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BD6669FV-E2

hotBD6669FV-E2

BD6669FV-E2

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Part Number BD6669FV-E2
Manufacturer Rohm Semiconductor
Description IC MOTOR DRIVER PAR 28SSOP
Datasheet BD6669FV-E2 Datasheet
Package 28-LSSOP (0.220", 5.60mm Width)
In Stock 6,156 piece(s)
Unit Price $ 3.6680 *
Lead Time Can Ship Immediately
Estimated Delivery Time Jun 8 - Jun 13 (Choose Expedited Shipping)
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Part Number # BD6669FV-E2 (PMIC - Motor Drivers, Controllers) is manufactured by Rohm Semiconductor and distributed by Heisener. Being one of the leading electronics distributors, we carry many kinds of electronic components from some of the world’s top class manufacturers. Their quality is guaranteed by its stringent quality control to meet all required standards.

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BD6669FV-E2 Specifications

ManufacturerRohm Semiconductor
CategoryIntegrated Circuits (ICs) - PMIC - Motor Drivers, Controllers
Datasheet BD6669FV-E2Datasheet
Package28-LSSOP (0.220", 5.60mm Width)
Series-
Motor Type - Stepper-
Motor Type - AC, DCBrushless DC (BLDC)
FunctionDriver - Fully Integrated, Control and Power Stage
Output ConfigurationHalf Bridge (3)
InterfaceParallel
TechnologyDMOS
Step Resolution-
ApplicationsMedia Player
Current - Output1A
Voltage - Supply4.5 V ~ 5.5 V
Voltage - Load3 V ~ 6.5 V
Operating Temperature-20°C ~ 75°C (TA)
Mounting TypeSurface Mount
Package / Case28-LSSOP (0.220", 5.60mm Width)
Supplier Device Package28-SSOPB

BD6669FV-E2 Datasheet

Page 1

Page 2

                             ! "#° $ %  ! & ' (  %%)        *  %   % +  )% ' ,* * %)   *       %  +& ) !  - ./   ! % &'       0  % $,   ! & ' 10 )   *  % %) ' 0 )   %)    % %) ' 20 )   3) ) ' 40 )    +  % %) ' 0 )       %  % %) ' 50 )    + 6 % %) ' "0 ,* %)  +&  -./' 0 )   %%   %   ' #0 )       % '       7/814°0 Parameter Symbol Limits Unit Power supply voltage VCC TjMAX 7 V VSupply voltage for motor VM 7 20 VVG pin voltage VG IOMAX Topr 1000 mW °C °C Operating temperature range 150 °CJunction temperature Power dissipation Output current Storage temperature range Pd Tstg 1020 −20~+75 −55~+150 mA Reduce power by 8.16mW for each degree above 25°C. ∗2 70mm×70mm×1.6mm glass epoxy board. ∗1 However, do not exceed Pd, ASO and Tj=150°C. ∗1 ∗2      Parameter Supply voltage for motor VG pin voltage This product described in this specification isn't judged whether it applies to cocom regulations. Please confirm in case of export. This product is not disigned for protection against radioactive rays. Power supply voltage VCC 4.5 5.5− VM 3 6.5 V V V − VG 7.5 14− Symbol Min. Typ. Max. Unit

Page 3

     1      Driver Matrix U-Pre Driver L-Pre Driver A31 1 28 27 26 25 24 23 22 21 20 19 18 17 16 15 2 3 4 5 6 7 8 9 10 11 12 13 14 A21 A32 A22 A11 A12 H1+ H1− H2+ H2− H3+ H3− VM1 VH + − + − + − + − + − Matrix Torque AMP + − + − + − + − + − + − RNF1 FG PS EC ECR VM2 SB CNF VPUMP CP2 CP1 GND VCC RNF2 Hall bias Charge Pump EXOR OSC PWM Comp Reverse Detect Fig.1 Hall comp Hall Amp TSD PS CL D Q CK Current sense AMP

Page 4

           Pin No. Function Hall input AMP 2 positive input Pin name H2+ 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 Short brake pinSB Hall input AMP 3 negative inputH3− Hall input AMP 2 negative inputH2− Hall input AMP 3 positive inputH3+ Hall input AMP 1 negative input Output3 for motor Resistor connection pin for current sense Power supply for signal division Power supply for driver Torque control standard voltage input terminal Capacitor connection pin for phase compensation GND Hall bias pin Hall input AMP 1 positive input Output3 for motor Power supply fo driver Output1 for motor Output1 for motor Output2 for motor Output2 for motor Capacitor pin 1 for charge pump Torque control voltage input terminal H1− Capacitor pin 2 for charge pumpCP2 Capacitor connection pin for charge pumpVPUMP RNF2 VCC VM2 FG output pinFG ECR EC CP1 Power save pin Resistor connection pin for current sense PS RNF1 CNF GND VH H1+ A12 A11 A21 A32 A22 VM1 A31

