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LCL
Full Bridge Thin Beam Load Cells for Loads 1/4 to 40 LB
Modèles en stock
- Measures Force, or Displacement
- Thermally Matched, Fully Active, Full Bridge Gage for Optimum Temperature Tracking
LCL
Depuis
C$
213.98
Modèles en stock
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L'aperçu du produit
- Cable Length 9 in
- Electrical Connection Cable
- Hysteresis ± 0.50%
- Input Resistance 1200 ± 300 Ω
- Insulation Resistance 1000 Ω @ 50 Vdc
- Load Cell Type Bending Beam
- Operating Temperature, Max 93 °C
- Operating Temperature, Min -54 °C
- Output Resistance 1200 ± 300 Ω
- Process Temperature, Max 49 °C
- Process Temperature, Min -7 °C
- Repeatability ± 0.50%
- Safe Overload 150% FS
- Supply Power Note 5 Vdc, 12V max
- Supply Voltage 5 Vdc
- Thermal Span Effect 0.02%/°F
- Thermal Zero Effect 0.02% FS/°F
- Wire Gauge 30 AWG
- Wiring/Connector Table Red: (+) Excitation; Black: (-) Excitation; Green: (+) Signal; White: (-) Signal
- Zero/Balance Error ± 0.75 mv/V
When small load measurements are required, the OMEGA ® LCL Series thin beam load cells are exceptionally well suited. The LCL Series is designed to measure many different parameters found in medical instrumentation, home appliances, process control, robotics, automotive and many other high volume applications. A specially developed integrated strain gage includes all balancing, compensating and conductive elements and is laminated to the beam to provide excellent stability and reliability.
SPECIFICATIONS
Excitation: 5 Vdc, 12V max
Rated Output: 2 mV/V ± 20%
(to minimize ± 20% tolerance, end user must calibrate with a known weight)
Zero Balance: ± 0.75 mV/V
Combined Error: ± 0.50% FS
Operating Temperature: -54 to 93°C (-65 to 200°F)
Compensated Temperature: -7 to 49°C (20 to 120°F)
Temperature Effects:
Zero balance: 0.02% FS/°F
Output: 0.02%/°F
Resistance (Input and Output): 1200 ± 300 ?
Insulation Resistance: 1000 ? @ 50 Vdc
Seal: Urethane coated
Safe Overload: 150% FS
Full Scale Deflection: 0.25 to 1.27 mm (0.010 to 0.050")
Lead Wire: 9" shielded PVC 4-conductor 30 AWG
Material: >816 gf (2lb): 301 SS
?816 gf (2 lb) beryllium copper
SPECIFICATIONS
Excitation: 5 Vdc, 12V max
Rated Output: 2 mV/V ± 20%
(to minimize ± 20% tolerance, end user must calibrate with a known weight)
Zero Balance: ± 0.75 mV/V
Combined Error: ± 0.50% FS
Operating Temperature: -54 to 93°C (-65 to 200°F)
Compensated Temperature: -7 to 49°C (20 to 120°F)
Temperature Effects:
Zero balance: 0.02% FS/°F
Output: 0.02%/°F
Resistance (Input and Output): 1200 ± 300 ?
Insulation Resistance: 1000 ? @ 50 Vdc
Seal: Urethane coated
Safe Overload: 150% FS
Full Scale Deflection: 0.25 to 1.27 mm (0.010 to 0.050")
Lead Wire: 9" shielded PVC 4-conductor 30 AWG
Material: >816 gf (2lb): 301 SS
?816 gf (2 lb) beryllium copper
Afficher les notes et les avis
Can I connect this to an Arduino?
Thank you for your inquiry. The LCL load cell is a full strain gage bridge. If the nominal 5VDC excitation is applied to the load cell it will produce a 0 to 10mVDC over it's calibrated load range. You will need to verify if the Arduino will accept this low level signal.
Date published: 2020-11-10
What's the gage factor?
There is no gage factor associated with this load cell. We only supply the mV/V sensitivity (2 mV/V). FYI, The LCL-113G is current not available.
Date published: 2023-03-12
What is the wiring configuration for your LCL series?
WIRING CODE
RED = +EXC.
GREEN = +SIGNAL
BLACK = -EXC
WHITE = -SIGNAL
It is mentioned on attached datasheet as well.
Date published: 2024-08-22
Hi, is LCL load cell compatible with a HX711 signal conditioner?
Hello, we are not familiar with the HX711, please review their white paper here: https://learn.sparkfun.com/tutorials/load-cell-amplifier-hx711-breakout-hookup-guide/all
Date published: 2025-01-24