Vantaggi derivanti dall’utilizzo di un sensore di conducibilità con uscita da 4-20 mA

I sensori di conducibilità sono strumenti essenziali in vari settori per misurare la capacità di una soluzione di condurre elettricità. Questi sensori vengono utilizzati in applicazioni quali il trattamento delle acque, la lavorazione chimica e la produzione di alimenti e bevande. Una delle caratteristiche principali dei sensori di conducibilità è la loro capacità di fornire misurazioni accurate e affidabili in tempo reale.

Un tipo di sensore di conducibilità comunemente utilizzato in ambienti industriali è il sensore con uscita da 4-20 mA. Questo tipo di sensore è progettato per fornire un segnale in uscita continuo che può essere facilmente integrato in un sistema di controllo o di acquisizione dati. Il segnale di uscita da 4-20 mA è ampiamente utilizzato nell’automazione industriale perché è immune al rumore elettrico e può essere trasmesso su lunghe distanze senza degradazione del segnale.

Uno dei principali vantaggi derivanti dall’utilizzo di un sensore di conducibilità con un’uscita da 4-20 mA è la sua elevato livello di precisione. Il segnale 4-20 mA è un segnale standardizzato facile da calibrare e fornisce una relazione lineare tra la variabile misurata e il segnale di uscita. Ciò significa che il sensore può fornire misurazioni precise dei livelli di conduttività in una soluzione, consentendo un migliore controllo e ottimizzazione dei processi industriali.

Un altro vantaggio derivante dall’utilizzo di un sensore di conducibilità con uscita da 4-20 mA è la sua facilità di integrazione con i sistemi di controllo esistenti . Il segnale da 4-20 mA è un tipo di segnale comune supportato dalla maggior parte dei sistemi di controllo industriale, semplificando il collegamento del sensore a un sistema PLC o SCADA. Ciò consente un’integrazione perfetta del sensore nel sistema di controllo generale, consentendo il monitoraggio e il controllo in tempo reale dei livelli di conduttività.

Oltre alla precisione e alla facilità di integrazione, i sensori di conducibilità con uscita da 4-20 mA offrono anche maggiore affidabilità e stabilità . Il segnale da 4-20 mA è meno suscettibile alle interferenze e al rumore rispetto ad altri tipi di segnali, garantendo che il sensore fornisca misurazioni coerenti e affidabili nel tempo. Questa affidabilità è fondamentale nelle applicazioni industriali in cui il controllo preciso dei livelli di conduttività è essenziale per mantenere la qualità del prodotto e l’efficienza del processo.

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Inoltre, i sensori di conducibilità con uscita da 4-20 mA sono anche soluzioni economiche per il monitoraggio dei livelli di conducibilità nei processi industriali. Il segnale standardizzato da 4-20 mA riduce la necessità di ulteriori apparecchiature di condizionamento del segnale, semplificando la progettazione complessiva del sistema e riducendo i costi di installazione e manutenzione. Ciò rende i sensori di conducibilità con uscita da 4-20 mA un’opzione interessante per le industrie che desiderano migliorare l’efficienza dei processi mantenendo bassi i costi.

Nel complesso, i vantaggi derivanti dall’utilizzo di un sensore di conducibilità con uscita da 4-20 mA sono evidenti. Questi sensori offrono elevata precisione, facilità di integrazione, affidabilità e convenienza, rendendoli ideali per un’ampia gamma di applicazioni industriali. Fornendo misurazioni in tempo reale dei livelli di conduttività, questi sensori aiutano le industrie a ottimizzare i propri processi, migliorare la qualità dei prodotti e aumentare l’efficienza complessiva. Con i loro numerosi vantaggi, i sensori di conducibilità con uscita da 4-20 mA sono uno strumento prezioso per qualsiasi settore che desideri migliorare le proprie capacità di monitoraggio e controllo.

Modello Controller in linea di conducibilità/concentrazione CIT-8800
Concentrazione 1.NaOH:(0~15)% o(25~50)%; 2.HNO3:(0~25) % o (36~82) % ; 3.Curve di concentrazione definite dall’utente
Conduttività (500~2.000.000)uS/cm
TDS (250~1.000.000)ppm
Temp. (0~120)\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\ \\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\ \\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\ \\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\ \\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\ \\\\\\\\\\\°C
Risoluzione Conduttività: 0,01uS/cm; Concentrazione: 0,01%; TDS:0,01 ppm, Temp.: 0,1\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\ \\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\ \\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\ \\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\ \\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\ \\\\\\\\\\\\\℃
Precisione Conduttività: (500~1000)uS/cm +/-10uS/cm; (1~2000)mS/cm+/-1,0%
TDS: livello 1,5, Temp.: +/-0,5\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\ \\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\ \\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\ \\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\ \\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\ \\\\\\\\\\\\\\\\\℃
Temp. compenso Intervallo: (0~120)\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\ \\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\ \\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\ \\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\ \\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\ \\\\\\\\\\\\\°C; elemento: Pt1000
Porta di comunicazione Protocollo RS485.Modbus RTU
Uscita analogica Due canali isolati/trasportabili (4-20)mA, strumento/trasmettitore per la selezione
Uscita di controllo Interruttore fotoelettrico a semiconduttore a triplo canale, interruttore programmabile, impulso e frequenza
Ambiente di lavoro Temp.(0~50)\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\ \\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\ \\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\ \\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\ \\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\ \\\\\\\\\\\\\℃; umidità relativa <95%RH (non-condensing)
Ambiente di archiviazione Temp.(-20~60)\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\ \\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\ \\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\ \\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\ \\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\ \\\\\\\\\\\\\\℃;Umidità relativa \\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\ \\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\ \\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\ \\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\ \\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\ \\\\\\\\\\\\\\\\\\\\\\\\≤85% UR (nessuna condensa)
Alimentazione CC 24 V+15%
Livello di protezione IP65 (con coperchio posteriore)
dimensione 96 mmx96 mmx94 mm (AxLxP)
Dimensione foro 9 mm x 91 mm (AxL)