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STSPIN32F0 Datasheet(PDF) 9 Page - STMicroelectronics

Part # STSPIN32F0
Description  Three-phase gate drivers
PDF  40 Pages
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Manufacturer  STMICROELECTRONICS [STMicroelectronics]
Direct Link  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

STSPIN32F0 Datasheet(HTML) 9 Page - STMicroelectronics

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STSPIN32F0
Electrical characteristics
40
4
Electrical characteristics
Testing conditions: VM = 15 V; VDD = 3.3 V, unless otherwise specified.
Typical values are tested at Tj = 25 °C, minimum and maximum values are guaranteed by
thermal characterization in the temperature range of -40 to 125 °C, unless otherwise
specified.
Table 5. Electrical characteristics
Symbol
Parameter
Test condition
Min.
Typ.
Max.
Unit
Power supply and standby mode
IM
VM current consumption
VM = 45 V; VDD = 3.5 V
externally supplied
-2
2.6
mA
Standby PF7 = '0' PF6 = '0
VM = 45 V;VDD = 3.5 V
externally supplied
-880
1100
A
VMOn
VM UVLO turn-on threshold
VM rising from 0 V
7.0
7.4
7.8
V
VMOff
VM UVLO turn-off threshold
VM falling from 8 V
6.7
7.1
7.5
V
VMHys
VM UVLO threshold hysteresis
-
-
0.3
-
V
IDD
VDD current consumption
VDD = 3.5 V externally
supplied(1)
-2.5
5
mA
Standby PF7 = '0' PF6 = '0'
VDD = 3.5 V externally
supplied(1)
-2.5
5
IDDA
VDDA current consumption
VDD = 3.5 V externally
supplied(1)
-
615
750
µA
Standby PF7 = '0' PF6 = '0'
VDD = 3.5 V externally
supplied(1)
-80
125
VDDOn
VDD UVLO turn-on threshold
VDD rising from 0 V
2.5
2.65
2.8
V
VDDOff
VDD UVLO turn-off threshold
VDD falling from 3.3 V
2.2
2.35
2.5
V
VDDHys
VDD UVLO threshold hysteresis
-
-
0.3
-
V
IREG12
VREG current consumption
VREG = 13 V externally
supplied, VM = 45 V;
no commutation
-
800
1200
µA
Standby PF7 = '0' PF6 = '0'
VREG = 13 V externally
supplied
-
800
1200
VREG12On VREG12 UVLO turn-on threshold
VREG12 rising from 0 V
6.7
7.1
7.5
V
VREG12Off VREG12 UVLO turn-off threshold
VREG12 falling from 8 V
6.4
6.8
7.2
V
VREG12Hys VREG12 UVLO threshold hysteresis
-
-
0.25
-
V
IBOOT
VBO current consumption
HS on VBO = 13 V
-
200
290
µA
VBOOn
VBO UVLO turn-on threshold
VBO rising from 0 V
5.7
6.1
6.5
V



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