient of_U_O E|_TCU_O E|mV/K|−0.075||0.075|| |Temperature coefcient of_I_O E|_TCI_O E|mA/K|−8.15||8.15|| |Nominal sensitivity|_S_N|mV/A||9.2||460 mV @_I_P N| |Sensitivity error|_ε_G|%|−0.5||0.5|Factory adjustment| |Temperature coefcient of_S_|_TCS_|ppm/K|−200||200|| |Linearity error 0 …_I_P N|_ε_L|% of_I_P N|−0.5||0.5|| |Linearity error 0 …_I_P M|_ε_L|% of_I_P M|−0.8||0.8|| |Magnetic ofset current<br>(@ 10 ×_I_P N) referred to primary|_I_O M|A|−0.25||0.25|| |Delay time @ 10 % of the fnal output value_I_P Nstep|_t_D 10|µs|||2|@ 50 A_/_µs| |Delay time @ 90 % of the fnal output value_I_P Nstep|_t_D 90|µs|||2.5|@ 50 A_/_µs| |Frequency bandwidth (−3 dB)|_BW_|kHz||450||| |RMS noise voltage spectral density<br>100 Hz … 100 kHz|_u_no|µV/ Hz<br>~~√~~|||4|| |RMS noise voltage<br>DC … 10 kHz<br>DC … 100 kHz<br>DC … 1 MHz|_U_no|mVpp||3.3<br>7.3<br>12||| |Sum of sensitivity and linearity @_I_P N|_εS _L|% of_I_P N|−1||1|| |Sum of sensitivity and linearity @_I_P N@_T_A= +85 °C|_εS _L 85|% of_I_P N|−3.2||3.2|See formula note1)| |Sum of sensitivity and linearity @_I_P N@_T_A= +105 °C|_εS _L 105|% of_I_P N|−3.9||3.9|See formula note1)| Note:[1)] εS L ( _T_ A ) = εS L 25 + _TCS_ + _TCII_ P NO E × _T_ A − 25 Page 8/12 LEM International SA Route du Nant-d'Avril, 152 1217 Meyrin www.lem.com 9January2023/version 9 LEM reserves the right to carry out modifications on its transducers, in order to improve them. **HLSR-P/SP33 series** ## **Maximum continuous DC current** **==> picture [399 x 232] intentionally omitted <==** **----- Start of picture text -----**<br> 60<br>40<br>HLSR 10-P/SP33<br>HLSR 20-P/SP33<br>20 HLSR 32-P/SP33<br>HLSR 40-P/SP33<br>HLSR 50-P/SP33<br>0<br>-40 -20 0 20 40 60 80 100 120 140<br>T A (°C)<br>(A)<br>P<br>I<br>**----- End of picture text -----**<br> Important notice: whatever the usage and/or application, the transducer jumper temperature shall not go above the maximum ratings of 120 °C as stated in page 2 of this datasheet. ## **Definition of typical, minimum and maximum values** Minimum and maximum values for specified limiting and safety conditions have to be understood as such as well as values shown in “typical” graphs. On the other hand, measured values are part of a statistical distribution that can be specified by an interval with upper and lower limits and a probability for measured values to lie within this interval. Unless otherwise stated (e.g. “100 % tested”), the LEM definition for such intervals designated with “min” and “max” is that the probability for values of samples to lie in this interval is 99.73 %. For a normal (Gaussian) distribution, this corresponds to an interval between −3 sigma and +3 sigma. If “typical” values are not obviously mean or average values, those values are defined to delimit intervals with a probability of 68.27 %, corresponding to an interval between −sigma and +sigma for a normal distribution. Typical, minimum and maximum values are determined during the initial characterization of the product. Page 9/12 LEM International SA Route du Nant-d'Avril, 152 1217 Meyrin www.lem.com 9January2023/version 9 LEM reserves the right to carry out modifications on its transducers, in order to improve them. **HLSR-P/SP33 series** ## **Measuring range versus external reference voltage** **==> picture [228 x 122] intentionally omitted <==** **----- Start of picture text -----**<br> HLSR 10-xx/SP33<br>75<br>50<br>25 UUU ccc = 3.3 V = 3.14 V = 2.97 V<br>0<br>-25<br>-50<br>-75<br>0.5 0.7 0.9 1.1 1.3 1.5 1.7<br>U ref (V)<br> (A)<br>I P<br>**----- End of picture text -----**<br> **==> picture [228 x 122] intentionally omitted <==** **----- Start of picture text -----**<br> HLSR 32-xx/SP33<br>150<br>1251007550 UUU ccc = 3.3 