Page 5

     2        Output pins A1 : Pin1, 2, A2 : Pin3, 4, A3 : Pin5, 6 Hall bias Pin8 CNF Pin19 Torque amplifier ECR : Pin24, EC : Pin25 Short brake Pin20 FG output FG : Pin26 RNF2 Pin21 Power save Pin27 CP1 output Pin16 CP2 / VPUMP output CP2 : Pin17, VPUMP : Pin18 Hall input H1+ : Pin9, H1− : Pin10, H2+ : Pin11, H2− : Pin12, H3+ : Pin13, H3− : Pin14 A1 A2 A3 VM RNF1 VCC Hn+ 1k 5k 1k 1k 1k VCC Hn VCC VH (Pin8) 100k CP1 (Pin16) VCC 50 VCC FG (Pin26) VCC 50 VCC VM VPUMP (Pin18) CP2 (Pin17) 2k 2k CNF (Pin19) VCC 50 20k SB (Pin20) VCC 30k 20k PS (Pin27) VCC 30k 355 RNF2 (Pin21) VCC 1k ECR (Pin24) EC (Pin25) VCC 1k

Page 6

     4          7)   *    9 /814°9 849 840 Parameter Conditions Circuit current 1 Circuit current 2 ON voltage range OFF voltage range Hall bias voltage Input bias current Minimum input level Input voltage range Offset voltage (+) Hall hysteresis level (+) Hall hysteresis level (−) In-phase input voltage range Fig.2 Fig.2 Fig.2 Fig.2 Fig.2 Fig.4 Fig.4 Fig.4 Fig.8 Fig.8 Fig.6 Fig.6 Fig.6 Fig.6 Fig.7 Fig.7 Fig.6 Fig.5 Fig.3 Fig.6 Fig.9 Test Circuit IHB=10mA EC=ECR=1.65V Sutand by mode Sutand by mode Hall input Amp Short brake Linear range 0.5V∼3.3V Offset voltage (−) Input current Input / Output gain Output ON-resistance Torque limit voltage Charge pump output voltage IFG=+100µA VCC=VM=5V ON voltage range OFF voltage range IO=±600mA (Upper+Lower) Low voltage Fig.6High voltage IFG=−100µA Symbol ICC1 ICC2 VPSON VPSOFF VHB IHA VHAR VINH VHYS+ VHYS− EC, ECR Ecofs+ Ecofs− GEC ECIN RON VTL VFGL VFGH Vpump VSBON VSBOFF Max. 1.4 − 3.6 5 17 5 40 100 − 1.0 − −5 − 1.2 14 0.24 0.7 0.4 − 1.0 − Min. − − 0.6 1.4 5 2.5 −8.0 100 5 0 5 −100 −12 0.8 − 0.3 0.16 6 2.5 − 4.6 Typ. 1.0 −2.0 −5−40 −20 − 11 − − − 20 − − 50 −50 −2.5 1.0 0.5 0.2 − 10 − − − Unit µA V V V V µA mA mVPP mV mV mV V mV µA A/V Ω V V V V V V       ' )     7 !'1∼ !'0 5, 6pin RL A1 RL=5Ω, RNF=0.33Ω A2 A3 GND RNF 3, 4pin 1, 2pin 13, 16pin

Page 7

      1' ) ) ) + Pin No. Condition1 Condition2 Condition3 Condition4 Condition5 Condition6 L H M M H L M M M M M M M M M M M M M M M M M M H L L H M M M M H L L H H L L H L H L H H L L H L H L H H L L H H L H L H L L H H L 23 24 282625 Input condition Output condition ECECR 27 17.18 14.15 11.12 17.18 14.15 11.12 H1+ H1− H3−H2−H2+ H3+ A1 A2 A3 A1 A2 A3 H L H L L H H : Upper Tr ON L : Lower Tr ON Output logic H=2.8V M=2.5V L=2.2V Input voltage '      Fig.2 H1 VPS 5V 1.65V RNF0.01µF 10kΩ 5VRL H2 H3H1 H2 H3 RLRL IHB R N F 1 P S F G E C E C R V M V C C R N F 2 S B C N F V P U M C P 2 C P G N A 3 A 3 A 2 A 2 A 1 A 1 V M V H H 1 + H 1 − H 2 + H 2 − H 3 + H 3 − VHB : Value of V1 VPS=5 [V] IHB=10 [mA] VPSON : Range of Vps output pins become input-output table. VPSOFF : Range of Vps output pins become open. ICC1 : Value of A1 VPS=0 [V] Hall input condition : condition1 ICC2 : Value of A1 VPS=5 [V] Hall input condition : condition1 10 V A

