A3966SLBTR-T Allegro, A3966SLBTR-T Datasheet - Page 7

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A3966SLBTR-T

Manufacturer Part Number
A3966SLBTR-T
Description
Manufacturer
Allegro

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A3966
Load Current Regulation. Due to internal logic and
switching delays, t
slightly higher than the I
blanking time, limit the minimum value the current control
circuitry can regulate. To produce zero current in a wind-
ing, the ENABLE terminal should be held high, turning off
all output drivers for that full-bridge.
Logic Inputs. A logic high on the PHASE input results
in current fl owing from OUT
A logic low on the PHASE input results in current fl owing
from OUT
t
spikes that can occur when switching the PHASE input.
output drivers of that full-bridge. This results in a fast cur-
rent decay through the internal ground clamp and fl yback
diodes. A logic low on the ENABLE input turns on the
selected source and sink driver of that full-bridge.
for applications that require a fast current-decay PWM. If
external current-sensing circuitry is used, the internal cur-
rent-control logic can be disabled by connecting the R
terminal to ground.
resistor divider from V
nally divided down by 4 to set up the current-comparator
trip-voltage threshold. The reference input voltage range is
0 to 2 V.
Output Drivers. To minimize on-chip power dissipa-
tion, the sink drivers incorporate a Satlington structure.
The Satlington output combines the low V
of a saturated transistor and the high peak-current capabil-
ity of a Darlington (connected) transistor. A graph showing
typical output saturation voltages as a function of output
current is on page 3.
codt
, of approximately 1 μs prevents crossover-current
A logic high on the ENABLE input turns off all four
The ENABLE inputs can be pulse-width modulated
The REFERENCE input voltage is typically set with a
B
to OUT
d
, the actual load current peak will be
A
. An internally generated dead time,
CC
TRIP
. This reference voltage is inter-
value. These delays, plus the
A
to OUT
FUNCTIONAL DESCRIPTION (continued)
B
of that full-bridge.
CE(sat)
features
Dual Full-Bridge PWM Motor Driver
T
C
T
Miscellaneous Information. Thermal protection
circuitry turns off all output drivers should the junction
temperature reach 165 °C typical. This is intended only to
protect the device from failures due to excessive junction
temperatures and should not imply that output short circuits
are permitted. Normal operation is resumed when the junc-
tion temperature has decreased about 15°C.
variable duty cycle PWM technique. As a result, the cur-
rent-control regulation may become unstable if the duty
cycle exceeds 50%.
ground trace I
have a separate return to the ground terminal of the device.
For low-value sense resistors, the I x R drops in the printed-
wiring board can be signifi cant and should be taken into ac-
count. The use of sockets should be avoided as their contact
resistance can cause variations in the effective value of R
pled with an electrolytic capacitor (47 μF recommended)
placed as close to the device as physically practical. To
minimize the effect of system ground I x R drops on the
logic and reference input signals, the system ground should
have a low-resistance return to the load supply voltage.
amount of ripple current. A lower frequency will result in
higher current ripple, but reduced heating in the motor and
driver IC due to a corresponding decrease in hysteretic core
losses and switching losses respectively. A higher frequen-
cy will reduce ripple current, but will increase switching
losses and EMI.
The A3966 current control employs a fi xed-frequency,
To minimize current-sensing inaccuracies caused by
The LOAD SUPPLY terminal, V
The frequency of the clock oscillator will determine the
R
drops, each current-sensing resistor should
115 Northeast Cutoff, Box 15036
Allegro MicroSystems, Inc.
Worcester, Massachusetts 01615-0036 (508) 853-5000
www.allegromicro.com
BB
, should be decou-
S
.
7

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