EVAL6229PD STMicroelectronics, EVAL6229PD Datasheet - Page 6

EVAL BOARD FOR L6229PD SOIC

EVAL6229PD

Manufacturer Part Number
EVAL6229PD
Description
EVAL BOARD FOR L6229PD SOIC
Manufacturer
STMicroelectronics
Datasheet

Specifications of EVAL6229PD

Mfg Application Notes
L6235, AN1625 App Note
Main Purpose
Power Management, Motor Control
Embedded
No
Utilized Ic / Part
L6229PD SOIC
Primary Attributes
3-Ph BLDC, 8 ~ 52V Output, PWM Current Control, Brake Function
Secondary Attributes
Over Current, Cross Conduction & Temperature Protection
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
497-5491

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Part Number
Manufacturer
Quantity
Price
Part Number:
EVAL6229PD
Manufacturer:
STMicroelectronics
Quantity:
135
AN1451 APPLICATION NOTE
For Example, if a maximum ripple of 500mV is allowed and I
Actually, current sunk by V
charge of internal freewheeling diodes. Duration of these peaks is, tough, very short, and can be filtered using
a small value (100÷200 nF), good quality ceramic capacitor, connected as close as possible to the V
and GND pins of the IC. Bulk capacitor will be chosen with maximum operating voltage 25% greater than the
maximum supply voltage, considering also power supply tolerances. For example, with a 48V nominal power
supply, with 5% tolerance, maximum voltage is 50.4V, then operating voltage for the capacitor should be at least
63V.
2.4 Layout Considerations
Working with devices that combine high power switches and control logic in the same IC, careful attention has
to be paid to the PCB layout. In extreme cases, Power DMOS commutation can induce noises that could cause
improper operation in the logic section of the device. Noise can be radiated by high dv/dt nodes or high di/dt
paths, or conducted through GND or Supply connections. Logic connections, especially high-impedance nodes
(actually all logic inputs, see further), must be kept far from switching nodes and paths. With the L6208, in par-
ticular, external components for the charge pump circuitry should be connected together through short paths,
since these components are subject to voltage and current switching at relatively high frequency (600kHz). Pri-
mary mean in minimizing conducted noise is working on a good GND layout (see Figure 5).
Figure 5. Typical Application and Layout suggestions.
6/43
Logic Supply
3.3 ÷ 5 V
+
-
Custom Logic
V
ref
µC
or
= 0 ÷1V
SA
and V
R1
ESR
ESR
C1
SB
CW / CCW
CONTROL
RESET
HALF / FULL
CLOCK
EN
V
OUT
pins of the device is subject to higher peaks due to reverse recovery
refA
C2
0.5 V
------------
2 · I
1
-- -
2
2A
1A
I
OUT
OUT
V
refB
2A
0.5 V
------------
R2
OUT
OUT
2A
=
1B
· ESR in slow decay
OUT
RC
A
· ESR in fast decay
250m
2B
C3
=
Stepper Motor
L6208
2-Phase
V
1 25m
BOOT
R3
D1
C5
R4
RC
in slow decay, and
B
CP
OUT
C4
GND
D2
in fast decay.
= 2A, the capacitor ESR should be lower than:
GND
V
SA
GND
SENSE
SENSE
V
SB
GND
A
B
C8
R5
R6
C6
C7
V
S
+
= 8 ÷ 52 V
-
SA
, V
SB

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