SMA6860MZ Series
High Voltage 3-Phase Motor Drivers
Features and Benefits
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Built-in pre-drive IC
MOSFET power element
Alleviate noise generation by adjusting an internal resistor
CMOS compatible input (5 V)
High-side gate driver using bootstrap circuit or floating
power supply
Built-in protection circuit for controlling power supply
voltage drop (UVLO on VB and VCC)
Overcurrent protection (OCP), overcurrent limiting (OCL),
and thermal shutdown (TSD)
Output of fault signal during operation of protection circuit
Output current 1.5, 2, or 2.5 A
Small SIP (SMA 24-pin)
Description
The SMA6860MZ inverter power module (IPM) series provides
a robust, highly-integrated solution for optimally controlling
3-phase motor power inverter systems and variable speed
control systems used in energy-conserving designs to drive
motors of residential and commercial appliances. These ICs
take 230 VAC input voltage, and up to 2.5 A (continuous)
output current. They can withstand voltages of up to 500 V
(MOSFET breakdown voltage).
The SMA6860MZ power package includes an IC with all of
the necessary power elements (six MOSFETs), pre-driver ICs
(two), and bootstrap diodes (three), needed to configure the
main circuit of an inverter. This enables the main circuit of
the inverter to be configured with fewer external components
than traditional designs.
Applications include residential white goods (home
applications) and commercial appliance motor control:
• Air conditioner fan
• Small ventilation fan
• Dishwasher pump
Packages: Power SIP
Not to scale
Leadform
2451
Leadform
2452
Functional Block Diagram
VB1
VB2
VB3
VCC1
UVLO
UVLO
UVLO
UVLO
VBB
HIN1
HIN2
HIN3
COM1
SD1
VCC 2
Input
Logic
High-Side
Level Shift Driver
W1
W2
V
U
UVLO
LIN1
LIN2
LIN3
COM2
SD2
OCL
RC
Input Logic
(OCP Reset )
Thermal
Shutdown
OCP
Low-Side
Driver
LS 2
OCP and OCL
LS1
Figure 1. Driver block diagram
SMA6860MZ-DS, Rev. 5
¯ ¯¯
¯ ¯¯
A. ¯ ¯ ¯ and ¯ ¯ ¯ terminals are used for both input and output.
S D1
S D2
¯ ¯ ¯ , ¯ ¯ ¯, and ¯ ¯ ¯ terminals are open-collector output. RC terminal is open-drain output.
¯D 1 S D 2
¯¯ ¯ ¯¯
¯ ¯¯
B. S
O CL
C. Blanking Time (t
blank
) is used in Overcurrent Limiting (OCL) and Overcurrent Protection (OCP).
¯ ¯¯
If the time exceeds the limit, the signal will be output (open-collector output turns on) on the ¯ ¯ ¯
S D2
pin, and protection operation will start up.
SANKEN ELECTRIC CO., LTD.
http://www.sanken-ele.co.jp/en/
SMA6860MZ Series
High Voltage 3-Phase Motor Drivers
Selection Guide
Part Number
SMA6861MZ
SMA6862MZ
SMA6863MZ
SMA6864MZ
SMA6865MZ
MOSFET Breakdown
Voltage, V
DSS
(min)
(V)
250
500
500
250
500
Output Current
Continuous, I
O
(max)
(A)
2
1.5
2.5
2.5
2.5
Pulsed, I
OP
(max)
(A)
3.0
2.25
3.75
3.75
3.75
Absolute Maximum Ratings,
valid at T
A
= 25°C
Characteristic
Symbol
SMA6861MZ
SMA6862MZ
MOSFET Breakdown Voltage
V
DSS
SMA6863MZ
SMA6864MZ
SMA6865MZ
Logic Supply Voltage
Bootstrap Voltage
V
CC
V
BS
Between VCC and COM
Between VB and HS (U,V, and W phases)
SMA6861MZ
SMA6862MZ
Output Current, Continuous
I
O
SMA6863MZ
SMA6864MZ
SMA6865MZ
SMA6861MZ
SMA6862MZ
Output Current, Pulsed
I
OP
SMA6863MZ
SMA6864MZ
SMA6865MZ
Input Voltage
Pull-up Voltage for Shutdown Pins
Pull-up Voltage for Overcurrent Limiting Pin
Allowable Power Dissipation
Thermal Resistance (Junction to Case)
Thermal Resistance (Junction to Ambient)
Case Operating Temperature
Storage Temperature
V
IN
V
SDX
V
OCL
P
D
R
θJC
R
θJA
T
COP
T
stg
T
C
= 25°C
All elements operating
All elements operating
HINx and LINx pins
SDx pins
PW
≤
100
μs,
duty cycle = 1%
V
CC
= 15 V, I
D
= 100
μA,
V
IN
= 0 V
Remarks
Rating
250
500
500
250
500
20
20
2
1.5
2.5
2.5
2.5
3.0
2.25
3.75
3.75
3.75
–0.5 to 7
7
7
28
4.46
31.25
–20 to 100
–40 to 150
Unit
V
V
V
V
V
V
V
A
A
A
A
A
A
A
A
A
A
V
V
V
W
°C/W
°C/W
°C
°C
All performance characteristics given are typical values for circuit or
system baseline design only and are at the nominal operating voltage and
an ambient temperature, T
A
, of 25°C, unless otherwise stated.
