• Half Bridge Low Profile Medical Micro Load Cells Side Mounted CZL928F For Body Scale
  • Half Bridge Low Profile Medical Micro Load Cells Side Mounted CZL928F For Body Scale
  • Half Bridge Low Profile Medical Micro Load Cells Side Mounted CZL928F For Body Scale
  • Half Bridge Low Profile Medical Micro Load Cells Side Mounted CZL928F For Body Scale
Half Bridge Low Profile Medical Micro Load Cells Side Mounted CZL928F For Body Scale

Half Bridge Low Profile Medical Micro Load Cells Side Mounted CZL928F For Body Scale

تفاصيل المنتج:

مكان المنشأ: DONGGUAN,GUANGDONG,CHINA
اسم العلامة التجارية: UCHI
إصدار الشهادات: CE, ISO9001: 2008
رقم الموديل: CZL928F

شروط الدفع والشحن:

الحد الأدنى لكمية: 500pcs
الأسعار: Negotiable
تفاصيل التغليف: Bulk
وقت التسليم: 14 workdays
شروط الدفع: T/T, Western Union, MoneyGram
القدرة على العرض: 500000pcs
افضل سعر اتصل

معلومات تفصيلية

Product name: Medical Load Cells Rated Load: 50KG
Protection: IP65 Application: Body Scales
PN: CZL928F HS code: 9031809090
تسليط الضوء:

load cell miniature,small load cell

,

small load cell

منتوج وصف

 

Half Bridge Low Profile Medical Micro Load Cells Side Mounted CZL928F For Body Scale

 

Half Bridge Low Profile Medical Micro Load Cells Side Mounted CZL928F For Body Scale 0

Introduction

 

A load cell is a force sensing module - a carefully designed metal structure, with small elements called strain gauges mounted in precise locations on the structure. Load cells are designed to measure a specific force, and ignore other forces being applied. The electrical signal output by the load cell is very small and requires specialized amplification. Fortunately, the 1046 PhidgetBridge will perform all the amplification and measurement of the electrical output.
Load cells are designed to measure force in one direction. They will often measure force in other directions, but the sensor sensitivity will be different, since parts of the load cell operating under compression are now in tension, and vice versa.
This Single Point Load Cell is used in small jewelry scales and kitchen scales. It’s mounted by bolting down the end of the load cell where the wires are attached, and applying force on the other end in the direction of the arrow. Where the force is applied is not critical, as this load cell measures a shearing effect on the beam, not the bending of the beam. If you mount a small platform on the load cell, as would be done in a small scale, this load cell provides accurate readings regardless of the position of the load on the platform.

 

 

Product specifications

 

1. Rated Load 50 (Kg)
2. Rated Output 1.0±0.15 mV/V
3. Zero Balance +/-0.5mV/V
4. Input Resistance 1000±10Ω
5. Output Resistance 1000±10Ω
6. Excitation Voltage 3-10VDC
7. Nonlinearity 0.3%F.S
8. Hysteresis 0.3%F.S
9. Repeatability 0.2%F.S
10.Creep(30min) 0.1%F.S
11.Operating Temperature -10 To +60℃
12.Temperature Effect on Zero 0.3%F.S/10℃
13.Temperature Effect on Span 0.3%F.S/10℃
14.Insulation Resistance 2000MΩ(50VDC)
15. Four Angle Error +/-0.1%F.S
16.Ultimate Overload 150%FS

 

NumberType="1" TCSC="0" w:st="on">5mm 4-wire shielding cable)

 

 

Installation

 

Single-Point Load Cells

A single-point load cell. Applying force to one end creates stress in the bar, causing the strain gauge encased in the white plastic to flex.This Single Point Load Cell is used in small jewelry scales and kitchen scales. It’s mounted by bolting down the end of the load cell where the wires are attached, and applying force on the other end in the direction of the arrow. Where the force is applied is not critical, as this load cell measures a shearing effect on the beam, not the bending of the beam. If you mount a small platform on the load cell, as would be done in a small scale, this load cell provides accurate readings regardless of the position of the load on the platform.
Button Load Cells

A button load cell. Applying force to the bump in the middle of the cell causes a change in the output.This Button Load Cell is used in applications that require a thin form factor. The bottom of the load cell is bolted, and force applied to the button on the top. By loading only the button, which is slightly rounded, the load cell is less sensitive to errors resulting from the load not pushing down exactly straight on the load cell.

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