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BD8256EFV-ME2 Datasheet(PDF) 3 Page - Rohm |
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BD8256EFV-ME2 Datasheet(HTML) 3 Page - Rohm |
3 / 53 page 3/49 TSZ02201-0G1G0BK00030-1-2 © 2013 ROHM Co., Ltd. All rights reserved. 4.Apr.2016 Rev.004 www.rohm.com TSZ22111・15・001 BD8256EFV-M Absolute Maximum Ratings (Ta = 25°C) Parameter Symbol Rating Unit Pre Power supply voltage VVCC 15 V Power MOS power supply voltage VSPRNF,VSLRNF1,VSLRNF2 15 V PWM control / BTL power supply voltage VPREVCC,VTKRNF,VFCTLRNF 7 V Serial Output power supply VSHV 7 V Input pin voltage 1 VIN1 (1) 15 V Input pin voltage 2 VIN2 (2) 7 V Output pin voltage 1 VOUT1 (3) 15 V Output pin voltage 2 VOUT2 (4) 7 V Power Consumption Pd 2.0 (5) W Operating temperature range Topr -40 to +90 °C Storage temperature range Tstg -55 to +150 °C Junction temperature Tjmax 150 °C (1) BHLD, SPCNF (2) HU+, HU-, HV+, HV-, HW+, HW-, HALL_VC, PRTFT, PRTT, SLV, SCLK, SDI, TKCDET, FCTLCDET, MUTEB (3) FG, U_OUT, V_OUT, W_OUT, SLO1+, SLO1-, SLO2+, SLO2-, ERROUT, PRTLIM, PRTOUT, LDO+, LDO- (4) SDO, VREG, FCTLO1+, FCTLO1-, FCTLO2+, FCTLO2-, TKO+, TKO-, SAO1+, SAO1-, SAO2+, SAO2- (5) Ta=25°C, PCB (70mm×70mm×1.6mm, glass epoxy standard board) mounting. Derated by 16mW/°C when operating above 25 °C Caution: Operating the IC over the absolute maximum ratings may damage the IC. In addition, it is impossible to predict all destructive situations such as short-circuit modes, open circuit modes, etc. Therefore, it is important to consider circuit protection measures, like adding a fuse, in case the IC is operated in a special mode exceeding the absolute maximum ratings. Recommended Operating Ratings (Ta = -40°C to +90°C) Parameter Symbol Limits Unit Min. Typ Max. Pre /Loading driver power supply voltage (6) VVCC 4.5 8 10.5 V Spindle driver power supply voltage (6)(7) VSPRNF - VVCC - V Sled motor driver power supply voltage (6)(7) VSLRNF1, VSLRNF2 - VVCC - V PWM control power supply voltage (6) VPREVCC 4.5 5 5.5 V Actuator driver power supply voltage (6) VFCTLRNF, VTKRNF 4.5 5 VPREVCC V Serial output power supply (6) VSHV 3.0 3.3 3.6 V (6) Consider power consumption when deciding power supply voltage. (7) Set the voltage same as VVCC. |
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