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PDF TLE7183QU Data sheet ( Hoja de datos )

Número de pieza TLE7183QU
Descripción 3 Phase Driver IC
Fabricantes Infineon Technologies 
Logotipo Infineon Technologies Logotipo



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No Preview Available ! TLE7183QU Hoja de datos, Descripción, Manual

Data Sheet, Rev. 1.1, Jan. 2016
TLE7183QU
3 Phase Driver IC
Automotive Power

1 page




TLE7183QU pdf
3 Pin Configuration
3.1 Pin Assignment TLE7183QU
TLE7183QU
Pin Configuration
SL1 GL1 VDH CB1 GND CL2 VS CL1 CH1 CH2 ERR2 ERR1
36 35 34 33 32 31 30 29 28 27 26 25
GND
37
___
24 IH2
SH1
38
GH 1
39
23 IL2
___
22 IH1
CB2
40
21 IL1
GL 2
41
SL2
42
TLE7183 QU
20 GND
19 ENA2
GH 2
43
S H2
44
Topview
18 ENA1
17 W_fb
GH3
45
16 V_fb
S H3
46
GND
47
15 U_fb
___
14 IH3
GL3
48
13 IL3
1 2 3 4 5 6 7 8 9 10 11 12
___
SL3 GND VO ISN ISP VRI VRO AGND VTHOC TP DT INH
Figure 2 Pin Configuration
Data Sheet
5
Rev. 1.1, 2016-01-28

5 Page





TLE7183QU arduino
TLE7183QU
Description and Electrical Characteristics
5 Description and Electrical Characteristics
5.1 MOSFET Driver
5.1.1
Output Stages
The six powerful push-pull output stages of the TLE7183QU are floating blocks, each one of them with its own
source pin which can be directly connected to the source pin of an external MOSFET. This enables a perfect
control of each MOSFET’s gate-source voltage even if a current of 200A is driven in the bridge.
All output stages have the same high output power. A single output stage is able to drive a single MOSFET with
400nC gate charge (or two MOSFETs with 200nC) achieving rise and fall times of approx. 150ns.
They can be switched with a frequency of up to 30kHz. The usability at higher frequencies is limited by the
maximum allowed power dissipation, the max. junction temperature and the limited current capabilities of the
charge pump.
Each output stage has its own short circuit detection block. Please see Chapter 5.2.1 for short circuit detection
details.
ERR1
ERR2
ENA1
ENA2
___
IH1
_IL_1_
IH2
IL2
___
IH3
IL3
DT
___
VS INH
CL1 CH1 CB1 CL2 CH2 CB2
Charge Pump 1
Charge Pump 2
Error logic
Reset
Power On Reset
Un derv olt age
O ver vol tag e
Overtemperature
Short circuit
Over-cur ren t
UVLO
SCD
lock /
unlock
Input Logic
Shoot Through
Protection
Dead Time
ON / OFF
ON / OFF
Undervoltage lock out
short circuit filter
SCD
SCD
Short Circuit
Detection Level
Level
shif ter
Level
shif ter
VDH
CB2
+
-
VSC P
Floating HS driver 3x
CB1
GH x
SHx
+
-
VSC P
Floating LS driver 3x
GLx
SLx
GND
Figure 3 Block Diagram of Driver Ouput Stages including Short Circuit Detection
Data Sheet
11 Rev. 1.1, 2016-01-28

11 Page







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