EL7515IYZ-T13 Intersil, EL7515IYZ-T13 Datasheet - Page 6

IC REG PWM STEP-UP 10-MSOP

EL7515IYZ-T13

Manufacturer Part Number
EL7515IYZ-T13
Description
IC REG PWM STEP-UP 10-MSOP
Manufacturer
Intersil
Type
Step-Up (Boost)r
Datasheet

Specifications of EL7515IYZ-T13

Internal Switch(s)
Yes
Synchronous Rectifier
No
Number Of Outputs
1
Voltage - Output
4.5 ~ 17 V
Current - Output
600mA
Frequency - Switching
670kHz
Voltage - Input
1.8 ~ 13.2 V
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
10-MSOP, Micro10™, 10-uMAX, 10-uSOP
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Power - Output
-
Typical Performance Curves
Applications Information
The EL7515 is a step-up regulator, operated at fixed
frequency pulse-width-modulation (PWM) control. The input
voltage is 1.8V to 13.2V and output voltage is 4.5V to 17V.
The switching frequency (up to 1.2MHz) is decided by the
resistor connected to R
Start-Up
After V
oscillator generates fixed duty-ratio of 0.5 to 0.7 at a
frequency of several hundred kilohertz. This will boost the
output voltage.
When V
over the control. The duty ratio will be decided by the
multiple-input direct summing comparator, Max_Duty signal
(about 90% duty-ratio), and the Current Limit Comparator,
whichever is the smallest.
The soft-start is provided by the current limit comparator. As
the internal 12µA current source charges the external CSS,
the peak MOSFET current is limited by the voltage on the
FIGURE 7. STEADY STATE OPERATION (INDUCTOR
ΔV
DD
ΔV
ΔV
V
DD
V
LX
IN
I
IN
I
O
O
L
L
reaches a threshold of about 1.7V, the start-up
V
V
reaches about 3.7V, the PWM comparator takes
IN
IN
DISCONTINUOUS CONDUCTION)
= 5V, V
= 5V, V
FIGURE 9. POWER-UP
O
O
= 12V, I
= 12V, I
T
pin.
0.5ms/DIV
0.5µs/DIV
O
O
= 300mA
= 30mA
6
(Continued)
2V/DIV
5V/DIV
0.5A/DIV
50mV/DIV
10V/DIV
20mV/DIV
0.5A/DIV
EL7515
capacitor. This in turn controls the rising rate of the output
voltage.
The regulator goes through the start-up sequence as well
after the EN signal is pulled to HI.
Steady-State Operation
When the output reaches the preset voltage, the regulator
operates at steady state. Depending on the input/output
conditions and component values, the inductor operates at
either continuous-conduction mode or
discontinuous-conduction mode.
In the continuous-conduction mode, the inductor current is a
triangular waveform and LX voltage a pulse waveform. In the
discontinuous-conduction mode, the inductor current is
completely dried out before the MOSFET is turned on again.
The input voltage source, the inductor, and the MOSFET and
output diode parasitic capacitors form a resonant circuit.
Oscillation will occur in this period. This oscillation is normal
and will not affect the regulation.
FIGURE 8. STEADY STATE OPERATION (INDUCTOR
ΔV
I
O
O
ΔV
ΔV
V
V
LX
IN
FIGURE 10. LOAD TRANSIENT RESPONSE
IN
I
O
L
= 5V, V
V
IN
CONTINUOUS CONDUCTION)
= 5V, V
O
= 12V, I
O
= 12V, I
0.2ms/DIV
O
= 50mA TO 300mA
0.5µs/DIV
O
= 300mA
100mA/DIV
0.5V/DIV
August 10, 2007
50mV/DIV
10V/DIV
20mV/DIV
0.5A/DIV
FN7120.2

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