CAUTION: Stresses above those listed in “Absolute Maximum Ratings” may cause permanent damage to the device. This is a stress only rating and operation of the
device at these or any other conditions above those indicated in the operational sections of this specification is not implied.
IMPORTANT NOTE: All parameters having Min/Max specifications are guaranteed. Typ values are for information purposes only. Unless otherwise noted, all tests are
at the specified temperature and are pulsed tests, therefore: T
J
= T
C
= T
A
NOTE:
1.
θ
JA
is measured in free air with the component mounted on a high effective thermal conductivity test board with “direct attach” features. See
Tech Brief TB379.
Electrical Specifications
PARAMETER
DC CHARACTERISTICS
V
FB
I
FB
V
IN
, V
DD
V
IN,OFF
V
IN,ON
I
S
V
DD
= V
IN
= V
EN
= 3.3V, C
1
= C
2
= 10µF, L = 1.8µH, V
O
= 1.8V (as shown in Typical Application Diagram),
unless otherwise specified.
CONDITIONS
MIN
TYP
MAX
UNIT
DESCRIPTION
Feedback Input Voltage
Feedback Input Current
Input Voltage
Minimum Voltage for Shutdown
Maximum Voltage for Startup
Input Supply Quiescent Current
Active - PFM Mode
Active - PWM Mode
PWM Mode
790
800
810
100
mV
nA
V
V
V
2.5
V
IN
falling
V
IN
rising
2
2.2
5.5
2.2
2.4
V
SYNC
= 0V
V
SYNC
= 3.3V
PWM, V
IN
= V
DD
= 5V
EN = 0, V
IN
= V
DD
= 5V
120
6.5
400
0.1
70
45
1.2
145
7.5
500
1
100
75
µA
mA
µA
µA
mΩ
mΩ
A
°C
°C
I
DD
Supply Current
R
DS(ON)-PMOS
PMOS FET Resistance
V
DD
= 5V, wafer test only
V
DD
= 5V, wafer test only
R
DS(ON)-NMOS
NMOS FET Resistance
I
LMAX
T
OT,OFF
T
OT,ON
I
EN
, I
SYNC
V
EN1
, V
SYNC1
V
EN2
, V
SYNC2
V
PG
Current Limit
Over-temperature Threshold
Over-temperature Hysteresis
EN, SYNC Current
EN, SYNC Rising Threshold
EN, SYNC Falling Threshold
Minimum V
FB
for PG, WRT Targeted
V
FB
Value
PG Voltage Drop
T rising
T falling
V
EN
, V
RSI
= 0V and 3.3V
V
DD
= 3.3V
V
DD
= 3.3V
V
FB
rising
V
FB
falling
I
SINK
= 3.3mA
86
0.8
-1
145
130
1
2.4
µA
V
V
95
%
%
V
OLPG
35
70
mV
AC CHARACTERISTICS
F
PWM
t
SYNC
t
SS
PWM Switching Frequency
Minimum SYNC Pulse Width
Soft-start Time
Guaranteed by design
1.25
25
650
1.4
1.6
MHz
ns
µs
2
FN7434.6
July 12, 2006
EL7530
Pin Descriptions
PIN NUMBER
1
2
3
4
5
6
7
8
9
10
PIN NAME
SGND
PGND
LX
VIN
VDD
SYNC
EN
PG
VO
FB
Negative supply for the controller stage
Negative supply for the power stage
Inductor drive pin; high current digital output with average voltage equal to the regulator output voltage
Positive supply for the power stage
Power supply for the controller stage
SYNC input pin; when connected to HI, regulator runs at forced PWM mode; when connected to Low, auto
PFM/PWM mode; when connected to external sync signal, at external PWM frequency up to 12MHz
Enable
Power-Good open drain output
Output voltage sense
Voltage feedback input; connected to an external resistor divider between V
O
and SGND for variable
output
PIN FUNCTION
Block Diagram
100Ω
0.1µF
V
DD
V
O
10pF
INDUCTOR SHORT
+
-
CURRENT
SENSE
PWM
COMPEN-
SATION
+
-
PWM
COMPARATOR
PFM
ON-TIME
CONTROL
CONTROL
LOGIC
C
4
124K
470pF
V
IN
FB
5M
-
+
100K
SYNC
EN
10µF
SYNC
EN
SOFT-
START
CLOCK
RAMP
GENERA-
TOR
P-DRIVER
LX
1.8µH
1.8V
0 TO 600mA
+
-
PWM
COMPARATOR
UNDER-
VOLTAGE
LOCKOUT
TEMPERA-
TURE
SENSE
POWER
GOOD
N-DRIVER
10µF
5V
+
–
BANDGAP
REFERENCE
SGND
+
-
SYNCHRONOUS
RECTIFIER
PGND
100K
PG
PG
3
FN7434.6
July 12, 2006
EL7530
Performance Curves and Waveforms
All waveforms are taken at V
IN
= 3.3V, V
O
= 1.8V, I
O
= 600mA with component values shown on page 1 at room ambient temperature, unless
otherwise noted.
100
95
90
EFFICIENCY (%)
85
EFFICIENCY (%)
80
75
70
65
60
55
50
45
40
1
10
I
O
(mA)
100
600
V
IN
=5V
V
O
=1.2V
V
O
=0.8V
V
O
=1.8V
V
O
=1.5V
V
O
=1.0V
V
O
=3.3V
V
O
=2.5V
100
90
80
70
60
50
40
30
20
10
0
1
10
I
O
(mA)
100
600
V
O
=3.3V
V
O
=2.5V
V
O
=1.8V
V
O
=1.5V
V
O
=1.2V
V
O
=1.0V
V
O
=0.8V
V
IN
=5V
FIGURE 1.
