MPS MP6506GQ 2.7v-to-15v, 500ma, bipolar stepper-motor driver with integrated mosfet Datasheet

MP6506
2.7V-to-15V, 500mA, Bipolar Stepper-Motor
Driver with Integrated MOSFETs
The Future of Analog IC Technology
DESCRIPTION
FEATURES
The MP6506 is a bipolar stepper-motor driver
with dual, built-in full-bridges consisting of Nchannel power MOSFETs.
•
•
•
It operates from a supply voltage range of 2.7V to
15V, and can deliver motor current up to 500mA
per channel. The internal safety features include
under-voltage lockout and thermal shutdown. An
over-temperature output flag is available to
indicate thermal shutdown.
The MP6506 is available in a 3mm×3mm QFN
package with an exposed thermal pad on the
back.
•
•
•
•
•
•
Wide 2.7V-to-15V Input Voltage Range
Two Internal Full-Bridge Drivers
Low MOSFET On Resistance (HS: 500mΩ;
LS: 500 mΩ)
Internal Charge Pump for the High-Side
Driver
Low Quiescent Current: 1.1mA
Low Sleep Current: 1μA
Thermal Shutdown and Under-Voltage
Lockout Protection
Over-Temperature Output Flag
Thermally-Enhanced Surface-Mount Package
APPLICATIONS
•
•
•
•
POS Printers
Video Security Camera
Digital Still Cameras
Battery Powered Toys
All MPS parts are lead-free and adhere to the RoHS directive. For MPS green
status, please visit MPS website under Products, Quality Assurance page.
“MPS” and “The Future of Analog IC Technology” are registered trademarks of
Monolithic Power Systems, Inc.
TYPICAL APPLICATION
Stepper Motor Application
MP6506 Rev. 1.0
5/22/2014
Dual DC Motor Application
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1
MP6506 –2.7V-TO-15V, 500mA, STEPPER MOTOR DRIVER
ORDERING INFORMATION
Part Number
MP6506GQ*
Package
QFN16 (3×3mm)
Top Marking
AJU
* For Tape & Reel, add suffix –Z (e.g. MP6506GQ–Z);
PACKAGE REFERENCE
QFN16 (3×3mm)
ABSOLUTE MAXIMUM RATINGS (1)
Thermal Resistance
Supply Voltage VIN ......................... -0.3V to 18V
AOUTx Voltage VAOUTx ...............-0.3V to VIN+1V
BOUTx Voltage VBOUTx ...............-0.3V to VIN+1V
BST Voltage VBST .......................-0.3V to VIN+7V
All Other Pins ................................ -0.3V to 6.5V
Junction Temperature .............................. 150°C
Lead Temperature ................................... 260°C
(2)
Continuous Power Dissipation (TA = +25°C)
QFN16 (3×3mm) ........................................2.1W
Operating Temperature.............. -40°C to +85°C
QFN16(3×3mm) ..................... 60 ...... 12 ... °C/W
Recommended Operating Conditions
(3)
Supply Voltage VIN .......................... 2.7V to 15V
Output Current IA/BOUT.............................. 500mA
Operating Junction Temp. (TJ). -40°C to +125°C
MP6506 Rev. 1.0
5/22/2014
(4)
θJA
θJC
Notes:
1) Exceeding these ratings may damage the device.
2) The maximum allowable power dissipation is a function of the
maximum junction temperature TJ (MAX), the junction-toambient thermal resistance θJA, and the ambient temperature
TA. The maximum allowable continuous power dissipation at
any ambient temperature is calculated by PD (MAX) = (TJ
(MAX)-TA)/θJA. Exceeding the maximum allowable power
dissipation will cause excessive die temperature, and the
regulator will go into thermal shutdown. Internal thermal
shutdown circuitry protects the device from permanent
damage.
3) The device is not guaranteed to function outside of its
operating conditions.
4) Measured on JESD51-7, 4-layer PCB.
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2
MP6506 –2.7V-TO-15V, 500mA, STEPPER MOTOR DRIVER
ELECTRICAL CHARACTERISTICS
VIN =2.7V to 15V, TA = 25°C, unless otherwise noted.
