S-8351A33MC-J2ST2G Seiko Instruments, S-8351A33MC-J2ST2G Datasheet - Page 20

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S-8351A33MC-J2ST2G

Manufacturer Part Number
S-8351A33MC-J2ST2G
Description
IC REG SW 100KHZ 3.3V SOT23-5
Manufacturer
Seiko Instruments
Type
Step-Up (Boost)r
Datasheet

Specifications of S-8351A33MC-J2ST2G

Internal Switch(s)
Yes
Synchronous Rectifier
No
Number Of Outputs
1
Voltage - Output
3.3V
Frequency - Switching
100kHz
Voltage - Input
0.9 ~ 10 V
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
SOT-23-5, SC-74A, SOT-25
Power - Output
250mW
Output Voltage
3.3 V
Input Voltage
10 V
Duty Cycle (max)
75 %
Switching Frequency
100 KHz
Mounting Style
SMD/SMT
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Current - Output
-
Lead Free Status / Rohs Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
S-8351A33MC-J2ST2G
Manufacturer:
SEIKO
Quantity:
2 739
Part Number:
S-8351A33MC-J2ST2G
Manufacturer:
SEIKO/精工
Quantity:
20 000
20
STEP-UP, BUILT-IN / EXTERNAL FET PFM CONTROL SWITCHING REGULATOR / SWITCHING REGULATOR CONTROLLER
S-8351/8352 Series
External Parts Selection
1. Inductor
2. Diode
To minimize the loss due to inductor direct current resistance, select an inductor with the smallest possible direct
current resistance (less than 1 Ω). Set the inductance value (L value) to around 22 μH to 1 mH.
To make the average value of the output voltage (V
to the output current (I
the inductor can supply energy only during t
Operation” in the “ Operation” with 0 → t
When the oscillation duty ratio of OSC is 75%, I
into transistor (M1).
The S-8351 Series includes a switching current controller which monitors the current flowing into the CONT pin by
the voltage (CONT control voltage) and controls the current. This controller prevents destruction of the IC due to
excess current.
If an inductor with a large L value is selected, both I
equal to
value. As a result, stepping up at a low voltage becomes difficult and the minimum operating input voltage becomes
high. However, the direct current resistance loss of L value and the M1 transistor decreases by the amount I
decreased, and the inductance efficiency improves.
On the other hand, if an inductor with a smaller L value is selected, both I
minimum operating input voltage becomes low but the inductance efficiency deteriorates.
Caution An excessively large I
*1. Level of current that causes magnetic saturation.
Use an external diode that meets the following requirements :
• Low forward voltage : V
• High switching speed : 500 ns max.
• Reverse voltage :
• Current rate :
I
PK
2
I
PK
t
=
OFF
1
2
destruction of the IC. Use a core with material that satisfies I
2
L
=
t
I (
ON
I
OUT
PK
t
OFF
+
)
2
×
t
OFF
, the energy decreases because I
t (
OUT
ON
+
I
) from the inductor. The amount of charge required for I
OUT
t
OFF
V
I
PK
F
OUT
)
< 0.3 V
or more
+ V
PK
F
may cause magnetic saturation for some core materials, leading to the
or more
Seiko Instruments Inc.
OFF
, namely,
PK
OFF
= 8 • I
, the charge is obtained by integrating equation (7) in the “3.
OUT
PK
and I
PK
) constant, it is necessary to supply the energy corresponding
OUT
I
PK
2
decreases in steps of squares offsetting the increase of L
. Therefore, an I
OUT
t
OFF
decrease. Since the energy stored in the inductor is
. Thus,
sat
PK
PK
current which is eight times I
*1
and I
> I
OUT
PK
OUT
is I
increase. Accordingly, the
OUT
× (t
ON
(17)
(18)
+ t
OFF
Rev.3.0
). Because
OUT
flows
_00
PK

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