SlideShare a Scribd company logo
1 of 6
Download to read offline
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 06 Issue: 08 | Aug 2019 www.irjet.net p-ISSN: 2395-0072
© 2019, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 799
An Inductor based dc/dc Converter for Energy Harvesting Application
with Low Input Voltage
Sri. Arun Raj S.R1
1Assistant Professor, Dept. of Electronics & Communication Engineering, UBDT College, Davangere,
Karnataka, India.
----------------------------------------------------------------------***---------------------------------------------------------------------
Abstract - To operate portable devices in low input supply
voltages dc-dc converter are very useful and this type of
devices are useful in energy harvesting application. In this
paper is to boost low voltage dc-dc converter with inductor is
used to produce high voltage supply voltage. In this paper
input supply voltage is 500mV and it produce output voltage
of 1.2 v. and by delivering a output current of 5.018µA and
efficiency of about 34.44%. It is designed in 45nm CMOS
technology by using Cadence Virtuoso software tool in this
paper only single stage is used to produce output voltage of
1.2v and inductor were sized in 40µH to boost input voltage.
Output power is 6.0216µW.
Key Words: Converters,dc/dc powerconversion,integrated
circuit (IC) design.
1. INTRODUCTION
Energy harvestingorpowerharvestingor energyscavenging
is method in which energy is derived from external source
like solar power, thermal energy, salinity gradients, kinetic
energy and wind energy are captured and stored for small
wireless autonomous devices, and theseareusedinwireless
sensor networks and wearable electronics. Energy
harvesting has the low qualitylikelowvoltages,lowcurrents
or both and it is often unsuitable for standard integrated
devices for supplying. For example when thermopile is
exposed to low temperature gradientsitgivetheoutputhigh
currents at low input voltages. A energy harvestingtakesthe
energy from environment and converts that energy into
electrical energy and gives the output or an unregulated
source voltage. Energy harvesting are used in application
like portable, handheld and implementable electronics.
A dc/dc converter is a type of device like electronic circuit or
electromechanical device, it converts from one voltage level
to another voltage level of direct current (dc) and it is also
type of power converter that convertpowerlevel rangefrom
very low that is small batteries to very high that is high
voltage power transmission.
The dc/dc converter increasevoltageofcircuit withoutusing
more batteries of portable devices for to increase power. To
increase the ultralow voltage dc/dc converterusesinductive
based circuit, with the use of inductor it increases the
voltage level and these are widely used in powerelectronics.
An inductor is driven by almost lossless devices, ideal clock
signals and large currents. In dc/dc converter it uses boost
converter to step up voltage. The boost converter is used to
increase the input voltage level from supply to high output
voltage level to load. The boost converter is a class of
switched mode power supply with containing two
semiconductors that is diode and transistor and containing
one storage element that is capacitor or inductor or both. In
dc/dc converter output voltage is greater than source
voltage. The boost converter is also called as step up
converter and here p=vi, the output current is lower than
source current.
In dc/dc converter there are three stages they are Boosting
stage, Timing circuit and Regulator part. In order to convert
ultralow voltage to high voltage that is 300m to 1.2v,
boosting stage requires two cascaded step up converterthat
is stepup1 and stepup2. In this paper the voltage is step up
by using inductor. In this designinputvoltageisincreased by
inductor. In boosting stage transistor is used as a switch.
Boost stage performs in two operations, that are when
switch is open and switch is closed. The clock generator
second stage is to generate 75% duty cycle, combining D-
flip/flop these are used to generate 50% duty cycle.
2. RELATED WORK
2.1. Boosting Stage:
In boosting stage to achieve output voltage of 1.2v there is
two boosting stage is required so that first stage produced of
about 450m-700mv and from this output is given to input
supply voltage of second stage from this overall circuit
produces of 1.2v. Here MOSFET M1 is act as a switch and
MOSFET M2 act as a diode which is shown in below figure
2.1.
First stage is drive second stage is with use of first buffer
stage. So to achieve high voltage duty cycle was set to 50%
with comparison between boosting of voltage and
consumption of power. Size of inductors are depending on
various factors like capacitor, resistor and conductivity of
switch also loadand so manyfactorsareconsiderforsizingof
inductor. Depending on these factor only inductors L1 is
chosen with help of discontinuous conduction mode also. So
inductor L1 is sized at 40µH. In boosting stage design MOS
switch M1 should be more in size, because morecurrentflow
in inductor causes more magnetic field and more voltage
spikes are appeared. So that MOS size is mm in width and
length. Here inductor current and voltage is given by
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 06 Issue: 08 | Aug 2019 www.irjet.net p-ISSN: 2395-0072
© 2019, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 800
Ripple current in inductor is shown below
There are two modes of operation. In first mode that is
mode1 operation is given by, in this mode time duration is
(0≤t≤DT) so that t is ends with DT so current in inductorand
switch is given by
Solution of above equation is
In above equation I1is initial current and this current is end
at mode1 that is t=DT to I2 that is i1 (t=DT) = I2 for this
above equation can be written as
In mode 2 operation inductor current is to be
Similarly I2 is initially current. So thatabove equationcan be
written as
Here current end at mode 2 is similar to I1
Here
So ripple current is given by
Fig 2.1: Single stage step up converter.
Fig 2.2: Output waveform for single stage step up
converter.
Fig 2.3: Un- regulated output for single step up converter.
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 06 Issue: 08 | Aug 2019 www.irjet.net p-ISSN: 2395-0072
© 2019, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 801
2.2. Clock Generator: Clock generators are used to give
the input voltage signal to dc/dc converter. Clock generator
consists of oscillator and d flip flop. Oscillator gives
oscillation signals to circuit. D flip flop produce duty cycle to
circuit. Clock generator is first stage of converter and it is
self-generated input signal without using any external
voltage it give self-input to circuit.Clock generatorisnothing
but oscillator it give timing signal to converter in order to
maintain synchronization operation of the circuit. Clock
signals may be analog or discrete signal it provide both
analog signal and discrete signal.
2.3. Oscillator: Oscillator is a simple ring chain oscillator.
The inverter back to back connection is formed byoscillator,
number of inverter stages is connected back to back and
number should be odd number. From supply voltage it will
work on its own input supply voltage this means without
need of external input supply voltage it will work with
supply voltage. Oscillator amplify noise signal and produce
output signal. In our project after 10µs only oscillator get
oscillate input signal before that 10µs there is no oscillation
process after 10µs only oscillator give signal. As the number
of oscillator stages increases frequency also increases and
delay is decreases. Delay and frequency both inversely
proportional to each other and formulaefordelayisgivenby
T = 1/ (2nf) or f = 1/ (2nT)
To achieve higher frequency one number ofstagesshould be
more or delay should be less and operating frequency is
1MHz to 5MHz and 1MHz is sufficient to operate circuit. The
circuit is to operate in low input voltage, so inverter stage of
NMOS and PMOS should have low threshold voltages. This
low threshold voltage causes leakage current. In inverter
NMOS and PMOS is taken as low threshold voltages in order
to reach low input power supply. Oscillator is nothing but
electronic device it produces electric signal in a periodic
manner so signals like square wave or sine wave and it is
used to convert direct current to alternating current with
use of supply voltage.
2.4. D Flip Flop: D flip flop are used to produce 50% of
duty cycle. D flip flop architecture is based on pass
transistor. D flip flop produce Q and Q¯ as output these
produce 50% duty cycle. Output of oscillator give input of
this D flip flop so overall produce clock signal with50%duty
cycle. D flip flop architecture with use of pass transistor is
mainly because of low power supply, with use of low input
voltage it should work. One more advantage of pass
transistors are used to design D flip flop because it requires
less area and count of transistor and also to reduce power
consumption.
2.5. Regulator: Regulator is a device which is used to
control circuit like temperature and speed of circuit.
Regulator gives enable signal to clock generatortofirststage
of step up converter. It consist of mainly voltage reference
and level shifter these two output are connected to input of
comparator, it compares two input signals that is Vref and
level shifter and give output zero and ones. In regulator it
fixes output voltage means it fixed ata certainvoltage. Inthis
paper regulator output is fixed at 1.2V. Current is appear at
load it changes dramatically so regulator is used. Power
supply of regulator has output of converter and regulator
takes power consumption.
2.6. Voltage Reference: In voltage reference there are
three stages: first stage is start up stage, second stage is
current generator and last stage is acts as a active load. So
from current generator stage itfixesconstantoutput voltage.
Voltage reference can operate minimum voltage that is 0.9v
to 4v. In active load stage all transistor should be saturation
region and it is given by equation as
Where I is current at active load stage, in output of voltage
reference temperature is depends on various factor those
are threshold voltage, mobility and bias current. So above
equation states that output of voltagereferenceisdepend on
mobility that is k and threshold voltage Vth and I is bias
current. So in voltage reference bias current should be fixed
so current generator are used to produce fixed output
voltage. The generator current consists of simply NMOS and
PMOS back to back connection totally current in all
MOSFET’s should be same. So that generator current can
achieve. In current generator M1 and M3 transistors are in
sub threshold region and M2 and M4 transistors are in
saturation region. In active load stage three transistors are
used and those are diode connected and these transistors
are mainly used to compensate temperature of voltage
reference. In band gap there is a resistors are used for
voltage reference, so area is more for resistor but in this
architecture there is use of resistance only MOSFET’s are
used so area is also less.
Fig 2.4: Schematic diagram for Voltage Reference.
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 06 Issue: 08 | Aug 2019 www.irjet.net p-ISSN: 2395-0072
© 2019, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 802
2.7. Level Shifter: Level shifter is a digital device and it is
used to produce one voltage to another domain. So it also
converts one logic level to another logic level. It produces
output voltage below supply voltage. If there is no level
shifter voltage levels are cross signals and correctly not
sampled. It fully converts one voltage level to a different
voltage level. In level shifter there is diodeconnected,SoVds
is equal Vgs and supply voltage is distributed to both Vds1
and Vds2.
So that
Vds1=Vdd – Vds2.
In M2 Vds ˂ Vth1 so, Vgs2 ≤ Vth1 ≥ Vds2 so Vds ≤ Vth1.
Fig 2.5: Schematic diagram for level shifter.
2.8. Comparator: Comparator is used as a regulator to fix
output voltage in comparator it compares two input voltage
and produce output signal in high or low voltagesoroneand
zero signal. Output of comparator is one means it produce
whatever in supply voltage it will produce and zero means it
produce zero voltage. In comparator output is digital form
because it produces one or zero. Output voltage works on
condition like v+ and v- there are two input signal if v+ is
greater than v- it will produce high supply voltage that is 1
and one more condition if v+ is less than v- it will produce
zero voltage or 0. Here v- is reference voltage is used as v-
and level shifter is used as a v+ and it produce output in 1 or
0. Comparator is simply operational amplifier comparator
voltage and op-amp have differential input it contains three
stages one is differential amplifier and second stage is
common source amplifier if one more inverter is added to
that common sourceamplifierthatitbecomescomparatorso
both differential and common source amplifier should be in
saturation region.
Fig 2.6: Schematic diagram for latched
Figure 2.6 shows schematic diagramforlatchedcomparator,
there are two differential input in circuit and produces
output in form of zero and one.
Figure 2.7 shows output waveform for comparator, input is
level shifter and voltage reference
Fig 2.7: Output waveform for Comparator.
Fig 2.8: Flow chat for Circuit Diagram.
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 06 Issue: 08 | Aug 2019 www.irjet.net p-ISSN: 2395-0072
© 2019, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 803
3. EXPERIMENTAL RESULTS
Output waveform for overall dc/dc converter is 1.2v. For
regulated output, it produces 1.2v. But in unregulated
output, it can produce more than 2.5v. The outputwaveform
is as given below in figure 3.1 & 3.2.
Fig 3.1: Output waveform for regulated output voltage.
Fig 3.2: Outputs for Vout and Vin.
Fig 3.3: Transient time for converter.
Figure 3.3 shows transient execution window in cadence
virtuoso software, so time is set as 4m conservative and it is
checked for both dc and transient response. All enable,input
voltage output voltage and power in, out all are shown in
above window.
Discussion:
Comparison between previous work and with this paper is
given below in the comparison table. And working of circuit
diagram is shown in flow chat. In this paper, Input is 500mv
supply voltage and produce 1.2v output voltage and
efficiency of about 34.44%.
Table -1: Performance summary and comparison table
between designed converter and previous work.
Parameter [5] [6] [7] [8] [9] [11] In this
Paper
CMOS
Technology
180-nm 90-nm 35-nm 130-nm 350-nm 180-nm 45-nm
Extra
masks
Low
Threshold
With
Tripple
Well
Not
Mentioned
Not
Mentioned
Not
Mentioned
Low
Threshold
Vth
Input
Supply
Voltage
200mv 300mv 600mv 20mv 35mv 120mv 500mv
Output
Supply
Voltage
1.2v 1v 2v 1v 1.8v 1.2v 1.2v
External
Supply
Voltage
NO NO 2v 0.65v NO NO NO
External
Required
Component
2
Inductor
None 2v Buffer
Capacitor
1 Inductor
1
Capacitor
1 Inductor
1 Switch
2
Inductors
1
Inductor
Efficiency
Obtained
36% Not
Provided
70% (Just
Boost
Converter)
52% 58% 30% 34.44%
4. CONCLUSION
In this paper dc/dc converteris tooperate withinputvoltage
supply of 500mv. And this converter can produce an output
voltage of 1.2v, by delivering output current of about
5.018µA and overall efficiency produce 34.44%. And the
circuit is used for energy harvesting application. The
technology is 45-nm with 500mv input supply voltage andit
produces 1.2v output voltage.
REFERENCES
[1] L. Mensi, L. Colalongo, A. Richelli, and Z-M. Koacs-Vajna,
“A new integrated charge pump architecture using
dynamic biasing of pass transistors,” in Proc. ESSCIRC,
Sep. 2005, pp. 85-88.
[2] M.D. Ker, S.-L. Chen, and C.-S. Tsai, “Design of charge
pump with consideration of gate-oxide reability in low-
voltage CMOS processes,”IEEEJ.Solid-StateCircuits,vol.
41, no. 5, pp. 1100-1107, May 2006.
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 06 Issue: 08 | Aug 2019 www.irjet.net p-ISSN: 2395-0072
© 2019, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 804
[3] G. Palumbo, D. Pappalardo, and M. Gaibotti, “A CMOS
charge pump circuits: Power consumption
optimization,” IEEE Trans. Circuits Syst. I, Fundam.
Theory Appl., vol. 49, no. 11, pp. 1535-1542, Nov. 2002.
[4] A. Richelli, L. Colalongo, M. Quarantelli, M. Carmina, and
Z. M. Kovacs-Vajna, “A fully-integrated inductor based
1.8 V-6 V step-up converter,” IEEE J. Solid-State Circuits,
vol. 39, no. 1,pp.242-245, Jan. 2004.
[5] A. Richelli, L. Colalongo, S. Tonoli, and Z.M.Kovacs-Vajna,
“A 0.2 V-1.2 V dc/dc boost converter for power
harvesting applications,” IEEE Trans. Power
Electron.,vol.24,no.6,pp. 1541-1546, Jun. 2009.
[6] T. K. Halvorsen, H. A. Hjortland, and T. S. Lande, “Power
harvesting circuits in 90 nm CMOS,” in Proc. NORCHIP,
Nov. 2008,pp. 154-157.
[7] I. Doms, P. Merken, R. Mertens, and C. Van
Hoof.”Integrated capacitive power-management citcuit
for thermal harvesters with output power 10 to
1000µW,” in Proc. ISSCC, Feb.2009,pp.300-301.
[8] E. Carlson, K. Strunz, and B. Oits, “20mV input boost
converter for thermoelectric energyharvesting,”inVLSI
Symp. Tech. Dig., Jun. 2009,pp. 162-163.
[9] Y. K. Ramadass and A. P. Chandrakasan, “A batteryless
thermoelectric energy-harvesting interface circuit with
35mV startup voltage,” in Proc. ISSCC,Feb.2010,pp.486-
487.
[10] G. De Vita and G. Iannaccone, “A sub-1 V, 10ppm/C,
nanopower reference generator,” IEEE J. Solid-State
Circuits, vol.42, no. ,pp. 1536-1542, Jul.2007.
[11] Anna Richelli, Simone Comensoli, and Zsolt M. Kovacs-
Vajna,” A DC/DC Boosting Technique and Power
Management for Ultralow-Voltage Energy Harvesting
Applications,” IEEE. Industrial Electronics,
vol.5,No.6,June.2012.

