BD7931F-E2

BH6578FVM,BD7931F
Technical Note
4/8
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2011.05 - Rev.B
© 2011 ROHM Co., Ltd. All rights reserved.
Thermal derating curves
BH6578FVM BD7931F
*when 70 mmx70 mmx1.6 mm thick glass epoxy substrate with less than 3% copper foil occupancy ratio is mounted.
Block diagram, applied circuit diagram example
BH6578FVM, BD7931F (in common)
T.S.D : Thermal shutdown
Fig.13
Pin descriptions
Pin No. Pin Name Function Pin No. PinName Function
1 Vcc Supply voltage 5 GND_S Signal ground
2 OUT+ FWD output 6 LDCONT Loading driver voltage setting pin
3 OUT- REV output 7 INREV REV input
4 GND Power ground 8 INFWD FWD input
A
MBIENT TEMPERATURE : Ta []
0
0
25
50
75 100 125
150
0.2
0.4
0.6
175
0.8
Pd [W]
Pd : Power Dissipation
0
0
25
50
75 100 125
150
0.2
0.4
0.6
Pd [W]
175
A
MBIENT TEMPERATURE : Ta []
Pd : Power Dissipation
0.8
1
2
3
4
8 7 6 5
Control
Logic
LDCONT
T.S. D
+ -
FWD IN
REV IN
LDCONT
Vcc
F
R PRE
GND
POW
GND
POWG
PREGND
POW CMOS
H-Bridge
M
Bypass
capacitor
0.1
µ
F
85
85
BH6578FVM,BD7931F
Technical Note
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2011.05 - Rev.B
© 2011 ROHM Co., Ltd. All rights reserved.
Interfaces
BH6578FVM BD7931F
Fig.14 Fig.17
Fig.15 Fig.16 Fig.18 Fig.19
Operations
(1) CONTROL LOGIC
Operation of each mode is carried out as follows:
When INFWD is “H” and INREV is “L,” the normal rotation mode is achieved and current flows from OUT
+
to OUT
-
.
When both INFWD and INREV are “H,” the brake mode is achieved. Operation in such event is described as follows:
the top-side transistor turns OFF to stop supplying motor drive current, the bottom-side transistor turns ON to absorb
reverse EMF of motor and applies brake to motor. When both INFWD and INREV are “L,” OUT
+
and OUT
-
potentials
become open and the motor stops.
(2) LOADING CONT
Controlling the output voltage can vary voltage applied to the motor and can control the motor speed. By the voltage
entered to the CONT terminal, the output H voltage can be controlled (gain 6dB Typ.). Even if the voltage entered is
increased more than necessary (Vcc Max), the output voltage never exceeds the power supply voltage.
LDCONT
OUT+/OUT-
FIN/RIN
LDCONT
OUT+/OUT- INFWD/INREV
50K
50K
200K
7
8
50K
50K
50K
50K
200K
7
8
VCC
VCC
6
10K
49.6K
VCC
6
39K
10K
2 3
VCC
2
3
VCC
BH6578FVM,BD7931F
Technical Note
6/8
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2011.05 - Rev.B
© 2011 ROHM Co., Ltd. All rights reserved.
Notes for use
(1) Absolute maximum ratings
In the event that applied voltage (VCC, VM), working temperature range (Topr), and other absolute maximum rating are
exceeded, the IC may be destroyed. Because it is unable to identify the short-circuit mode, open mode, etc., if any
special mode is assumed, which exceeds the absolute maximum rating, physical safety measures are requested to be
taken, such as fuses, etc.
(2) Reverse connection of power supply connector
Reverse connection of power supply connector may destroy the IC. Take necessary measures to protect the IC from
reverse connection breakage such as externally inserting diodes across power supply and IC power supply terminal as
well as across power supply and motor coil.
(3) Power supply line
Because return of current regenerated by reverse EMF of a motor occurs, take necessary measures such as inserting
capacitors across the power supply and GND as a path for regenerated current, and determine the capacity value after
thoroughly confirming that there would be no problems in various characteristics such as capacitance drop at low
temperature which may occur with electrolytic capacitors.
(4) Ground potential
Keep the GND terminal potential to the minimum potential under any operating condition. In addition, check if there is
actually any terminal which provides voltage below GND including transient phenomena.
(5) Thermal design
Consider permissible dissipation (Pd) under actual working condition and carry out thermal design with sufficient margin
provided.
(6) Terminal-to-terminal short-circuit and erroneous mounting
When the present IC is mounted to a printed circuit board, take utmost care to direction of IC and displacement. In the
event that the IC is mounted erroneously, IC may be destroyed. In the event of short-circuit caused by foreign matter
that enters in a clearance between outputs or output and power-GND, the IC may be destroyed.
(7) Operation in strong electromagnetic field
The use of the present IC in the strong electromagnetic field may result in maloperation, to which care must be taken.
(8) ASO
When IC is used, design in such a manner that the output transistor to a motor does not exceed absolute maximum
ratings and ASO.
(9) Thermal shutdown circuit (TSD) (common)
When junction temperature (Tj) becomes thermal shutdown ON temperature 175°C, the thermal shutdown circuit (TSD
circuit) is activated and driver output current is shorted. There is 25°C temperature hysteresis. The thermal shutdown
protection circuit is first and foremost intended for interrupt IC from thermal runaway, and is not intended to protect and
warrant the IC. Consequently, never attempt to continuously use the IC after this circuit is activated or to use the circuit
with the activation of the circuit premised.
(10) Capacitor across output and GND
In the event a large capacitor is connected across output and GND, when Vcc and VIN are short-circuited with 0V or
GND for some kind of reasons, current charged in the capacitor flows into the output and may destroy the IC. Use a
capacitor smaller than 0.1 µF between output and GND.
(11) Inspection by set substrate
In the event a capacitor is connected to a pin with low impedance at the time of inspection with a set substrate, there is a
fear of applying stress to the IC. Therefore, be sure to discharge electricity for every process. Furthermore, when the
set substrate is connected to a jig in the inspection process, be sure to turn OFF power supply to connect the jig and be
sure to turn OFF power supply to remove the jig. As electrostatic measures, provide grounding in the assembly
process, and take utmost care in transportation and storage.

BD7931F-E2

Mfr. #:
Manufacturer:
Description:
Motor / Motion / Ignition Controllers & Drivers REVERSIBLE 0.5A
Lifecycle:
New from this manufacturer.
Delivery:
DHL FedEx Ups TNT EMS
Payment:
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