XCL206B153AR-G Torex Semiconductor Ltd, XCL206B153AR-G Datasheet - Page 7

IC BUCK SYNC 1.5V 0.6A USP-6EL

XCL206B153AR-G

Manufacturer Part Number
XCL206B153AR-G
Description
IC BUCK SYNC 1.5V 0.6A USP-6EL
Manufacturer
Torex Semiconductor Ltd
Series
XCL206r
Type
Point of Load (POL) Non-Isolated with UVLOr
Datasheets

Specifications of XCL206B153AR-G

Output
1.5V
Number Of Outputs
1
Power (watts)
1W
Mounting Type
Surface Mount
Voltage - Input
2 ~ 6 V
Package / Case
USP-6EL
1st Output
1.5 VDC @ 600mA
Size / Dimension
0.10" L x 0.08" W x 0.04" H (2.5mm x 2.0mm x 1.04mm)
Power (watts) - Rated
1W
Operating Temperature
-40°C ~ 85°C
Efficiency
90%
Current - Output
600mA
Voltage - Output
1.5V
Power - Output
1W
Internal Switch(s)
Yes
Frequency - Switching
3MHz
Synchronous Rectifier
Yes
Primary Input Voltage
6V
No. Of Outputs
1
Output Voltage
1.5V
Output Current
600mA
Voltage Regulator Case Style
USP
No. Of Pins
6
Operating Temperature Range
-40°C To +85°C
Svhc
No SVHC
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
For Use With
893-1157 - BOARD EVAL XCL206B153AR-G 1.5V
Lead Free Status / RoHS Status
Lead free / RoHS Compliant, Lead free / RoHS Compliant
Other names
893-1153-2