More Related Content

What's hot

Lecture-5 : Semiconductor Power Switching Devices-2
Lecture-5 : Semiconductor Power Switching Devices-2Lecture-5 : Semiconductor Power Switching Devices-2
Lecture-5 : Semiconductor Power Switching Devices-2rsamurti
 
Power electronics switching circuit
Power electronics switching circuitPower electronics switching circuit
Power electronics switching circuitNitesh Jha
 
Self powered door-bell watcher
Self powered door-bell watcherSelf powered door-bell watcher
Self powered door-bell watcherabdullahkhalid50
 
Miniproject report receiver
Miniproject report receiverMiniproject report receiver
Miniproject report receiverGAURAV SINHA
 
Voltage Regulators IC
Voltage Regulators ICVoltage Regulators IC
Voltage Regulators ICDr.Raja R
 
Lecture-4 : Semiconductor Power Switching Devices-1
Lecture-4 : Semiconductor Power Switching Devices-1Lecture-4 : Semiconductor Power Switching Devices-1
Lecture-4 : Semiconductor Power Switching Devices-1rsamurti
 
Chapter 6 power electronic-devices
Chapter 6 power electronic-devicesChapter 6 power electronic-devices
Chapter 6 power electronic-devicesmkazree
 
Power Electronics SCR and BJT MCQ Questions
Power Electronics SCR and BJT MCQ QuestionsPower Electronics SCR and BJT MCQ Questions
Power Electronics SCR and BJT MCQ QuestionsBurdwan University
 
Lecture-7 : Semiconductor Power Switching Devices-4
Lecture-7 : Semiconductor Power Switching Devices-4Lecture-7 : Semiconductor Power Switching Devices-4
Lecture-7 : Semiconductor Power Switching Devices-4rsamurti
 
Analog signal Conditioning
Analog signal ConditioningAnalog signal Conditioning
Analog signal ConditioningGhansyam Rathod
 
Power electronics
Power electronicsPower electronics
Power electronicsFemi Prince
 
HOME APPLICATION REGULATION USING TV REMOTE
HOME APPLICATION REGULATION USING TV REMOTEHOME APPLICATION REGULATION USING TV REMOTE
HOME APPLICATION REGULATION USING TV REMOTEshiv kapil
 
Variable power supply with digital control with seven segments display
Variable power supply with digital control with seven segments displayVariable power supply with digital control with seven segments display
Variable power supply with digital control with seven segments displaypoornima college of engg. jaipur
 
