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    XH018

    Abstract: No abstract text available
    Text: 0.18 m Process Family: XH018 0.18 Micron Modular Analog Mixed HV Technology DESCRIPTION The XH018 series is X-FAB’s 0.18 micron Modular Mixed Signal HV CMOS Technology. Based upon the industrial standard single poly with up to six metal layers 0.18 micron


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    XH018 XH018 18-micron PDF

    CMOS

    Abstract: No abstract text available
    Text: 1.0 m CMOS Process XC10 MIXED-SIGNAL FOUNDRY EXPERTS One Micron Modular Mixed Signal Technology Description Key Features Applications Quality Assurance Deliverables The XC10 Series is X-FAB‘s One-Micron Modular Mixed Signal Technology. Main target applications


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    XH018

    Abstract: sonos MOS RM3 model values for 0.18 micron technology cmos 0.18 um CMOS parameters analog devices transistor tutorials CMOS spice model bsim3 0.18 micron parameters EPI EEPROM bsim3 circuit model
    Text: 0.18 µm CMOS Process Family XH018 MIXED-SIGNAL FOUNDRY EXPERTS 0.18 Micron Modular Mixed Signal HV CMOS Technology Description The XH018 series is X-FAB’s 0.18 micron Modular Mixed Signal HV CMOS Technology. Based upon the industrial standard single poly with up to six


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    XH018 XH018 18-micron sonos MOS RM3 model values for 0.18 micron technology cmos 0.18 um CMOS parameters analog devices transistor tutorials CMOS spice model bsim3 0.18 micron parameters EPI EEPROM bsim3 circuit model PDF

    XH035

    Abstract: mos rm3 data nmos transistor 0.35 um MOS RM3 "X-Fab" Core cell library bsim3v3 jfet wn 428 PHVC polysilicon resistor bsim3
    Text: 0.35 µm CMOS Process Family XH035 MIXED-SIGNAL FOUNDRY EXPERTS 0.35 Micron Modular Analog Mixed Signal Technology with RF capability and HV Extensions Description The XH035 series is X-FAB’s 0.35-micron Modular RF capable Mixed Signal Technology. Main target


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    XH035 XH035 35-micron mos rm3 data nmos transistor 0.35 um MOS RM3 "X-Fab" Core cell library bsim3v3 jfet wn 428 PHVC polysilicon resistor bsim3 PDF

    bsim3 0.18 micron parameters

    Abstract: bsim3 model for 0.18 micron technology for hspice 0.18 um CMOS parameters bsim3 model model values for 0.18 micron technology cmos XH018 CMOS Process Family model values for 0.25 micron technology cmos aadcc01_3v3 0.18-um CMOS technology length and width
    Text: 0.18 µm CMOS Process Family XH018 MIXED-SIGNAL FOUNDRY EXPERTS 0.18 Micron Modular Mixed Signal HV CMOS Technology Description The XH018 series is X-FAB’s 0.18 micron Modular Mixed Signal HV CMOS Technology. Based upon the industrial standard single poly with up to six


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    XH018 XH018 18-micron bsim3 0.18 micron parameters bsim3 model for 0.18 micron technology for hspice 0.18 um CMOS parameters bsim3 model model values for 0.18 micron technology cmos CMOS Process Family model values for 0.25 micron technology cmos aadcc01_3v3 0.18-um CMOS technology length and width PDF

    CMOS spice model

    Abstract: MOS RM3 Spice model inductor BSIM3v3.2 XH035 XH035 library w10 jfet mos rm3 data PMOS "X-Fab" Core cell library
    Text: 0.35 µm CMOS Process Family XH035 MIXED-SIGNAL FOUNDRY EXPERTS 0.35 Micron Modular Analog Mixed Signal Technology with RF capability and HV Extensions Description The XH035 series is X-FAB’s 0.35-micron Modular RF capable Mixed Signal Technology. Main target


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    XH035 XH035 35-micron CMOS spice model MOS RM3 Spice model inductor BSIM3v3.2 XH035 library w10 jfet mos rm3 data PMOS "X-Fab" Core cell library PDF

    hv2300

    Abstract: AXTO bsim3 model for 0.18 micron technology for hspice adc04 x-fabs 0.8um nmos bsim3 model parameters bsim3 model analog devices transistor tutorials analogue digital converter instrumentation delta application instrumentation projects
    Text: 0.8 m CMOS Process CX08 MIXED-SIGNAL FOUNDRY EXPERTS 0.8 Micron Modular Mixed Signal Technology Description Key Features Applications Quality Assurance Deliverables The CX08 Series is X-FAB‘s 0.8 Micron Modular Mixed Signal Technology. Main target applications are standard cell, semi-custom and full custom


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    Untitled

    Abstract: No abstract text available
    Text: 0.6 µm BiCMOS Process Family XB06 MIXED-SIGNAL FOUNDRY EXPERTS 0.6 Micron Modular BiCMOS Technology Description The XB06 Series is X-FAB‘s 0.6 Micron BiCMOS Technology. Main target applications are RF circuits and high precision analog applications mixed with


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    NMOS depletion pspice model

    Abstract: NMOS MODEL PARAMETERS SPICE "X-Fab" Core cell library PSPICE MODEL R2R bsim3 ADS bsim3 model SPECTRE MODEL QS 100 NPN Transistor RP20 analog devices transistor tutorials
    Text: 1.0 m CMOS Process XC10 MIXED-SIGNAL FOUNDRY EXPERTS One Micron Modular Mixed Signal Technology Description Key Features Applications Quality Assurance Deliverables The XC10 Series is X-FAB‘s One-Micron Modular Mixed Signal Technology. Main target applications


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    spice model Tunnel diode

    Abstract: dpsN TUNNEL DIODE spice model
    Text: 0.6 µm Process XT06 MIXED-SIGNAL FOUNDRY EXPERTS 0.6 Micron Modular Trench Isolated SOI CMOS Technology Description The XT06 Series completes X-FAB's 0.6 Micron Modular Mixed Signal Technology. XT06 uses dielectric isolation on SOI wafers. This allows unrestricted 60 V high and low side operation


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    0.6 um cmos process

    Abstract: bsim3 Trench MOS Schottky Rectifier MICRON POWER RESISTOR Mos BSIM3 SOI pmos 60V-20 MICRON RESISTOR Mos MOS RM3 P-Channel Depletion Mosfets
    Text: 0.6 µm Process XT06 MIXED-SIGNAL FOUNDRY EXPERTS 0.6 Micron Modular Trench Isolated SOI CMOS Technology Description The XT06 Series completes X-FAB's 0.6 Micron Modular Mixed Signal Technology. XT06 uses dielectric isolation on SOI wafers. This allows unrestricted 60 V high and low side operation


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    CMOS

    Abstract: hv 102 mos fet transistor varactor diode model in ADS bsim3 ADS varactor diode 0.18 micron 1.8V pspice model BSIM3V3 bsim3 model bsim3 model for 0.18 micron technology for hspice N-Channel jfet 100V depletion
    Text: 0.6 m CMOS Process XC06 MIXED-SIGNAL FOUNDRY EXPERTS 0.6 Micron Modular Mixed Signal Technology Description Key Features The XC06 Series completes X-FAB‘s 0.6 Micron Modular Mixed Signal Technology with embedded Non Volatile Memory and High Voltage options.


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