MPC17511 is a monolithic type SMOS5AP
SMARTMOS IC built in 1channel H-Bridge
Driver constituted LDMOSFET, input section
can be directly interfaced from the MCU.
..
This IC can control 4 mode output function
nc.
(Forward, Reverse, Brake, Open) by input logic.
This IC can drive various type of micro motor
and low loss.
Freescale Semiconductor, Inc.
R
MPC17511
uctor, I
Features
‑Manufactured by SMOS5AP process technology
‑Built in 1 Channel Circuit of H-Bridge Driver
‑Built in Charge-pump Circuit
‑4 Mode Drive(Forward, Reverse, Brake, Open)
Freescale Semicond
‑Direct Interface from the MCU
‑Low ON-Resistance Ron=0.6 ohm(Max.)
‑IDR=1.0A (Cont.)
‑Low Consumption Power
‑Built in Shoot Through Current Prevention Circuit
‑Built in Low Voltage Shutdown Circuit
16PIN SVM
Pin Connections
C2L
1
C1H
2
3
C1L
4
VM
VC
5
IN1
6
IN2
7
EN
8
MPC17511
C2H
VG
TSWITCH
OUTB
PGND
OUTA
IN3
LGND
16
15
14
13
12
11
10
9
‑PWM Control frequency 200kHz(Max.)
‑Comes in 16-pin VMFP
(pin pitch : 0.65mm)
*SMARTMOS is a registered trademark of Motorola Inc.
*Specifications in this data sheet may be changed without prior notice.
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1
(Top View)
MPC17511 :MAR.08. 2002 REV.0.5
Page 2
Block Diagram
Freescale Semiconductor, Inc.
C2L
C1H
VG
1
2
15
OSC,Charge Pump
Low voltage
Detector
16
C2H
C1L
3
14
TSWITCH
..
nc.
5
VC
6
uctor, I
IN1
IN2
7
vc
Level Shifter Predriver
4
11
13
VM
OUTA
OUTB
IN3
EN
Freescale Semicond
Function Table
ENIN1OUTAOUTBIN2
10
8
Control Logic
vc
*Each GND pin are connected by Metal.
Z : High impedanceX : Don't care
IN3
H
12
PGND
9
LGND
TSWITCH
LLXHH
X
LHXLHHX
HLXHHLX
ZZXLHLX
LLXXLXL
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2
MPC17511 :MAR.08. 2002 REV.0.5
XXHXHXL
XXLXHXH
Page 3
Freescale Semiconductor, Inc.
Maximum Ratings
Driver Circuit Power Supply Voltage
Pre-Driver Circuit Power Supply Voltage
Control Circuit Power Supply Voltage
Singnal Input Voltage
Driver Output Current (continuous)
..
Driver Output Current (pulsed) *2
nc.
uctor, I
Operating Junction Temperature
Storage Temperature Range
Thermal Resistance *3
Power Dissipation *4
*1
RatingSymbolMin.Max.Unit
VM
VG- 0.514.0V
VC
VIN
IDR
IDRp
Tj
Tstg
Rθja
PD830---mW
- 0.58.0
- 0.5
- 0.5VC+0.5
---
---
- 55
--150
7.0
1.0
3.0
150
150
V
V
V
A
A
degC
degC
deg./W
*1) Device may be damaged when used over the ratings.
*2) Ta=25C, Peak time is within 10ms at intervals 0.2seconds.
*3) 37 X 50 X 1.6[mm] glass EPOXY Board mount.
*4) Ta=25C
Recommended Operating Condition
CharacteristicsSymbolMin.Unit
Driver Circuit Power Supply Voltage
Freescale Semicond
Control Circuit Power Supply Voltage
Signal Input Voltage
Pulse Input Frequency
Input Pulse Rise Time
Input Pulse Fall Time
Operating Ambient Temperature
Typ.
VM
VC
VIN
FINkHz
TR
TF
Topr
2.0
2.7
0
---
---
---
-20
5.0
5.0
---
---
---
--25
Max.
