Produktdetails

Continuous current (max) (A) 75 Input offset current (±) (max) (mA) 40, 42, 45, 60 Input offset current drift (±) (typ) (µA/°C) 133, 150, 160, 200 Features Alert Function, Digital output alerts MCU when current limit is reached, Externally Driven Zero Current Reference Voltage, Overcurrent protection Supply voltage (max) (V) 5.5 Supply voltage (min) (V) 3 Small-signal bandwidth (Hz) 250000 Sensitivity error (%) 0.3 Sensitivity error drift (±) (max) (ppm/°C) 50 Rating Catalog Operating temperature range (°C) -40 to 125 Creepage (min) (mm) 8.1 Clearance (min) (mm) 8.1 Isolation rating Reinforced Surge isolation voltage (VIOSM) (VPK) 10000
Continuous current (max) (A) 75 Input offset current (±) (max) (mA) 40, 42, 45, 60 Input offset current drift (±) (typ) (µA/°C) 133, 150, 160, 200 Features Alert Function, Digital output alerts MCU when current limit is reached, Externally Driven Zero Current Reference Voltage, Overcurrent protection Supply voltage (max) (V) 5.5 Supply voltage (min) (V) 3 Small-signal bandwidth (Hz) 250000 Sensitivity error (%) 0.3 Sensitivity error drift (±) (max) (ppm/°C) 50 Rating Catalog Operating temperature range (°C) -40 to 125 Creepage (min) (mm) 8.1 Clearance (min) (mm) 8.1 Isolation rating Reinforced Surge isolation voltage (VIOSM) (VPK) 10000
SOIC (DVG) 10 106.09 mm² 10.3 x 10.3
  • High continuous current capability: 75 A RMS
  • Robust reinforced isolation
    • Withstand isolation voltage: 5000 V RMS
    • Reinforced working voltage: 1100 V DC
  • High accuracy
    • Sensitivity error: 0.3%
    • Sensitivity drift: 20 ppm/°C
    • Offset error: 0.5 mV
    • Offset drift: 5 µV/°C
    • Linearity error: 0.1%
  • Low lifetime drift: 0.5% (maximum)
  • High immunity to external magnetic fields
  • Precision zero-current reference output
  • Signal bandwidth: 250 kHz
  • Low propagation delay: 600 ns
  • Fast overcurrent detection response: 500 ns
  • Operating supply range: 3 V to 5.5 V
  • Bidirectional and unidirectional current sensing
  • Multiple sensitivity options:
    • TMCS1123x1: 25 mV/A
    • TMCS1123x2: 50 mV/A
    • TMCS1123x3: 75 mV/A
    • TMCS1123x4: 100 mV/A
    • TMCS1123x5: 150 mV/A
  • Safety related certifications (planned)
    • UL 1577 Component Recognition Program
    • IEC/CB 62368-1
  • High continuous current capability: 75 A RMS
  • Robust reinforced isolation
    • Withstand isolation voltage: 5000 V RMS
    • Reinforced working voltage: 1100 V DC
  • High accuracy
    • Sensitivity error: 0.3%
    • Sensitivity drift: 20 ppm/°C
    • Offset error: 0.5 mV
    • Offset drift: 5 µV/°C
    • Linearity error: 0.1%
  • Low lifetime drift: 0.5% (maximum)
  • High immunity to external magnetic fields
  • Precision zero-current reference output
  • Signal bandwidth: 250 kHz
  • Low propagation delay: 600 ns
  • Fast overcurrent detection response: 500 ns
  • Operating supply range: 3 V to 5.5 V
  • Bidirectional and unidirectional current sensing
  • Multiple sensitivity options:
    • TMCS1123x1: 25 mV/A
    • TMCS1123x2: 50 mV/A
    • TMCS1123x3: 75 mV/A
    • TMCS1123x4: 100 mV/A
    • TMCS1123x5: 150 mV/A
  • Safety related certifications (planned)
    • UL 1577 Component Recognition Program
    • IEC/CB 62368-1

The TMCS1123 is a galvanically isolated Hall-effect current sensor with industry leading isolation and accuracy. An output voltage proportional to the input current is provided with excellent linearity and low drift at all sensitivity options. Precision signal conditioning circuitry with built-in drift compensation is capable of less than 1.75% maximum total error over temperature and lifetime with no system level calibration, or less than 1% maximum total error with a one-time room temperature calibration (including both lifetime and temperature drift).

AC or DC input current flows through an internal conductor generating a magnetic field measured by integrated on-chip Hall-effect sensors. Core-less construction eliminates the need for magnetic concentrators. Differential Hall sensors reject interference from stray external magnetic fields. Low conductor resistance increases measurable current ranges up to ± 96A while minimizing power loss and easing thermal dissipation requirements. Insulation capable of withstanding 5000V RMS, coupled with minimum 8.1 mm creepage and clearance provide up to 1100V DC reliable lifetime reinforced working voltage. Integrated shielding enables excellent common-mode rejection and transient immunity.

