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        • C
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      • PIC32
        • C
          • NECTO Studio
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        • Basic
          • mikroBasic PRO for PIC32
        • Pascal
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        • Additional Software
          • CODEGRIP WiFi license
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          • Visual TFT
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          • Package Manager
          • mikroBootloader
          • CAN calculator
          • GLCD Font Creator
          • Timer Calculator
          • MikroPlot
      • ARM
        • C
          • NECTO Studio
          • mikroC PRO for ARM
        • Basic
          • mikroBasic PRO for ARM
        • Pascal
          • mikroPascal PRO for ARM
        • Additional Software
          • CODEGRIP WiFi license
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          • Visual TFT
          • Visual TFT AI
          • Visual GLCD
          • Package Manager
          • mikroBootloader
          • CAN calculator
          • GLCD Font Creator
          • Timer Calculator
          • MikroPlot
      • AVR
        • C
          • NECTO Studio
          • mikroC PRO for AVR
        • Basic
          • mikroBasic PRO for AVR
        • Pascal
          • mikroPascal PRO for AVR
        • Additional Software
          • CODEGRIP WiFi license
          • CODEGRIP SSL license
          • Visual TFT
          • Visual GLCD
          • Package Manager
          • mikroBootloader
          • CAN calculator
          • GLCD Font Creator
          • Timer Calculator
          • MikroPlot
      • FT90x
        • C
          • mikroC PRO for FT90x
        • Basic
          • mikroBasic PRO for FT90x
        • Pascal
          • mikroPascal PRO for FT90x
        • Additional Software
          • CODEGRIP WiFi license
          • CODEGRIP SSL license
          • Visual TFT
          • Visual GLCD
          • Package Manager
          • mikroBootloader
          • CAN calculator
          • GLCD Font Creator
          • Timer Calculator
          • MikroPlot
      • 8051
        • C
          • mikroC PRO for 8051
        • Basic
          • mikroBasic PRO for 8051
        • Pascal
          • mikroPascal PRO for 8051
        • Additional Software
          • CODEGRIP WiFi license
          • CODEGRIP SSL license
          • Visual TFT
          • Visual GLCD
          • Package Manager
          • mikroBootloader
          • CAN calculator
          • GLCD Font Creator
          • Timer Calculator
          • MikroPlot
    • Dev Boards
      • PIC (8-bit)
        • 8th Generation
          • Fusion for PIC v8
          • EasyPIC PRO v8
          • EasyPIC PRO v8 over USB-C
          • EasyPIC v8
          • EasyPIC v8 over USB-C
          • UNI-DS v8
          • UNI-DS v8 over USB-C
        • 7th Generation
          • EasyPIC PRO v7a
          • PICPLC16 v7a
          • EasyPIC v7a
          • EasyPIC PRO v7
          • EasyPIC v7
        • 6th Generation
          • PICPLC16 v6
      • dsPIC/PIC24 (16-bit)
        • 8th Generation
          • EasyPIC v8 PIC24/dsPIC33
          • EasyPIC v8 for dsPIC30
          • EasyPIC v8 for dsPIC30 over USB-C
          • Fusion for PIC v8
          • UNI-DS v8
          • UNI-DS v8 over USB-C
        • 7th Generation
          • EasyPIC Fusion v7
          • EasyPIC v7 for dsPIC30
        • 6th Generation
          • Easy24-33 v6
      • PIC32 (32-bit)
        • 8th Generation
          • Fusion for PIC32
          • Fusion for PIC32 over USB-C
          • Fusion for PIC v8
          • UNI-DS v8
          • UNI-DS v8 over USB-C
        • 7th Generation
          • EasyPIC Fusion v7
      • ARM (32-bit)
        • 8th Generation
          • Fusion for ARM v8
          • Fusion for ARM v8 over USB-C