V = 2.97 V= 3.14 V<br>25<br>0<br>-25<br>-50<br>-75<br>-100<br>-125<br>-150<br>0.5 0.7 0.9 1.1 1.3 1.5 1.7<br>U ref (V)<br> (A)<br>P<br>I<br>**----- End of picture text -----**<br> **==> picture [229 x 122] intentionally omitted <==** **----- Start of picture text -----**<br> HLSR 20-xx/SP33<br>150<br>125<br>100<br>75 U c = 3.3 V<br>5025 UU cc = 3.14 V= 2.97 V<br>0<br>-25<br>-50<br>-75<br>-100<br>-125<br>-150<br>0.5 0.7 0.9 1.1 1.3 1.5 1.7<br>U ref (V)<br> (A)<br>I P<br>**----- End of picture text -----**<br> **==> picture [229 x 122] intentionally omitted <==** **----- Start of picture text -----**<br> HLSR 40-xx/SP33<br>150<br>125 [U] c [= 3.3 V]<br>10075 UU cc = 3.14 V = 2.97 V<br>50<br>25<br>0<br>-25<br>-50<br>-75<br>-100<br>-125<br>-150<br>0.5 0.7 0.9 1.1 1.3 1.5 1.7<br>U ref (V)<br> (A)<br>P<br>I<br>**----- End of picture text -----**<br> **==> picture [230 x 124] intentionally omitted <==** **----- Start of picture text -----**<br> HLSR 50-xx/SP33<br>150<br>125 U c = 3.3 V<br>10075 UU cc = 3.14 V = 2.97 V<br>50<br>25<br>0<br>-25<br>-50<br>-75<br>-100<br>-125<br>-150<br>0.5 0.7 0.9 1.1 1.3 1.5 1.7<br>U ref (V)<br> (A)<br>P<br>I<br>**----- End of picture text -----**<br> Page 10/12 LEM International SA Route du Nant-d'Avril, 152 1217 Meyrin www.lem.com 9January2023/version 9 LEM reserves the right to carry out modifications on its transducers, in order to improve them. **HLSR-P/SP33 series** ## **PCB footprint** **==> picture [42 x 51] intentionally omitted <==** **==> picture [158 x 26] intentionally omitted <==** **----- Start of picture text -----**<br> d d<br>Cl Cp<br>**----- End of picture text -----**<br> ## **Assembly on PCB** - ●Recommended PCB hole diameter 1.6 mm for primary pins 1 mm for secondary pins - ●Maximum PCB thickness 2.4 mm ●Wave soldering profile maximum 260 °C for 10 s No clean process only. ## **Safety** This transducer must be used in limited-energy secondary circuits according to IEC 61010-1. This transducer must be used in electric/electronic equipment with respect to applicable standards and safety requirements in accordance with the manufacturer’s operating instructions. Caution, risk of electrical shock When operating the transducer, certain parts of the module can carry hazardous voltage (eg. primary busbar, power supply). Ignoring this warning can lead to injury and/or cause serious damage.This transducer is a build-in device, whose conducting parts must be inaccessible after installation.A protective housing or additional shield could be used.Main supply must be able to be disconnected. Page 11/12 LEM International SA Route du Nant-d'Avril, 152 1217 Meyrin www.lem.com 9January2023/version 9 LEM reserves the right to carry out modifications on its transducers, in order to improve them. **HLSR-P/SP33 series** **Dimensions** (in mm. General linear tolerance ±0.2 mm) **==> picture [512 x 487] intentionally omitted <==** **----- Start of picture text -----**<br> Connection<br>U C<br>U out<br>U ref<br>I P<br>**----- End of picture text -----**<br> ## **Remarks** - _U_ out is positive with respect to _U_ ref when positive _I_ P flows in direction of the arrow shown on the drawing above - ●Installation of the transducer must be done unless otherwise specified on the datasheet, according to LEM Transducer Generic Mounting Rules. Please refer to LEM document N°ANE120504 available on our Web site: https://www.lem.com/en/fle/3137/download/ **.** Page 12/12 LEM International SA Route du Nant-d'Avril, 152 1217 Meyrin www.lem.com 9January2023/version 9 LEM reserves the right to carry out modifications on its transducers, in order to improve them.
Updated at June 10, 2026
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