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AIC1563-CSHTB

Description
Switching Regulator,
CategoryPower/power management    The power supply circuit   
File Size347KB,14 Pages
ManufacturerAIC [Analog Intergrations Corporation]
Download Datasheet Parametric View All

AIC1563-CSHTB Overview

Switching Regulator,

AIC1563-CSHTB Parametric

Parameter NameAttribute value
MakerAIC [Analog Intergrations Corporation]
package instruction,
Reach Compliance Codecompliant
Analog Integrated Circuits - Other TypesSWITCHING REGULATOR

AIC1563-CSHTB Preview

AIC1563
Versatile DC/DC Converter
FEATURES
3V to 30V Input Voltage Operation.
Internal 2A Peak Current Switch.
1.5A Continuous Output Current.
Bootstrapped Driver.
High Side Current Sense Capability.
High Efficiency (up to 90%).
Internal
±2%
Reference.
Low Quiescent Current at 1.6mA.
Frequency Operation from 100Hz to 100KHz.
DESCRIPTION
The AIC1563 is a monolithic control circuit con-
taining the primary functions required for DC to
DC converters and highside-sensed constant cur-
rent source. The device consists of an internal
temperature compensated reference, comparator,
controlled duty cycle oscillator with an active cur-
rent sense circuit, bootstrapped driver, and high
current output switch. This device is specifically
designed to construct a constant current source
for battery chargers with a minimum number of
external components. Bootstrapped driver can
drive the NPN output switch to saturation for
higher efficiency and less heat dissipation.
APPLICATIONS
Constant Current Source for Battery Chargers.
Saver for Cellular phones.
Step-Down DC-DC Converter Module.
TYPICAL APPLICATION CIRCUIT
D3
*R1
D2
1N4148
C3
1N4148
L1
300µH
D1
1N5819
R2
390K
C2
1000pF
RB
RA
1K
3K
+
C4
470µF
5V/1A
+
1µF
8
1
2
3
4
BOOST
IS
DC
DE
CF
GND
V
IN
8V~25V
+
RS
0.22
7
6
VCC
FB
C1
100µF
5
AIC1563
* R
1
=1K, When V
IN
≥15V,
R
1
=470Ω, otherwise
R3
2.2M
Line Regulation
Load Regulation
Short Circuit Current
V
IN
= 10V~20V @ I
O
=1A
V
IN
= 15V, @ I
O
=100mA~1A
V
IN
=15V, @ R
L
= 0.1Ω
Step-Down Converter
40mV
20mV
1.3A
Analog Integrations Corporation
Si-Soft Research Center
3A1, No.1, Li-Hsin Rd. I , Science Park , Hsinchu 300, Taiwan , R.O.C.
TEL: 886-3-5772500
FAX: 886-3-5772510
www.analog.com.tw
DS-1563G-01 121808
1
AIC1563
AIC1563
ORDERING INFORMATION
AIC1563-XXX XX
PACKING TYPE
TR: TAPE & REEL
TB: TUBE
(DIP is not available in
TR packing)
PACKAGING TYPE
N: DIP-8
S: SOP-8
SH: SOP-8 Exposed Pad
C: COMMERCIAL
P: LEAD FREE COMMERCIAL
G: GREEN PACKAGE
Example: AIC1563CSTR
in SOP-8 Package & Taping & Reel
Packing Type
AIC1563PSTR
in SOP-8 Lead Free Package &
Taping & Reel Packing Type
PIN CONFIGURATION
DIP-8
SOP-8(Exposed Pad)
TOP VIEW
DC
1
DE
2
CF
3
GND
4
8
BOOST
7
IS
6
VCC
5
FB
ABSOLUTE MAXIMUM RATINGS
Supply Voltage
..............................................................……………............................. 30V
............................................………….......... -0.3V~30V
....................................................……………......................... 30V
......................................................……………......................... 30V
..................................…………............................. 30V
....................................................…………….......................... 30V
SOP8
DIP8
Thermal Resistance Junction to Ambient
(Assume no ambient airflow, no heatsink)
Operating Junction Temperature
Storage Temperature Range
SOP8
40°C/W
60°C/W
160°C/W
Comparator Input Voltage Range
Switch Collector Voltage
Switch Emitter Voltage
Driver Collector Voltage
Switch Current
Switch Collector to Emitter Voltage
