ML4426CS Micro Linear, ML4426CS Datasheet

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ML4426CS

Manufacturer Part Number
ML4426CS
Description
Bi-directional sensorless BLDC motor controller
Manufacturer
Micro Linear
Datasheet

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Part Number:
ML4426CS
Manufacturer:
ML
Quantity:
20 000
GENERAL DESCRIPTION
The ML4426 PWM motor controller provides all of the
functions necessary for starting and controlling the speed
of delta or wye wound Brushless DC (BLDC) motors
without Hall Effect sensors. Back EMF voltage is sensed
from the motor windings to determine the proper
commutation phase sequence using a PLL. This patented
sensing technique will commutate a wide range of 3-
Phase BLDC motors and is insensitive to PWM noise and
motor snubbing circuitry.
The ML4426 limits the motor current using a constant off-
time PWM control loop. The velocity loop is controlled
with an onboard amplifier. The ML4426 has circuitry to
ensure that there is no shoot-through in directly driven
external power MOSFETs.
The timing of the start-up sequence is determined by the
selection of three timing capacitors. This allows
optimization for a wide range of motors and loads.
BLOCK DIAGRAM
22
23
24
12
8
5
6
1
FB A
FB B
FB C
F/R
SPEED SET
SPEED COMP
C T
I SENSE
Bi-directional Sensorless BLDC Motor Controller
SAMPLER
BACK
EMF
1.7V
750nA
+
20kHz
V DD
1.7V
3.9V
(Pin Configuration Shown for 28 Pin Version)
1.5V
17
C AT
+
16k
+
V REF
5
750nA
8k
V DD
VCO
OUT
+
1.5V
19
26
C RT
C IOS
R
F
E
1-SHOT
I LIMIT
+
D
A
C
B
FEATURES
(* Indicates Part Is End Of Life As Of July 1, 2000)
500nA
Motor starts and stops with power to IC
Bi-directional motor drive for applications requiring forward/
reverse operation
On-board start sequence: Align
Patented Back-EMF commutation technique provides jitterless
torque for minimum “spin-up” time
Onboard speed control loop
PLL used for commutation provides noise immunity from
PWM spikes, compared to noise sensitive zero crossing
technique
PWM control for maximum efficiency
Direct FET drive for 12V motors; drives high voltage motors
with IC buffers from IR, IXYS, Harris, Power Integrations,
Siliconix, etc.
21
COMMUTATION
STATE MACHINE
25
C RR
1.4V
BRAKE
V DD
V DD
4k
20
+
SPEED
14
FB
V DD
UVLO
C VCO
28
CONTROLLED
REFERENCE
OSCILLATOR
15
VOLTAGE
GND
16
27
OUTPUT
DRIVERS
GATING
Ramp
LOGIC
R VCO
R REF
&
VCO
OUT
ML4426*
VCO/TACH
UV FAULT
7
Set Speed
V REF
HA
HC
HB
LA
LC
LB
July 2000
13
10
11
18
2
3
4
9
1

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ML4426CS Summary of contents

Page 1

Bi-directional Sensorless BLDC Motor Controller GENERAL DESCRIPTION The ML4426 PWM motor controller provides all of the functions necessary for starting and controlling the speed of delta or wye wound Brushless DC (BLDC) motors without Hall Effect sensors. Back EMF voltage ...

Page 2

ML4426 PIN CONFIGURATION SPEED COMP SPEED SET 2 ML4426 28-Pin Narrow PDIP (P28N) 28-Pin SOIC (S28) I SENSE 1 28 GND REF IOS HC BRAKE 4 25 SPEED COMP ...

Page 3

PIN DESCRIPTION (Pin number in parenthesis is for TQFP package) PIN NAME FUNCTION 1(30) I Motor current sense input. When SENSE I exceeds 0.2 SENSE output drivers LA, LB, and LC are shut off for a fixed time determined by ...