6.8
5.7
VC
200
1.0
1.0
65
V
V
V
us
us
。
C
Capacitor for Charge Pump
Pre-Driver Circuit Power Supply Voltage
For More Information On This Product,
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C1,C2,C3
3
0.011.0
VGV13.512
MPC17511 :MAR.08. 2002 REV.0.5
0.1
13
uF
Page 4
Freescale Semiconductor, Inc.
DC CHARACTERISTICS
Characteristics
Quiescent Power Supply Current
Driver Circuit Power Supply Current
Control Circuit Power Supply Current
Active Power Supply Current
Control Circuit Power Supply Current
Pre-Driver Circuit Power Supply Current
Logic Input Function
..
nc.
uctor, I
Driver Output ON Resistance
Pullup Resistance (EN,IN3)
Charge-pump Output Voltage
Charge-pump Output Voltage (IG=-1mA)VGload
Low Voltage Detection Circuit
(Ta=25C, VC=VM=5.0V, GND=0V)
High Level Input Voltage
Low Level Input Voltage
High Level Input Current
Low Level Input Current
Detection Voltage
Symbol
IMO
ICO
IC
IG
VIH
VIL
IIH
IIL
RON
Rup50kohm200100
VG12.813
VCDET
Min.
---
---
---
---
VCx0.7
---
---
- 1.0
---
12
10
1.5
Typ.
---
---
---
---
---
---uA
---
0.46
11.2V
2.0
VCx0.3
Max.Unit
1.0
1.0
3.0
0.7
---
1.0
---
0.60
---
2.5
uA
mA
mA
mA ---
V
V
uA
ohm
VC
V
Test
circuit
A
G
B
D
E
F
*3
*1
*2
*4
*5
*6
TSWITCH OUT
*1) ICO includes current to the pre-driver circuit.
*2) IC i ncludes current to the pre-driver circuit. IC:Fin100kHz. IG:Fin20kHz.
*3) 2.7V < VC < 5.7V
*6) Detection voltage is defined output become High-impedance when VC voltage is dropped.
When the gate voltage VG is applied from an external source, VG=7.5[V]
AC CHARACTERISTICS
Characteristics
Output Propagation Delay Time
Freescale Semicond
TSWITCH Propagation Delay Time
Charge-pump Circuit
Low Voltage Detection Circuit
Detection time
*1) When C1=C2=C3=0.1[uF]
tPLH,tPHL (tSON,tSOFF)Timing Chart
IOUT=-50uA
IIN=50uA
*4) IDR=1.0[A] source+sink
(Ta=25C, VC=VM=5.0V, GND=0V)
Turn-ON time
Turn-Off timeus
Turn-Off timeus
Rise time
VOH
VOL
*5) When no input logic signal.
SymbolMin.Max.Unit
tPLH
tPHL
tSOFF
tVGONms
tVCDET
VG-0.5VG
LGND
---
---
---
---
---
---
tVCDET Timing Chart
VG-0.1V
LGND+0.1V
Typ.
1.0
---
0.1
0.15
LGND+0.5
0.5
0.50.1
0.5
0.50.15
3.0
10
us
usTurn-ON timetSON
ms
B
Test
circuit
D
C2
C
F
*1
IN1,IN2
(IN3)
OUTA,OUTB
(TSWITCH)
50%
tPLH
(tSON)
90%
VCDETon
50%
tPHL
(tSOFF)
10%
For More Information On This Product,
VC
IM
50%
1.5
tVCDETon
MPC17511 :MAR.08. 2002 REV.0.54
Go to: www.freescale.com
2.5
90%
VCDEToff
50%
tVCDEToff
0%(<1uA)
Page 5
Pin Description
Freescale Semiconductor, Inc.
SymbolPIN No.Simplified Circuit Schematic
5
VC
VM
OUTA
5
4
11
4
13
11
Function
Control Circuit
Power Supply Pin
Driver Power Supply
Voltage Input Pin
Driver Output Pin
..
nc.
OUTB
uctor, I
TSWITCH
C1L
C2L
13
14
3
1
VC
VC
14
13
Driver Output Pin
Output pin of
stepÅ|up voltage
These pins connect
to charge pump
capacitors.