SEMINAR TOPIC- 3 PHASE SELETOR AND PREVENTER FOR INDUSTRIAL APPS. 2007.ppt
SEMINAR TOPIC- 3 PHASE SELETOR AND PREVENTER FOR INDUSTRIAL APPS. 2007.pptSEMINAR TOPIC- 3 PHASE SELETOR AND PREVENTER FOR INDUSTRIAL APPS. 2007.ppt
SEMINAR TOPIC- 3 PHASE SELETOR AND PREVENTER FOR INDUSTRIAL APPS. 2007.pptSUJAY RAVI KALE
 
Project body(powersupply+timer+filter7thsem)
Project body(powersupply+timer+filter7thsem)Project body(powersupply+timer+filter7thsem)
Project body(powersupply+timer+filter7thsem)kaushikbandopadhyay
 
Power electronics 12. application devices
Power electronics   12. application devicesPower electronics   12. application devices
Power electronics 12. application devicesBurdwan University
 
L4 applications-of-power-electronics-130715221937-phpapp01
L4 applications-of-power-electronics-130715221937-phpapp01L4 applications-of-power-electronics-130715221937-phpapp01
L4 applications-of-power-electronics-130715221937-phpapp01neomindx
 

What's hot (20)

Lecture-5 : Semiconductor Power Switching Devices-2
Lecture-5 : Semiconductor Power Switching Devices-2Lecture-5 : Semiconductor Power Switching Devices-2
Lecture-5 : Semiconductor Power Switching Devices-2
 
Power electronics switching circuit
Power electronics switching circuitPower electronics switching circuit
Power electronics switching circuit
 
Control of Chaos in a Current Mode Controlled Buck Boost Converter Using Weak...
Control of Chaos in a Current Mode Controlled Buck Boost Converter Using Weak...Control of Chaos in a Current Mode Controlled Buck Boost Converter Using Weak...
Control of Chaos in a Current Mode Controlled Buck Boost Converter Using Weak...
 
Self powered door-bell watcher
Self powered door-bell watcherSelf powered door-bell watcher
Self powered door-bell watcher
 
A SYNOPSIS ON VARIABLE POWER SUPPLY WITH DIGITAL CONTROL
A SYNOPSIS ON VARIABLE POWER SUPPLY WITH DIGITAL CONTROLA SYNOPSIS ON VARIABLE POWER SUPPLY WITH DIGITAL CONTROL
A SYNOPSIS ON VARIABLE POWER SUPPLY WITH DIGITAL CONTROL
 
Miniproject report receiver
Miniproject report receiverMiniproject report receiver
Miniproject report receiver
 
Voltage Regulators IC
Voltage Regulators ICVoltage Regulators IC
Voltage Regulators IC
 
Lecture-4 : Semiconductor Power Switching Devices-1
Lecture-4 : Semiconductor Power Switching Devices-1Lecture-4 : Semiconductor Power Switching Devices-1
Lecture-4 : Semiconductor Power Switching Devices-1
 
Chapter 6 power electronic-devices
Chapter 6 power electronic-devicesChapter 6 power electronic-devices
Chapter 6 power electronic-devices
 
Power Electronics SCR and BJT MCQ Questions
Power Electronics SCR and BJT MCQ QuestionsPower Electronics SCR and BJT MCQ Questions
Power Electronics SCR and BJT MCQ Questions
 
Lecture-7 : Semiconductor Power Switching Devices-4
Lecture-7 : Semiconductor Power Switching Devices-4Lecture-7 : Semiconductor Power Switching Devices-4
Lecture-7 : Semiconductor Power Switching Devices-4
 
Analog signal Conditioning
Analog signal ConditioningAnalog signal Conditioning
Analog signal Conditioning
 
Power electronics
Power electronicsPower electronics
Power electronics
 
HOME APPLICATION REGULATION USING TV REMOTE
HOME APPLICATION REGULATION USING TV REMOTEHOME APPLICATION REGULATION USING TV REMOTE
HOME APPLICATION REGULATION USING TV REMOTE
 
Variable power supply with digital control with seven segments display
Variable power supply with digital control with seven segments displayVariable power supply with digital control with seven segments display
Variable power supply with digital control with seven segments display
 
SEMINAR TOPIC- 3 PHASE SELETOR AND PREVENTER FOR INDUSTRIAL APPS. 2007.ppt
SEMINAR TOPIC- 3 PHASE SELETOR AND PREVENTER FOR INDUSTRIAL APPS. 2007.pptSEMINAR TOPIC- 3 PHASE SELETOR AND PREVENTER FOR INDUSTRIAL APPS. 2007.ppt
SEMINAR TOPIC- 3 PHASE SELETOR AND PREVENTER FOR INDUSTRIAL APPS. 2007.ppt
 
Isolation Techniques
Isolation TechniquesIsolation Techniques
Isolation Techniques
 
Project body(powersupply+timer+filter7thsem)
Project body(powersupply+timer+filter7thsem)Project body(powersupply+timer+filter7thsem)
Project body(powersupply+timer+filter7thsem)
 
Power electronics 12. application devices
Power electronics   12. application devicesPower electronics   12. application devices
Power electronics 12. application devices
 
L4 applications-of-power-electronics-130715221937-phpapp01
L4 applications-of-power-electronics-130715221937-phpapp01L4 applications-of-power-electronics-130715221937-phpapp01
L4 applications-of-power-electronics-130715221937-phpapp01
 

Similar to IRJET- An Inductor based DC/DC Converter for Energy Harvesting Application with Low Input Voltage

IRJET-Three Phase Interleaved Boost Converter
IRJET-Three Phase Interleaved Boost ConverterIRJET-Three Phase Interleaved Boost Converter
IRJET-Three Phase Interleaved Boost ConverterIRJET Journal
 
A Single Switch High Gain Coupled Inductor Boost Converter
A Single Switch High Gain Coupled Inductor Boost ConverterA Single Switch High Gain Coupled Inductor Boost Converter
A Single Switch High Gain Coupled Inductor Boost ConverterIRJET Journal
 
High Frequency Soft Switching Of PWM Boost Converter Using Auxiliary Resonant...
High Frequency Soft Switching Of PWM Boost Converter Using Auxiliary Resonant...High Frequency Soft Switching Of PWM Boost Converter Using Auxiliary Resonant...
High Frequency Soft Switching Of PWM Boost Converter Using Auxiliary Resonant...IJERA Editor
 
Interleaved Boost Converter with Cumulative Voltage Unit
Interleaved Boost Converter with Cumulative Voltage UnitInterleaved Boost Converter with Cumulative Voltage Unit
Interleaved Boost Converter with Cumulative Voltage Unitpaperpublications3
 
AC to AC Step Down Cycloconverter
AC to AC Step Down CycloconverterAC to AC Step Down Cycloconverter
AC to AC Step Down CycloconverterIRJET Journal
 
Design and Control of Half-Bridge Resonant Converter Topology of PID Controller
Design and Control of Half-Bridge Resonant Converter Topology of PID ControllerDesign and Control of Half-Bridge Resonant Converter Topology of PID Controller
Design and Control of Half-Bridge Resonant Converter Topology of PID ControllerIRJET Journal
 
IRJET- Design and Implementaion of DC-DC Boost Converter using Output Voltage...
IRJET- Design and Implementaion of DC-DC Boost Converter using Output Voltage...IRJET- Design and Implementaion of DC-DC Boost Converter using Output Voltage...
IRJET- Design and Implementaion of DC-DC Boost Converter using Output Voltage...IRJET Journal
 
Simulation of Boost Converter Using MATLAB SIMULINK.
Simulation of  Boost Converter Using MATLAB SIMULINK.Simulation of  Boost Converter Using MATLAB SIMULINK.
Simulation of Boost Converter Using MATLAB SIMULINK.Raviraj solanki
 
IRJET - Simulation of Low Cost 50Hz Pulse Generator
IRJET -  	  Simulation of Low Cost 50Hz Pulse GeneratorIRJET -  	  Simulation of Low Cost 50Hz Pulse Generator
IRJET - Simulation of Low Cost 50Hz Pulse GeneratorIRJET Journal
 
Review on Automatic Power Factor Improvement of Induction Motor
Review on Automatic Power Factor Improvement of Induction MotorReview on Automatic Power Factor Improvement of Induction Motor
Review on Automatic Power Factor Improvement of Induction MotorIRJET Journal
 
Design high gain dc dc boost converter with coupling inductor and simulation ...
Design high gain dc dc boost converter with coupling inductor and simulation ...Design high gain dc dc boost converter with coupling inductor and simulation ...
Design high gain dc dc boost converter with coupling inductor and simulation ...eSAT Publishing House
 
IRJET- Technique to Prevent Power Theft Losses using Static Device
IRJET-  	  Technique to Prevent Power Theft Losses using Static DeviceIRJET-  	  Technique to Prevent Power Theft Losses using Static Device
IRJET- Technique to Prevent Power Theft Losses using Static DeviceIRJET Journal
 
IRJET- A Dual Stage Flyback Converter using VC Method
IRJET- A Dual Stage Flyback Converter using VC MethodIRJET- A Dual Stage Flyback Converter using VC Method
IRJET- A Dual Stage Flyback Converter using VC MethodIRJET Journal
 
IRJET-Solar Power Generation with Capacitor Based Seven Level Inverter System
IRJET-Solar Power Generation with Capacitor Based Seven Level Inverter SystemIRJET-Solar Power Generation with Capacitor Based Seven Level Inverter System
IRJET-Solar Power Generation with Capacitor Based Seven Level Inverter SystemIRJET Journal
 