Parameter
Power Supply
Input Supply Voltage
Quiescent Current
Symbol
Condition
VIN
IIN
IIN_SLEEP
Min
Type
2.7
nSLEEP=1, IOUT=0,
Output disable
nSLEEP=0, VIN=5V
Max
Units
15
V
1.1
mA
1
µA
Integrated MOSFETs
RHS
Output On Resistance
RLS
Body-Diode Forward Voltage
Control Logic
UVLO Threshold (Rising)
UVLO Hysteresis
Input Logic ‘Low’ Threshold
Input Logic ‘High’ Threshold
nSLEEP Logic, Low
nSLEEP Logic, High
Fault Output Logic, Low
VF
VIN RISE
VHYS
VIL
VIH
VSLEEP L
VSLEEP H
VFAULT_L
Fault Output Leakage Current
ILEAK
Propagation Delay Time (On)
TON_DELAY
Propagation Delay Time (Off)
TOFF
MP6506 Rev. 1.0
5/22/2014
IOUT=500mA, VIN=5V
TJ=25°C
IOUT=500mA, VIN=2.7V
TJ=25°C
IOUT=500mA, VIN=5V
TJ=85°C
IOUT=500mA, VIN=2.7V
TJ=85°C
IOUT=500mA, VIN=5V
TJ=25°C
IOUT=500mA, VIN=2.7V
TJ=25°C
IOUT=500mA, VIN=5V
TJ=85°C
IOUT=500mA, VIN=2.7V
TJ=85°C
IOUT=500mA
FAULT
DELAY
460
565
mΩ
600
570
mΩ
700
mΩ
395
mΩ
515
600
mΩ
490
mΩ
650
mΩ
1
V
2.5
V
mV
V
V
V
V
70
0.6
2
0.4
2
Flag triggered by OTP
1mA Current.
VFAULT=5V
INx high to OUTx on
10mA Source Current
INx low to OUTx off
mΩ
200
mV
1
µA
50
150
250
ns
50
150
250
ns
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3
MP6506 –2.7V-TO-15V, 500mA, STEPPER MOTOR DRIVER
ELECTRICAL CHARACTERISTICS (continued)
VIN =2.7V to 15V, TA = 25°C, unless otherwise noted.
Parameter
Symbol
Cross Over Delay
TCROSS
Sleep Mode Wakeup Time
TWAKE
Condition
HS off to LS on or LS off to HS
on for one bridge arm
Sleep inactive high to full bridge
turn on (VBST=100nF)
Min
Type
Max
Units
200
425
650
ns
1.5
ms
Protection Circuitry
Thermal Shutdown
Thermal Shutdown
Hysteresis
MP6506 Rev. 1.0
5/22/2014
165
°C
15
°C
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4
MP6506 –2.7V-TO-15V, 500mA, STEPPER MOTOR DRIVER
TYPICAL CHARACTERISTICS
MP6506 Rev. 1.0
5/22/2014
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MP6506 –2.7V-TO-15V, 500mA, STEPPER MOTOR DRIVER
TYPICAL PERFORMANCE CHARACTERISTICS (continued)
Performance waveforms are tested on the evaluation board of the Design Example section.
IOUT=500mA, FSTEP=100Hz, TA=25°C, unless otherwise noted.
Steady State-Full Step
Steady State-Half Step
Power Ramp Up-Full Step
VIN=15V
VIN=15V
VIN=15V
AIN1
2V/div.
AIN1
2V/div.
AOUT1
10V/div.
AOUT1
10V/div.
AOUT2
10V/div.
AOUT2
10V/div.
IOUTA
500mA/div.
IOUTA
500mA/div.
AIN1
2V/div.
AOUT1
10V/div.
AOUT2
10V/div.
IOUTA
500mA/div.
Power Ramp Up-Half Step
Sleep Entry-Full Step
Sleep Recovery-Full Step
VIN=15V
VIN=9V
VIN=9V
SLEEP
5V/div.
SLEEP
5V/div.
AOUT1
5V/div.
AOUT1
5V/div.
AOUT2
10V/div.
AOUT2
5V/div.
AOUT2
5V/div.
IOUTA
500mA/div.
IOUTA
500mA/div.
IOUTA
500mA/div.
AIN1
2V/div.
AOUT1
10V/div.
Sleep Entry-Half Step
Sleep Recovery-Half Step
VIN=9V
VIN=9V
SLEEP
5V/div.
SLEEP
5V/div.
AOUT1
5V/div.
AOUT1
5V/div.
AOUT2
5V/div.
AOUT2
5V/div.
IOUTA
500mA/div.
IOUTA
500mA/div.
MP6506 Rev. 1.0
5/22/2014
www.MonolithicPower.com
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© 2014 MPS. All Rights Reserved.
6
MP6506 –2.7V-TO-15V, 500mA, STEPPER MOTOR DRIVER
PIN FUNCTIONS
QFN16
Pin #
Name
1
2
PGNDA
AOUT2
Channel A Power Ground.
