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Beam type load cell High precision load cell HLC-Hottinger Brüel & Kjær

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Accuracy class based on OIML R60

Allowable dynamic load Fsrel

Allowable temperature range Btu

Breaking load Ed

Bridge applied voltage range BU

Creep, over 30 minutes dcr

Critical lateral stress Elq

Deflection amount at maximum capacity load (approximate) Snom

Hysteresis error dhy

Input resistance RLC

Insulation resistance Ris

Limit load EL

Material

Maximum capacity Emax

Maximum load cell division number nLC

Minimum load output return MDLOR

Minimum verification scale Vmin

Nonlinearity dlin

Output resistance R0

Protection class (IP)

Reference bridge applied voltage Uref

Sensitivity CN

Sensitivity error

Storage temperature range Btl

Temperature coefficient for sensitivity TCs

Temperature compensation range BT

Temperature effect on zero point TC0

Weight (approximate) G

Y value Y

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  • Part Number

    HLC B1

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Beam type load cell High precision load cell HLC HLC B1's performance table

Image Price (excluding tax) Accuracy class based on OIML R60 Allowable dynamic load Fsrel Allowable temperature range Btu Breaking load Ed Bridge applied voltage range BU Creep, over 30 minutes dcr Critical lateral stress Elq Deflection amount at maximum capacity load (approximate) Snom Hysteresis error dhy Input resistance RLC Insulation resistance Ris Limit load EL Material Maximum capacity Emax Maximum load cell division number nLC Minimum load output return MDLOR Minimum verification scale Vmin Nonlinearity dlin Output resistance R0 Protection class (IP) Reference bridge applied voltage Uref Sensitivity CN Sensitivity error Storage temperature range Btl Temperature coefficient for sensitivity TCs Temperature compensation range BT Temperature effect on zero point TC0 Weight (approximate) G Y value Y
Beam type load cell High precision load cell HLC-Part Number-HLC B1 Available upon quote D1/C3/C4/C6 (accuracy class C4/C6 only for HLCB1/220kg, 550kg, 1.1t) 70 (% of Emax) (Frequency and amplitude conditions are according to DIN 50100) -30~+70℃ (For use in potentially explosive environments: please refer to the safety precautions in the explosion protection standard) 300 (% of Emax) 0.5~15V (explosion-proof version up to 12V), 5~10V (for use in potentially explosive environments: refer to the safety precautions in the explosion-proof standard) ±0.0500~±0.0166 (% of Cn) 100 (% of Emax) 0.5mm (1.76t=1.4mm) ±0.0500~±0.0166 (% of Cn) (Hysteresis error value is recommended value. These combined values ​​meet the cumulative error requirements specified by OIML R60) 350~480Ω >5GΩ 150 (% of Emax) Stainless steel (according to EN10088-1), Stainless steel (according to EN10088-1) / Sealing material: Viton🄬, Cable covering: PVC D1: 110kg~10t, C3: 110kg~4.4t, C4/C6: 220kg~1.1t 1,000/3,000/4,000/6,000 ±0.0500~±0.0166 (% of Cn) D1: 0.0285, 0.0100 (220kg, 1.76t, 2.2t, 4.4t), 0.0090 (110kg, 550kg, 1.1t) (% of Emax) ±0.0500~±0.0170 (% of Cn) (Nonlinearity values ​​are recommended values. These combined values ​​meet the cumulative error requirements specified in OIML R60) 350±2Ω, 350±0.12Ω IP68 (according to EN 60529 (IEC 529)) 5V (for use in potentially explosive environments: see safety instructions in explosion protection standards) 1.94mV/V (10t=2.00mV/V) D1: ±0.5, Others: ±0.1% -50~+85℃ ±0.0070~±0.0420 (% of Cn) (Temperature effect value on sensitivity is recommended value. These combined values ​​meet the cumulative error requirements specified in OIML R60) -10~+40℃ (Use in potentially explosive environments: see safety precautions in explosion protection standards) D1: ±0.0400, ±0.0140 (220kg, 1.76t, 2.2t, 4.4t), ±0.0126 (110kg, 550kg, 1.1t) (% of Cn/10K) 0.9kg (110kg~1.76t), 1.6kg (2.2t), 2.2kg (4.4t), 6.2kg (10t) D1: 3,500, 10,000 (220kg, 1.76t, 2.2t, 4.4t), 11,111 (110kg, 550kg, 1.1t)

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