7/22
XC9220/XC9221
Series
<Soft-Start Time>
The XC9220/XC9221B and D series can adjust the soft-start time externally via the CE pin. The soft-start function
operates until the CE pin voltage becomes 2.6V. Please refer to the following equation for calculating the soft-start
time. Minimum soft-start time is equal to the time set internally.
T
SS= - CSS x RSS x In { (VCE – 2.2) / VCE }
CE/CSS PIN
VCE
Rss
Css
CE/CSS
PIN
VCE
Rss
Css
ON/OFF
Signal
> Circuit Examle2 : CMOS logic (low current dissipation)
CE/CSS
PIN
VCE
Rss
Css
ON/OFF
Signal
> Cicuit Examle3 : CMOS logic (low current dissipation, quick off)> Circuit Example1 : N-ch Open Drain
CE/CSS
PIN
VCE
Rss
Css
ON/OFF
Signal
Internal
sotf-start time:Tss1
(XC9220/21A series)
Externally set
so ft-star t time: Tss2
(XC9220/21A series)
Minimum soft-start time
when externally set:
Tss2_min = Tss1
XC9220/21A series
XC9220/21B series
<UVLO (Under Voltage Lock Out) >
When the input voltage becomes 2.3V (TYP.) or lower, the external P-channel driver transistor is forced OFF. Once
the UVLO operates, the XC9220/XC9221A and C series (soft-start internally set type) resets the internal circuit. For
this, by releasing the UVLO function, the IC performs the soft-start function to initiate output startup operation. When
the input voltage falls because of a power cutoff etc. and the IC stops operation due to the UVLO function, the IC
resumes its operation by internal soft-start circuit of the XC9220/XC9221B and D series. If the soft-start time is
needed to set externally, the CE/C
SS pin voltage should be reset to 0V. (Please see the soft-start circuit example.)
UVLO Operation
VIN
U.V.L.O. (Internal Signal)
VOUT
(XC9220/21A and C series)
VOUT
(XC9220/21B and D series)
U.V .L.O.
release delay
Soft-start time: Tss1
U.V.L.O. operation
U.V .L.O.
release delay
Soft-start time (Externally set-up) :Tss2
Soft-start time:Tss1
OPERATIONAL EXPLANATION
(
Continued
)
8/22
XC9220
/
XC9221 Series
2. Short-Circuit Protection Circuit (Latching Type)
When the FB pin is shorted to the Ground or the output voltage drops rapidly because of over load state etc., the P-ch
driver transistor is kept OFF as in the case with the integral protection circuit. (The protection circuit operates when
the FB voltage becomes 0.7V or lower.) For releasing the latching state, the circuit is needed to restart via the V
IN or
the CE pin.
Short-circuit protection circuit
FB Voltage 0.9V
0.7V
VREF
0.9V
Soft-start time Tss x 90%
* Protection circuit does not operate.
Less than 100usec = Not latching
Latch
100 usec
* About 100 to 200usec delay time is set
to avoid latching w hen instantaneous
transient response drop
<Protection Circuits>
1. Integral Protection Circuit (Latch Type)
In the circuit of the XC9220/XC9221 A and B series, the more load current becomes larger, the duty of the EXT/ pin
gradually expands, and the duty reaches maximum (EXT/L). When the MAXDUTY state continues a certain amount
of time (T
PRO), the EXT/ pin holds high level (latching) and keeps the P-ch output driver transistor in OFF state. For
resuming the operation from the latching state, please turn off the IC via the CE pin or apply the input voltage again
(operates UVLO function and release). The latching state does not mean a complete shutdown, but a state in which
pulse output is suspended; therefore, the internal circuitry remains in operation.
However, the integral protection circuit uses the MAXDUTY as a trigger for its operation, it suspends the pulse output
no matter what dropout voltage decreases. For the specification including small dropout voltage, the
XC9220/XC9221 C or D series, which do not have the integral protection function, are recommended.
Integral protection circuit
Ton < Tpro Ton > Tpro
EXT/ Waveform
Latch
Protection circuit operates and
EXT/ Output shut dow n
Ton : ON Time ( EXT/ : L)
Tpro : Integral Protection Circuit
Delay Time (Internally set)
OPERATIONAL EXPLANATION
(
Continued
)
9/22
XC9220/XC9221
Series
Output Voltage Setting
Output voltage can be set by adding split resistors. Output voltage is determined by the following equation, based on
the values of R
FB1 and RFB2. The sum of RFB1 and RFB2 should normally be 1MΩ or less.
V
OUT = 0.9 x (RFB1 + RFB2) / RFB2
The value of C
FB, speed-up capacitor for phase compensation, should be adjusted by the following equation. Fzfb
should usually be 5kHz. Adjustments are required from 1kHz to 20kHz depending on the application, value of
inductance (L), and value of load capacity (CL).
C
FB = 1 / (2 x
x RFB1 x fzfb)
[Sample calculation: Setting 3.3V V
OUT]
RFB1 = 200k
Ω
, RFB2=75k
Ω
, VOUT = 0.9 x (200k + 75k) / 75k = 3.300V
C
FB = 1 / (2 x
x 200k x 5k) =150pF
[Typical examples]
VOUT
(V)
RFB1
(kΩ)
RFB2
(kΩ)
CFB
(pF)
VOUT
(V)
RFB1
(kΩ)
RFB2
(kΩ)
CFB
(pF)
1.2 100 300 330 3.3 200 75 150
1.5 180 270 180 5.0 150 33 220
1.8 220 220 150 12.0 160 13 180
IOUT UP TO 500mA UP TO 1A UP TO 2A UP TO 3A
P-ch MOSFET (*1)
CPH3308
(SANYO)
2SJ616
(SANYO)
2SJ646
(SANYO)
Schottky Barrier Diode
(SBD) (*2)
XB01SB04A2BR
(TOREX)
D1FH3 (SHINDENGEN)
CMS02 (TOSHIBA)
DE5PC3
(SHINDENGEN)
*1: Recommended to use P-ch MOSFET with Ciss less than 1500pF.
*2: SBD should be used with high-toned reverse characteristics.
OUTPUT VOLTAGE
RSENSE (mΩ)
V
OUT
2.5V
100
V
OUT
>2.5V 50
Recommended MOSFET and SBD (Examples)
Ceramic Capacitor
With the XC9220/9221 series, a ceramic capacitor can be used as an output capacitor (CL). RSENSE resistor
is required for using the ceramic capacitor. The value of RSENSE resistor is determined depending on the
setting output voltage as the chart below.
External Components
P-ch MOSFET: 2SJ646 (SANYO)
SBD: DE5PC3 (SHINDENGEN)
L: CDRH8D28-4R7 (4.7μH, SUMIDA / fosc=1.0MHz)
CDRH8D43-100 (10μH, SUMIDA / fosc=500kHz)
CDRH127-220 (22μH, SUMIDA / fosc=300kHz)
CIN: 22μF (ceramic)
CL: 22μF (ceramic / fosc=1.0MHz, 500kHz)
47μF (ceramic / fosc=300kHz)
RSENSE: 100m (V
OUT2.5V)
50m (V
OUT2.5V)
OPERATIONAL EXPLANATION
(
Continued
)

XC9221A095MR-G

Mfr. #:
Manufacturer:
Torex Semiconductor
Description:
Switching Controllers 16V Step-Down DCDC Controller
Lifecycle:
New from this manufacturer.
Delivery:
DHL FedEx Ups TNT EMS
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