Fixed sensitivity allows the TMCS1123 to operate from a single 3V to 5.5V power supply, eliminates ratiometry errors, and improves supply noise rejection.

The TMCS1123 is a galvanically isolated Hall-effect current sensor with industry leading isolation and accuracy. An output voltage proportional to the input current is provided with excellent linearity and low drift at all sensitivity options. Precision signal conditioning circuitry with built-in drift compensation is capable of less than 1.75% maximum total error over temperature and lifetime with no system level calibration, or less than 1% maximum total error with a one-time room temperature calibration (including both lifetime and temperature drift).

AC or DC input current flows through an internal conductor generating a magnetic field measured by integrated on-chip Hall-effect sensors. Core-less construction eliminates the need for magnetic concentrators. Differential Hall sensors reject interference from stray external magnetic fields. Low conductor resistance increases measurable current ranges up to ± 96A while minimizing power loss and easing thermal dissipation requirements. Insulation capable of withstanding 5000V RMS, coupled with minimum 8.1 mm creepage and clearance provide up to 1100V DC reliable lifetime reinforced working voltage. Integrated shielding enables excellent common-mode rejection and transient immunity.

Fixed sensitivity allows the TMCS1123 to operate from a single 3V to 5.5V power supply, eliminates ratiometry errors, and improves supply noise rejection.

Herunterladen Video mit Transkript ansehen Video

Technische Dokumentation

star =Von TI ausgewählte Top-Empfehlungen für dieses Produkt
Keine Ergebnisse gefunden. Bitte geben Sie einen anderen Begriff ein, und versuchen Sie es erneut.
Alle 10 anzeigen
Typ Titel Datum
* Data sheet TMCS1123 Precision Hall-Effect Current Sensor With ±1100V Reinforced Isolation Working Voltage, Overcurrent Detection and Ambient Field Rejection datasheet PDF | HTML 17 Jul 2023
EVM User's guide TMCS1123xEVM User's Guide (Rev. A) PDF | HTML 15 Nov 2023
Application note Current Sensing Applications in Communication Infrastructure Equipment (Rev. C) PDF | HTML 08 Aug 2023
Application note Current Sensing in Collaborative and Industrial Robotic Arms (Rev. B) PDF | HTML 24 Jul 2023
Application note Improving Power Amplifier Efficiency With Current Monitors (Rev. B) PDF | HTML 24 Jul 2023
Application note Low-Drift, Precision, In-Line Isolated Magnetic Motor Current Measurements (Rev. A) 24 Jul 2023
More literature Current Sensing With Isolated Magnetic Hall-Effect Current Sensors PDF | HTML 18 Jul 2023
Certificate TMCS1123BEVM EU Declaration of Conformity (DoC) 14 Jun 2023
Certificate TMCS1123CEVM EU Declaration of Conformity (DoC) 14 Jun 2023
Certificate TMCS1123AEVM EU Declaration of Conformity (DoC) (Rev. A) 13 Jun 2023

Design und Entwicklung

Weitere Bedingungen oder erforderliche Ressourcen enthält gegebenenfalls die Detailseite, die Sie durch Klicken auf einen der unten stehenden Titel erreichen.

Evaluierungsplatine

TMCS1123EVM — TMCS1123 Evaluierungsmodul für isolierte Hall-Effekt-Strommessung

Dieses TMCS1123 EVM soll den schnellen und bequemen Einsatz des TMCS1123, eines isolierten Halleffekt-Präzisionsstrommessgeräts mit interner ratiometrischer Referenz, erleichtern. Dieses EVM ermöglicht es dem Benutzer, den maximalen Betriebsstrom durch die Hall-Eingangsseite zu leiten, während er (...)

Benutzerhandbuch: PDF | HTML
Gehäuse Pins Herunterladen
SOIC (DVG) 10 Ansichtsoptionen

Bestellen & Qualität

Beinhaltete Information:
  • RoHS
  • REACH
  • Bausteinkennzeichnung
  • Blei-Finish/Ball-Material
  • MSL-Rating / Spitzenrückfluss
  • MTBF-/FIT-Schätzungen
  • Materialinhalt
  • Qualifikationszusammenfassung
  • Kontinuierliches Zuverlässigkeitsmonitoring

Support und Schulungen

TI E2E™-Foren mit technischem Support von TI-Ingenieuren

Inhalte werden ohne Gewähr von TI und der Community bereitgestellt. Sie stellen keine Spezifikationen von TI dar. Siehe Nutzungsbedingungen.

Bei Fragen zu den Themen Qualität, Gehäuse oder Bestellung von TI-Produkten siehe TI-Support. ​​​​​​​​​​​​​​

Videos