Solar Power Generation with Capacitor Based Seven Level Inverter System
Solar Power Generation with Capacitor Based Seven Level Inverter SystemSolar Power Generation with Capacitor Based Seven Level Inverter System
Solar Power Generation with Capacitor Based Seven Level Inverter SystemIRJET Journal
 
SPEED CONTROL OF DC MOTOR USING DC/DC BOOST CONVERTER
SPEED CONTROL OF DC MOTOR USING DC/DC BOOST CONVERTERSPEED CONTROL OF DC MOTOR USING DC/DC BOOST CONVERTER
SPEED CONTROL OF DC MOTOR USING DC/DC BOOST CONVERTERIRJET Journal
 
IRJET- Simulation and Analysis of Five Level SPWM Inverter
IRJET- Simulation and Analysis of Five Level SPWM InverterIRJET- Simulation and Analysis of Five Level SPWM Inverter
IRJET- Simulation and Analysis of Five Level SPWM InverterIRJET Journal
 
IRJET- An Active Partial Switch Power Factor Coorection using High Step Up In...
IRJET- An Active Partial Switch Power Factor Coorection using High Step Up In...IRJET- An Active Partial Switch Power Factor Coorection using High Step Up In...
IRJET- An Active Partial Switch Power Factor Coorection using High Step Up In...IRJET Journal
 
IRJET- Design of PV System using DC-DC Boost Converter Interfaced with Five L...
IRJET- Design of PV System using DC-DC Boost Converter Interfaced with Five L...IRJET- Design of PV System using DC-DC Boost Converter Interfaced with Five L...
IRJET- Design of PV System using DC-DC Boost Converter Interfaced with Five L...IRJET Journal
 

Similar to IRJET- An Inductor based DC/DC Converter for Energy Harvesting Application with Low Input Voltage (20)

IRJET-Three Phase Interleaved Boost Converter
IRJET-Three Phase Interleaved Boost ConverterIRJET-Three Phase Interleaved Boost Converter
IRJET-Three Phase Interleaved Boost Converter
 
A Single Switch High Gain Coupled Inductor Boost Converter
A Single Switch High Gain Coupled Inductor Boost ConverterA Single Switch High Gain Coupled Inductor Boost Converter
A Single Switch High Gain Coupled Inductor Boost Converter
 
High Frequency Soft Switching Of PWM Boost Converter Using Auxiliary Resonant...
High Frequency Soft Switching Of PWM Boost Converter Using Auxiliary Resonant...High Frequency Soft Switching Of PWM Boost Converter Using Auxiliary Resonant...
High Frequency Soft Switching Of PWM Boost Converter Using Auxiliary Resonant...
 
Interleaved Boost Converter with Cumulative Voltage Unit
Interleaved Boost Converter with Cumulative Voltage UnitInterleaved Boost Converter with Cumulative Voltage Unit
Interleaved Boost Converter with Cumulative Voltage Unit
 
AC to AC Step Down Cycloconverter
AC to AC Step Down CycloconverterAC to AC Step Down Cycloconverter
AC to AC Step Down Cycloconverter
 
Design and Control of Half-Bridge Resonant Converter Topology of PID Controller
Design and Control of Half-Bridge Resonant Converter Topology of PID ControllerDesign and Control of Half-Bridge Resonant Converter Topology of PID Controller
Design and Control of Half-Bridge Resonant Converter Topology of PID Controller
 
IRJET- Design and Implementaion of DC-DC Boost Converter using Output Voltage...
IRJET- Design and Implementaion of DC-DC Boost Converter using Output Voltage...IRJET- Design and Implementaion of DC-DC Boost Converter using Output Voltage...
IRJET- Design and Implementaion of DC-DC Boost Converter using Output Voltage...
 
Simulation of Boost Converter Using MATLAB SIMULINK.
Simulation of  Boost Converter Using MATLAB SIMULINK.Simulation of  Boost Converter Using MATLAB SIMULINK.
Simulation of Boost Converter Using MATLAB SIMULINK.
 
IRJET - Simulation of Low Cost 50Hz Pulse Generator
IRJET -  	  Simulation of Low Cost 50Hz Pulse GeneratorIRJET -  	  Simulation of Low Cost 50Hz Pulse Generator
IRJET - Simulation of Low Cost 50Hz Pulse Generator
 
Review on Automatic Power Factor Improvement of Induction Motor
Review on Automatic Power Factor Improvement of Induction MotorReview on Automatic Power Factor Improvement of Induction Motor
Review on Automatic Power Factor Improvement of Induction Motor
 
Design high gain dc dc boost converter with coupling inductor and simulation ...
Design high gain dc dc boost converter with coupling inductor and simulation ...Design high gain dc dc boost converter with coupling inductor and simulation ...
Design high gain dc dc boost converter with coupling inductor and simulation ...
 
IRJET- Technique to Prevent Power Theft Losses using Static Device
IRJET-  	  Technique to Prevent Power Theft Losses using Static DeviceIRJET-  	  Technique to Prevent Power Theft Losses using Static Device
IRJET- Technique to Prevent Power Theft Losses using Static Device
 
IRJET- A Dual Stage Flyback Converter using VC Method
IRJET- A Dual Stage Flyback Converter using VC MethodIRJET- A Dual Stage Flyback Converter using VC Method
IRJET- A Dual Stage Flyback Converter using VC Method
 
IRJET-Solar Power Generation with Capacitor Based Seven Level Inverter System
IRJET-Solar Power Generation with Capacitor Based Seven Level Inverter SystemIRJET-Solar Power Generation with Capacitor Based Seven Level Inverter System
IRJET-Solar Power Generation with Capacitor Based Seven Level Inverter System
 
Solar Power Generation with Capacitor Based Seven Level Inverter System
Solar Power Generation with Capacitor Based Seven Level Inverter SystemSolar Power Generation with Capacitor Based Seven Level Inverter System
Solar Power Generation with Capacitor Based Seven Level Inverter System
 
P01051125133
P01051125133P01051125133
P01051125133
 
SPEED CONTROL OF DC MOTOR USING DC/DC BOOST CONVERTER
SPEED CONTROL OF DC MOTOR USING DC/DC BOOST CONVERTERSPEED CONTROL OF DC MOTOR USING DC/DC BOOST CONVERTER
SPEED CONTROL OF DC MOTOR USING DC/DC BOOST CONVERTER
 
IRJET- Simulation and Analysis of Five Level SPWM Inverter
IRJET- Simulation and Analysis of Five Level SPWM InverterIRJET- Simulation and Analysis of Five Level SPWM Inverter
IRJET- Simulation and Analysis of Five Level SPWM Inverter
 
IRJET- An Active Partial Switch Power Factor Coorection using High Step Up In...
IRJET- An Active Partial Switch Power Factor Coorection using High Step Up In...IRJET- An Active Partial Switch Power Factor Coorection using High Step Up In...
IRJET- An Active Partial Switch Power Factor Coorection using High Step Up In...
 
IRJET- Design of PV System using DC-DC Boost Converter Interfaced with Five L...
IRJET- Design of PV System using DC-DC Boost Converter Interfaced with Five L...IRJET- Design of PV System using DC-DC Boost Converter Interfaced with Five L...
IRJET- Design of PV System using DC-DC Boost Converter Interfaced with Five L...
 

More from IRJET Journal

TUNNELING IN HIMALAYAS WITH NATM METHOD: A SPECIAL REFERENCES TO SUNGAL TUNNE...
TUNNELING IN HIMALAYAS WITH NATM METHOD: A SPECIAL REFERENCES TO SUNGAL TUNNE...TUNNELING IN HIMALAYAS WITH NATM METHOD: A SPECIAL REFERENCES TO SUNGAL TUNNE...
TUNNELING IN HIMALAYAS WITH NATM METHOD: A SPECIAL REFERENCES TO SUNGAL TUNNE...IRJET Journal
 
STUDY THE EFFECT OF RESPONSE REDUCTION FACTOR ON RC FRAMED STRUCTURE
STUDY THE EFFECT OF RESPONSE REDUCTION FACTOR ON RC FRAMED STRUCTURESTUDY THE EFFECT OF RESPONSE REDUCTION FACTOR ON RC FRAMED STRUCTURE
STUDY THE EFFECT OF RESPONSE REDUCTION FACTOR ON RC FRAMED STRUCTUREIRJET Journal
 
A COMPARATIVE ANALYSIS OF RCC ELEMENT OF SLAB WITH STARK STEEL (HYSD STEEL) A...
A COMPARATIVE ANALYSIS OF RCC ELEMENT OF SLAB WITH STARK STEEL (HYSD STEEL) A...A COMPARATIVE ANALYSIS OF RCC ELEMENT OF SLAB WITH STARK STEEL (HYSD STEEL) A...
A COMPARATIVE ANALYSIS OF RCC ELEMENT OF SLAB WITH STARK STEEL (HYSD STEEL) A...IRJET Journal
 
Effect of Camber and Angles of Attack on Airfoil Characteristics
Effect of Camber and Angles of Attack on Airfoil CharacteristicsEffect of Camber and Angles of Attack on Airfoil Characteristics
Effect of Camber and Angles of Attack on Airfoil CharacteristicsIRJET Journal
 
A Review on the Progress and Challenges of Aluminum-Based Metal Matrix Compos...
A Review on the Progress and Challenges of Aluminum-Based Metal Matrix Compos...A Review on the Progress and Challenges of Aluminum-Based Metal Matrix Compos...
A Review on the Progress and Challenges of Aluminum-Based Metal Matrix Compos...IRJET Journal
 
Dynamic Urban Transit Optimization: A Graph Neural Network Approach for Real-...
Dynamic Urban Transit Optimization: A Graph Neural Network Approach for Real-...Dynamic Urban Transit Optimization: A Graph Neural Network Approach for Real-...
Dynamic Urban Transit Optimization: A Graph Neural Network Approach for Real-...IRJET Journal
 
