A semi-analytical method is proposed to evaluate the effectiveness of a decoupling capacitor on resonant power and ground planes. New expressions are developed relating the pin impedance to relative placement of a capacitor with associated angular and distance parameters. To speed up the solution of resulting transcendental equations, a 2-D iterative technique is proposed, which yields the effective distance as well as the angle between a decoupling capacitor and a power pin. The partial derivatives of the corresponding Jacobian matrix are analytically derived. Numerical examples are presented to demonstrate the validity of the proposed method, which also investigates the effect of plane edges on pin impedance
International audienceDecaps can be very effective in reducing power grid noise, but they cannot be ...
This article proposes an optimization algorithm using the Hessian minimization method, based on the ...
Decoupling capacitors are widely used to reduce power sup-ply noise. On-chip decoupling capacitors h...
An analytical model is developed for the driving point impedance of a power pin for the evaluation o...
With rapidly increasing switching speeds and surge current requirements, placement of local decoupli...
A new method is developed to assess the effectiveness of local decoupling capacitors on parallel-pla...
A method is proposed for efficient placement of decoupling capacitor on a power transmission line ba...
A method is proposed for the optimized placement of decoupling capacitors on power delivery networks...
Traditional decoupling capacitors connected between V/CC/ and GND traces can be relatively ineffecti...
Welcome to Design Tips! This article will examine how to minimize the inductance associated with mou...
A novel approach for evaluating the efficiency of decoupling capacitors is proposed for power delive...
Decoupling capacitor location in DC power bus design is a critical design choice for which proven gu...
An analytical method to calculate the electric- and magnetic fields near a planar PDN with decouplin...
A fast and efficient method is proposed for placement of decoupling capacitors on printed circuit bo...
The segmentation method used for the analysis of arbitrarily shaped planar structures is extended to...
International audienceDecaps can be very effective in reducing power grid noise, but they cannot be ...
This article proposes an optimization algorithm using the Hessian minimization method, based on the ...
Decoupling capacitors are widely used to reduce power sup-ply noise. On-chip decoupling capacitors h...
An analytical model is developed for the driving point impedance of a power pin for the evaluation o...
With rapidly increasing switching speeds and surge current requirements, placement of local decoupli...
A new method is developed to assess the effectiveness of local decoupling capacitors on parallel-pla...
A method is proposed for efficient placement of decoupling capacitor on a power transmission line ba...
A method is proposed for the optimized placement of decoupling capacitors on power delivery networks...
Traditional decoupling capacitors connected between V/CC/ and GND traces can be relatively ineffecti...
Welcome to Design Tips! This article will examine how to minimize the inductance associated with mou...
A novel approach for evaluating the efficiency of decoupling capacitors is proposed for power delive...
Decoupling capacitor location in DC power bus design is a critical design choice for which proven gu...
An analytical method to calculate the electric- and magnetic fields near a planar PDN with decouplin...
A fast and efficient method is proposed for placement of decoupling capacitors on printed circuit bo...
The segmentation method used for the analysis of arbitrarily shaped planar structures is extended to...
International audienceDecaps can be very effective in reducing power grid noise, but they cannot be ...
This article proposes an optimization algorithm using the Hessian minimization method, based on the ...
Decoupling capacitors are widely used to reduce power sup-ply noise. On-chip decoupling capacitors h...