• Part: BD6382EFV
  • Description: Bipolar stepping motor driver
  • Manufacturer: ROHM
  • Size: 233.37 KB
Download BD6382EFV Datasheet PDF
ROHM
BD6382EFV
BD6382EFV is Bipolar stepping motor driver manufactured by ROHM.
1/4 STRUCTURE PRODUCT SERIES TYPE FUNCTION Silicon monolithic integrated circuits Bipolar stepping motor driver - PWM constant current controllable two H bridge driver - Power save mode - Reference voltage output - Low on resistance DMOS ○Absolute maximum ratings (Ta=25℃) Item Symbol Supply voltage VCC VCC Supply voltage VM VM Limit Unit -0.2~+7.0 V -0.2~+15.0 V 1.1※1 W Power dissipation Pd 4.0※2 W Input voltage for control pin VIN -0.2~(VCC +0.3) V RNF maximum voltage VRNF 0.5 V Maximum output current IOUT 0.8※3 A/ch Operating temperature range Topr -40~+85 ℃ Storage temperature range Tstg -55~+150 ℃ Junction temperature Tjmax 150 ℃ ※1 70mm×70mm×1.6mm glass epoxy board. Derating in done at 8.8m W/℃ for operating above Ta=25℃ ※2 4-layer remended board. Derating in done at 32.0m W/℃ for operating above Ta=25℃. ※3 Do not exceed Pd, ASO. .Data Sheet.co.kr ○Operating conditions (Ta=-40~+85℃) Item Symbol Supply voltage VCC VCC Supply voltage VM VM Input voltage for control VIN Output current (DC) IOUT ※4 Do not exceed Pd, ASO. Min. 3.0 5.5 0 - Typ. 3.3 6.0 0.3 Max. 5.5 13.5 VCC 0.5※4 Unit V V V A/ch This product isn’t designed for protection against radioactive rays. Status of this document The Japanese version of this document is the formal specification. A customer may use this translation version only for a reference to help reading the formal version. If there are any differences in translation version of this document, formal version takes priority. REV. A Datasheet pdf - http://..net/ 2/4 ○ Electrical characteristics (Unless otherwise specified Ta=25℃、VCC=3.3V、VM=6.0V) Item Symbol Min. 2.0 0 15 -10 Limit Typ. 0 1.6 0 0.08 30 0 Max. 10 3.0 10 0.50 3.3 0.8 60 Unit Conditions Whole VCC current at standby ICCST VCC current ICC VM current at standby IVMST VM current IVM Control input (PS, IN1A, IN1B, IN2A, IN2B) H level input voltage VINH L level input voltage VINL H level input current IINH L level input current IINL Output (OUT1A, OUT1B, OUT2A,...