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Texas Instruments DRV8424 | Demoboard DRV8424PEVM

35-V, 2.5-A bipolar stepper driver with integrated current sensing & 1/256 microstepping

Details

TopologieSonstige Topologie
IC-RevisionB

Beschreibung

The DRV8424/25 are stepper motor drivers for industrial and consumer applications. The device is fully integrated with two N-channel power MOSFET H-bridge drivers, a microstepping indexer, and integrated current sensing. The DRV8424 is capable of driving up to 2.5-A full-scale output current; and the DRV8425 is capable of driving up to 2-A full-scale output current (dependent on PCB design).The DRV8424/25 use an internal current sense architecture to eliminate the need for two external power sense resistors, saving PCB area and system cost. The devices use an internal PWM current regulation scheme selectable between smart tune, slow and mixed decay options. Smart tune automatically adjusts for optimal current regulation, compensates for motor variation and aging effects and reduces audible noise from the motor.A simple STEP/DIR interface allows an external controller to manage the direction and step rate of the stepper motor. The device can be configured in full-step to 1/256 microstepping. A low-power sleep mode is provided using a dedicated nSLEEP pin. Protection features are provided for supply undervoltage, charge pump faults, overcurrent, short circuits, and overtemperature. Fault conditions are indicated by the nFAULT pin.

Eigenschaften

  • PWM microstepping stepper motor driver
  • Simple STEP/DIR interface
  • Up to 1/256 microstepping indexer
  • Integrated current sense functionality
  • No sense resistors required
  • ±5% full-scale current accuracy
  • Smart tune decay technology, fixed slow, and mixed decay options
  • 4.5 to 33-V operating supply voltage range
  • Low RDS(ON):
  • DRV8424: 330 mΩ HS + LS at 24 V, 25°C
  • DRV8425: 550 mΩ HS + LS at 24 V, 25°C
  • High current capacity per bridge
  • DRV8424: 4 A peak, 2.5 A full-scale, 1.8 A rms
  • DRV8425: 3.2 A peak, 2 A full-scale, 1.4 A rms
  • Pin to pin compatible with -
  • DRV8426: 33-V, 900 mΩ HS + LS
  • DRV8436: 48-V, 900 mΩ HS + LS
  • DRV8434: 48-V, 330 mΩ HS + LS
  • Configurable off-time PWM chopping
  • 7-µs, 16-µs, 24-µs, or 32-µs.
  • Supports 1.8-V, 3.3-V, 5.0-V Logic Inputs
  • Low-Ccrrent sleep mode (2 µA)
  • Spread spectrum clocking for low electromagnetic interference (EMI)
  • Small package and footprint
  • Protection features
  • VM undervoltage lockout (UVLO)
  • Charge pump undervoltage (CPUV)
  • Overcurrent protection (OCP)
  • Thermal shutdown (OTSD)
  • Fault condition output (nFAULT)

Typische Anwendungen

  • Textile machines, Office and home automation, Factory automation and robotics, 3D printers
  • Printers and scanners, ATM and money handling machines
  • Medical applications
  • Stage lighting equipment

Weiterführende Informationen

Artikeldaten

Artikel Nr. Daten­blatt Simu­lation Downloads Status ProduktserieCTol. CVR
(V (DC))
BauformBetriebstemperaturDF
(%)
RISOKeramiktypL
(mm)
W
(mm)
H
(mm)
Fl
(mm)
Verpackung Muster
885012206114SPEC
6 Dateien Aktiv i| Produktion ist aktiv. Erwartete Lebenszeit: >10 Jahre.WCAP-CSGP MLCCs 100 V(DC)10 nF ±10% 100 0603 -55 °C up to +125 °C 2.510 GΩ X7R Klasse II 1.6 0.8 0.8 0.4 7" Tape & Reel
885012206091SPEC
8 Dateien Aktiv i| Produktion ist aktiv. Erwartete Lebenszeit: >10 Jahre.WCAP-CSGP MLCCs 50 V(DC)22 nF ±10% 50 0603 -55 °C up to +125 °C 2.510 GΩ X7R Klasse II 1.6 0.8 0.8 0.4 7" Tape & Reel
885012105010SPEC
8 Dateien Aktiv i| Produktion ist aktiv. Erwartete Lebenszeit: >10 Jahre.WCAP-CSGP MLCCs 10 V(DC)100 nF ±20% 10 0402 -55 °C up to +85 °C 55 GΩ X5R Klasse II 1 0.5 0.5 0.25 7" Tape & Reel
885012206048SPEC
8 Dateien Aktiv i| Produktion ist aktiv. Erwartete Lebenszeit: >10 Jahre.WCAP-CSGP MLCCs 16 V(DC)220 nF ±10% 16 0603 -55 °C up to +125 °C 52.3 GΩ X7R Klasse II 1.6 0.8 0.8 0.4 7" Tape & Reel
Muster
Artikel Nr. Daten­blatt Simu­lation Downloads Status ProduktserieCTol. CVR
(V (DC))
BauformBetriebstemperaturDF
(%)
RISOKeramiktypL
(mm)
W
(mm)
H
(mm)
Fl
(mm)
Verpackung Muster