          • Fusion for STM32 v8
          • Fusion for STM32 over USB-C
          • Fusion for KINETIS v8
          • Fusion for Kinetis v8 over USB-C
          • Fusion for TIVA v8
          • Fusion for TIVA v8 over USB-C
          • UNI-DS v8
          • UNI-DS v8 over USB-C
        • 7th Generation
          • EasyMx PRO v7a STM32
          • EasyMx PRO v7 STM32
          • EasyMx PRO v7 Tiva
      • AVR (8-bit)
        • 8th Generation
          • EasyAVR v8
          • EasyAVR PRO v8
          • EasyAVR PRO v8 over USB-C
          • UNI-DS v8
          • UNI-DS v8 over USB-C
        • 7th Generation
          • EasyAVR v7
        • 6th Generation
          • AVRPLC16 v6
      • 8051 (8-bit)
        • 7th generation
          • BIG8051
        • 6th Generation
          • Easy8051 v6
      • PSoC (8-bit)
        • 6th Generation
          • UNI-DS6 Development System
      • RISC-V (32bit)
        • 8th Generation
          • UNI-DS v8
          • UNI-DS v8 over USB-C
      • Universal Boards
        • 8th Generation
          • UNI-DS v8
          • UNI-DS v8 over USB-C
          • Fusion for PIC v8
          • Fusion for ARM v8
        • 7th Generation
          • EasyPIC Fusion v7
        • 6th Generation
          • UNI-DS6
          • mikroBoard for PIC 80-pin
          • mikroBoard for AVR
          • mikroBoard for dsPIC
          • mikroBoard for PSoC
          • mikroBoard for 8051
          • mikroBoard for PIC 40-pin
          • mikroBoard for ARM
          • mikroBoard for ARM 144-pin
      • IoT - Wearable
        • Hexiwear
          • Hexiwear
          • Hexiwear Power User Pack
          • Hexiwear Docking Station
          • Hexiwear Battery Pack
          • Hexiwear Color Pack
          • Hexiwear Workstation
      • Analog Boards
        • 7th Generation
          • Analog System Lab Kit PRO
    • Starter Boards
      • PIC (8-bit)
        • Clicker
          • PIC clicker
        • Clicker 2
          • Clicker 2 for PIC18FJ
          • Clicker 2 for PIC18FK
        • Clicker 4
          • Clicker 4 for PIC18F
          • UNI Clicker
        • Ready
          • Ready for PIC Board
          • Ready for PIC (DIP28)
          • PIC-Ready2 Board
          • MMC Ready Board
        • StartUSB
          • StartUSB for PIC
      • dsPIC/PIC24 (16-bit)
        • Clicker 2
          • Clicker 2 for PIC24
          • Clicker 2 for dsPIC33
        • Clicker 4
          • UNI Clicker
        • Ready
          • dsPIC-Ready1 Board
          • dsPIC-Ready2 Board
          • DsPIC-Ready3 Board
          • dsPIC-Ready4 Board
      • PIC32 (32-bit)
        • Clicker
          • PIC32MX clicker
          • 6LoWPAN Clicker
          • PIC32MZ clicker
        • Clicker 2
          • Clicker 2 for PIC32MX
          • Clicker 2 for PIC32MZ
        • Clicker 4
          • UNI Clicker
        • MINI
          • MINI-32 Board
          • MINI-32 for PIC32MZ
        • Flip&Click
          • Flip&Click PIC32MZ
      • ARM (32-bit)
        • Clicker
          • RA4M1 Clicker
          • Kinetis Clicker
          • MSP432 Clicker
          • CEC1702 clicker
          • CEC1302 Clicker
          • STM32 M4 clicker
        • Clicker 2
          • Clicker 2 for STM32
          • Clicker 2 for Kinetis
          • Clicker 2 for CEC1702
          • Clicker 2 for MSP432
          • Clicker 2 for CEC1302
          • Clicker 2 for PSoC 6
        • Clicker 4
          • Clicker 4 for STM32F745VG
          • Clicker 4 for STM32F4
          • Clicker 4 for TMPM3H
          • Clicker 4 for TMPM4K
          • Clicker 4 for STM32
          • UNI Clicker
        • MINI
          • MINI-M4 for STM32
          • MINI-M4 For Kinetis
          • MINI-M4 for Tiva
          • MINI-M4 for Stellaris
          • MINI-M4 for MSP432
          • MINI-M0 for STM32
        • Flip&Click
          • Flip&Click SAM3X
      • AVR (8-bit)
        • Clicker 4
          • UNI Clicker
        • MINI
