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A20220 Sensor Transmitter | Input strain gauges and load cells | For safety circuits up to SIL3

Description

A20220 Sensor Transmitter | Input strain gauges and load cells | For safety circuits up to SIL3

The transmitter for strain gauge full bridges in a 6 mm housing.

  • Universal usability
    for strain gauges, pressure and load cells, and other resistive measuring bridges
  • Intuitive configuration
    of basic parameters – easy, without tools, using 4 rotary and 8 DIP switches
  • Calibrated range selection
    without complicated trimming
  • Convenient adjustment
    Zero point and sensitivity are directly adjusted “at the push of a button“ using the teach-in function
  • Protective separation
    according to EN 61140 – protection of the maintenance staff and downstream devices against excessively high voltages up to 300 V AC/DC
  • High accuracy
    with innovative switching concept
  • Minimum space requirement
    in the enclosure – only 6 mm wide modular housing – more transmit-ters per meter of mounting rail
  • Low-cost assembly
    quick mounting, convenient, connection of power supply via DIN rail bus connectors
  • 5-year warranty

The Task
In many different industrial applications strain gauges are used to continuously measure mechanical quantities such as force/weight or deflection/torsion. In many cases they are used as a reference input for monitoring systems, safety shutdown systems, or for similar critical tasks. As a rule, high demands are placed on function, accuracy, flexibility and electrical safety. Strain gauges are highly sensitive resistors which react to mechanical stress with a slight change in resistance. These changes can be detected by a bridge circuit. The most common circuit design is the full bridge. In force transducers and load cells, the strain gauges are already mechanically applied in full bridge circuits. These sensors provide a raw signal which is prepared and standardized for further processing using a strain gauge transmitter. 

The Problem
Customary strain gauge sensors have individual characteristics, which requires tedious and timeconsuming adjustment of the respective strain gauge transmitter using potentiometers. Furthermore, strain gage transmitters up to now had a very wide modular housing and therefore occupied a large amount of space in the enclosure. For world-wide applications, several versions with different supply voltages were often used.

The Solution
The universal A20220 strain gauge transmitters provide connection possibilities for all standard strain gauge force transducers and strain gauge load cells in full bridge configuration. They can be flexibly adapted to the respective measuring task using DIP and rotary encoder switches or via a “teach-in function“. 3-port isolation with protective separation up to 300 V AC/DC according to EN 61140 ensures optimum protection of personnel and equipment as well as unaltered transmission of measuring signals. The A20220 offer maximum performance in the smallest of spaces. Adjusting the zero point and sensitivity to the individual strain gauge sensor is particularly convenient using the “teach-in func-tion“ – just at the push of a button at the device front. Sensors with known characteristics can be very easily calibrated using four rotary encoder switches and eight DIP switches. Special measuring tasks can be solved with SensoTrans devices which Knick configures according to individual specifications. Fixed-range devices without switch are used, for example, when manipulations or mix-ups must be precluded.

Knick Products Comply With UL - What Does That Mean?

There are different assessments and approaches to reach an adequate level of safety. Manufacturers are typically on the “safe” side, if they comply with recognized standards.

여러분의 의견을 기다리겠습니다!
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기술 세부 정보

승인: CSA, UL
전원 공급장치: 24 V DC
제품 라인: ProLine
차단 주파수: < 1 kHz
입력: 스트레인 게이지 / 로드 셀
출력: 0 … 10 V, 0 … 20 mA, 4 … 20 mA, ±10 V, ±20 mA
최소 작동 전압: 50 V, 300 V
최소 시험 전압: 2,5 kV, 510 V
오류 등급: 0.1 %, < 0.5 %
구조: 6 mm 모듈식 외함

다운로드

Manuals

[13390] User Manual (DE, EN, FR, ES)
ZU 0677 (Power terminal block)
Version 03
[264] User Manual (DE, EN, FR)
A 20220P0/ Strain Gauge Transmitter
Version 02
[10690] User Manual
A20220P0-0002 Strain Gauge Transmitter
Version 01

브로셔

[14160] 브로셔
제품 개요 인터페이스 기술

데이터 시트

[255] 데이터 시트
A20220 DMS 트랜스미터
제품 설명 | 명세서 | 제품 범위

인증서

[11418] Certificate of Compliance (UL)
No. 20181015-E220033 | 2018-OCTOBER-15
POWER CIRCUIT AND MOTOR-MOUNTED APPARATUS
P32*00P0/**, A202*0P0..., BL520
[11256] CB Test Certificate
No. DE 2-036775 | 2022-10-11
P32000, P32100, P32200, P32300, A20210, A20220, A20230
[13789] EU Declaration of Conformity (DE, EN, FR)
A20210P0, P32100P0, A20220P0, P32200P0, A20230P0, P32300P0, P32000P0
No. EU231123A | 2023-11-23

Software

[11876] Knick Produktmakros (.pdf)
ePLAN Electric P8
[12154] Software (.zip)
ePLAN P8 Produktmakros

서비스

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프로세스 또는 애플리케이션에서 사용

전류, 전압, 온도, 회전 속도, 변형 및 저항 신호의 측정과 변환을 위한 고전압 절연 증폭기 및 트랜스미터.
까다로운 분야에서의 사용을 위한 장기적으로 안정적인 고전압 절연 증폭기, 트랜스미터 및 신호 배율기

관련 블로그 게시물

Robust WA111 Retractable Fitting Made of Plastic for Highly Corrosive Operating Conditions

The plastic WA111 retractable fitting is a robust and cost-effective solution for corrosive processes and environments. It is equipped with a secure lock function and multiple nozzles for thorough sensor cleaning.

Successful joint project : Knick developed the special Ceramat WA 155 retractable fitting for optical probes from SOPAT

In cooperation with SOPAT, Knick developed a special Ceramat fitting for optical probes for automatic cleaning in fouling processes.

(현장에서) 휴대용으로 사용할 수 있는 고품질의 침적식 피팅

저희 Knick Elektronische Messgeräte GmbH & Co. KG는 pH, 전도도 및 용존 산소의 휴대용 측정에 사용할 수 있는 침적식 피팅 ARD 170을 출시합니다. 제품을 설계 시, 간단하고 유연한 취급이 가능하도록 심혈을 기울였습니다.

방폭 지역에서의 사용을 위한 전기 전도성이 있는 버전의

저희 Knick Elektronische Messgeräte GmbH & Co. KG는 전기 전도성이 있는 버전(EL)의 침적식 피팅 ARD 50 EL 및 ARD 75 EL의 출시를 통해 액상 분석용 피팅의 포트폴리오를 확장했습니다. 이 2개의 산업용 피팅은 모듈식 구조로 되어있어 응용 분야에 맞는 센서를 선택할 수 있는 폭이 넓습니다.

How to get the sensor into the process

Sensors as the direct interface to the process must be exactly matched to the chemistry of the measured medium and to the prevailing pressure and temperature conditions.