Connect to motor winding A.
3
4
5
6
7
8
9
BOUT2
PGNDB
BOUT1
FAULT
BIN1
BIN2
BST
Connect to motor winding B.
Channel B Power Ground.
Connect to motor winding B.
Logic low when in over-temperature fault condition.
Gate signal input to control BOUT1.
Gate signal input to control BOUT2.
Charge Pump Output. Connect a 10nF-to-100nF ceramic capacitor to VIN.
10
11
12
13
14
15
VIN
GND
VDD
AIN2
AIN1
nSLEEP
Power Supply Input. Ranges from 2.7V to 15V.
Ground.
Internal control and logic supply voltage.
Gate signal input to control AOUT2.
Gate signal input to control AOUT1.
Sleep Logic Input. Logic low for sleep mode and logic high to enable the device.
16
AOUT1
Connect to motor winding A.
MP6506 Rev. 1.0
5/22/2014
Description
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MP6506 –2.7V-TO-15V, 500mA, STEPPER MOTOR DRIVER
BLOCK DIAGRAM
Figure 1: Function Block Diagram
MP6506 Rev. 1.0
5/22/2014
www.MonolithicPower.com
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© 2014 MPS. All Rights Reserved.
8
MP6506 –2.7V-TO-15V, 500mA, STEPPER MOTOR DRIVER
OPERATION
The MP6506 is a motor driver that integrates 8
N-channel power MOSFETs for dual, internal fullbridges with 500mA output current capability over
an input voltage range of 2.7V to 15V. It can
drive a stepper motor, or two DC motors.
The motor output current can be controlled by an
external pulse width modulator (PWM).
The MP6506 includes the following fault
protections: under-voltage lockout (UVLO) and
over-temperature protection (OTP).
It also provides a low-power sleep mode.
Figure 2: Forward Operation
External PWM Current Control
The motor current can be regulated by applying
external PWM signals on the input pins AIN1,
AIN2, BIN1 and BIN2. For phase A, the AIN1 and
AIN2 input pins control the state of the AOUT1
and AOUT2; similarly for phase B, thee BIN1 and
BIN2 input pins control the state of the BOUT1
and BOUT2.
Table 1 shows the input signal logic and bridge
output state.
Table 1: Full-Bridge Gate Logic
A/BIN1 A/BIN2
A/BOUT1
A/BOUT2
L
L
L
H
H
H
L
H
High
Impedance
GND
VIN
GND
High
Impedance
VIN
GND
GND
The winding’s inductive current ramps up when
the high-side MOSFET is on and freewheels
during the high-side MOSFET’s off time to cause
the recirculation current.
There are two modes for this recirculation current:
slow decay and fast decay, both of which are
shown in Figure 2 for forward operation and
Figure 3 for reverse operation.
MP6506 Rev. 1.0
5/22/2014
Figure 3: Reverse Operation
For slow decay mode, the current circulates
through the two low-side MOSFETs. For fast
decay mode, the current flows through the body
diodes of the other diagonal two MOSFETS.
To configure the MP6506 for fast decay mode,
apply the PWM signal to one input pin and keep
the other input pin low; for slow decay mode,
apply the PWM signal to one input pin and keep
the other input pin high. See Table 2 for more
configuration details and Figure 4 for detailed
waveforms.
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9
MP6506 –2.7V-TO-15V, 500mA, STEPPER MOTOR DRIVER
Table 2: PWM Control
A/BIN1
H (PWM)
L (PWM)
L
L
H
H
L (PWM)
H (PWM)
A/BIN2
L
L
H (PWM)
L (PWM)
L (PWM)
H (PWM)
H
H
Mode
Forward
Fast Decay
Reverse
Fast Decay
Forward
Slow Decay
Reverse
Slow Decay
the threshold value (typically 165ºC), the
converter is shut down (the fault pin goes low)
and recoveries once the junction temperature
drops to about 150ºC (15ºC hysteresis).
UVLO protection
The MP6506 has UVLO protection. When the
VIN exceeds the UVLO rising threshold, the
MP6506 powers up. It shuts off when VIN drops
below the UVLO falling threshold.
A/B IN1
0
A/B IN2
0
IA/BOUT1
0
Forward
Reverse
Fast Decay
Forward
Reverse
Slow Decay
Figure 4: External PWM Current Control Waveform
Sleep Mode
The MP6506 provides low-power standby sleep
mode.