          • MINI-AT Board - 3.3V
          • MINI-AT Board - 5V
        • Ready
          • Ready for AVR Board
          • Ready For XMEGA
          • mikroXMEGA Board
          • AVR-Ready2 Board
        • StartUSB
          • StartUSB for AVR
      • 8051 (8-bit)
        • Ready
          • 8051-Ready Board
      • FT90x (32-bit)
        • Clicker 2
          • Clicker 2 for FT90x
      • Miscellaneous
        • USB
          • USB Wizard
          • Quail
          • FlowPaw Kit
      • Universal Boards
        • Clicker 4
          • UNI Clicker
    • Prog-Debug
      • PIC (8-bit)
        • CODEGRIP
          • UNI CODEGRIP
          • UNI CODEGRIP - USB-C
          • CODEGRIP for PIC
          • CODEGRIP for PIC USB-C
        • mikroProg
          • mikroProg for PIC
      • dsPIC/PIC24 (16-bit)
        • CODEGRIP
          • UNI CODEGRIP
          • UNI CODEGRIP - USB-C
          • CODEGRIP for PIC
        • mikroProg
          • mikroProg for dsPIC
      • PIC32 (32-bit)
        • CODEGRIP
          • UNI CODEGRIP
          • UNI CODEGRIP - USB-C
          • CODEGRIP for PIC
          • CODEGRIP for PIC USB-C
        • mikroProg
          • mikroProg for PIC32
      • ARM (32-bit)
        • CODEGRIP
          • UNI CODEGRIP
          • UNI CODEGRIP USB-C
          • CODEGRIP for ARM
          • CODEGRIP for ARM USB-C
          • CODEGRIP for STM32
          • CODEGRIP for KINETIS
          • CODEGRIP for Tiva
          • CODEGRIP for Tiva USB-C
        • mikroProg
          • mikroProg for STM32
          • mikroProg for Tiva
          • mikroProg for Kinetis
          • mikroProg for CEC
          • mikroProg for MSP432
          • mikroProg for PSoC 5LP
      • AVR (8-bit)
        • CODEGRIP
          • CODEGRIP for AVR
          • CODEGRIP for AVR - USB-C
          • UNI CODEGRIP
          • UNI CODEGRIP - USB-C
        • mikroProg
          • mikroProg for AVR
      • 8051 (8-bit)
        • mikroProg
          • mikroProg for 8051
      • FT90x (32-bit)
        • mikroProg
          • mikroProg for FT90x
    • Smart Displays
      • 2.8"
        • ARM (32-bit)
        • AVR (8-bit)
        • dsPIC/PIC24 (16-bit)
        • PIC (8-bit)
        • PIC32 (32-bit)
      • 3.5"
        • ARM (32-bit)
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        • PIC (8-bit)
        • PIC32 (32-bit)
      • 4.3"
        • ARM (32-bit)
        • FT90x (32-bit)
        • PIC (8-bit)
        • PIC32 (32-bit)
      • 5"
        • ARM (32-bit)
        • FT90x (32-bit)
        • PIC32 (32-bit)
      • 7"
        • ARM (32-bit)
        • FT90x (32-bit)
    • MCU Cards
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        • 8th Generation
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      • PIC32 (32-bit)
        • 8th Generation
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      • ARM (32-bit)
        • 8th Generation
        • 7th Generation
      • AVR (8-bit)
        • 8th Generation
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        • 8th Generation
    • Accessories
      • TFT Displays
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MikroElektronika white logo
  • Products
    • click boards icon Click Boards
      • Wireless Connectivity
        • GPS/GNSS
        • GSM/LTE
        • LTE IoT
        • BT/BLE
        • WiFi
        • RFID/NFC
        • GSM+GPS
        • 6LoWPAN
        • ZigBee
        • UWB
        • SigFox
        • Sub-1 GHz Transceievers
        • 2.4 GHz Trancevers
        • LoRa
        • WiFi+BLE
      • Sensors
        • Biometrics
        • Gas
        • Magnetic
        • Motion
        • Optical
        • Pressure
        • Proximity
        • Temperature & humidity
        • Current sensor
        • Miscellaneous
        • Environmental
        • Force
        • Inductance
        • RF meter
        • Click Shields
        • Click Bundles
      • Interface
        • Adapter
        • CAN