Structural Analysis and Design of Multi-Storey Symmetric and Asymmetric Shape...
Structural Analysis and Design of Multi-Storey Symmetric and Asymmetric Shape...Structural Analysis and Design of Multi-Storey Symmetric and Asymmetric Shape...
Structural Analysis and Design of Multi-Storey Symmetric and Asymmetric Shape...IRJET Journal
 
A Review of “Seismic Response of RC Structures Having Plan and Vertical Irreg...
A Review of “Seismic Response of RC Structures Having Plan and Vertical Irreg...A Review of “Seismic Response of RC Structures Having Plan and Vertical Irreg...
A Review of “Seismic Response of RC Structures Having Plan and Vertical Irreg...IRJET Journal
 
A REVIEW ON MACHINE LEARNING IN ADAS
A REVIEW ON MACHINE LEARNING IN ADASA REVIEW ON MACHINE LEARNING IN ADAS
A REVIEW ON MACHINE LEARNING IN ADASIRJET Journal
 
Long Term Trend Analysis of Precipitation and Temperature for Asosa district,...
Long Term Trend Analysis of Precipitation and Temperature for Asosa district,...Long Term Trend Analysis of Precipitation and Temperature for Asosa district,...
Long Term Trend Analysis of Precipitation and Temperature for Asosa district,...IRJET Journal
 
P.E.B. Framed Structure Design and Analysis Using STAAD Pro
P.E.B. Framed Structure Design and Analysis Using STAAD ProP.E.B. Framed Structure Design and Analysis Using STAAD Pro
P.E.B. Framed Structure Design and Analysis Using STAAD ProIRJET Journal
 
A Review on Innovative Fiber Integration for Enhanced Reinforcement of Concre...
A Review on Innovative Fiber Integration for Enhanced Reinforcement of Concre...A Review on Innovative Fiber Integration for Enhanced Reinforcement of Concre...
A Review on Innovative Fiber Integration for Enhanced Reinforcement of Concre...IRJET Journal
 
Survey Paper on Cloud-Based Secured Healthcare System
Survey Paper on Cloud-Based Secured Healthcare SystemSurvey Paper on Cloud-Based Secured Healthcare System
Survey Paper on Cloud-Based Secured Healthcare SystemIRJET Journal
 
Review on studies and research on widening of existing concrete bridges
Review on studies and research on widening of existing concrete bridgesReview on studies and research on widening of existing concrete bridges
Review on studies and research on widening of existing concrete bridgesIRJET Journal
 
React based fullstack edtech web application
React based fullstack edtech web applicationReact based fullstack edtech web application
React based fullstack edtech web applicationIRJET Journal
 
A Comprehensive Review of Integrating IoT and Blockchain Technologies in the ...
A Comprehensive Review of Integrating IoT and Blockchain Technologies in the ...A Comprehensive Review of Integrating IoT and Blockchain Technologies in the ...
A Comprehensive Review of Integrating IoT and Blockchain Technologies in the ...IRJET Journal
 
A REVIEW ON THE PERFORMANCE OF COCONUT FIBRE REINFORCED CONCRETE.
A REVIEW ON THE PERFORMANCE OF COCONUT FIBRE REINFORCED CONCRETE.A REVIEW ON THE PERFORMANCE OF COCONUT FIBRE REINFORCED CONCRETE.
A REVIEW ON THE PERFORMANCE OF COCONUT FIBRE REINFORCED CONCRETE.IRJET Journal
 
Optimizing Business Management Process Workflows: The Dynamic Influence of Mi...
Optimizing Business Management Process Workflows: The Dynamic Influence of Mi...Optimizing Business Management Process Workflows: The Dynamic Influence of Mi...
Optimizing Business Management Process Workflows: The Dynamic Influence of Mi...IRJET Journal
 
Multistoried and Multi Bay Steel Building Frame by using Seismic Design
Multistoried and Multi Bay Steel Building Frame by using Seismic DesignMultistoried and Multi Bay Steel Building Frame by using Seismic Design
Multistoried and Multi Bay Steel Building Frame by using Seismic DesignIRJET Journal
 
Cost Optimization of Construction Using Plastic Waste as a Sustainable Constr...
Cost Optimization of Construction Using Plastic Waste as a Sustainable Constr...Cost Optimization of Construction Using Plastic Waste as a Sustainable Constr...
Cost Optimization of Construction Using Plastic Waste as a Sustainable Constr...IRJET Journal
 

More from IRJET Journal (20)

TUNNELING IN HIMALAYAS WITH NATM METHOD: A SPECIAL REFERENCES TO SUNGAL TUNNE...
TUNNELING IN HIMALAYAS WITH NATM METHOD: A SPECIAL REFERENCES TO SUNGAL TUNNE...TUNNELING IN HIMALAYAS WITH NATM METHOD: A SPECIAL REFERENCES TO SUNGAL TUNNE...
TUNNELING IN HIMALAYAS WITH NATM METHOD: A SPECIAL REFERENCES TO SUNGAL TUNNE...
 
STUDY THE EFFECT OF RESPONSE REDUCTION FACTOR ON RC FRAMED STRUCTURE
STUDY THE EFFECT OF RESPONSE REDUCTION FACTOR ON RC FRAMED STRUCTURESTUDY THE EFFECT OF RESPONSE REDUCTION FACTOR ON RC FRAMED STRUCTURE
STUDY THE EFFECT OF RESPONSE REDUCTION FACTOR ON RC FRAMED STRUCTURE
 
A COMPARATIVE ANALYSIS OF RCC ELEMENT OF SLAB WITH STARK STEEL (HYSD STEEL) A...
A COMPARATIVE ANALYSIS OF RCC ELEMENT OF SLAB WITH STARK STEEL (HYSD STEEL) A...A COMPARATIVE ANALYSIS OF RCC ELEMENT OF SLAB WITH STARK STEEL (HYSD STEEL) A...
A COMPARATIVE ANALYSIS OF RCC ELEMENT OF SLAB WITH STARK STEEL (HYSD STEEL) A...
 
Effect of Camber and Angles of Attack on Airfoil Characteristics
Effect of Camber and Angles of Attack on Airfoil CharacteristicsEffect of Camber and Angles of Attack on Airfoil Characteristics
Effect of Camber and Angles of Attack on Airfoil Characteristics
 
A Review on the Progress and Challenges of Aluminum-Based Metal Matrix Compos...
A Review on the Progress and Challenges of Aluminum-Based Metal Matrix Compos...A Review on the Progress and Challenges of Aluminum-Based Metal Matrix Compos...
A Review on the Progress and Challenges of Aluminum-Based Metal Matrix Compos...
 
Dynamic Urban Transit Optimization: A Graph Neural Network Approach for Real-...
Dynamic Urban Transit Optimization: A Graph Neural Network Approach for Real-...Dynamic Urban Transit Optimization: A Graph Neural Network Approach for Real-...
Dynamic Urban Transit Optimization: A Graph Neural Network Approach for Real-...
 
Structural Analysis and Design of Multi-Storey Symmetric and Asymmetric Shape...
Structural Analysis and Design of Multi-Storey Symmetric and Asymmetric Shape...Structural Analysis and Design of Multi-Storey Symmetric and Asymmetric Shape...
Structural Analysis and Design of Multi-Storey Symmetric and Asymmetric Shape...
 
A Review of “Seismic Response of RC Structures Having Plan and Vertical Irreg...
A Review of “Seismic Response of RC Structures Having Plan and Vertical Irreg...A Review of “Seismic Response of RC Structures Having Plan and Vertical Irreg...
A Review of “Seismic Response of RC Structures Having Plan and Vertical Irreg...
 
A REVIEW ON MACHINE LEARNING IN ADAS
A REVIEW ON MACHINE LEARNING IN ADASA REVIEW ON MACHINE LEARNING IN ADAS
A REVIEW ON MACHINE LEARNING IN ADAS
 
Long Term Trend Analysis of Precipitation and Temperature for Asosa district,...
Long Term Trend Analysis of Precipitation and Temperature for Asosa district,...Long Term Trend Analysis of Precipitation and Temperature for Asosa district,...
Long Term Trend Analysis of Precipitation and Temperature for Asosa district,...
 
P.E.B. Framed Structure Design and Analysis Using STAAD Pro
P.E.B. Framed Structure Design and Analysis Using STAAD ProP.E.B. Framed Structure Design and Analysis Using STAAD Pro
P.E.B. Framed Structure Design and Analysis Using STAAD Pro
 
A Review on Innovative Fiber Integration for Enhanced Reinforcement of Concre...
A Review on Innovative Fiber Integration for Enhanced Reinforcement of Concre...A Review on Innovative Fiber Integration for Enhanced Reinforcement of Concre...
A Review on Innovative Fiber Integration for Enhanced Reinforcement of Concre...
 
Survey Paper on Cloud-Based Secured Healthcare System
Survey Paper on Cloud-Based Secured Healthcare SystemSurvey Paper on Cloud-Based Secured Healthcare System
Survey Paper on Cloud-Based Secured Healthcare System
 
Review on studies and research on widening of existing concrete bridges
Review on studies and research on widening of existing concrete bridgesReview on studies and research on widening of existing concrete bridges
Review on studies and research on widening of existing concrete bridges
 
React based fullstack edtech web application
React based fullstack edtech web applicationReact based fullstack edtech web application
React based fullstack edtech web application
 
A Comprehensive Review of Integrating IoT and Blockchain Technologies in the ...
A Comprehensive Review of Integrating IoT and Blockchain Technologies in the ...A Comprehensive Review of Integrating IoT and Blockchain Technologies in the ...
A Comprehensive Review of Integrating IoT and Blockchain Technologies in the ...
 
