Analog IP for TSMC
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- 16nm
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Crystal Oscillators
- The crystal oscillator macros are available in a wide range of industry-standard quartz crystals and MEMS resonators operating in the fundamental mode in the 32 kHz to 80 MHz range.
- These oscillators, which are both power and area efficient, have a programmable transconductance to allow users to find the optimal balance between jitter and power consumption.
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Free running oscillators
- Compact and low power
- No external components
- Baseline CMOS logic process masks only
- Excellent frequency precision over PVT after trimming
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Automotive Grade PVT Sensor on TSMC CLN16FFC
- The PVT Sensor is a highly integrated macro for monitoring process, voltage, and temperature variation on-chip, allowing very high precision even in untrimmed usage.
- It consumes very little power even in operational mode, and leakage power only when temperature measurement is complete.
- An additional voltage sample mode is included allowing for supply voltage monitoring, and process monitor mode to assess transistor performance
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Wide Range Programmable Integer PLL on TSMC CLN16FFC
- Electrically Programmable PLL for multiple applications
- Wide Ranges of Input and Output Frequency for diverse clocking needs
- Implemented with Analog Bits’ proprietary architecture
- Fully integrated inside customer-specified IO ring
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20-40MHz Crystal Oscillator on TSMC CLN16FFC
- Crystal Oscillator pad macro that supports industry standard crystals in the 20-40MHz range
- Uses standard CMOS transistors
- Crystal Oscillation Mode: Fundamental
- Power down option for IDDQ testing
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PDM-to-PCM Conversion with AMBA Interface
- SNR 100dB; THD -100dB
- PDM (pulse-density modulated) Input
- PCM (pulse-code modulated) output
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LVDS 160MHz 8-Lane PHY TX IP on TSMC 16FFC
- The CL12491M8TIP160 transmitter converts parallel RGB data and 4bits of HYNC,VSYNC,DE and Control) of CMOS parallel data into serial LVDS data streams.
- A phase-locked clock is transmitted in parallel with the data streams over a dedicated LVDS link.
- The polarity of differential signals for each data lane can be controlled.
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Temperature Sensor (Digital Output)
- Measurement Range: -20°C to +100°C
- Uncalibrated Accuracy: ±6°C
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Sleep Management Subsystem
- Power-On-Reset
- Programmable relaxation oscillator
- Low Power Comparator
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Power Management Subsystem
- The agilePMU Subsystem is an efficient and highly integrated Power Management Unit for SoCs/ASICs.
- Featuring a Power-On-Reset (POR), multiple Low Drop-Out (LDO) regulators, and an associated reference generator.
- The agilePMU Subsystem is designed to ensure low power consumption while providing optimal power management capabilities.