        • Port expander
        • RS485
        • USB
        • 1-Wire
        • RS232
        • Ethernet
        • LIN
        • PWM
        • Current
        • DALI
        • I2C
        • Fiber optics
        • SPI
        • DMX
        • CXPI
        • Click Shields
        • Click Bundles
      • Display & LED
        • LED Drivers
        • LED Matrix
        • LED Segment
        • OLED
        • LCD
        • TFT
        • Click Shields
        • Click Bundles
      • Miscellaneous
        • Relay
        • Optocoupler
        • ID
        • Proto
        • Encryption
        • Click Shields
        • Click Bundles
      • Mixed Signal
        • ADC
        • Measurements
        • DAC
        • Digital potentiometer
        • ADC-DAC
        • Click Shields
        • Click Bundles
      • Storage
        • EEPROM
        • FLASH
        • FRAM
        • microSD
        • MRAM
        • SRAM
        • EERAM
        • ReRAM
        • DRAM
        • Click Shields
        • Click Bundles
      • Motor Control
        • Brushed
        • Brushless
        • Servo
        • Stepper
        • Click Shields
        • Click Bundles
      • Audio & Voice
        • Amplifier
        • Microphone
        • Speakers
        • Signal Processing
        • Speech recognition
        • FM
        • MP3
        • Click Shields
        • Click Bundles
      • HMI
        • Capacitive
        • Pushbutton/Switches
        • Potentiometers
        • Rotary encoder
        • Haptic
        • Fingerprint
        • Click Shields
        • Click Bundles
      • Clock & Timing
        • RTC
        • Clock generator
        • Click Shields
        • Click Bundles
      • Power Management
        • Battery charger
        • Boost
        • Buck
        • Linear
        • Buck-Boost
        • Wireless Charging
        • Power Switch
        • USB-C PD
        • Click Shields
        • Click Bundles
      • Click Bundles
      • Click Shields
    • necto icon NECTO
      • NECTO Studio
    • compilers icon Compilers
      • PIC
        • C
          • NECTO Studio
          • mikroC PRO for PIC
        • Basic
          • mikroBasic PRO for PIC
        • Pascal
          • mikroPascal PRO for PIC
        • Additional Software
          • CODEGRIP WiFi license
          • CODEGRIP SSL license
          • Visual TFT
          • Visual TFT AI
          • Visual GLCD
          • Package Manager
          • mikroBootloader
          • CAN calculator
          • GLCD Font Creator
          • Timer Calculator
          • MikroPlot
      • dsPIC/PIC24
        • C
          • NECTO Studio
          • mikroC PRO for dsPIC
        • Basic
          • mikroBasic PRO for dsPIC
        • Pascal
          • mikroPascal PRO for dsPIC
        • Additional Software
          • CODEGRIP WiFi license
          • CODEGRIP SSL license
          • Visual TFT
          • Visual GLCD
          • Package Manager
          • mikroBootloader
          • CAN calculator
          • GLCD Font Creator
          • Timer Calculator
          • MikroPlot
      • PIC32
        • C
          • NECTO Studio
          • mikroC PRO for PIC32
        • Basic
          • mikroBasic PRO for PIC32
        • Pascal
          • mikroPascal PRO for PIC32
        • Additional Software
          • CODEGRIP WiFi license
          • CODEGRIP SSL license
          • Visual TFT
          • Visual GLCD
          • Package Manager
          • mikroBootloader
          • CAN calculator
          • GLCD Font Creator
          • Timer Calculator
          • MikroPlot
      • ARM
        • C
          • NECTO Studio
          • mikroC PRO for ARM
        • Basic
          • mikroBasic PRO for ARM
        • Pascal
          • mikroPascal PRO for ARM
        • Additional Software
          • CODEGRIP WiFi license
          • CODEGRIP SSL license
          • Visual TFT
          • Visual TFT AI
          • Visual GLCD
          • Package Manager