A REVIEW ON THE PERFORMANCE OF COCONUT FIBRE REINFORCED CONCRETE.
A REVIEW ON THE PERFORMANCE OF COCONUT FIBRE REINFORCED CONCRETE.A REVIEW ON THE PERFORMANCE OF COCONUT FIBRE REINFORCED CONCRETE.
A REVIEW ON THE PERFORMANCE OF COCONUT FIBRE REINFORCED CONCRETE.
 
Optimizing Business Management Process Workflows: The Dynamic Influence of Mi...
Optimizing Business Management Process Workflows: The Dynamic Influence of Mi...Optimizing Business Management Process Workflows: The Dynamic Influence of Mi...
Optimizing Business Management Process Workflows: The Dynamic Influence of Mi...
 
Multistoried and Multi Bay Steel Building Frame by using Seismic Design
Multistoried and Multi Bay Steel Building Frame by using Seismic DesignMultistoried and Multi Bay Steel Building Frame by using Seismic Design
Multistoried and Multi Bay Steel Building Frame by using Seismic Design
 
Cost Optimization of Construction Using Plastic Waste as a Sustainable Constr...
Cost Optimization of Construction Using Plastic Waste as a Sustainable Constr...Cost Optimization of Construction Using Plastic Waste as a Sustainable Constr...
Cost Optimization of Construction Using Plastic Waste as a Sustainable Constr...
 

Recently uploaded

Study on Air-Water & Water-Water Heat Exchange in a Finned Tube Exchanger
Study on Air-Water & Water-Water Heat Exchange in a Finned Tube ExchangerStudy on Air-Water & Water-Water Heat Exchange in a Finned Tube Exchanger
Study on Air-Water & Water-Water Heat Exchange in a Finned Tube ExchangerAnamika Sarkar
 
Call Girls Delhi {Jodhpur} 9711199012 high profile service
Call Girls Delhi {Jodhpur} 9711199012 high profile serviceCall Girls Delhi {Jodhpur} 9711199012 high profile service
Call Girls Delhi {Jodhpur} 9711199012 high profile servicerehmti665
 
(MEERA) Dapodi Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Escorts
(MEERA) Dapodi Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Escorts(MEERA) Dapodi Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Escorts
(MEERA) Dapodi Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Escortsranjana rawat
 
ZXCTN 5804 / ZTE PTN / ZTE POTN / ZTE 5804 PTN / ZTE POTN 5804 ( 100/200 GE Z...
ZXCTN 5804 / ZTE PTN / ZTE POTN / ZTE 5804 PTN / ZTE POTN 5804 ( 100/200 GE Z...ZXCTN 5804 / ZTE PTN / ZTE POTN / ZTE 5804 PTN / ZTE POTN 5804 ( 100/200 GE Z...
ZXCTN 5804 / ZTE PTN / ZTE POTN / ZTE 5804 PTN / ZTE POTN 5804 ( 100/200 GE Z...ZTE
 
High Profile Call Girls Nagpur Meera Call 7001035870 Meet With Nagpur Escorts
High Profile Call Girls Nagpur Meera Call 7001035870 Meet With Nagpur EscortsHigh Profile Call Girls Nagpur Meera Call 7001035870 Meet With Nagpur Escorts
High Profile Call Girls Nagpur Meera Call 7001035870 Meet With Nagpur EscortsCall Girls in Nagpur High Profile
 
What are the advantages and disadvantages of membrane structures.pptx
What are the advantages and disadvantages of membrane structures.pptxWhat are the advantages and disadvantages of membrane structures.pptx
What are the advantages and disadvantages of membrane structures.pptxwendy cai
 
SPICE PARK APR2024 ( 6,793 SPICE Models )
SPICE PARK APR2024 ( 6,793 SPICE Models )SPICE PARK APR2024 ( 6,793 SPICE Models )
SPICE PARK APR2024 ( 6,793 SPICE Models )Tsuyoshi Horigome
 
Introduction to Microprocesso programming and interfacing.pptx
Introduction to Microprocesso programming and interfacing.pptxIntroduction to Microprocesso programming and interfacing.pptx
Introduction to Microprocesso programming and interfacing.pptxvipinkmenon1
 
HARMONY IN THE NATURE AND EXISTENCE - Unit-IV
HARMONY IN THE NATURE AND EXISTENCE - Unit-IVHARMONY IN THE NATURE AND EXISTENCE - Unit-IV
HARMONY IN THE NATURE AND EXISTENCE - Unit-IVRajaP95
 
VIP Call Girls Service Kondapur Hyderabad Call +91-8250192130
VIP Call Girls Service Kondapur Hyderabad Call +91-8250192130VIP Call Girls Service Kondapur Hyderabad Call +91-8250192130
VIP Call Girls Service Kondapur Hyderabad Call +91-8250192130Suhani Kapoor
 
Current Transformer Drawing and GTP for MSETCL
Current Transformer Drawing and GTP for MSETCLCurrent Transformer Drawing and GTP for MSETCL
Current Transformer Drawing and GTP for MSETCLDeelipZope
 
OSVC_Meta-Data based Simulation Automation to overcome Verification Challenge...
OSVC_Meta-Data based Simulation Automation to overcome Verification Challenge...OSVC_Meta-Data based Simulation Automation to overcome Verification Challenge...
OSVC_Meta-Data based Simulation Automation to overcome Verification Challenge...Soham Mondal
 
chaitra-1.pptx fake news detection using machine learning
chaitra-1.pptx  fake news detection using machine learningchaitra-1.pptx  fake news detection using machine learning
chaitra-1.pptx fake news detection using machine learningmisbanausheenparvam
 
Oxy acetylene welding presentation note.
Oxy acetylene welding presentation note.Oxy acetylene welding presentation note.
Oxy acetylene welding presentation note.eptoze12
 
Sachpazis Costas: Geotechnical Engineering: A student's Perspective Introduction
Sachpazis Costas: Geotechnical Engineering: A student's Perspective IntroductionSachpazis Costas: Geotechnical Engineering: A student's Perspective Introduction
Sachpazis Costas: Geotechnical Engineering: A student's Perspective IntroductionDr.Costas Sachpazis
 
Past, Present and Future of Generative AI
Past, Present and Future of Generative AIPast, Present and Future of Generative AI
Past, Present and Future of Generative AIabhishek36461
 
Gfe Mayur Vihar Call Girls Service WhatsApp -> 9999965857 Available 24x7 ^ De...
Gfe Mayur Vihar Call Girls Service WhatsApp -> 9999965857 Available 24x7 ^ De...Gfe Mayur Vihar Call Girls Service WhatsApp -> 9999965857 Available 24x7 ^ De...
Gfe Mayur Vihar Call Girls Service WhatsApp -> 9999965857 Available 24x7 ^ De...srsj9000
 
Gurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort service
Gurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort serviceGurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort service
Gurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort servicejennyeacort
 

Recently uploaded (20)

Study on Air-Water & Water-Water Heat Exchange in a Finned Tube Exchanger
Study on Air-Water & Water-Water Heat Exchange in a Finned Tube ExchangerStudy on Air-Water & Water-Water Heat Exchange in a Finned Tube Exchanger
Study on Air-Water & Water-Water Heat Exchange in a Finned Tube Exchanger
 
Call Girls Delhi {Jodhpur} 9711199012 high profile service
Call Girls Delhi {Jodhpur} 9711199012 high profile serviceCall Girls Delhi {Jodhpur} 9711199012 high profile service
Call Girls Delhi {Jodhpur} 9711199012 high profile service
 
(MEERA) Dapodi Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Escorts
(MEERA) Dapodi Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Escorts(MEERA) Dapodi Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Escorts
(MEERA) Dapodi Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Escorts
 
ZXCTN 5804 / ZTE PTN / ZTE POTN / ZTE 5804 PTN / ZTE POTN 5804 ( 100/200 GE Z...
ZXCTN 5804 / ZTE PTN / ZTE POTN / ZTE 5804 PTN / ZTE POTN 5804 ( 100/200 GE Z...ZXCTN 5804 / ZTE PTN / ZTE POTN / ZTE 5804 PTN / ZTE POTN 5804 ( 100/200 GE Z...
ZXCTN 5804 / ZTE PTN / ZTE POTN / ZTE 5804 PTN / ZTE POTN 5804 ( 100/200 GE Z...
 
