AN44066A
4
Ver. BEB
μA3316.58PWMSW = 3.3 VI
PWMSWH
High-level PWMSW input current
μA190120STBY = 2.1 VI
STBY
Supply current (at standby mode)
*1
V/μs270Output voltage rising edgeVT
r
Output slew rate 1
*1V/μs330
Output voltage falling
edge
VT
f
Output slew rate 2
V0.60V
INL
Low-level IN input voltage
μA10
–10
IN0 = IN1 = IN2 = IN3
= 5 V
I
INH
High-level IN input current
μA15
–15
IN0 = IN1 = IN2 = IN3
= 0 V
I
INL
Low-level IN input current
V5.52.2
V
PHAH
V
PHBH
High-level PHA1/PHB1 input voltage
V0.60
V
PHAL
V
PHBL
Low-level PHA1/PHB1 input voltage
μA663316.5PHA1 = PHB1 = 3.3 V
I
PHAH
I
PHBH
High-level PHA1/PHB1 input current
μA15
–15PHA1 = PHB1 = 0 V
I
PHAL
I
PHBL
Low-level PHA1/PHB1 input current
V5.52.2V
ENABLEAH
High-level ENABLEA input voltage
V0.60V
ENABLEAL
Low-level ENABLEA input voltage
μA10–10ENABLEA = 5 VI
ENABLEAH
High-level ENABLEA input current
μA15–15ENABLEA = 0 VI
ENABLEAL
Low-level ENABLEA input current
V5.52.2V
PWMSWH
High-level PWMSW input voltage
V0.60V
PWMSWL
Low-level PWMSW input voltage
V0.710.47I
IN
= 0.5 AV
OL
Low-level output saturation voltage
V1.51.00.5I
IN
= ±0.5 AV
DI
Flywheel diode forward voltage
μA2010V
M
= 37 V, V
RCS
= 0 VI
LEAK
Output leakage current
mA8.25.4
ENABLEA = 3.3 V
STBY = 0 V
I
M
Supply current (at when only control
system and charge Pump circuit are
ON)
V5.52.2V
INH
High-level IN input voltage
I/O Block
Power Block
*1μs2.8T
D
Dead time
V
V
M
–0.31
V
M
–0.47
I
IN
= –0.5 AV
OH
High-level output saturation voltage
Limits
Typ
Unit
Max
Note
Min
Condition SymbolParameter
ELECRTRICAL CHARACTERISTICS
VM=24V,T
a
= 25°C±2°C unless otherwise noted.
*1 Typical Value checked by design.
AN44066A
5
Ver. BEB
μA2–2STBY = 0 VI
STBYL
Low-level STBY input current
μA4530STBY = 5 VI
STBYH
High-level STBY input current
Torque Control Block
μA15–15PWMSW = 0 VI
PWMSWL
Low-level PWMSW input current
V5.52.1V
STBYH
High-level STBY input voltage
V0.60V
STBYL
Low-level STBY input voltage
*1
*2
μA68PHA1 = PHB1 = 5 V
I
PHAH2
I
PHBH2
High-level PHA1/PHB1 input current
2
*1
*2
μA42PWMSW = 5 VI
PWMSWH2
High-level PWMSW input current 2
V5.55.04.5I
S5VOUT
= 0 mAV
S5VOUT
Reference voltage
Ω2718
I
S5VOUT
= –1.5 mA, –3.5
mA
Z
S5VOUT
Output impedance
I/O Block
μA12510083.3
V
REFA
= 5 V
V
REFB
= 5 V
I
REFA
I
REFB
Input bias current
kHz705234PWMSW = 0.6 Vf
PWM1
PWM frequency1
kHz352617PWMSW = 2.2 Vf
PWM2
PWM frequency2
μs1.120.750.38V
REFA
= V
REFB
= 0 VT
B
Pulse blanking time
mV693660627
V
REFA
= V
REFB
= 3.3 V
IN0 = IN1 = 0.6 V
IN2 = IN3 = 0.6 V
VT
H
Comp threshold H (100%)
mV470440410
V
REFA
= V
REFB
= 3.3 V
IN0 = 2.2 V, IN1 = 0.6 V
IN2 = 2.2 V, IN3 = 0.6 V
VT
C
Comp threshold C (67%)
mV240220200
V
REFA
= V
REFB
= 3.3 V
IN0 = 0.6 V, IN1 = 2.2 V
IN2 = 0.6 V, IN3 = 2.2 V
VT
L
Comp threshold L (33%)
Reference Voltage Block
Limits
Typ
Unit
Max
Note
Min
Condition SymbolParameter
ELECRTRICAL CHARACTERISTICS continued
VM=24V,T
a
= 25°C±2°C unless otherwise noted.
*1 Typical Value checked by design.
*2 : Refer to the “Usage Notes” (P.16) for the input current characteristics about PHA1, PHB1, PWMSW.
AN44066A
6
Ver. BEB
*1°C150TSD
on
Thermal protection operating
temperature
*1°C40ΔTSDThermal protection hysteresis width
VREF Block
Thermal Protection
*3kΩ605040
V
REFA
= 5 V
V
REFB
= 5 V
Z
VREFA
Z
VREFB
Input impedance
*3%20–20Input impedance precision
Limits
Typ
Unit
Max
Note
Min
Condition SymbolParameter
ELECRTRICAL CHARACTERISTICS continued
VM=24V,T
a
= 25°C±2°C unless otherwise noted.
*1 Typical Value checked by design.
*3 Checked by design, not production tested.

AN44066A-VF

Mfr. #:
Manufacturer:
Panasonic
Description:
Motor / Motion / Ignition Controllers & Drivers Stepping Motor Drivr SSOP032-P-0300B
Lifecycle:
New from this manufacturer.
Delivery:
DHL FedEx Ups TNT EMS
Payment:
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