dc-dc converter design phase acceleration with virtuoso ... · dc-dc converter design phase...
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![Page 1: DC-DC Converter Design Phase Acceleration with Virtuoso ... · DC-DC Converter Design Phase Acceleration with Virtuoso® UltraSim Simulator • Mohamed Bouhamame, Didier Depreeuw](https://reader030.vdocuments.site/reader030/viewer/2022021519/5be3369c09d3f233038b5377/html5/thumbnails/1.jpg)
DC-DC Converter Design Phase Acceleration with Virtuoso® UltraSimSimulator
• Mohamed Bouhamame, Didier Depreeuw
• NXP Semiconductors Caen France
![Page 2: DC-DC Converter Design Phase Acceleration with Virtuoso ... · DC-DC Converter Design Phase Acceleration with Virtuoso® UltraSim Simulator • Mohamed Bouhamame, Didier Depreeuw](https://reader030.vdocuments.site/reader030/viewer/2022021519/5be3369c09d3f233038b5377/html5/thumbnails/2.jpg)
ROBUSPIC, M.Bouhamame September 22, 2006
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Outline
MotivationsDC-DC converter topologyImplementation UltrasimDC-DC converter settingSimulation & measurement resultsConclusions
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ROBUSPIC, M.Bouhamame September 22, 2006
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Motivations
A Controllable high voltage DC-DC Converter
High level of integration
Low power consumption
Tunable RF filter with High linearity and High selectivity
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ROBUSPIC, M.Bouhamame September 22, 2006
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CsD1
Cs
C C
D2 D3
Cs CsDn-1 Dn
C C CoutRL
VoutVin
CkCkn
Where:- N is the number of commutating stages (N=20)- f is the operating frequency of the charge pump (f=16MHz)- Cs is the stray capacitance at each node (1fF)- Iout is the DC current required to drive the load for a given output voltage
How to decrease the output voltage rapidly?
+++−=
f*)s
CC(out
I
dV
ckV*
sCC
C*Nd
Vin
Vout
V --
DC-DC converter topology
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ROBUSPIC, M.Bouhamame September 22, 2006
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Why Tunable RF Filter?
Tunable Filters are needed because of :
High dynamic range of the received signals
Wide input bandwidth (F=[50MHz…870MHz])
Tracking filter used in traditional TV tuner
)(vC
pC
vminCvmaxC
minfmaxf
>>=Provider by the DC-DC
L1
L2Cp
Cv RVtune=0.8V..28V
Antenna
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ROBUSPIC, M.Bouhamame September 22, 2006
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C1
C’3 C’
2 C’1
C2 C3
VoutD1 D2 D3
D3 D2 D1
M diodes N diodes
CkupnCkupp
CkdwnCkdwp
DC-DC UP
DC-DC DOWN
Implementation
Dickson Charge pump is implemented in 2.8V Bi-CMOS 0.25µm
Technology (Break down voltage for collector substrate is Bvcs0=80V )
Stray capacitance Cs has been reduced by the shielding done by the poly layer
Vout < (N+M)*Vd (Vd is the forward bias voltage of the diode)
C
Fringe capacitor
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ROBUSPIC, M.Bouhamame September 22, 2006
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VrefCkCkn
VckVck
C
R
15M
1M
ProgDAC
Vout=Vtune
+-
Implementation
Resistors used have a breakdown voltage more than 200V and have a sheet resistance of 2000 /square
Vref enables to tune the center frequency of the tracking filter(Vref =Vout/16)
Spectre simulation time is really long! (40000 switching periods are required to capture the power-up (the output voltage starts from 0 volt to reach the steady state of 24 volts)
How to decrease the time simulation?
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ROBUSPIC, M.Bouhamame September 22, 2006
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UltraSim is a fast-spice hierarchical circuit simulator (Transistor level) which combines a variety of simulation technologies to allow high-capacity simulation of memories, digital, analog, RF and mixed-signal ICs with spice-like accuracy
What Is Ultrasim ?
