PCIe 3.0 Serdes PHY IP, Silicon Proven in TSMC 22ULP
The PCIe 3.0 PHY IP is designed to support increased applications with its low-power, multi-lane, high-performance design.
- TSMC
- 22nm
- ULP
- In Production
T2M GmbH is the leading Global Technology Company supplying state of the art complex semiconductor connectivity IPs and KGDs, enabling the creation of complex connected devices for Mobile, IoT and Wearable markets.
T2M's unique SoC White Box IPs are the design database of mass production RF connectivity chips supporting standards including Wifi, BT, BLE, Zigbee, NFC, LTE, GSM, GNS. They are available in source code as well as KGD for SIP / modules.
With offices in USA, Europe, China, Taiwan, South Korea, Japan, Singapore and India, T2M’s highly experienced team provides local support, accelerating product development and Time 2 Market.
PCIe 3.0 Serdes PHY IP, Silicon Proven in TSMC 22ULP
The PCIe 3.0 PHY IP is designed to support increased applications with its low-power, multi-lane, high-performance design.
PCIe 3.0 Serdes PHY IP, Silicon Proven in TSMC 16FFC
High-bandwidth applications can avail advantage of PCIe 3.0 PHY IP's high performance, multi-lane scalability, and low-power layo…
PCIe 3.0 Serdes PHY IP, Silicon Proven in TSMC 12FFC
To support high-bandwidth applications, PCIe 3.0 PHY IP provides a low-power, multi-lane, high-performance design.
PCIe 3.0 Serdes PHY IP, Silicon Proven in TSMC 7nm
For the high-bandwidth applications, PCIe 3.0 PHY IP offers high-performance, multi-lane capabilities, and low-power design.
PCIe 4.0 Serdes PHY IP, Silicon Proven in TSMC 16FFC
For high-bandwidth applications, the PCIe 4.0 PHY IP delivers high-performance, multi-lane capabilities and a low-power design.
PCIe 4.0 Serdes PHY IP Silicon Proven in TSMC 7nm
The high-bandwidth applications benefit from the low power, multi-lane, and high-performance PCIe 4.0 PHY IP's design.
PCIe 5.0 Serdes PHY IP, Silicon Proven in TSMC 16FFC
For high-bandwidth applications, the PCIe 5.0 PHY IP offers excellent performance, multi-lane capabilities, and low power design.
LPDDR4/ DDR4/ DDR3L PHY IP - 1866Mbps (Silicon Proven in TSMC 28HPC+)
The LPDDR4/ DDR4/ DDR3L Combo PHY IP offers low latency and supports throughput of up to 1866Mbps.
V-by-One/LVDS Rx IP, Silicon Proven in SMIC 40LL
V-by-One® HS technology targets a high-speed data transmission of video signals based on internal connection of equipment.
V-by-One/ LVDS Tx IP, Silicon Proven in SMIC 40LL
The V-by-One® HS technology aims to transmit video signals at a high data rate using internal equipment connections.
USB 3.1 Type-C PHY IP, Silicon Proven in TSMC 55ULP
USB3.1Type-C PHY IP is a high performance high speed SERDES IP designed for chips that perform high bandwidth data communication …
USB 3.1 Type-C PHY IP, Silicon Proven in SMIC 14SF+
The USB3.1Type-C PHY is a high-performance, high-speed SERDES IP designed for semiconductors that support low-power, high-bandwid…
USB 2.0 PHY IP, Silicon Proven in TSMC 22ULP
The USB 2.0 PHY IP Core is a full physical layer (PHY) IP solution created for excellent performance and low power consumption.
14-bit, 4.32Gsps Ultra high speed Wideband, Time-Interleaved Pipeline ADC IP
This ultra high speed wide-band Analog-to-Digital Converter is based on 16 Time Interleaved Pipeline sub-ADC followed by a digita…
MIPI D-PHY Rx IP, Silicon Proven in TSMC 28HPC+
The MIPI D-PHY Rx IP Core in 28HPC+ aligns precisely with the D-PHY specification version 1.2, facilitating support for the Displ…
MIPI D-PHY Tx IP, Silicon Proven in TSMC 28HPC+
The MIPI D-PHY Tx IP Core fully complies with version 1.2 of the D-PHY specification.
Display Port v1.4 Tx PHY & Controller IP, Silicon Proven in TSMC 12FFC
The DisplayPort v1.4 Tx PHY IP in 12FFC is a modernistic technology designed to be integrated into chip designs for various devic…
eDisplay Port v1.4 Tx PHY & Controller IP, Silicon Proven in TSMC 22ULP
eDP/DP Tx PHY is designed for chips that perform eDP/DP data communication while operating at low power consumption.
DDR5/DDR4/LPDDR5 Combo PHY IP - 4800Mbps (Silicon Proven in TSMC 12FFC)
The DDR PHY IP supports DDR5/ DDR4/ LPDDR5, provides low latency, and enables up to 5400MT/s throughput.
The Reed Solomon Encoder is fed with an input message of K information symbols, the Encoder appends 2T parity symbols to the inpu…