Page 4

ML4426 ABSOLUTE MAXIMUM RATINGS Absolute maximum ratings are those values beyond which the device could be permanently damaged. Absolute maximum ratings are stress ratings only and functional device operation is not implied. V .......................................................................... 14V DD Logic Inputs (BRAKE, F/R) ...

Page 5

ELECTRICAL CHARACTERISTICS SYMBOL PARAMETER LOGIC INPUTS ( BRAKE , (Note 3) V Input High Voltage IH V Input Low Voltage IL I Input High Current IH I Input Low Current IL LOGIC OUTPUTS (VCO/TACH, UV FAULT ) ...

Page 6

ML4426 FUNCTIONAL DESCRIPTION GENERAL The ML4426 provides all the circuitry for sensorless speed control of 3-phase Brushless DC (BLDC) motors. Controller functions include start-up circuitry, back-EMF commutation control, Pulse Width Modulation (PWM) speed control, fixed OFF-time current limiting, braking, and ...

Page 7

FUNCTIONAL DESCRIPTION CURRENT LIMITING IN THE POWER STAGE The current sense resistor (R ) shown in Figure 1 SENSE regulates the maximum current in the power stage and the BLDC motor. Current regulation is accomplished by shutting off the output ...

Page 8

ML4426 STATE LA R OFF A OFF B OFF OFF F OFF Table 1. Commutation State Functions (Forward Direction HIGH SIDE HB DRIVE OUTPUTS HC LA LOW SIDE LB DRIVE OUTPUTS LC ...

Page 9

FUNCTIONAL DESCRIPTION The maximum frequency on the VCO pin is found by: = ™ ™ RPM MAX MAX The voltage at the VCO/TACH pin is equal to the rotor speed. The voltage at SPEED FB ...

Page 10

ML4426 FUNCTIONAL DESCRIPTION BACK EMF SENSING PLL COMMUTATION CONTROL Three blocks form a phase locked loop that locks the commutation clock onto the back EMF signal: the commutation state machine, the voltage controlled oscillator, and the back EMF sampler. The ...

Page 11

750nA – 1. BACK EMF FB C SAMPLER OF COMMUTATION Figure 8. ML4426 Start-up Circuitry for Controlling the Align and Ramp Times Run Mode (Back EMF Sensing) At the end of ...

Page 12

ML4426 FUNCTIONAL DESCRIPTION CROSS CONDUCTION COMPARATOR When the ML4426 goes from align mode into ramp mode, there is a possibility of cross conduction in phase 3 of the bridge power stage. This cross conduction can happen when ...

Page 13

V BUSS 24V–80V C2 330µ 100V 10k 100nF 100V Q4 IRFR9120 Q1 Q2 2N6718 2N6718 12V C3 1µF Q7 IRFR120 R1 470m 2W R12 R13 2k 2k R16 10k C17 C9 1nF 100nF C12 R7 100 R5 100 ...

Page 14

ML4426 12V IR2118 C16 100nF 25V IN HO COM BUSS 24V–80V C5 R6 330µF 100 400V Q1 IRF720 Q2 IRF720 R12 470m 2W R5 10k C4 C3 1nF 100nF C15 100nF R9 100 ...

Page 15

PHYSICAL DIMENSIONS 0.354 BSC (9.00 BSC) 0.276 BSC (7.00 BSC) 1 PIN 0.032 BSC (0.8 BSC) 28 PIN 0.180 MAX (4.57 MAX) 0.125 - 0.135 (3.18 - 3.43) inches (millimeters Package: H32-7 32-Pin (7 ...

Page 16

... PLACES) 0.090 - 0.094 (2.28 - 2.39) ORDERING INFORMATION PART NUMBER ML4426CP (End of Life) ML4426CS (End of Life) ML4426CH (End of Life) ML4426IP (End of Life) ML4426IS (End of Life) ML4426IH (End of Life) © Micro Linear 1998 registered trademark of Micro Linear Corporation. All other trademarks are the property of their respective owners. ...

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