High V Input Cell
Other
Ridgetop Group
0.35 μm
XH035
ID
GDSII
High Voltage Input for input voltages up to 100V
PWM
Other
Ridgetop Group
0.35 μm
XH035
ID
GDSII
250kHz PWM for DC-DC converters
aopac02 *
Operational Amplifier
X-FAB
0.60 µm
XB06
PT
Layout Schematic Analog Library
XB06: A_CELLS. aopac02 is an internal frequency-compensated CMOS operational amplifier with p-mos input stage
abiac03_3v3 *
Bias
X-FAB
0.18 μm
XC018
PT
Layout Schematic Analog Library
XC018 LP 3.3V abiac03_3v3 is a general purpose bias cell. The circuit forces a current of 10µA (approx.) to flow through PMOS with W/L ratio of 24µm/2µm and NMOS with W/L ratio od 14µm/6µm.
aopac02_3v3 *
Operational Amplifier
X-FAB
0.18 μm
XC018
PT
Layout Schematic Analog Library
XC018 LP 3.3V aopac02_3v3 is a general purpose internally compensated CMOS OpAmp with P-MOS input stage and rail-to-rail output stage. The speed, gain bandwidth, and the power consumption of the amplifier are set by means of bias current.
aopac01_3v3 *
Operational Amplifier
X-FAB
0.18 μm
XC018
PT
Layout Schematic Analog Library
XC018 LP 3.3V aopac01_3v3 is a general purpose internally compensated CMOS OpAmp with N-MOS input stage and rail-to-rail output stage. The speed, gain bandwidth, and the power consumption of the amplifier are set by means of a bias current.
acsoc02_3v3 *
Current Source
X-FAB
0.18 μm
XC018
PT
Layout Schematic Analog Library
XC018 LP 3.3V acsoc02_3v3 is a compact general purpose current source. The circuit has four outputs that drive currents of 1µA; 2µA; 4µA; and 8µA, respectively.
acsoc01_3v3 *
Current Source
X-FAB
0.18 μm
XC018
PT
Layout Schematic Analog Library
XC018 LP 3.3V acsoc01_3v3 is a compact general purpose current source. The circuit has four outputs that drive currents of 200nA each.
aopac03 *
Operational Amplifier
X-FAB
0.60 µm
XB06
PT
Layout Schematic Analog Library
XB06: A_CELLS. aopac03 is a fast internal frequency-compensated CMOS operational amplifier with p-mos input stage
aopac05 *
Operational Amplifier
X-FAB
0.60 µm
XB06
PT
Layout Schematic Analog Library
XB06: A_CELLS. aopac05 is a low power internal frequency-compensated CMOS operational amplifier with nmos input stage
aopac06 *
Operational Amplifier
X-FAB
0.60 µm
XB06
PT
Layout Schematic Analog Library
XB06: A_CELLS. aopac06 is an internal frequency-compensated CMOS operational amplifier with n-mos input stage
aopac07 *
Operational Amplifier
X-FAB
0.60 µm
XB06
PT
Layout Schematic Analog Library
XB06: A_CELLS. aopac07 is a fast internal frequency-compensated CMOS operational amplifier with n-mos input stage.
aopac09 *
Operational Amplifier
X-FAB
0.60 µm
XB06
PT
Layout Schematic Analog Library
XB06: A_CELLS. aopac09 is an internal frequency-compensated CMOS operational amplifier with p-mos input stage and rail-to-rail output stage.
aopac10 *
Operational Amplifier
X-FAB
0.60 µm
XB06
PT
Layout Schematic Analog Library
XB06: A_CELLS. aopac10 is an internal frequency-compensated CMOS operational amplifier with rail-to-rail input stage and rail-to-rail output stage.
acmpc01 *
Comparators
X-FAB
0.60 µm
XB06
PT
Layout Schematic Analog Library
XB06: A_CELLS. acmpc01 is a low-power two-stage CMOS comparator with n-mos input stage and a CMOS-output stage.