High Profile Call Girls Nagpur Meera Call 7001035870 Meet With Nagpur Escorts
High Profile Call Girls Nagpur Meera Call 7001035870 Meet With Nagpur EscortsHigh Profile Call Girls Nagpur Meera Call 7001035870 Meet With Nagpur Escorts
High Profile Call Girls Nagpur Meera Call 7001035870 Meet With Nagpur Escorts
 
What are the advantages and disadvantages of membrane structures.pptx
What are the advantages and disadvantages of membrane structures.pptxWhat are the advantages and disadvantages of membrane structures.pptx
What are the advantages and disadvantages of membrane structures.pptx
 
9953056974 Call Girls In South Ex, Escorts (Delhi) NCR.pdf
9953056974 Call Girls In South Ex, Escorts (Delhi) NCR.pdf9953056974 Call Girls In South Ex, Escorts (Delhi) NCR.pdf
9953056974 Call Girls In South Ex, Escorts (Delhi) NCR.pdf
 
SPICE PARK APR2024 ( 6,793 SPICE Models )
SPICE PARK APR2024 ( 6,793 SPICE Models )SPICE PARK APR2024 ( 6,793 SPICE Models )
SPICE PARK APR2024 ( 6,793 SPICE Models )
 
Introduction to Microprocesso programming and interfacing.pptx
Introduction to Microprocesso programming and interfacing.pptxIntroduction to Microprocesso programming and interfacing.pptx
Introduction to Microprocesso programming and interfacing.pptx
 
HARMONY IN THE NATURE AND EXISTENCE - Unit-IV
HARMONY IN THE NATURE AND EXISTENCE - Unit-IVHARMONY IN THE NATURE AND EXISTENCE - Unit-IV
HARMONY IN THE NATURE AND EXISTENCE - Unit-IV
 
VIP Call Girls Service Kondapur Hyderabad Call +91-8250192130
VIP Call Girls Service Kondapur Hyderabad Call +91-8250192130VIP Call Girls Service Kondapur Hyderabad Call +91-8250192130
VIP Call Girls Service Kondapur Hyderabad Call +91-8250192130
 
Current Transformer Drawing and GTP for MSETCL
Current Transformer Drawing and GTP for MSETCLCurrent Transformer Drawing and GTP for MSETCL
Current Transformer Drawing and GTP for MSETCL
 
OSVC_Meta-Data based Simulation Automation to overcome Verification Challenge...
OSVC_Meta-Data based Simulation Automation to overcome Verification Challenge...OSVC_Meta-Data based Simulation Automation to overcome Verification Challenge...
OSVC_Meta-Data based Simulation Automation to overcome Verification Challenge...
 
chaitra-1.pptx fake news detection using machine learning
chaitra-1.pptx  fake news detection using machine learningchaitra-1.pptx  fake news detection using machine learning
chaitra-1.pptx fake news detection using machine learning
 
Oxy acetylene welding presentation note.
Oxy acetylene welding presentation note.Oxy acetylene welding presentation note.
Oxy acetylene welding presentation note.
 
Sachpazis Costas: Geotechnical Engineering: A student's Perspective Introduction
Sachpazis Costas: Geotechnical Engineering: A student's Perspective IntroductionSachpazis Costas: Geotechnical Engineering: A student's Perspective Introduction
Sachpazis Costas: Geotechnical Engineering: A student's Perspective Introduction
 
Past, Present and Future of Generative AI
Past, Present and Future of Generative AIPast, Present and Future of Generative AI
Past, Present and Future of Generative AI
 
Exploring_Network_Security_with_JA3_by_Rakesh Seal.pptx
Exploring_Network_Security_with_JA3_by_Rakesh Seal.pptxExploring_Network_Security_with_JA3_by_Rakesh Seal.pptx
Exploring_Network_Security_with_JA3_by_Rakesh Seal.pptx
 
Gfe Mayur Vihar Call Girls Service WhatsApp -> 9999965857 Available 24x7 ^ De...
Gfe Mayur Vihar Call Girls Service WhatsApp -> 9999965857 Available 24x7 ^ De...Gfe Mayur Vihar Call Girls Service WhatsApp -> 9999965857 Available 24x7 ^ De...
Gfe Mayur Vihar Call Girls Service WhatsApp -> 9999965857 Available 24x7 ^ De...
 
Gurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort service
Gurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort serviceGurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort service
Gurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort service
 

IRJET- An Inductor based DC/DC Converter for Energy Harvesting Application with Low Input Voltage

