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Nexxim Simulator >
Nexxim Component Models >
Nexxim Filters >
   Pole Zero Filter, Causal       

Pole Zero Filter, Causal

 

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Netlist Syntax

An instance of a pole-zero causal filter has the following Nexxim netlist syntax:

Axxx n1 n2 filter_type=1|2|3|4 [FC=val][GF=val] [BW=val]
POLES=[rp1 ip1 ...] ZEROS=[rz1 iz1 ...] COMPONENT=polezero_filter_causal

n1 and n2 are the nodes connected to the filter. The parameter filter_type selects the passband. The entry COMPONENT=polezero_filter_causal is required.

 


Pole-Zero Causal Filter Instance Parameters

Parameter

Description

Units

Default

FILTER_TYPE

Passband selector

1=LOWPASS, 2=HIGHPASS, 3=BANDREJECT, 4=BANDPASS

None

None

FC

3dB cutoff frequency

Hz

1e9

GF

Gain factor

None

1.0

BW

3dB bandwidth

Hz

1e9

rp1, ip1 ... rpN, ipN

Real and imaginary parts of the poles

None

None

rz1, iz1 ... rzN, izN

Real and imaginary parts of the zeros

None

None


Netlist Example

A22 1 2 filter_type=4 FC=80e6 BW=101e4 POLES=[.1 -1.03 .2 .003]
+ ZEROS=[.05 -1.7] + COMPONENT=polezero_filter_causal

Notes

1. The element is specified using a transfer function given as the ratio of two expressions in the complex variable s. The bold brackets for the POLES and ZEROS entries are required.

The function of the device is expressed as:

GAIN ´ H(s)

The transfer function H(s) is specified by giving the coefficients:

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where F = the analysis frequency and j=sqrt(-1)

 

2. The first coefficients in both numerator and denominator (a0 and b0) are constants, which must be specified even if they are zero. Thus, leading zeros are significant. In addition, intermediate zero-valued coefficients must be explicitly supplied in order to have the non-zero coefficients applied to the correct powers of s.

3. Trailing zeros are not significant, and are automatically removed.

4. At least one non-zero pole value must be supplied.

 




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