Page 8

     5 Fig.3 H1+ 1.65V 5V RL H2+ H3+H1− H2− H3− RLRL VRNF2 R N F 1 P S F G E C E C R V M V C C R N F 2 S B C N F V P U M C P 2 C P G N A 3 A 3 A 2 A 2 A 1 A 1 V M V H H 1 + H 1 − H 2 + H 2 − H 3 + H 3 − VPS=5 [V] VTL : Range of VRNF2 that VM current (IM) become 0A. 5V5V A1 Fig.4 H1+ 1.65V RNF0.01µF 10kΩ 5VRL H2+ H3+H1− H2− H3− RLRL R N F 1 P S F G E C E C R V M V C C R N F 2 S B C N F V P U M C P 2 C P G N A 3 A 3 A 2 A 2 A 1 A 1 V M V H H 1 + H 1 − H 2 + H 2 − H 3 + H 3 − VHAR : HALL voltage range that output pins become input-output table. VINH : HALL input level that output pins become input-output table. IHA : Value of 'A1' (Hn + =2.5V, Hn − =2.0V) Value of 'A2' (Hn + =2.0V, Hn − =2.5V) n=1, 2, 3 5V 5V 10V Hn − =2.5 V VINH : Hn +−Hn− A1 A1A2 A1 A2 A2

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     " Fig.5 H1+ 1.65V 5V 600mA H2+ H3+H1− H2− H3− R N F 1 P S F G E C E C R V M V C C R N F 2 S B C N F V P U M C P 2 C P G N A 3 A 3 A 2 A 2 A 1 A 1 V M V H H 1 + H 1 − H 2 + H 2 − H 3 + H 3 − Ron=(VOH + VOL) / 0.6 VOH : In case output measurement pin='H' by input condition and IO=−600mA, value of 'VOH' VOL : In case output measurement pin='L' by input condition and IO=600mA, value of 'VOL' 5V5V A1 5, 6pin A2 3, 4pin A3 1, 2pin A1 5, 6pin A2 3, 4pin A3 1, 2pin RNF1 VOL 600mA VM VOH Fig.6 VECR RNF0.01µF 10kΩ 5V RL H2 H3H1H1 H2 H3 RLRL R N F 1 P S F G E C E C R V M V C C R N F 2 S B C N F V P U M C P 2 C P G N A 3 A 3 A 2 A 2 A 1 A 1 V M V H H 1 + H 1 − H 2 + H 2 − H 3 + H 3 − GEC= { (V1−V2) / (1.5−1.2) } / 0.5 When ECR=1.65V value of V1 (EC=1.2V) value of V2 (EC=1.5V) EC, ECR : Torque control operating range. ECOFS : EC voltage range that VM current (IM) is 0A. ECIN : Value of 'A2' (EC=ECR=1.65V) Value of 'A3' (EC=ECR=1.65V) VFGH : Value of V1 (IFG=−100µA) Hall input condition 3. VFGL : Value of V1 (IFG=+100µA) Hall input condition 4. 5V5V 10V IFG A3 VEC A2 A1 A1

Page 10

      Fig.7 H1+ 1.65V RNF VSB 0.01µF 10kΩ 5VRL H2+ H3+H1− H2− H3− RLRL R N F 1 P S F G E C E C R V M V C C R N F 2 S B C N F V P U M C P 2 C P G N A 3 A 3 A 2 A 2 A 1 A 1 V M V H H 1 + H 1 − H 2 + H 2 − H 3 + H 3 − VSBON : Volatge range of 'VSB' that output pins become 'L'. VSBOFF : Range of 'VSB' that output pins become input-output table. 5V 5V 10V Fig.8 H1+ 1.65V RNF0.01µF 10kΩ 5VRL H2+ H3+H1− H2− H3− RLRL R N F 1 P S F G E C E C R V M V C C R N F 2 S B C N F V P U M C P 2 C P G N A 3 A 3 A 2 A 2 A 1 A 1 V M V H H 1 + H 1 − H 2 + H 2 − H 3 + H 3 − VHYS : Voltage difference H3+ to H3− that FG voltage change V1. 5V 5V 10V V1

BD6669FV-E2 Reviews

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Bry***** Ray

May 26, 2020

These are high quality connectors. They work as you would expect them to. There is not much else you can say about them.

Jorge*****erson

May 5, 2020

Have never had a problem with my order. Packages arrive on time and in great condition.

Vanc*****nshi

May 1, 2020

I am very happy with how Heisener do business. Will definitely buy their products in the future as I have confidence in their customer service.

Daph*****liver

April 27, 2020

Outstanding supplier! Heisener is on a very short list of suppliers I can recommend. From stock, pricing, ease of ordering and great service, they get it all.

Brynn*****andez

April 23, 2020

Perfect! Nice components, professional service!

Ev*****Cruz

April 20, 2020

It gives you a good quality product, with a great variety.. I will for sure order this set again when i start to run low.

Broo*****oreno

April 16, 2020

Very good and very fast . 100% safe company

Jeff*****n Kemp

April 16, 2020

I always enjoy shopping with Heisener, never makes a mistake, most reliable, and no long waiting for deliveries.

Iren*****berts

April 16, 2020

Works just like the original one and even has the correct connectors installed.

Land*****ambert

April 10, 2020

Very pleased purchasing experience, would definitely buy again.

BD6669FV-E2 Guarantees

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We provide 90 days warranty.

If the items you received were not in perfect quality, we would be responsible for your refund or replacement, but the items must be returned in their original condition.

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