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
XCL206B153AR-G
Manufacturer:
TOREX
Quantity:
20 000
Supply Current (XCL206, XCL207)
PFM Switching Current
PWM "H" Level Voltage
PWM "L" Level Voltage
Lx SW "H" Leak Current
Temperature Characteristics
Supply Current (XCL205)
Lx SW "H" ON Resistance 1
Lx SW "H" ON Resistance 2
Lx SW "L" ON Resistance 1
Lx SW "L" ON Resistance 2
Allowed Inductor Current
Test conditions: Unless otherwise stated, V
NOTE:
Maximum Output Current
Operating Voltage Range
ELECTRICAL CHARACTERISTICS (Continued)
Oscillation Frequency
Maximum Duty Cycle
Minimum Duty Cycle
XCL205 B183AR/XCL206 B183AR/ XCL207B183AR, V
PFM Duty Limit
Threshold Voltage
Stand-by Current
Inductance Value
*3: ON resistance ( )= (V
*4: Design value
*5: When temperature is high, a current of approximately 10 A (maximum) may leak.
*1: Including hysteresis operating voltage range.
*2: EFFI = { ( output voltage output current )
Current Limit
Short Protection
*6: The CE/MODE pin of the XCL207 series works also as an external switching pin of PWM control and PWM/PFM control. When the IC is in the
*7: Time until it short-circuits V
*8: When V
*9: When the difference between the input and the output is small, some cycles may be skipped completely before current maximizes.
*10: Current limit denotes the level of detection at peak of coil current.
*11: “H”=V
*12: I
*13: V
CE "H" Voltage
CE "H" Current
Output Voltage
Output Voltage
CE "L" Voltage
CE "L" Current
Soft Start Time
UVLO Voltage
PARAMETER
CL Discharge
Latch Time
operation, control is switched to the automatic PWM/PFM switching mode when the CE/MODE pin voltage is equal to or greater than V
0.3V, and to the PWM mode when the CE/MODE pin voltage is equal to or lower than V
If current is further pulled from this state, output voltage will decrease because of P-ch driver ON resistance.
Efficiency
PFM
PWMH
and DTY
IN
IN
~V
and V
is less than 2.4V, limit current may not be reached because voltage falls caused by ON resistance.
(*10)
IN
(*12)
-1.2V, “L”=+0.1V~-0.1V
PWML
LIMIT_PFM
(*13)
(*13)
(*12)
(*5)
are defined only for the XCL207 series. (They are not used in the XCL205/and XCL206 series)
(V
DTY
IN
SYMBOL
are defined only for the XCL206 and XCL207 series which have PFM control function. (Not for the XCL 205 series)
OUT
ILeakH
I
V
V
V
R
- Lx pin measurement voltage)
OUTMAX
V
D
EFFI
R
R
R
R
V
V
D
V
f
I
I
I
I
SHORT
OUT
PWMH
t
V
LIMIT_PFM
I
V
PWML
I
OSC
PFM
CEH
t
DCHG
I
UVLO
STB
CEL
LIM
LAT
OUT
DD
MAX
L H
L H
L L
L L
CEH
DC
CEL
SS
L
MIN
OUT
IN
topr)
with GND via 1 of resistor from an operational state and is set to Lx=0V from current limit pulse generating.
/
IN
=5.0V, V
level within 1ms
When connected to external components,
V
V
When connected to external components
V
Voltage which Lx pin holding “L” level
V
V
When connected to external components,
V
When connected to external components,
V
V
V
V
When connected to external components,
V
V
V
V
V
V
V
I
-40
V
Voltage changes Lx to “H” level
V
Voltage changes Lx to “L” level
When connected to external components,
I
frequency becomes 2550kHz f
When connected to external components,
I
frequency becomes f
V
V
When connected to external components,
V
V
Short Lx at 1
Sweeping V
1
V
Test frequency =1MHz
OUT
OUT
OUT
IN
IN
CE
IN
IN
IN
IN
CE
IN
IN
CE
IN
IN
IN
IN
IN
IN
OUT
OUT
IN
IN
CE
IN
IN
T=40
=V
=V
=V
=5.0V, V
=V
=V
=V
=V
=V
=V
=V
=V
=V
=5.0V, V
=V
=5.0V, L
=V
=V
=V
=0V V
=V
=V
=1mA
=1mA
=30mA
=0V, Applied voltage to V
=0V, Applied voltage to V
resistance, V
CE
OUT(E)
CE
CE
CE
CE
CE
CE
CE
OUT
CE
CE
CE
( input voltage input current) } 100
IN
IN
IN
OUT(T)
OUT(T)
OUT (T)
=5.0V, I
,V
=5.0V, V
=(C-1) I
=5.0V, V
=5.0V, V
=5.0V, V
=3.6V, V
=5.0V
=5.0V, V
=5.0V, V
=5.0V, V
Topr 85
= 3.6V
=5.0V, V
OUT
V
(*6),
(*6)
+2.0V, V
+2.0V,V
+2.0V, V
IN
X
CE
OUT (T)
CE
OUT
=5.0V, V
, Voltage which oscillation
=0V,
Voltage which oscillation
= Nominal Voltage
=0V, V
=0V, V
, I
(*4)
, V
OUT
OUT
OUT
(*4)
OUT
OUT
OUT
OUT
OUT
OUT
OUT
OUT
resistance
+1.2V, I
CE
OUT
IN
CONDITIONS
=1mA
=30mA
=1mA
CE
CE
100mA
=V
=V
=V
=0V, IL
=0V, IL
=V
=0V
=0.8 V
=V
CE
=0V, L
OUT
OUT
CE
OUT
=1.0V
=1.0V, I
OSC
voltage which Lx becomes “L”
OUT(T)
OUT (T)
OUT (T)
OUT (T)
CE
= V
=0V, V
=V
=0V
=5.0V, Short Lx at
OUT
=1.8V, f
(*12)
IN
OUT(T)
X
X
X
2550kHz
(*7)
=100mA
=100mA
=100mA
=0V
OUT(T)
, I
OUT
1.1V
OUT
0.9V
1.1V
0.9V
CE
CE
OUT
,
,
(*11)
=100mA
(*11)
OSC
=Open
=1mA
1.1V
OSC
(*8)
(*13)
(*3)
(*3)
=3.0MHz, Ta=25
3450kHz
(*1, *11)
(*12)
(*9)
IN
(*13)
minus 1.0V and equal to or greater than V
1.764
0.675
2550
MIN.
1.00
0.65
- 0.1
- 0.1
V
0.25
600
170
100
900
200
V
1.0
2.0
IN
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
SS
XCL205/XCL206/XCL207
-
0.900
3000
1050
1000
TYP.
1.800
1.40
0.35
0.42
0.45
0.52
0.01
0.32
220
200
300
1.5
46
21
85
100
0
-
-
-
-
-
-
-
-
-
-
-
V
1.836
1.125
MAX.
3450
1350
IN
1.78
0.55
0.67
0.66
0.77
0.25
0.50
270
300
450
6.0
1.0
1.0
0.1
0.1
V
65
35
20
0
-
-
-
-
- 1.0
-
-
-
IN
ppm/
UNITS CIRCUIT
kHz
mA
mA
mA
mA
ms
ms
%
%
%
%
V
V
V
V
V
V
V
V
A
A
A
A
A
H
CEH
Series
7/26
.
IN
-
-
minus

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