AS1323BTTT-33 austriamicrosystems, AS1323BTTT-33 Datasheet - Page 9

IC, STEP-UP DC/DC CONVERTER, 5-TSOT-23

AS1323BTTT-33

Manufacturer Part Number
AS1323BTTT-33
Description
IC, STEP-UP DC/DC CONVERTER, 5-TSOT-23
Manufacturer
austriamicrosystems
Datasheet

Specifications of AS1323BTTT-33

Primary Input Voltage
1.2V
No. Of Outputs
1
Output Voltage
3.3V
Output Current
100mA
No. Of Pins
5
Operating Temperature Range
-40°C To +85°C
Termination Type
SMD
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
AS1323
Data Sheet - A p p l i c a t i o n I n f o r m a t i o n
9 Application Information
Figure 20. Typical Application
Inductor Selection
The control scheme of the AS1323 allows for a wide range if inductor values. A 10µH inductor should be sufficient for
most applications
Smaller inductance values typically offer smaller physical size for a given series resistance, allowing the smallest over-
all circuit dimensions. Applications using larger inductance values may startup at lower battery voltages, provide higher
efficiency and exhibit less ripple, but they may reduce the maximum output current. This occurs when the inductance is
sufficiently large to prevent the maximum current limit (I
expires
For maximum output current, the inductor value should be chosen such that the controller reaches the current-limit
before the maximum on-time is triggered:
t
I
For larger inductor values, the peak inductor current (I
The inductor’s incremental saturation current rating should be greater than the peak switching current. However, it is
generally advisable to bias the inductor into saturation by as much as 20%, although this will slightly reduce efficiency.
Maximum Output Current
The maximum output current (I
the formula for determining I
www.austriamicrosystems.com
ONMAX
LIMIT
is 400mA (typ).
is 6µs (typ).
(see Electrical Characteristics on page
(see Figure
OUTMAX
20).
OUTMAX
:
) is a function of I
10µF
I
OUTMAX
SHDNN
VBATT
I
PEAK
4).
1
3
=
L
>
1
-- - I
2
AS1323
Revision 1.04
V
------------------------------- -
=
PEAK
BATT
PEAK
LIMIT
10µH
V
------------------------------- -
PEAK
I
LIMIT
BATT
) can be determined by:
) from being reached before the maximum on-time (t
, V
L
t
ON
V
---------------- -
IN
V
t
BATT
, V
ON
OUT
5
LX
2
VSS
4
VOUT
OUT
⎞ η
, and the overall efficiency (η) as indicated in
10µF
(EQ 3)
(EQ 1)
(EQ 2)
ON
9 - 14
)

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