(Negative pole)
Freescale Semicond
C1H
C2H
IN1
IN2
EN
IN3
LGND
2
16
15VG
6
8
10
9
These pins connect
2
VC
6
51615
VCVGC1HC2H
to charge pump
capacitors.
(Positive pole)
Pre-Driver Circuit
Power Supply Pin
Control Signal
Input Pin 1
7
7
VC
VC
9
Control Signal
Input Pin 2
Enable Control
Signal Input Pin
10
Control Signal
Signal Input Pin 3
for TSWITCH
Logic GND Pin
PGND
12
Driver GND Pin
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MPC17511 :MAR.08. 2002 REV.0.55
Page 6
50uA
50uA
Freescale Semiconductor, Inc.
Test Circuit
..
nc.
uctor, I
5V
ICOIMO
5V
AA
VCVM
MPC17511
C1L
C1H
C2L
C2H
VG
GND
IN1
IN2
IN3
EN
OUTA
OUTB
Capacitor for charge pump (C1,C2.C3)= 0.1[uF]
5V
VCVM
5V
IN1
IN2
IN3
EN
MPC17511
C1L
C1H
C2L
C2H
VG
GND
OUTA
OUTB
TSWITCH
V
V
A IIN
VIN
Freescale Semicond
Test Circuit A
5V
VM
MPC17511
C1L
C1H
C2L
C2H
VG
GND
5V
VC
IN1
IN2
EN
OUTA
OUTB
Test Circuit B
5V
VCVM
IN1
IN2
IN3
C1L
C1H
MPC17511
C2L
C2H
VG
PGND
VC
50%
5V
OUTA
OUTB
TSWITCH
500pF
LGND
50%
tVGON
11V
Test Circuit C
IN3
VG
TSWITCH
tSON
Test Circuit C2
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6
MPC17511 :MAR.08. 2002 REV.0.5
90%
tSOFF
10%
Page 7
Freescale Semiconductor, Inc.
Capacitor for charge pump (C1,C2.C3)= 0.1[uF]
5V6V
VCVM
IN1
IN2
EN
MPC17511
..
nc.
uctor, I
C1L
C1H
C2L
C2H
VG
GND
Test Circuit D
OUTA
OUTB
R=6ohm
V
1mA
5V
VCVM
MPC17511
C1L
C1H
C2L
C2H
VG
GND
Test Circuit E
5V
IN1
IN2
EN
OUTA
OUTB
Freescale Semicond
VCVM
MPC17511
C1L
C1H
C2L
C2H
VG
GND
5V
IN1
IN2
EN
OUTA
OUTB
5V
VCVM
V
5V
A
IN1
IN2
EN1
MPC17511
For IG Test
13V
A
V
Capacitors remove for IG Test.
C1L
C1H
C2L
C2H
VG
GND
OUTA
OUTB
100kHz
and
Fin
20kHz
Test Circuit F
Test Circuit G
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7
MPC17511 :MAR.08. 2002 REV.0.5
Page 8
Precautions on Application
(1)When applying the gate voltage VG from an external source, be sure to connect it via a
resistor equal to or greater than RG=VG/0.02[ohm]. However, this resistance is unnecessary
if you are connecting a charge pump output from a SMARTMOS product.
..
nc.
Freescale Semiconductor, Inc.
MPC17511
VG
C2H
C1H
C2L
C1L
VG < 14[V]
RG > VG/0.02[ohm]
CG = 0.01[uF]
OPEN
uctor, I
Freescale Semicond
(2)Switching from the state of active current loading to high-impedance mode, indactance load
and P.C.B. layout may induce over maximum ratings to a power supply pin. Zener diode or
capacitor at VM pin will protect kick back voltage(it depends on the indactance load).
The schottky diode at output pin will also protect it.
VM
OUTA
OUTB
(3)Connect a capacitor of sufficient capacitance between the power supply and ground pins.
For all large-current paths, use sufficiently wide copper conductor patterns and route them
in the shortest distance possible.
VM
OUTA
OUTB
(4)When using SMARTMOS products in your circuit design, make sure they are fully protected
against static charge.