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XC9224 Datasheet(PDF) 7 Page - Torex Semiconductor

Part # XC9224
Description  1A Driver Transistor Built-In Step-Down DC/DC Converters
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Manufacturer  TOREX [Torex Semiconductor]
Direct Link  http://www.torex.co.jp
Logo TOREX - Torex Semiconductor

XC9224 Datasheet(HTML) 7 Page - Torex Semiconductor

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XC9223/XC9224
Series
1MHz
2MHz
No.
PARAMETER
SYMBOL
MIN.
TYP.
MAX.
MIN.
TYP.
MAX.
D1-1
Supply Current 1
IDD1
-
380
700
-
440
800
D1-2
Supply Current 2
IDD2
-
30
60
-
45
80
D1-3
Oscillation Frequency
FOSC
0.85
1.00
1.15
1.7
2.0
2.3
D1-4
External Clock
Synchronous Oscillation
SYNCOSC
0.75
-
1.25
1.5
-
2.5
D1-5
Integral Latch Time
TLAT
-
6.0
15.0
-
3.0
15.0
XC9223 SERIES
XC9224 SERIES
No.
PARAMETER
SYMBOL
MIN.
TYP.
MAX.
MIN.
TYP.
MAX.
D1-6
Stand-by Current
ISTB
-
0.1
2.0
-
7.0
15.0
PARAMETER
SYMBOL
CONDITIONS
MIN.
TYP.
MAX.
UNIT
CIRCUIT
Detect Voltage
VDF
VDIN Voltage which VDOUT becomes
‘H’ to ‘L’, Pull-up resistor 200k
Ω
0.676
0.712
0.744
V
Release Voltage
VDR
VDIN Voltage which VDOUT becomes
‘L’ to ‘H’, Pull-up resistor 200k
Ω
0.716
0.752
0.784
V
Hysteresis Width
VHYS
VHYS=(VDR-VDF) / VDF x 100
-
5
-
%
-
Output Current
IDOUT
VDIN=VDF x 0.9, apply 0.25V to VDOUT
2.5
4.0
-
mA
Delay Time
TDLY
Time until VDOUT becomes ‘L’ to ‘H’ after
VDIN changed from 0V to 1.0V
0.5
2.0
8.0
ms
VDIN ‘H’ Current
IVDINH
VIN=VDIN=6.0V
-
-
0.1
μA
VDIN ‘L’ Current
IVDINL
VIN=6.0V, VDIN=0V
- 0.1
-
-
μA
VDOUT ‘H’ Current
IVDOUTH
VIN=VDIN=VDOUT=6.0V
-
-
1.0
μA
VDOUT ‘L’ Current
IVDOUTL
VIN=VDIN=6.0V, VDOUT=0V
- 1.0
-
-
μA
XC9223/XC9224 Series (Continued), Voltage Detector Block (*9)
Topr=25
■ELECTRICAL CHARACTERISTICS (Continued)
Test Condition: Unless otherwise stated, VIN=3.6V, CE=VIN, MODE/SYNC=VIN
NOTE:
*1: When the difference between the input and the output is small, some cycles may be skipped completely before current maximizes.
If current is further pulled from this state, output voltage will decrease because of P-ch driver ON resistance.
*2: Refer to the chart below.
*3: EFFI = { ( output voltage x output current ) / ( input voltage x input current) } x 100
*4: On resistance (
Ω)= (VIN- Lx pin measurement voltage) / 100mA
*5: Time until it short-circuits Lx with GND through 1
Ω of resistance from a state of operation and is set to Lx=Low from current limit pulse
generating.
*6: When temperature is high, a current of approximately 100
μA may leak.
*7: Designed value.
*8: Whether the Lx pin is high level or low level is judged at the condition of “H”>VIN-0.1V and “L”<0.05V.
*9: There is no voltage detector function available in the XC9223D series.
●Electrical Characteristics Standard Values


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