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L6234STMN/a7avaiTHREE PHASE MOTOR DRIVER
L6234PDSTMN/a10000avaiTHREE PHASE MOTOR DRIVER
L6234PDST,STN/a10000avaiTHREE PHASE MOTOR DRIVER


L6234PD ,THREE PHASE MOTOR DRIVERL6234THREE PHASE MOTOR DRIVERSUPPLY VOLTAGE FROM 7 TO 52V5A PEAK CURRENTR 0.3Ω TYP. VALUE AT 25°C D ..
L6234PD ,THREE PHASE MOTOR DRIVERTHERMAL CHARACTERISTICSthermal connection with the external world (veryRth j-pinsthin strips only) ..
L6234PD013TR ,THREE PHASE MOTOR DRIVERABSOLUTE MAXIMUM RATINGSSymbol Parameter Value UnitV Power Supply Voltage 52 VSV ,V Input Enable Vo ..
L6235D ,THREE PHASE BRUSHLESS DC MOTOR DRIVERABSOLUTE MAXIMUM RATINGSSymbol Parameter Test conditions Value UnitV Supply Voltage V = V = V 60 VS ..
L6235N ,THREE PHASE BRUSHLESS DC MOTOR DRIVERBLOCK DIAGRAMV VSBOOTAVBOOT VBOOTCHARGE THERMALVCPPUMP PROTECTIONOCD1OUT1DIAGOCD1 10VOCD OCD2OCD3OC ..
L6235PD ,THREE PHASE BRUSHLESS DC MOTOR DRIVERL6235DMOS DRIVER FORTHREE-PHASE BRUSHLESS DC MOTOR■ OPERATING SUPPLY VOLTAGE FROM 8 TO 52V■5.6A OUT ..
LC32464M-80 ,256K (65536 words X 4 bits) DRAM Fast Page ModeFeatures. 65536 words K 4 bits configuration.. RAS access time/cycle time/power dissipation256 K (6 ..
LC32464P-80 ,256K (65536 words x 4 bit) DRAM fast page modeBlock DiagramR A S o---- Clock generator No,1 ___-__- (w --C) v C CCAS Cy- 9., Clock generalorNo. 2 ..
LC331632M-12 ,512K (32768 words X 16 bits) Pseudo-SRAMPin AssignmentLC331632M-70/80l10/12Vcc GNDT TColumnaddressbuffer (7)Row addrebuffer (8)Column decod ..
LC331632M-70 ,512K (32768 words X 16 bits) Pseudo-SRAMPin AssignmentLC331632M-70/80l10/12Vcc GNDT TColumnaddressbuffer (7)Row addrebuffer (8)Column decod ..
LC338128M-70 ,1 MEG (131072 words x 8 bit) pseudo-SRAMFeatures. 131072 words x 8 bits configuration. CE access time, COE access time, cycle time, operati ..
LC338128M-80 ,1 MEG (131072 words x 8 bit) pseudo-SRAMPin AssignmentAuA1:A7A5"A:"A2Al"1/0:1/021/0:END 1DIP32, SOP32VccA15Ax:1/051/07TADSvns1/04Top viewAu ..


L6234-L6234PD
THREE PHASE MOTOR DRIVER
L6234
THREE PHASE MOTOR DRIVER
SUPPLY VOLTAGE FROM 7 TO 52V
5A PEAK CURRENT
RDS ON 0.3Ω TYP. VALUE AT 25°C
CROSS CONDUCTION PROTECTION
TTL COMPATIBLE DRIVER
OPERATING FREQUENCY TO 50KHz
THERMAL SHUTDOWN
INTRINSIC FAST FREE WHEELING DIODES
INPUT AND ENABLE FUNCTION FOR
EVERY HALF BRIDGE
10V EXTERNAL REFERENCE AVAILABLE
DESCRIPTION

The L6234 is a triple half bridge to drive a
brushless motor.
It is realized in Multipower BCD technology which
combines isolated DMOS power transistors with
CMOS and Bipolar circuits on the same chip.
By using mixed technology it has been possible to
optimize the logic circuitry and the power stage to
achieve the best possible performance.
The output DMOS transistors can sustain a very
high current due to the fact that the DMOS struc-
ture is not affected by the second breakdown ef-
fect, the RMS maximum current is practically lim-
ited by the dissipation capability of the package.
All the logic inputs are TTL, CMOS and μP com-
patible. Each channel is controlled by two sepa-
rate logic input.
L6234 is available in 20 pin POWER DIP package
(16+2+2) and in PowerSO20.
PIN CONNECTION (Top view)
BLOCK DIAGRAM
L6234
THERMAL DATA
Figure 1: Printed Heatsink
THERMAL CHARACTERISTICS

Rth j-pins
DIP16+2+2. The thermal resistance is referred to

the thermal path from the dissipating region on
the top surface of the silicon chip, to the points
along the four central pins of the package, at a
distance of 1.5 mm away from the stand-offs.
Rth j-amb1
If a dissipating surface, thick at least 35 μm, and
with a surface similar or bigger than the one
shown, is created making use of the printed cir-
cuit.
Such heatsinking surface is considered on the
bottom side of an horizontal PCB (worst case).
Rth j-amb2
If the power dissipating pins (the four central
ones), as well as the others, have a minimum
thermal connection with the external world (very
thin strips only) so that the dissipation takes place
through still air and through the PCB itself.
It is the same situation of point above, without any
heatsinking surface created on purpose on the
board.
Additional data on the PowerDip and the
PowerSO20 package can be found in:
Application Note AN467:
Thermal Characteristics of the PowerDip
20,24 Packages Soldered on 1,2,3 oz.
Copper PCB
Application Note AN668:
A New High Power IC Surface Mount Package:
PowerSO20 Power IC Packaging from Insertion
to Surface Mounting.
L6234
ABSOLUTE MAXIMUM RATINGS
Note 1: Pulse width limited only by junction temperature and the transient thermal impedance
(*) Mounted on board with minimized copper area
RECOMMENDED OPERATING CONDITIONS
PIN FUNCTIONS
L6234
ELECTRICAL CHARACTERISTICS (Vs = 42V ; Tj = 25°C unless otherwise specified)
OUTPUT DMOS TRANSISTOR
SOURCE DRAIN DIODE
LOGIC LEVELS
CIRCUIT DESCRIPTION

L6234 is a triple half bridge designed to drive
brushless DC motors.
Each half bridge has 2 power DMOS transistors
with RdsON = 0.3Ω. The 3 half bridges can be
controlled independently by means of the 3 inputs
IN1, IN2, IN3 and the 3 inputs EN1, EN2, and
EN3. An external connection to the 3 common
low side DMOS sources is provided to connect a
sensing resistor for constant current chopping ap-
plication.
The driving stage and the logic stage are de-
signed to work from 7V to 52V.
L6234
8 16 24 32 40 48Iq [mA]
Figure 1. Quiescent Current vs. Supply Volt-
age.
102030 405060
Iq/(Iq@500Hz)
Figure 2. Normalized Quiescent Current vs.
switching frequency.

-50 -25 0 25 50 75 100 125 150
Tj [°C]
VSD [V]
Figure 4. Source Drain Forward ON voltage
vs. Junction Temperature.
1020 3040 500
Vref [V]
Figure 6. Reference Voltage vs. Supply Voltage.

00.5 11.5 2
ISD [A]
Figure 5. Typical Diode Forward ON charac-
teristics
8 16 24 32 40 48
Vs [V]
RDS (ON)[Ω]
Figure 3. Typical RDS (ON) vs. Supply Voltage.
L6234
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