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ROBUSPIC, M.Bouhamame September 22, 2006
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Cadence’s Slide
Ultrasim : Fast SPICE Technology
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ROBUSPIC, M.Bouhamame September 22, 2006
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Applications:
Full-chip simulation
Analog/MS/D/Memory
Pre-/Post Layout
Tran
1B+ device capacity
Applications:
Large Block Design
MS/Digital/Memory
Pre-/Post Layout
Tran
1M device capacity
Applications:
Block design
Analog/MS
Pre Layout
Tran, AC, Noise, RF
50K device capacity
Technologies:
Fast-SPICE technologies
Hierarchy
Isomorphism
Technologies:
Simplified Models: PWL, Table
Matrix Partitioning
Event-driven
Multi-rate
RC reduction
Technologies:
Compact models
Sparse Matrix Solver
Time step, Newton-raphson
Hier-SPICE:Fast-SPICE:SPICE:
Transistor Level Circuit Simulation Overview
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ROBUSPIC, M.Bouhamame September 22, 2006
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Cadence’s Slide
UltraSim 3rd Generation Transistor Level Simulator
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ROBUSPIC, M.Bouhamame September 22, 2006
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UltraSim Simulation Modes
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ROBUSPIC, M.Bouhamame September 22, 2006
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Different time steps for partitions
High frequency partition : small time step
Small frequency partition : bigger time step
UltraSim Multirate simulation
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ROBUSPIC, M.Bouhamame September 22, 2006
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UltraSim Speed Options Cadence’s slide
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ROBUSPIC, M.Bouhamame September 22, 2006
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Simkit MN11 and MOS9 are supportedin Ultrasim for the following models:
• DF• DA• A• Spice
The same study of theId_Vd & Id_VgdifferencesIs under investigation
UltraSim Simulation Models Overview
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ROBUSPIC, M.Bouhamame September 22, 2006
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Circuit inventory:Nodes 307Equations 796bjt504 76capacitor 57diode 101isource 2juncap 696mos1100e 278phy_res 78resistor 15vcvs 2vsource 6
cadence_ic 5.10.41.500.2.26cadence_ius 5.5.s001cadence_mmsim 6.0.1.174
the server define below is used :OS: Linux 2.4.21-15.ELhugemem i686Memory: available 4.1157 GB physical 8.3916 GBSwap: available 3.2410 GB physical 4.1784 GBCPU: CPU0 AMD Opteron(tm) Processor 250 2388.905MHzCPU1 AMD Opteron(tm) Processor 250 2388.905MHz
DC-DC converter setting
We need to set vdd=1.8 to get accurate table model creation!.usim_opt progress_p=1 vdd=1.8
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ROBUSPIC, M.Bouhamame September 22, 2006
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Simulation & measurement results
0
5
10
15
20
25
0 0,5 1 1,5 2t (ms)
Vout (V)
spectre
ultrasim
Ultrasim versus Spectre Less than 0.003% diff
0
5
10
15
20
25
0 0,4 0,8 1,2 1,6 2t (ms)
Vout (V)
spectreultrasimmeasurement
Simulation time result using local settingUsing Ultrasim, the circuit simulation time is six times faster with the same accuracy compare to Spectre
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ROBUSPIC, M.Bouhamame September 22, 2006
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Measurement results
19
21
23
25
27
29
31
1,4 1,75 2,1 2,45 2,8
Vref (V)
Vout
(V)
T=Tnom
T=85C
T=-20C
Voltage output range 0V … 30 V
Output current max 8 µA
Supply current max 1mA
When Iout=8µA, f=16MHz, N=20, Vd=0.6V, C=700fF and Cs=1fF, Vout =32V
The temperature dependency of the output voltage is negligible
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ROBUSPIC, M.Bouhamame September 22, 2006
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Voltage regulation,Clock generation
DC/DC UP DC/DC DOWN
Die photograph
Technology : 0.25µm Bi-CMOS ft=40GHz
Area : 620µm*262µm
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ROBUSPIC, M.Bouhamame September 22, 2006
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Ultrasim Pros & Cons
ProsTime saving with the same accuracy
Factor 6 with DC DC ConverterWould have been a great help on time saving during the design phase
ConsSpectre is the reference tool, take care of ultrasim simulation results of a
global system for which spectre simulation is not possibleSometimes prohibitive simulation time due to not optimized local settings
: use the activity reportTransient analog signal, no RF capabilitiesBipolar transistors not taken into account in the table model simplificationUltrasim-Verilog : not possible to save / load an intermediate step
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ROBUSPIC, M.Bouhamame September 22, 2006
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Conclusions
A Controllable High Voltage DC-DC converter has been presented
A novel solution has been used to decrease the output voltage rapidly
The new discharge system solves the problem of the high tuning voltage requirement for MEMS and SMD variable capacitors
The forward bias voltage Vd is the main limitation of the output voltage
Ultrasim have been a great help on time saving during the design phase
Ultrasim allows the exploration of more design configurations, the accuracy is excellent for such Bi-CMOS circuit
Ultrasim simulator is a very efficient to make possible bottom-up verification for all IC builder
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ROBUSPIC, M.Bouhamame September 22, 2006
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Acknowledgements
Jean Robert Tourret, NXP Semiconductors
Luca Lococo, NXP Semiconductors
Serge Toutain, IREENA
André Baguenier, Cadence
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Thanks for your attention!
Any Question ?