  • 1. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 06 Issue: 08 | Aug 2019 www.irjet.net p-ISSN: 2395-0072 © 2019, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 799 An Inductor based dc/dc Converter for Energy Harvesting Application with Low Input Voltage Sri. Arun Raj S.R1 1Assistant Professor, Dept. of Electronics & Communication Engineering, UBDT College, Davangere, Karnataka, India. ----------------------------------------------------------------------***--------------------------------------------------------------------- Abstract - To operate portable devices in low input supply voltages dc-dc converter are very useful and this type of devices are useful in energy harvesting application. In this paper is to boost low voltage dc-dc converter with inductor is used to produce high voltage supply voltage. In this paper input supply voltage is 500mV and it produce output voltage of 1.2 v. and by delivering a output current of 5.018µA and efficiency of about 34.44%. It is designed in 45nm CMOS technology by using Cadence Virtuoso software tool in this paper only single stage is used to produce output voltage of 1.2v and inductor were sized in 40µH to boost input voltage. Output power is 6.0216µW. Key Words: Converters,dc/dc powerconversion,integrated circuit (IC) design. 1. INTRODUCTION Energy harvestingorpowerharvestingor energyscavenging is method in which energy is derived from external source like solar power, thermal energy, salinity gradients, kinetic energy and wind energy are captured and stored for small wireless autonomous devices, and theseareusedinwireless sensor networks and wearable electronics. Energy harvesting has the low qualitylikelowvoltages,lowcurrents or both and it is often unsuitable for standard integrated devices for supplying. For example when thermopile is exposed to low temperature gradientsitgivetheoutputhigh currents at low input voltages. A energy harvestingtakesthe energy from environment and converts that energy into electrical energy and gives the output or an unregulated source voltage. Energy harvesting are used in application like portable, handheld and implementable electronics. A dc/dc converter is a type of device like electronic circuit or electromechanical device, it converts from one voltage level to another voltage level of direct current (dc) and it is also type of power converter that convertpowerlevel rangefrom very low that is small batteries to very high that is high voltage power transmission. The dc/dc converter increasevoltageofcircuit withoutusing more batteries of portable devices for to increase power. To increase the ultralow voltage dc/dc converterusesinductive based circuit, with the use of inductor it increases the voltage level and these are widely used in powerelectronics. An inductor is driven by almost lossless devices, ideal clock signals and large currents. In dc/dc converter it uses boost converter to step up voltage. The boost converter is used to increase the input voltage level from supply to high output voltage level to load. The boost converter is a class of switched mode power supply with containing two semiconductors that is diode and transistor and containing one storage element that is capacitor or inductor or both. In dc/dc converter output voltage is greater than source voltage. The boost converter is also called as step up converter and here p=vi, the output current is lower than source current. In dc/dc converter there are three stages they are Boosting stage, Timing circuit and Regulator part. In order to convert ultralow voltage to high voltage that is 300m to 1.2v, boosting stage requires two cascaded step up converterthat is stepup1 and stepup2. In this paper the voltage is step up by using inductor. In this designinputvoltageisincreased by inductor. In boosting stage transistor is used as a switch. Boost stage performs in two operations, that are when switch is open and switch is closed. The clock generator second stage is to generate 75% duty cycle, combining D- flip/flop these are used to generate 50% duty cycle. 2. RELATED WORK 2.1. Boosting Stage: In boosting stage to achieve output voltage of 1.2v there is two boosting stage is required so that first stage produced of about 450m-700mv and from this output is given to input supply voltage of second stage from this overall circuit produces of 1.2v. Here MOSFET M1 is act as a switch and MOSFET M2 act as a diode which is shown in below figure 2.1. First stage is drive second stage is with use of first buffer stage. So to achieve high voltage duty cycle was set to 50% with comparison between boosting of voltage and consumption of power. Size of inductors are depending on various factors like capacitor, resistor and conductivity of switch also loadand so manyfactorsareconsiderforsizingof inductor. Depending on these factor only inductors L1 is chosen with help of discontinuous conduction mode also. So inductor L1 is sized at 40µH. In boosting stage design MOS switch M1 should be more in size, because morecurrentflow in inductor causes more magnetic field and more voltage spikes are appeared. So that MOS size is mm in width and length. Here inductor current and voltage is given by
  • 2. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 06 Issue: 08 | Aug 2019 www.irjet.net p-ISSN: 2395-0072 © 2019, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 800 Ripple current in inductor is shown below There are two modes of operation. In first mode that is mode1 operation is given by, in this mode time duration is (0≤t≤DT) so that t is ends with DT so current in inductorand switch is given by Solution of above equation is In above equation I1is initial current and this current is end at mode1 that is t=DT to I2 that is i1 (t=DT) = I2 for this above equation can be written as In mode 2 operation inductor current is to be Similarly I2 is initially current. So thatabove equationcan be written as Here current end at mode 2 is similar to I1 Here So ripple current is given by Fig 2.1: Single stage step up converter. Fig 2.2: Output waveform for single stage step up converter. Fig 2.3: Un- regulated output for single step up converter.
  • 3. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 06 Issue: 08 | Aug 2019 www.irjet.net p-ISSN: 2395-0072 © 2019, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 801 2.2. Clock Generator: Clock generators are used to give the input voltage signal to dc/dc converter. Clock generator consists of oscillator and d flip flop. Oscillator gives oscillation signals to circuit. D flip flop produce duty cycle to circuit. Clock generator is first stage of converter and it is self-generated input signal without using any external voltage it give self-input to circuit.Clock generatorisnothing but oscillator it give timing signal to converter in order to maintain synchronization operation of the circuit. Clock signals may be analog or discrete signal it provide both analog signal and discrete signal. 2.3. Oscillator: Oscillator is a simple ring chain oscillator. The inverter back to back connection is formed byoscillator, number of inverter stages is connected back to back and number should be odd number. From supply voltage it will work on its own input supply voltage this means without need of external input supply voltage it will work with supply voltage. Oscillator amplify noise signal and produce output signal. In our project after 10µs only oscillator get oscillate input signal before that 10µs there is no oscillation process after 10µs only oscillator give signal. As the number of oscillator stages increases frequency also increases and delay is decreases. Delay and frequency both inversely proportional to each other and formulaefordelayisgivenby T = 1/ (2nf) or f = 1/ (2nT) To achieve higher frequency one number ofstagesshould be more or delay should be less and operating frequency is 1MHz to 5MHz and 1MHz is sufficient to operate circuit. The circuit is to operate in low input voltage, so inverter stage of NMOS and PMOS should have low threshold voltages. This low threshold voltage causes leakage current. In inverter NMOS and PMOS is taken as low threshold voltages in order to reach low input power supply. Oscillator is nothing but electronic device it produces electric signal in a periodic manner so signals like square wave or sine wave and it is used to convert direct current to alternating current with use of supply voltage. 2.4. D Flip Flop: D flip flop are used to produce 50% of duty cycle. D flip flop architecture is based on pass transistor. D flip flop produce Q and Q¯ as output these produce 50% duty cycle. Output of oscillator give input of this D flip flop so overall produce clock signal with50%duty cycle. D flip flop architecture with use of pass transistor is mainly because of low power supply, with use of low input voltage it should work. One more advantage of pass transistors are used to design D flip flop because it requires less area and count of transistor and also to reduce power consumption. 2.5. Regulator: Regulator is a device which is used to control circuit like temperature and speed of circuit. Regulator gives enable signal to clock generatortofirststage of step up converter. It consist of mainly voltage reference and level shifter these two output are connected to input of comparator, it compares two input signals that is Vref and level shifter and give output zero and ones. In regulator it fixes output voltage means it fixed ata certainvoltage. Inthis paper regulator output is fixed at 1.2V. Current is appear at load it changes dramatically so regulator is used. Power supply of regulator has output of converter and regulator takes power consumption. 2.6. Voltage Reference: In voltage reference there are three stages: first stage is start up stage, second stage is current generator and last stage is acts as a active load. So from current generator stage itfixesconstantoutput voltage. Voltage reference can operate minimum voltage that is 0.9v to 4v. In active load stage all transistor should be saturation region and it is given by equation as Where I is current at active load stage, in output of voltage reference temperature is depends on various factor those are threshold voltage, mobility and bias current. So above equation states that output of voltagereferenceisdepend on mobility that is k and threshold voltage Vth and I is bias current. So in voltage reference bias current should be fixed so current generator are used to produce fixed output voltage. The generator current consists of simply NMOS and PMOS back to back connection totally current in all MOSFET’s should be same. So that generator current can achieve. In current generator M1 and M3 transistors are in sub threshold region and M2 and M4 transistors are in saturation region. In active load stage three transistors are used and those are diode connected and these transistors are mainly used to compensate temperature of voltage reference. In band gap there is a resistors are used for voltage reference, so area is more for resistor but in this architecture there is use of resistance only MOSFET’s are used so area is also less. Fig 2.4: Schematic diagram for Voltage Reference.
  • 4. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 06 Issue: 08 | Aug 2019 www.irjet.net p-ISSN: 2395-0072 © 2019, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 802 2.7. Level Shifter: Level shifter is a digital device and it is used to produce one voltage to another domain. So it also converts one logic level to another logic level. It produces output voltage below supply voltage. If there is no level shifter voltage levels are cross signals and correctly not sampled. It fully converts one voltage level to a different voltage level. In level shifter there is diodeconnected,SoVds is equal Vgs and supply voltage is distributed to both Vds1 and Vds2. So that Vds1=Vdd – Vds2. In M2 Vds ˂ Vth1 so, Vgs2 ≤ Vth1 ≥ Vds2 so Vds ≤ Vth1. Fig 2.5: Schematic diagram for level shifter. 2.8. Comparator: Comparator is used as a regulator to fix output voltage in comparator it compares two input voltage and produce output signal in high or low voltagesoroneand zero signal. Output of comparator is one means it produce whatever in supply voltage it will produce and zero means it produce zero voltage. In comparator output is digital form because it produces one or zero. Output voltage works on condition like v+ and v- there are two input signal if v+ is greater than v- it will produce high supply voltage that is 1 and one more condition if v+ is less than v- it will produce zero voltage or 0. Here v- is reference voltage is used as v- and level shifter is used as a v+ and it produce output in 1 or 0. Comparator is simply operational amplifier comparator voltage and op-amp have differential input it contains three stages one is differential amplifier and second stage is common source amplifier if one more inverter is added to that common sourceamplifierthatitbecomescomparatorso both differential and common source amplifier should be in saturation region. Fig 2.6: Schematic diagram for latched Figure 2.6 shows schematic diagramforlatchedcomparator, there are two differential input in circuit and produces output in form of zero and one. Figure 2.7 shows output waveform for comparator, input is level shifter and voltage reference Fig 2.7: Output waveform for Comparator. Fig 2.8: Flow chat for Circuit Diagram.
  • 5. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 06 Issue: 08 | Aug 2019 www.irjet.net p-ISSN: 2395-0072 © 2019, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 803 3. EXPERIMENTAL RESULTS Output waveform for overall dc/dc converter is 1.2v. For regulated output, it produces 1.2v. But in unregulated output, it can produce more than 2.5v. The outputwaveform is as given below in figure 3.1 & 3.2. Fig 3.1: Output waveform for regulated output voltage. Fig 3.2: Outputs for Vout and Vin. Fig 3.3: Transient time for converter. Figure 3.3 shows transient execution window in cadence virtuoso software, so time is set as 4m conservative and it is checked for both dc and transient response. All enable,input voltage output voltage and power in, out all are shown in above window. Discussion: Comparison between previous work and with this paper is given below in the comparison table. And working of circuit diagram is shown in flow chat. In this paper, Input is 500mv supply voltage and produce 1.2v output voltage and efficiency of about 34.44%. Table -1: Performance summary and comparison table between designed converter and previous work. Parameter [5] [6] [7] [8] [9] [11] In this Paper CMOS Technology 180-nm 90-nm 35-nm 130-nm 350-nm 180-nm 45-nm Extra masks Low Threshold With Tripple Well Not Mentioned Not Mentioned Not Mentioned Low Threshold Vth Input Supply Voltage 200mv 300mv 600mv 20mv 35mv 120mv 500mv Output Supply Voltage 1.2v 1v 2v 1v 1.8v 1.2v 1.2v External Supply Voltage NO NO 2v 0.65v NO NO NO External Required Component 2 Inductor None 2v Buffer Capacitor 1 Inductor 1 Capacitor 1 Inductor 1 Switch 2 Inductors 1 Inductor Efficiency Obtained 36% Not Provided 70% (Just Boost Converter) 52% 58% 30% 34.44% 4. CONCLUSION In this paper dc/dc converteris tooperate withinputvoltage supply of 500mv. And this converter can produce an output voltage of 1.2v, by delivering output current of about 5.018µA and overall efficiency produce 34.44%. And the circuit is used for energy harvesting application. The technology is 45-nm with 500mv input supply voltage andit produces 1.2v output voltage. REFERENCES [1] L. Mensi, L. Colalongo, A. Richelli, and Z-M. Koacs-Vajna, “A new integrated charge pump architecture using dynamic biasing of pass transistors,” in Proc. ESSCIRC, Sep. 2005, pp. 85-88. [2] M.D. Ker, S.-L. Chen, and C.-S. Tsai, “Design of charge pump with consideration of gate-oxide reability in low- voltage CMOS processes,”IEEEJ.Solid-StateCircuits,vol. 41, no. 5, pp. 1100-1107, May 2006.
  • 6. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 06 Issue: 08 | Aug 2019 www.irjet.net p-ISSN: 2395-0072 © 2019, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 804 [3] G. Palumbo, D. Pappalardo, and M. Gaibotti, “A CMOS charge pump circuits: Power consumption optimization,” IEEE Trans. Circuits Syst. I, Fundam. Theory Appl., vol. 49, no. 11, pp. 1535-1542, Nov. 2002. [4] A. Richelli, L. Colalongo, M. Quarantelli, M. Carmina, and Z. M. Kovacs-Vajna, “A fully-integrated inductor based 1.8 V-6 V step-up converter,” IEEE J. Solid-State Circuits, vol. 39, no. 1,pp.242-245, Jan. 2004. [5] A. Richelli, L. Colalongo, S. Tonoli, and Z.M.Kovacs-Vajna, “A 0.2 V-1.2 V dc/dc boost converter for power harvesting applications,” IEEE Trans. Power Electron.,vol.24,no.6,pp. 1541-1546, Jun. 2009. [6] T. K. Halvorsen, H. A. Hjortland, and T. S. Lande, “Power harvesting circuits in 90 nm CMOS,” in Proc. NORCHIP, Nov. 2008,pp. 154-157. [7] I. Doms, P. Merken, R. Mertens, and C. Van Hoof.”Integrated capacitive power-management citcuit for thermal harvesters with output power 10 to 1000µW,” in Proc. ISSCC, Feb.2009,pp.300-301. [8] E. Carlson, K. Strunz, and B. Oits, “20mV input boost converter for thermoelectric energyharvesting,”inVLSI Symp. Tech. Dig., Jun. 2009,pp. 162-163. [9] Y. K. Ramadass and A. P. Chandrakasan, “A batteryless thermoelectric energy-harvesting interface circuit with 35mV startup voltage,” in Proc. ISSCC,Feb.2010,pp.486- 487. [10] G. De Vita and G. Iannaccone, “A sub-1 V, 10ppm/C, nanopower reference generator,” IEEE J. Solid-State Circuits, vol.42, no. ,pp. 1536-1542, Jul.2007. [11] Anna Richelli, Simone Comensoli, and Zsolt M. Kovacs- Vajna,” A DC/DC Boosting Technique and Power Management for Ultralow-Voltage Energy Harvesting Applications,” IEEE. Industrial Electronics, vol.5,No.6,June.2012.