          • mikroBootloader
          • CAN calculator
          • GLCD Font Creator
          • Timer Calculator
          • MikroPlot
      • AVR
        • C
          • NECTO Studio
          • mikroC PRO for AVR
        • Basic
          • mikroBasic PRO for AVR
        • Pascal
          • mikroPascal PRO for AVR
        • Additional Software
          • CODEGRIP WiFi license
          • CODEGRIP SSL license
          • Visual TFT
          • Visual GLCD
          • Package Manager
          • mikroBootloader
          • CAN calculator
          • GLCD Font Creator
          • Timer Calculator
          • MikroPlot
      • FT90x
        • C
          • mikroC PRO for FT90x
        • Basic
          • mikroBasic PRO for FT90x
        • Pascal
          • mikroPascal PRO for FT90x
        • Additional Software
          • CODEGRIP WiFi license
          • CODEGRIP SSL license
          • Visual TFT
          • Visual GLCD
          • Package Manager
          • mikroBootloader
          • CAN calculator
          • GLCD Font Creator
          • Timer Calculator
          • MikroPlot
      • 8051
        • C
          • mikroC PRO for 8051
        • Basic
          • mikroBasic PRO for 8051
        • Pascal
          • mikroPascal PRO for 8051
        • Additional Software
          • CODEGRIP WiFi license
          • CODEGRIP SSL license
          • Visual TFT
          • Visual GLCD
          • Package Manager
          • mikroBootloader
          • CAN calculator
          • GLCD Font Creator
          • Timer Calculator
          • MikroPlot
    • dev boards icon Dev Boards
      • PIC (8-bit)
        • 8th Generation
          • Fusion for PIC v8
          • EasyPIC PRO v8
          • EasyPIC PRO v8 over USB-C
          • EasyPIC v8
          • EasyPIC v8 over USB-C
          • UNI-DS v8
          • UNI-DS v8 over USB-C
        • 7th Generation
          • EasyPIC PRO v7a
          • PICPLC16 v7a
          • EasyPIC v7a
          • EasyPIC PRO v7
          • EasyPIC v7
        • 6th Generation
          • PICPLC16 v6
      • dsPIC/PIC24 (16-bit)
        • 8th Generation
          • EasyPIC v8 PIC24/dsPIC33
          • EasyPIC v8 for dsPIC30
          • EasyPIC v8 for dsPIC30 over USB-C
          • Fusion for PIC v8
          • UNI-DS v8
          • UNI-DS v8 over USB-C
        • 7th Generation
          • EasyPIC Fusion v7
          • EasyPIC v7 for dsPIC30
        • 6th Generation
          • Easy24-33 v6
      • PIC32 (32-bit)
        • 8th Generation
          • Fusion for PIC32
          • Fusion for PIC32 over USB-C
          • Fusion for PIC v8
          • UNI-DS v8
          • UNI-DS v8 over USB-C
        • 7th Generation
          • EasyPIC Fusion v7
      • ARM (32-bit)
        • 8th Generation
          • Fusion for ARM v8
          • Fusion for ARM v8 over USB-C
          • Fusion for STM32 v8
          • Fusion for STM32 over USB-C
          • Fusion for KINETIS v8
          • Fusion for Kinetis v8 over USB-C
          • Fusion for TIVA v8
          • Fusion for TIVA v8 over USB-C
          • UNI-DS v8
          • UNI-DS v8 over USB-C
        • 7th Generation
          • EasyMx PRO v7a STM32
          • EasyMx PRO v7 STM32
          • EasyMx PRO v7 Tiva
      • AVR (8-bit)
        • 8th Generation
          • EasyAVR v8
          • EasyAVR PRO v8
          • EasyAVR PRO v8 over USB-C
          • UNI-DS v8
          • UNI-DS v8 over USB-C
        • 7th Generation
          • EasyAVR v7
        • 6th Generation
          • AVRPLC16 v6
      • 8051 (8-bit)
        • 7th generation
          • BIG8051
        • 6th Generation
          • Easy8051 v6
      • PSoC (8-bit)
        • 6th Generation
          • UNI-DS6 Development System
      • RISC-V (32bit)
        • 8th Generation
          • UNI-DS v8
          • UNI-DS v8 over USB-C
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3.4 Analog prototype filter to analog filter transformation