................................................………………......................................... 2A
SOP8 Exposed Pad*…..……………………16°C/W
Thermal Resistance Junction to Case
SOP8 Exposed Pad*…………………….60°C/W
DIP8
100°C/W
.....................................................………............. 125°C
Operating Ambient Temperature Range .......................……………......................... -40~85°C
...................................………….................... - 65°C ~ 150°C
…………………………………………………260°C
Lead Temperature (Soldering 10 Sec.)
Absolute Maximum Ratings are those values beyond which the life of a device may be impaired.
* The package is place on a two layers PCB with 2 ounces copper and 2 square inch, connected by 8 vias.
2
AIC1563
AIC1563
TEST CIRCUIT
D3
*R1
D2
1N4148
C3
1N4148
L1
300µH
D1
1N5819
R2
390K
C2
1000pF
RB
RA
1K
3K
+
C4
470µF
5V/1A
+
1µF
8
1
2
3
4
BOOST
IS
DC
DE
CF
GND
V
IN
8V~25V
+
RS
0.22
7
6
VCC
FB
C1
100µF
5
AIC1563
* R
1
=1K, When V
IN
≥15V,
R
1
=470Ω, otherwise
R3
2.2M
3
AIC1563
AIC1563
ELECTRICAL CHARACTERISTICS
(V
CC
= 5V, T
A
=25°C, unless otherwise specified.)
°
(Note1)
PARAMETER
Oscillator
Charging Current
Discharge Current
Voltage Swing
Discharge to Charge Cur-
rent Ratio
Current Limit Sense Voltage
Output Switch
Saturation Voltage, Emitter
Follower Connection
Saturation Voltage
DC Current Gain
Collector Off-State Current
Comparactor
Threshold Voltage
TEST CONDITIONS
SYMBOL
MIN.
TYP.
MAX.
UNIT
5.0V≤VCC≤30V
5.0V≤VCC≤30V
PIN 3
V
IS
=VCC
I
CHG
=I
DISCHG
I
CHG
I
DISCHG
V
OSC
I
DISCHG
/
I
CHG
10
100
25
150
0.6
6.0
40
200
µA
µA
V
VCC – V
IS
250
300
350
mV
I
DE
=1.0A;
V
BOOST
=V
DC
= VCC
I
DC
=1.0A; I
BOOST
=50mA, (Forced
β≅20)
I
SC
=1.0A; V
CE
=5.0V
V
CE
=30V
V
CE(SAT)
1.5
1.8
V
V
CE (SAT)
h
FE
I
C(OFF)
35
0.4
120
10
0.7
V
nA
T
A
=25°C
0°C
T
A
70°C
V
FB
1.225
1.21
1.25
1.275
1.29
0.3
1
V
V
mV/V
µA
Threshold Voltage Line
Regulation
Input Bias Current
3.0V≤VCC≤30V
V
IN
=0V
V
IS
=VCC, pin 5>V
FB
5.0V≤ VCC
≤30V
C
T
=1nF
PIN 2=GND
Remaining pins open
REG
LINE
I
IB
0.1
0.4
Supply Current
I
CC
1.6
3
mA
Note 1: Specifications are production tested at T
A
=25 C. Specifications over the -40 to 85 operating tem-
perature range are assured by design, characterization and correlation with Statistical Quality Controls
(SQC).
°
4
AIC1563
AIC1563
TYPICAL PERFORMANCE CHARACTERISTICS
2
t
ON-OFF
, Output Switch ON-OFF Time (
µ
S)
I
CC
, Supply Current (mA)
VCC=5V
V
IS
=VCC
PIN 5=GND
ON -TIME
1000
1.6
1.2
C
T
= 1nF
V
IS
= VCC
PIN 2 =GND
100
0.8
10
OFF-TIME
0.4
1
0.1
1
10
100
0
CT, Oscillator Timing Capacitor (nF)
Fig. 1 Output Switch ON-OFF Time vs. Oscillator
Timing Capacitor
0
5
10
15
20
25
30
VCC, Supply Voltage (V)
Fig. 2 Standby Supply Current vs. Supply Voltage
1.3
350
V
CC
-V
IS
Threshold Voltage (mV)
1.28
V
FB
, Threshold Voltage (V)
VCC = 5V,
C
T
= 1nF,
PIN 2 = GND
340
330
320
310
300
290
280
270
260
250
0
VCC = 5V,
C
T
= 1nF,
PIN 2 = GND
1.26
1.24
1.22
1.2
0
10
20
30
40
50
60
70
80
10
20
30
40
50
60
70
80
Temperature (°C)
Fig. 3 V
FB
, Threshold Voltage vs. Temperature
Temperature (°C)
Fig. 4 I
S
Threshold Voltage vs. Temperature
1.8
0.8
V
CE(SAT)
, Saturation Voltage (V)
1.7
VCC = 5V
PIN 1, 7, 8 = VCC
PIN 3, 5 = GND
V
CE(SAT)
, Saturation Voltage (V)
0.6
VCC = 5V
PIN 7 = VCC
PIN 2, 3, 5 =
GND
1.6
1.5
1.4
0.4
0.2
Forced Beta = 20
1.3
1.2
0
0.5
1
1.5
0
0
0.5
1
1.5
I
E
, Emitter Current (A)
Fig. 5 Emmiter Follower Configuration Output Switch
Saturation Voltage vs. Emmiter Current
I
C
, Collector Current (A)
Fig. 6 Common Emitter Configuration Output Switch
Saturation Voltage vs. Collector Current
5
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