Renesas IP
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19
IP
from 3 vendors
(1
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10)
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MIPI D-PHY Transmitter/Receiver for TSMC 40nm LP
- Renesas MIPI D-PHY Transmitter/Receiver can be used for analog Transmitter/Receiver of following interface.
- Technology is TSMC 40nm LP 1p6M (4x1z) .
- Supply voltage can be applied 1.1V for core voltage, 1.8V for IO voltage.
- Maximum data rate of each channel is 0.72Gbps at High-speed mode.
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MIPI D-PHY Transmitter/Receiver for DSI/CSI-2 Samsung 28nm FD-SOI
- 4 Data Channel transmitter/receiver hard macro for DSI/CSI-2 of Samsung 28nm FD-SOI process
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MIPI D-PHY Receiver for CSI-2 of TSMC 40nm LP
- Renesas MIPI D-PHY Receiver can be used for analog Receiver of following interface.
- Technology is TSMC 40nm LP 1p8M (4x2y1z).
- Supply voltage can be applied 1.18V for core voltage, 1.8V for IO voltage.
- Maximum data rate of each channel is 1.0Gbps at High-speed mode.
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PCI Express - Configurable PCI Express 4.0 IP
- Compliant with "PCI Express™ Base Specification, Rev. 4.0 Version 1.0"
- Compliant with "PHY Interface For the PCI Express, SATA, and USB3.1 Architectures"
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eTCAM (Embedded Ternary Content Addressable Memory IP
- One cycle operation latency (without priority encoder)
- Valid Bit per entry to reduce power
- Valid Bit reset in one cycle support
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H8SX CPU subsystem (H8SX C3000) IP
- An original subsystem for SoCs other than microcontrollers
- 3 type interfaces available to connect user functions or IPs
- 3 type data transfer functions
- 3 type timers
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H8S CPU subsystem (H8S C200) IP
- An original subsystem for SoCs other than microcontrollers
- 3 type interfaces available to connect user functions or IPs
- 4 type timers
- Serial communication interface
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Data Converter - 12bit 2MSps SAR ADC(TSMC CLN28HPC+)
- Conversion method : Successive approximation
- Resolution : 12bit
- Conversion time : 0.5us
- Differential nonlinearity : -1LSB(Min.)/+2LSB(Max)
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Data Converter - 12bit 2MSps SAR ADC (TSMC CLN28HPM/HPC)
- Process : TSMC CLN28HPM/HPC
- Available metallization technologies :4X2Y2R+AP-RDL
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Data Converter - 12bit 2.5MSps SAR ADC
- Conversion method : Successive approximation
- Resolution : 12/10/8bit selectable
- Conversion time : 0.4us
- Differential nonlinearity : -1LSB(Min.)/+1LSB(Max)