 

All analog prototype filters, regardless of their type, have scaled frequency range so that the passband cut-off frequency amounts to Ω = 1. For this reason, it is necessary to scale filter during the design process, so that passband and stopband cut-off frequencies have the appropriate, predetermined values.


Reference analog prototype filter is also a low-pass filter so it requires to be transformed into the appropriate type of filter, i.e. high-pass, band-pass or band-stop filter, if needed.

Transformation from an analog prototype filter to appropriate analog filter is performed before transforming it in digital filter.

Frequency scaling depends on the type of analog filter being designed. Scaling is explained for low-pass, high-pass, band-pass and band-stop filters.

All the results obtained in this chapter are tested in the Filter designer tool program.

3.4.1 Low-pass filter


The transformation from a reference analog prototype filter to a low-pass analog filter is the simplest type of transformation. Analog prototype filter is a low-pass filter with the cut-off frequency of Ωp=1. In this case, the transformation comes to a simple frequency scaling. In the transform function, sΩc is used instead of s, where Ωc is a desirable cut-off frequency in the passband.

Generally, the transform function of the reference analog prototype filter can be expressed as follows:
for3-3-23

where
H0 is a costant;
zk is the k-th zero of the transfer function of the reference analog prototype filter;
M is a number of zeros of the transfer function of the reference analog prototype filter;
pk is the k-th pole of the transfer function of the reference analog prototype filter; and
N is a number of poles of the transfer function of the reference analog prototype filter and the filter order as well.

By performing the transformation:
for3-3-24

each expression within brackets in the transfer function numerator is transformed into:
for3-3-25

and the whole numerator is transformed into:
for3-3-26

Each bracket in denominator is transformed similarly:
for3-3-27

and the entire denominator is transformed into:
for3-3-28

By replacing numerator and denominator by their transformed expressions, the transform function of the analog filter is obtained:
for3-3-29

Example:

The transform function of the Butterworth reference analog prototype filter of the 3rd order is expressed as follows:
for3-3-30

The transformation in a band-pass analog filter with the cut-off frequency Ωc = 0.2929 in the passband is obtained via expression:
for3-3-31

Example:

The transform function of inverse Chebyshev reference analog prototype filter of the 3rd order is expressed as follows:
for3-3-32

The transformation to a band-pass analog filter with the cut-off frequency Ωc=0.3719 in the passband is obtained via expression:
for3-3-33
 

3.4.2 High-pass filter


Analog prototype filter is a low-pass filter with the cut-off frequency Ωp = 1. Its transformation to a high-pass analog filter can be split into two steps. The first step refers to the transformation to a high-pass analog filter, whereas the second one refers to frequency scaling. The final objective is that passband cut-off frequency of the resulting high-pass analog filter amounts to Ωc.

The transformation to a high-pass analog filter:
for3-3-34

Scaling of frequency axis is performed by transformation:
for3-3-35

These two transformations can be represented by one transformation:
for3-3-36

Generally, the transform function of the reference analog prototype filter can be expressed as follows:
for3-3-37

where:
H0 is a constant;
zk is the k-th zero of the transfer function of the reference analog prototype filter;
M is a number of zeros of the transfer function of the reference analog prototype filter;
pk is the k-th pole of the transfer function of the reference analog prototype filter; and
N is a number of poles of the transfer function of the reference analog prototype filter and the filter order as well.

By performing the following transformation:
for3-3-38

each bracket in the numerator of the transfer function is transformed into
for3-3-39

and the entire numerator is transformed into:
for3-3-40

Each bracket in denominator is transformed similarly:
for3-3-41

and the entire denominator is transformed into:
for3-3-42

Substituting these transformed expressions for numerator and denominator, the transform function of the analog filter is obtained:
for3-3-43

Example:

The transfer function of the Chebyshev reference analog prototype filter of the 3rd order is expressed as follows:
for3-3-44

The transformation in a band-pass analog filter with the cut-off frequency Ωc = 0.3721 in the passband is expressed as:
for3-3-45

The result is the transfer function of analog filter:
for3-3-46

Example:

The transfer function of inverse Chebyshev reference analog prototype filter of the 2nd order is expressed as follows:
for3-3-47

The transformation in a band-pass analog filter with the cut-off frequency Ωc=0.1434 in the passband is expressed as:
for3-3-48

The result is the transform function of analog filter:
for3-3-49
 

3.4.3 Band-pass filter


The transformation in a band-pass analog filter is more complex than the transformation in a low-pass and high-pass analog filters. The filter order is doubled by this transformation. This is why it is not possible to design an odd order band-pass filter.

When designing, the required filter order is divided by two. The resulting filter order is used to design a low-pass reference analog prototype filter. By transforming it into a band-pass analog filter the filter order is doubled. The required filter order is obtained this way.

Example:

Assume that it is necessary to design an 8th order band-pass digital filter.

A low-pass reference analog filter of the 4th order is designed first.

Reference analog filter is further transformed in a bandpass analog filter. This transformation doubles the filter order. The order of the resulting filter is 8.

