L6235D013TR STMicroelectronics, L6235D013TR Datasheet - Page 16

IC DRIVER 3PHASE DC MOTOR 24SOIC

L6235D013TR

Manufacturer Part Number
L6235D013TR
Description
IC DRIVER 3PHASE DC MOTOR 24SOIC
Manufacturer
STMicroelectronics
Type
Driverr
Datasheet

Specifications of L6235D013TR

Applications
DC Motor Driver, Brushless (BLDC), 3 Phase
Number Of Outputs
1
Current - Output
5.6A
Voltage - Supply
12 V ~ 52 V
Operating Temperature
-25°C ~ 125°C
Mounting Type
Surface Mount
Package / Case
24-SOIC (7.5mm Width)
Operating Current
10mA
Operating Temperature Classification
Automotive
Package Type
SO
Operating Supply Voltage (min)
12V
Operating Supply Voltage (typ)
42V
Operating Supply Voltage (max)
52V
Operating Supply Voltage
7 V to 52 V
Supply Current
0.006 A
Mounting Style
SMD/SMT
For Use With
497-4935 - BOARD MOTOR BRUSHLESS DC L6235
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Voltage - Load
-
Lead Free Status / Rohs Status
Compliant
Other names
497-4009-2

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
L6235D013TR
Manufacturer:
ST
0
Part Number:
L6235D013TR
Manufacturer:
ST
Quantity:
180
L6235
NON-DISSIPATIVE OVERCURRENT DETECTION and PROTECTION
The L6235 integrates an Overcurrent Detection Circuit (OCD) for full protection. This circuit provides Output-to-
Output and Output-to-Ground short circuit protection as well. With this internal over current detection, the exter-
nal current sense resistor normally used and its associated power dissipation are eliminated. Figure 17 shows
a simplified schematic for the overcurrent detection circuit.
To implement the over current detection, a sensing element that delivers a small but precise fraction of the out-
put current is implemented with each High Side power MOS. Since this current is a small fraction of the output
current there is very little additional power dissipation. This current is compared with an internal reference cur-
rent I
ator signals a fault condition. When a fault condition is detected, an internal open drain MOS with a pull down
capability of 4mA connected to pin DIAG is turned on.
The pin DIAG can be used to signal the fault condition to a C or to shut down the Three-Phase Bridge simply
by connecting it to pin EN and adding an external R-C (see R
Figure 17. Overcurrent Protection Simplified Schematic
Figure 18 shows the Overcurrent Detetection operation. The Disable Time t
operation can be easily programmed by means of the accurate thresholds of the logic inputs. It is affected
whether by C
ing off the bridge when an overcurrent has been detected depends only by C
in Figure 20.
C
should be chosen as big as possible according to the maximum tolerable Delay Time and the R
be chosen according to the desired Disable Time.
The resistor R
are respectively 100K
16/25
EN
is also used for providing immunity to pin EN against fast transient noises. Therefore the value of C
REF
C or LOGIC
V
DD
. When the output current reaches the detection threshold (typically I
R
C
EN
EN
EN
EN
and R
should be chosen in the range from 2.2K to 180K . Recommended values for R
DIAG
EN
EN
and 5.6nF that allow obtaining 200 s Disable Time.
TO GATE
40 TYP.
values and its magnitude is reported in Figure 19. The Delay Time t
R
LOGIC
DS(ON)
POWER SENSE
OPEN-DRAIN
INTERNAL
1 cell
COMPARATOR
OCD
HIGH SIDE DMOS
POWER DMOS
OVER TEMPERATURE
n cells
I
1
OUT
I
1
/ n
1
I
I
I
REF
REF
1
+I
VS
2
+
/ n
A
OUT
I
2
EN
/ n
2
POWER DMOS
HIGH SIDE DMOS
I
2
, C
n cells
EN
).
D02IN1381
POWER SENSE
I
3
EN
1 cell
/ n
DISABLE
SOVER
value. Its magnitude is reported
OUT
= 5.6A) the OCD compar-
3
POWER DMOS
before recovering normal
I
3
VS
n cells
B
HIGH SIDE DMOS
DELAY
EN
POWER SENSE
value should
before turn-
EN
1 cell
and C
EN
EN

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