Op-Amps
- Operational Amplifiers, op-amp
- Operational Transconductance Amplifiers, OTA
- Rail to Rail Input
- Rail to Rail Output
- Single-Ended
- Fully Differential
- Instrumentation
- Programmable Gain
- Integrators
- Configurable Gain Bandwidth
- Low Current
- Low Noise
- Low Input Referred Noise
- Low Offset Voltage
- Wideband
- Switched Capacitor
- Comparator
- Correlated Double Sampling
- Chopper Stabilized
- High Voltage Op-Amps up to 70V
- Internal level shifters between voltage islands
Amplifier resources arranged in tiles with via configurable arrays of capacitors, resistors, transistors, transmission gates, and switches for the creation of higher level analog and mixed signal functions.
Arrayed Resources
- Resistors
- Capacitors – Unit and Remainder Capacitors
- Poly – Poly Capacitors
- Metal Insulator Metal Capacitors – MIM
- Transmission Gates
- Discrete Transistors
- Array transistor to vary W/L
- Gang transistor for increased drive
- Various NMOS, PMOS devices up to 70V
- Single-Pole Double Throw Switches
- Configurable logic cells within analog tiles
Analog Functions
- Analog Multiplexer
- Temperature Sensor
- Filters
- Low Pass
- Band Pass
- High Pass
- Notch Filter
- Continuous Time Filters
- Switched Capacitor Filters
- Biquad Sections
- Modulators
- Hysteretic Controllers
Configurable Analog I/O
- Pad configured as input or output
- I/O pads can be analog VDD, VSS pads
- Direct substrate connections
- Configurable pad to core resistance
- ESD Protection
Digital Logic
- 5,000 to 1-Million Configurable ASIC Gates – NAND2 Equivalents
- Real ASIC Gates – not look-up tables
- Low Power
- High Performance
- Synthesis Optimized
- Scan Support
- Clock Tree Synthesis
Random Access Memory – RAM
- Distributed and Block RAMs
- 1-kbit to 64-kbyte blocks
- 8-bit to 32-bit bus widths per block
- 1-Port & 2-Port RAMs
- Synchronous and Asynchronous
- Bit, Byte, and Word Write
Non-volatile Memory – NVM
- Via configurable ROM
- 2-kbyte blocks up to 256-kbytes
- One Time Fuses – 16 to 512-bit
- One Time Programmable – OTP
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Analog to Digital Converters – ADC
- DC to 100-MSPS (sampling rate)
- 6 to 24-bit Resolution
- N-Slope
- Sigma-Delta
- Successive Approximation, SAR
- Pipelined
- Flash
Digital to Analog Converters – DAC
- DC to 100MHz
- 6 to 16-bit
- Resistor Ladder – R2R
- Capacitor Ladder – C2C
- Current Steering
- Sigma Delta
- Thermometer Encoded
- Binary Encoded
- Combined Encoding
- Pulse Width Modulator – PWM
Clock Generation
- Oscillator Drivers – 32KHz to 30MHz
- Phase Locked Loop (PLL)
- 32KHz to 4MHz PLL
- PLL clock synthesis up to 200MHz
- Internal Oscillators
- Oscillator Trim
- Programmable Delay Lines
References
- Band Gaps
- Trimmable Band Gaps
- Proportional to Absolute Temperature – PTAT
- Voltage Reference Network
- Current Mirrors & Current Distribution
Power Management
- Linear Regulators
- Low Drop Out Regulators – LDO
- Switching Regulator
- Buck, Boost, Buck-Boost Regulators
- Charge Pump
- Howland Current Source
- LED Drivers up to 70V
- H-Bridge
EEPROM
- Organization
- 384 x 8, 1024 x 8
- 4096 x 16, 32-KB x 8
- Custom blocks available
- 20 year data retention
- 100K write endurance
- Built-in charge pump and write controller
- Byte, word and page write modes
- High-voltage process compatible
Digital IP
- IIC Master, IIC Slave
- SPI Master, SPI Slave
- UART
- Timers
- CAN Controller
- USB 1.1 Controller
- USB 2.0 Controller
- FFT Engine
- Decimation Filters
- Digital Filters
Configurable Digital I/O
- Pad configured as input, output, bidirectional
- I/O pads can be VDD or VSS pads
- Drive Strength
- Slew Rate
- Pull Resistor
- Pull Down Resistor
- Schmitt Trigger Input
- ESD Protection
Getting Started
TRIAD has complete arrays containing mixed signal building blocks pre-assembled, staged at the foundry, and awaiting configuration with your mixed signal design.
Contact a TRIAD FAE to review your design or get more information about our VCA technology at 336-774-2150 or info@triadsemi.com. |