參數(shù)資料
型號: A8438
廠商: Allegro MicroSystems, Inc.
英文描述: Photoflash Capacitor Charger with IGBT Driver
中文描述: 照相閃光燈電容充電器采用IGBT驅(qū)動器
文件頁數(shù): 12/13頁
文件大?。?/td> 528K
代理商: A8438
A8438-DS, Rev. 1
Worcester, Massachusetts 01615-0036 (508) 853-5000
www.allegromicro.com
115 Northeast Cutoff, Box 15036
Allegro MicroSystems, Inc.
Photoflash Capacitor Charger with IGBT Driver
A8438
12
Adjusting Output Voltage
The A8438 senses output voltage during switch off-time. This
allows the voltage divider network, R1 through R3 (see figure
6), to be connected at the anode of the high voltage output diode,
D1, eliminating power loss due to the feedback network when
charging is complete. The output voltage can be adjusted by
selecting proper values of the voltage divider resistors. Use the
following equation to calculate values for Rx (
Ω
):
3
2
1
=
+
FB
V
V
OUT
R
R
R
1 .
(4)
R1 and R2 together need to have a breakdown voltage of at
least 300 V. A typical 1206 surface mount resistor has a 150 V
breakdown voltage rating. It is recommended that R1 and R2
have similar values to ensure an even voltage stress between
them. Recommended values are:
R1 = R2 = 150 k
Ω
(1206)
R3 = 1.2 k
Ω
(0603)
which together yield a stop voltage of 303 V.
Using higher resistance ratings for R1, R2, and R3 does not
offer significant efficiency improvement, because the power loss
of the feedback network occurs mainly during switch off-time,
and because the off-time is only a small fraction of each charging
cycle.
Output Diode Selection
Choose the rectifying diode(s), D1, to have small parasitic
capacitance (short reverse recovery time) while satisfying the
reverse voltage and forward current requirements.
The peak reverse voltage of the diode, V
D_Peak
, occurs when the
internal MOSFET switch is closed, and the primary-side current
starts to ramp-up. It can be calculated as:
BATT
.
V
N
V
OUT
D_Peak
V
×
+
=
(5)
The peak current of the rectifying diode, ID_Peak, is calculated
as :
.
I
Primary_Peak
D_Peak
I
=
N
/
(6)
Input Capacitor Selection
Ceramic capacitors with X5R or X7R dielectrics are recom-
mended for the input capacitor, C2. It should be rated at least
4.7
μ
F / 6.3 V to decouple the battery input, V
BATT
, at the primary
of the transformer. When using a separate bias, V
BIAS
, for the
A8438 VIN supply, connect at least a 0.1
μ
F / 6.3 V bypass
capacitor to the VIN pin.
Layout Guidelines
Key to a good layout for the photoflash capacitor charger circuit
is to keep the parasitics minimized on the power switch loop
(transformer primary side) and the rectifier loop (secondary side).
Use short, thick traces for connections to the transformer primary
and SW pin.
Output voltage sensing circuit elements must be kept away from
switching nodes such as SW pin. It is important that the
ˉDˉOˉN
ˉ
signal trace be routed away from the transformer and other
switching traces, in order to minimize noise pickup. In addition,
high voltage isolation rules must be followed carefully to avoid
breakdown failure of the circuit board.
Recommended Components Table
Component
C1 Input Capacitor 0.1
μ
F, ± 10%, 16 V X7R ceramic capacitor (0603)
C2 Input Capacitor 4.7
μ
F, ± 10%, 10 V, X5R ceramic capacitor (0805)
COUT Photoflash
Capacitor
Rating
Part Number
Source
GRM188R71C104KA01D
LMK212BJ475KG
Murata
Taiyo Yuden
20 to 180
μ
F, 330 V
Chemi-Con
D1
Output Diode
2 x 250 V, 225 mA, 5 pF
BAV23S
Philips Semiconductor,
Fairchild Semiconductor
Vishay
2 x 300 V, 225 mA, 5 pF
GSD2004S
R1, R2,
FB Resistors
R3
FB Resistors
150 k
Ω
,
1
/
4
W ± 1% (1206)
9C12063A1503FKHFT
Yageo
1.20 k
Ω
1
/
10
W ± 1% (0603)
9T06031A1201FBHFT
Yageo
T1
Transformer
1:10, L
Primary
= 10.8
μ
H, for I
LIM
= 1.6 or 1.8 A
1:10.4, L
Primary
= 4.7
μ
H, for I
LIM
= 2.0 A
1:10.2, L
Primary
= 12
μ
H, for I
LIM
= 1.6 A
ST-532517A
LDT565630T-041
T-16-024A
Asatech
TDK
Tokyo Coil Engineering
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