Connect the nSLEEP pin to logic low to enable a
low-power sleep state. In this state, the two full
bridges are disabled and the internal circuits
such as the gate drive, internal regulator, and
charge pump all shut down. Connect the
nSLEEP pin to logic high to wake up the MP6506
from sleep mode, though there is a delay time of
~1ms until the internal circuitry stabilizes.
Enable
If all the inputs (AIN1, AIN2, BIN1 and BIN2) are
logic low, the MP6506’s outputs are disabled
while the charger pump and internal regulator
remain active.
Thermal Shutdown
The junction temperature of the IC is internally
monitored. If the junction temperature exceeds
MP6506 Rev. 1.0
5/22/2014
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10
MP6506 –2.7V-TO-15V, 500mA, STEPPER MOTOR DRIVER
(6
Table 3 ): Full-Step Drive Sequence
APPLICATION INFORMATION
Driver Mode:
The MP6506 could be configured for both fullstep and half-step modes by sequentially
energizing the two windings.
Full-step drive energizes two winding phases at
any given time. The stator windings are
energized as per the sequence shown in Table 3.
There are a total of four steps for one cycle in the
——
————
——
sequence (5): ABÆ A BÆ A B ÆA B .
1
A
B
+
+
2
3
4
+
+
——
+
A
+
——
+
B
+
(6)
Table 4 : Half-Step Drive Sequence
Sequence
1
2
3
4
5
6
7
(Half Step)
A
B
Half-step energizes the stator windings as per
the sequence shown in Table 4 There are a total
——
——
————
of 8 steps for one cycle: ABÆBÆ A BÆ A Æ A B
——
——
Æ B ÆA B ÆA.
Figure 5 shows the operating waveforms for both
full and half step drives.
Sequence
(Full Step)
+
+
——
+
+
+
+
+
A
8
+
——
+
+
B
+
+
Note:
5) A means +VIN between AOUT1 and AOUT2 for winding A,
—
while A means -VIN between AOUT1 and AOUT2. The same
applies to winding B.
6) “+” item is the selected winding voltage.
Figure 5: Signal Logic Sequences for Full-Step
and Half-Step
MP6506 Rev. 1.0
5/22/2014
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11
MP6506 –2.7V-TO-15V, 500mA, STEPPER MOTOR DRIVER
PCB Layout Guide
The printed circuit board (PCB) should use a
heavy ground-plane. The MP6506 must be
soldered directly onto the board for better
electrical and thermal performance.
The MP6506 uses an exposed pad, which
provides a path for enhanced thermal dissipation.
The thermal pad should be soldered directly to
copper on the PCB. Thermal vias are often used
to transfer heat to other layers of the PCB.
Top Layer
Bottom Layer
Figure 7: PCB Layout
MP6506 Rev. 1.0
5/22/2014
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12
MP6506 –2.7V-TO-15V, 500mA, STEPPER MOTOR DRIVER
PACKAGE INFORMATION
QFN 16 (3×3mm)
2.90
3.10
1.50
1.80
0.30
0.50
PIN 1 ID
MARKING
0.18
0.30
2.90
3.10
PIN 1 ID
INDEX AREA
13
16
12
PIN 1 ID
SEE DETAIL A
1
1.50
1.80
0.50
BSC
4
9
5
8
TOP VIEW
BOTTOM VIEW
PIN 1 ID OPTION A
0.30x45º TYP.
PIN 1 ID OPTION B
R0.20 TYP.
0.80
1.00
0.20 REF
0.00
0.05
DETAIL A
SIDE VIEW
2.90
NOTE:
1.70
0.70
0.25
1) ALL DIMENSIONS ARE IN MILLIMETERS.
2) EXPOSED PADDLE SIZE DOES NOT INCLUDE MOLD FLASH.
3) LEAD COPLANARITY SHALL BE 0.10 MILLIMETER MAX.
4) DRAWING CONFORMS TO JEDEC MO-220, VARIATION VEED-4.
5) DRAWING IS NOT TO SCALE.
0.50
RECOMMENDED LAND PATTERN
NOTICE: The information in this document is subject to change without notice. Please contact MPS for current specifications.
Users should warrant and guarantee that third party Intellectual Property rights are not infringed upon when integrating MPS
products into any application. MPS will not assume any legal responsibility for any said applications.
MP6506 Rev. 1.0
5/22/2014
www.MonolithicPower.com
MPS Proprietary Information. Patent Protected. Unauthorized Photocopy and Duplication Prohibited.
© 2014 MPS. All Rights Reserved.
13
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