The transformation into a band-pass analog filter is expressed as:
for3-4-1

The value of the constant Ω0 can be found via expression:
for3-4-2

where:
Ωp1 is a lower cut-off frequency in the passband (refer to figure 3-4-1); and
Ωp2 is a higher cut-off frequency in the passband (refer to figure 3-4-1).
digital-filter-design-chapter-03-image-4-1
 
Figure 3-4-1. Band-pass filter specification

The value of Ωc, which is necessary for normalization, is found via expression:
for3-4-3

The transfer function of an analog prototype filter is transformed first in a band-pass analog filter, and normalized after that with Ωc.

Generally, the transfer function of the reference analog prototype filter can be expressed as:
for3-4-4

where:
H0 is a constant;
zk is the k-th zero of the transfer function of the reference analog prototype filter;
M is a number of zeros of the transfer function of the reference analog prototype filter;
pk is the k-th pole of the transfer function of the reference analog prototype filter; and
N is a number of poles of the transfer function of the reference analog prototype filter and the filter order as well.

By performing the transformation:
for3-4-5

each bracket in numerator of the transfer function is transformed into:
for3-4-6

and the entire numerator is transformed into:
for3-4-7

The scaling of frequency axis is performed after transformation:
for3-4-8
 
for3-4-9
 
 

Each bracket in denominator is transformed similarly:
for3-4-10

and the entire denominator is transformed into:
for3-4-11

The scaling of frequency axis is performed after transformation:
 
 
for3-4-12
 
for3-4-13
 
for3-4-14
 
 

Substituting the transformed expressions for numerator and denominator, the transform function of analog filter is obtained:
for3-4-15
 
for3-4-16
 
 

Example:

The transfer function of the Chebyshev reference analog prototype filter of the 2nd order is expressed as:
for3-4-17

The transformation in a band-pass analog filter with the cut-off frequency Ωc = 0.1626 in the passband is expressed as:
for3-4-18

The result is the transfer function of analog filter:
for3-4-19
 

3.4.4 Band-stop filter


The transformation in a band-stop analog filter is similar to the transformation in a bandpass analog filter. Similarly, the filter order is doubled and the order of a band-stop digital filter cannot be an odd number.

When designing, the required filter order is divided by two. The resulting filter order is used for designing a low-pass reference analog prototype filter. The transformation into a bandstop analog filter causes the filter order to double. This is how the required filter order is obtained.

Example:

It is necessary to design a band-stop digital filter of the 10th order.

A low-pass reference analog filter of the 5th order is designed first.

The reference analog filter is transformed in a band-stop analog filter. This transformation causes the filter order to double. The result is a 10th order filter.

The transformation in a band-stop analog filter:
for3-4-20

The value of the constant Ω0 can be found via expression:
for3-4-21

where:
Ωs1 is a lower cut-off frequency in the stopband (refer to figure 3-4-2); and
Ωs2 is a higher cut-off frequency in the stopband (refer to figure 3-4-2).
digital-filter-design-chapter-03-image-4-2
 
Figure 3-4-2. Band-stop filter specification

The value of Ωc, which is necessary for normalization, is found via expression:
for3-4-22

The transfer function of the reference analog prototype filter is transformed first into a band-stop analog filter, and normalized after that with Ωc.

Generally, the transfer function of the reference analog prototype filter can be expressed as follows:
for3-4-23

where:
H0 is a constant;
zk is the k-th zero of the transfer function of the reference analog prototype filter;
M is a number of zeros of the transfer function of the reference analog prototype filter;
pk is the k-th pole of the transfer function of the reference analog prototype filter; and
N is a number of poles of the transfer function of the reference analog prototype filter and the filter order as well.

The first step refers to normalization with the frequency Ωc:
for3-4-24

The transformation is performed in the second step:
for3-4-25

and each bracket in the transfer function numerator is transformed in:
for3-4-26

and the entire numerator is transformed in:
for3-4-27

Each bracket in denominator is transformed similarly:
for3-4-28

and the entire denominator is transformed in:
for3-4-29

Substituting the transformed expressions for numerator and denominator, the transform function of analog filter is obtained:
for3-4-30

Example:

The transfer function of inverse Chebyshev reference analog prototype filter of the 2nd order is expressed as:
for3-4-31

The transformation into a band-stop analog filter with the cut-off frequency Ωc=0.252.5727 in the passband is expressed as:
for3-4-32

The result is the transfer function of analog filter:
for3-4-33

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