SMA6860MZ-DS, Rev. 5
SANKEN ELECTRIC CO., LTD.
2
SMA6860MZ Series
High Voltage 3-Phase Motor Drivers
Recommended Operating Conditions
Characteristic
Symbol
SMA6861MZ
SMA6862MZ
Main Supply Voltage
V
BB
SMA6863MZ
SMA6864MZ
SMA6865MZ
V
BB
Snubber Capacitor
Logic Supply Voltage
Zener Voltage for VCCx Pins
Pull-up Voltage
¯ ¯¯
Pull-up Resistor ¯ ¯ ¯ Pin
S D2
¯ ¯¯
Pull-up Resistor ¯ ¯ ¯ Pin
O CL
Pull-up Resistor RC Pin
¯ ¯¯
¯¯
O CL
Capacitor ¯ ¯ ¯ and ¯ ¯ ¯ Pins
S Dx
Capacitor RC Pin
Dead Time
Minimum Input Pulse Width
Switching Frequency
C
SB
V
CC
V
Z
V
SDx,
V
OCL
R
UP2
R
UP1
R
R
C
SDX
C
C
t
dead
I
INMIN(on)
I
INMIN(off)
f
PWM
T
J
= –20°C to 150°C
T
J
= –20°C to 150°C
T
J
= –20°C to 150°C
Between VCC and COM
Between VCC and COM
Between VBB and LS
Remarks
Min.
–
–
–
–
–
0.01
13.5
18
4.5
3.3
1
33
1
1
1.5
0.5
0.5
–
Typ.
–
–
–
–
–
–
15
–
5
–
–
–
–
–
–
–
–
–
Max.
200
400
400
200
400
0.1
16.5
20
5.5
10
10
390
10
4.7
–
–
–
20
Units
V
V
V
V
V
μF
V
V
V
kΩ
kΩ
kΩ
nF
nF
μs
μs
μs
kHz
SMA6860MZ-DS, Rev. 5
SANKEN ELECTRIC CO., LTD.
3
SMA6860MZ Series
High Voltage 3-Phase Motor Drivers
Typical Application Diagram
Shows configuration for implementing current
¯ ¯¯
¯ ¯¯
S D1
limiter function: ¯ ¯ ¯ and ¯ ¯ ¯ pins tied together
O CL
1
2
3
SMA6860MZ
10
VB1 VB2 VB3
4
5V
R
UP1
D
Z1
CSD1
5
9
8
7
6
SD1
HIN 1
HIN 2
HIN 3
COM
1
HO 3
HS3
11
13
23
D
Z2
LO 1
17
MC U
20
19
18
OCL
LVIC
LIN1
LIN2
LIN3
LO 2
RS
16
VCC1
HO 1
HS1
24
HVIC
HO 2
HS2
12
M
C
SB
VCC 2
R
R
5V
5V
C
C
R
UP2
C
SD2
21
22
15
RC
LO 3
14
SD 2
COM 2
15 V
NOTE:
The external electrolytic capacitors should be placed as close to the IC as possible, in order to avoid malfunctions
from external noise interference. Put a ceramic capacitor in parallel with the electrolytic capacitor if further
reduction of noise susceptibility is necessary.
SMA6860MZ-DS, Rev. 5
SANKEN ELECTRIC CO., LTD.
4
SMA6860MZ Series
High Voltage 3-Phase Motor Drivers
Typical Application Diagram
Shows configuration without current limiter
¯ ¯¯
¯ ¯¯
S D2
function: ¯ ¯ ¯ and ¯ ¯ ¯ pins tied together
S D1
1
2
3
10
VB1
4
VCC1
VB2 VB3
HO1
HS1
24
ZD
5V
Rup
Rup1
5
9
8
7
6
SD1
HIN1
HIN2
HIN3
COM1
HO2
HS2
12
M
HO3
HS3
11
13
HVIC
CSD
23
VCC2
ZD
LO1
17
20
19
18
OCL
LIN1
LIN2
LIN3
LO2
RS
16
RR
VRC
15
LO3
RC
14
CC
22
21
SD2
COM2
LVIC
15V
NOTE:
The external electrolytic capacitors should be placed as close to the IC as possible, in order to avoid malfunctions
from external noise interference. Put a ceramic capacitor in parallel with the electrolytic capacitor if further
reduction of noise susceptibility is necessary.
SMA6860MZ-DS, Rev. 5
SANKEN ELECTRIC CO., LTD.
5