EFFICIENCY vs
I
O
(PFM/PWM MODE)
FIGURE 2. EFFICIENCY vs I
O
(PWM MODE)
100
95
90
EFFICIENCY (%)
85
80
75
70
65
60
55
50
45
40
1
10
I
O
(mA)
100
600
V
IN
=3.3V
V
O
=1.5V
V
O
=1.2V
V
O
=1.0V
V
O
=0.8V
V
O
=2.5V
V
O
=1.8V
EFFICIENCY (%)
100
90
80
70
60
50
40
30
20
10
0
1
10
I
O
(mA)
100
600
V
O
=0.8V
V
IN
=3.3V
V
O
=2.5V
V
O
=1.8V
V
O
=1.5V
V
O
=1.2V
V
O
=1.0V
FIGURE 3. EFFICIENCY vs I
O
(PFM/FWM MODE)
FIGURE 4. EFFICIENCY vs I
O
(PWM MODE)
1.44
V
IN
=5V I
O
=600mA
1.42
1.4
V
IN
=3.3V I
O
=600mA
V
IN
=5V I
O
=0A
V
O
CHANGES
0.1%
0.0%
-0.1%
-0.2%
-0.3%
-0.4%
-0.5%
V
IN
=5V
V
IN
=3.3V
F
S
(MHz)
V
IN
=3.3V I
O
=0A
1.38
1.36
1.34
1.32
-50
0
50
T
A
(°C)
100
150
0
0.2
0.4
I
O
(A)
0.6
0.8
1
FIGURE 5. F
S
vs JUNCTION TEMPERATURE (PWM MODE)
FIGURE 6. LOAD REGULATIONS (PWM MODE)
4
FN7434.6
July 12, 2006
EL7530
Performance Curves and Waveforms
(Continued)
All waveforms are taken at V
IN
= 3.3V, V
O
= 1.8V, I
O
= 600mA with component values shown on page 1 at room ambient temperature, unless
[i=s]This post was last edited by wo4fisher on 2018-9-30 22:58[/i] After sharing the previous posts, the communication protocol of modbus RTU and the use of modscan software for software simulation co...
I want to make an automatic door switch controlled by a single chip microcomputer, which may require a motor. I don't know whether to use a stepper motor or a DC motor. And what type of stepper motor ...
When I debugged the RDAExam (using RDA technology to remotely access SQL2000 on a PC) example in VS2008, the error hr -2147221164 {Class not registered} appeared. I had already installed SQLCE3.0 on t...
Use CPLD to realize the display control of TFT true color LCD screen by single chip microcomputer through parallel port or serial port. The display color is required to reach 16K color and support LVD...
There is still some space on the PCB of the second version of the DIY all-digital power supply, so I plan to put this part on it as an optional item....
I have cross-compiled qte4.4.3 before and ported it to the development board. I have used it for a long time without any problems. Now I need to use video processing in my project. I checked the infor...
High efficiency and low standby power consumption are two major challenges in today's switching power supply design. Resonant topology or LLC topology is becoming increasingly popular because it ca...[Details]
Hardware designers have begun to adopt FPGA technology in high-performance DSP designs because it can provide 10-100 times faster computing than PC-based or microcontroller-based solutions. Previou...[Details]
A single-chip microcomputer is also called a single-chip microcontroller. It is not a chip that completes a certain logical function, but a computer system integrated into one chip. In general, a c...[Details]
To differentiate their products in a crowded and competitive market, manufacturers of handheld devices often consider battery life and power management as key selling points for cell phones, PDAs, ...[Details]
July 11, 2012, Beijing - Altera Corporation (NASDAQ: ALTR) today announced the launch of 40-Gbps Ethernet (40GbE) and 100-Gbps Ethernet (100GbE) intellectual property (IP) core products. These core...[Details]
With the development and widespread application of computer technology, especially in the field of industrial control, computer communication is particularly important. Although serial communication g...[Details]
Editor's note: In order to help technicians or engineers who have knowledge of PIC microcontroller assembly language quickly master the method of using C language to program PIC microcontrollers, t...[Details]
1 Introduction
PROFIBUS is an international, open, and manufacturer-independent fieldbus standard. It is widely used in manufacturing automation, process industry automation, and automatio...[Details]
1 Introduction
Intelligent control instruments are one of the most commonly used controllers in industrial control. They are mainly aimed at a specific parameter (such as pressure, tempera...[Details]
In the single-chip microcomputer system, in addition to display devices, sound devices are often used, and the most common sound device is the buzzer. Buzzers are generally used for some low-demand...[Details]
12v Lead Acid batteries used in trucks, cars, RVs and uninterruptible power supplies are usually rated at 12V. This circuit monitors the battery, the charge and discharge curves, gives the cu...[Details]
LED guardrail lights use fluorescent tubes or LEDs as light sources and continuous guardrails as carriers to form an approximately linear guardrail light strip. This article mainly introduces...[Details]
With the widespread application of new services and technologies in the communications industry, the scale and capacity of operators' network construction are getting larger and larger, and the ris...[Details]
0 Introduction
Under normal circumstances, the three-phase power in the power system is symmetrical, and they meet certain amplitude and phase conditions; but when the load changes, the syst...[Details]
Currently, each country is developing its own USB interface
charging specifications
, which leads to a major problem that a USB interface
charging
device manufactured in one country...[Details]