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Available Analog and Digital Blocks and Designs

To support designs, IHP offers a wide range of blocks and designs for wireless & broadband solutions:

Analog

  • Integrated 122 GHz Receiver
  • 77-81 GHz SiGe radar frontend and frontend components
  • Complete 60 GHz transceiver and components in SiGe BiCMoS
  • 60 GHz beamforming components and integrated frontends
  • 60 GHz channel sounder module
  • 60 GHz planar pCB-integrated antenna
  • 40 to 70 GHz analog and digital phase shifters
  • 24 GHz SiGe mixers, VCos, Prescaler, VCo-Prescaler
  • SiGe DAC components for medium and high speed up to 30 GSps
  • Transimpedance Amplifiers from 20 to 40 Gbps for fiberoptic communications
  • 80 Gbps receiver with Decision Feedback Equalizer for fiberoptic communications
  • Laser-drivers from 20 to 40 Gbps for fiberoptic communications
  • High-Swing modulator (3Vpp, single-ended) for 40 Gbps fiberoptic communications
  • SiGe UWB transceiver components such as mixer correlator, broadband LNA
  • Impulse UWB SiGe RF transceiver with localization capability
  • Static resp. dynamic SiGe divider circuits from 0 to 100 GHz
  • 5 GHz SiGe broadband modem (bandwidth 200 MHz) for Gbps OFDM
  • Low-noise SiGe LC-VCOs in the range between 10 and 120 GHz
  • SiGe Integer-N PLLs with integrated low phase-noise VCO (8-11 GHz, 16-19 GHz, 20-24 GHz, 48 GHz, 56 GHz)
  • 0.6-4.4 GHz, 10-14 GHz, and 20-24 GHz fully integrated frequency synthesizer with low phase noise (Integer-N and DS-Fractional-N)
  • Fractional-N PLL core
  • Bandpass-Delta-Sigma modulators for Class-S amplifiers (450 MHz, 900 MHz, 2 GHz)
  • SPI-Interface with area-/power-efficient calibration DACs (optional)
  • Models, cores & protocols for Ieee 802.11 a / g / p in software & hardware
  • Designs for baseband processing components (Viterbi decoder, FFT / IFFT processor, CORDIC processor)
  • Design of embedded applications running on MIpS or leon processors

Digital

  • IP core for leon 2 processor
  • Abstract SDL model for IEEE 802.15.3 and IEEE 802.15.4
  • 5 GHz link emulator and WLAN design / debug kit
  • TCP /IP-processor including hardware accelerators for protocol and symmetric and asymmetric encryption including MD5
  • IP cores for flexible ECC, AES, SHA1 and MD5 cryptoprocessors
  • Baseband-models and realisations for Gigabit WLAN
  • Wireless sensor nodes based on MSP430 processor architecture
  • EN15878-4 baseband for metering applications
  • IEEE 802.15.4a baseband processor
  • Consultancy for MAC protocol design & Gigabit WLAN systems
  • Consultancy for wireless sensor networks and applications
  • Consultancy for fault tolerant design for space and automotive
Das Gebäude und die Infrastruktur des IHP wurden finanziert vom Europäischen Fonds für regionale Entwicklung, von der Bundesregierung und vom Land Brandenburg.