acmpc03 *
Comparators
X-FAB
0.60 µm
XB06
PT
Layout Schematic Analog Library
XB06: A_CELLS. acmpc03 is a low-power two-stage CMOS comparator with n-mos input stage and a CMOS-output stage.
acmpc04 *
Comparators
X-FAB
0.60 µm
XB06
PT
Layout Schematic Analog Library
XB06: A_CELLS. acmpc04 is a two-stage CMOS comparator with p-mos input stage and a CMOS-output stage.
acmpc06 *
Comparators
X-FAB
0.60 µm
XB06
PT
Layout Schematic Analog Library
XB06: A_CELLS. acmpc06 is a two-stage CMOS comparator with p-mos input stage and a CMOS-output stage.
acmpc10 *
Comparators
X-FAB
0.60 µm
XB06
PT
Layout Schematic Analog Library
XB06: A_CELLS. acmpc10 is a CMOS comparator with rail-to-rail input stage and rail-to-rail output stage.
acmpc11 *
Comparators
X-FAB
0.60 µm
XB06
PT
Layout Schematic Analog Library
XB06: A_CELLS. acmpc11 is low offset CMOS comparator with rail-to-rail input stage and rail-to-rail output stage.
abgpc01 *
Bandgaps
X-FAB
0.60 µm
XB06
PT
Layout Schematic Analog Library
XB06: A_CELLS. abgpc01 is a Brokaw, general-purpose bandgap reference source with high resistive poly resistor.
abgpc03 *
Bandgaps
X-FAB
0.60 µm
XB06
PT
Layout Schematic Analog Library
XB06: A_CELLS. abgpc03 is a badgap reference with high resistive poly resistor.
abiac01 *
Bias
X-FAB
0.60 µm
XB06
PT
Layout Schematic Analog Library
XB06: A_CELLS. abiac01 is a bias voltage source (VBP1, VBN1) which needs a bandgap cell for biasing.
abiac02 *
Bias
X-FAB
0.60 µm
XB06
PT
Layout Schematic Analog Library
XB06: A_CELLS. abiac02 is a bias voltage source (VBP2, VBN2) which needs a bandgap cell for biasing.
abiac03 *
Bias
X-FAB
0.60 µm
XB06
PT
Layout Schematic Analog Library
XB06: A_CELLS. abiac03 is a bias voltage source (VBP3, VBN3) which needs a bandgap cell for biasing.
ADC10 *
ADC
X-FAB
0.60 µm
XB06
PT
Layout Schematic Analog Library
XB06: A_CELLS. ADC10 is a 10-bit analog-to-digital converter which utilizes successive approximation technique.
ADC8 *
ADC
X-FAB
0.60 µm
XB06
PT
Layout Schematic Analog Library
XB06: A_CELLS. ADC8 is a 8-bit analog-to-digital converter which utilizes successive-approximation technique.
DAC10 *
DAC
X-FAB
0.60 µm
XB06
PT
Layout Schematic Analog Library
XB06: A_CELLS. DAC10 is a 10-bit digital-to-analog converter. The architecture is based on two resistor dividers. Because of its high output impedance, which is also code dependent, a low offset buffer operational amplifier is strictly recommended at the
DAC8 *
DAC
X-FAB
0.60 µm
XB06
PT
Layout Schematic Analog Library
XB06: A_CELLS. DAC8 is a 8-bit digital-to-analog converter. The architecture is based on two resistor dividers. Because of its high output impedance, which is also code dependent, a low offset buffer operational amplifier is strictly recommended at the ou
DAC8rs *
DAC
X-FAB
0.60 µm
XB06
PT
Layout Schematic Analog Library
XB06: A_CELLS. DAC8rs is a 8-bit digital-to-analog converter. The architecture is based on a resistor divider. The output impedance is code dependent.