| Topologie | Sonstige Topologie |
| IC-Revision | 1.3 |
The ECP5 family of FPGA devices is optimized to deliver high performance features such as an enhanced DSP architecture, high speed SERDES and high speed source synchronous interfaces in an economical FPGA fabric. This combination is achieved through advances in device architecture and the use of 40nm technology making thedevices suitable for high-volume, high-speed, low-cost applications.The ECP5 device family covers look-up-table (LUT) capacity to 84K logic elements and supports up to 365 user I/Os.The ECP5 device family also offers up to 156 18 x 18 multipliers and a wide range of parallel I/O standards.The ECP5 FPGA fabric is optimized high performance with low power and low cost in mind. The ECP5 devices utilize reconfigurable SRAM logic technology and provide popular building blocks such as LUT-based logic, distributedand embedded memory, Phase Locked Loops (PLLs), Delay Locked Loops (DLLs), pre-engineered source synchronous I/O support, enhanced sysDSP slices and advanced configuration support, including encryption anddual-boot capabilities.The pre-engineered source synchronous logic implemented in the ECP5 device family supports a broad range of interface standards, including DDR2/3, LPDDR2/3, XGMII and 7:1 LVDS.The ECP5 device family also features high speed SERDES with dedicated PCS functions. High jitter tolerance and low transmit jitter allow the SERDES plus PCS blocks to be configured to support an array of popular data protocols including PCI Express, Ethernet (XAUI, GbE, and SGMII) and CPRI. Transmit De-emphasis with pre- andpost- cursors, and Receive Equalization settings make the SERDES suitable for transmission and reception over various forms of media.The ECP5 devices also provide flexible, reliable and secure configuration options, such as dual-boot capability, bitstream encryption, and TransFR field upgrade features.The Lattice Diamond™ design software allows large complex designs to be efficiently implemented using the ECP5 FPGA family. Synthesis library support for ECP5 devices is available for popular logic synthesis tools. TheDiamond tools use the synthesis tool output along with the constraints from its floor planning tools to place and route the design in the ECP5 device. The tools extract the timing from the routing and back-annotate it into the design for timing verification.Lattice provides many pre-engineered IP (Intellectual Property) modules for the ECP5 family. By using these configurable soft core IPs as standardized blocks, designers are free to concentrate on the unique aspects of theirdesign, increasing their productivity.
— Half 36 x 36, two 18 x 18 or four 9 x 9 multipliers
— Advanced 18 x 36 MAC and 18 x 18 Multiply-Multiply-Accumulate (MMAC) operations Flexible Memory Resources
Up to 3.744 Mbits sysMEM™ Embedded BlockRAM (EBR)
194K to 669K bits distributed RAM sysCLOCK Analog PLLs and DLLs
Four DLLs and four PLLs in LFE5-45 and LFE5-85; two DLLs and two PLLs in LFE5-25 Pre-Engineered Source Synchronous I/O
DDR registers in I/O cells
Dedicated read/write levelling functionality
Dedicated gearing logic
Source synchronous standards support
— ADC/DAC, 7:1 LVDS, XGMII
— High Speed ADC/DAC devices
Artikel Nr. | Datenblatt | Simulation | Downloads | Status | Produktserie | λDom typ.(nm) | Farbe | λPeak typ.(nm) | IV typ.(mcd) | VF typ.(V) | Chiptechnologie | 2θ50% typ.(°) | Pins | Mittelstift Ø (Value)(mm) | Plug OD(mm) | IR(mA) | Arbeitsspannung(V (AC)) | Verpackung | Montageart | Betriebstemperatur | Poles | L(mm) | Dampfphasenprozess | H(mm) | Betätigungskraft(g) | Elektrische Lebensdauer(Cycles) | Actuator-Farbe | Waschbar | Z @ 100 MHz(Ω) | Zmax(Ω) | Testbedingung Zmax | IR 2(mA) | RDC max.(Ω) | Typ | Muster | |
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![]() | WL-SMCW SMT Mono-color Chip LED Waterclear, 470 nm, Blau | Downloads27 Dateien Strahldaten
| Status Aktivi| Produktion ist aktiv. Erwartete Lebenszeit: >10 Jahre. | ProduktserieWL-SMCW SMT Mono-color Chip LED Waterclear | dominante Wellenlänge [typ.]470 nm | FarbeBlau | Spitzen-Wellenlänge [typ.]465 nm | Lichtstärke [typ.]145 mcd | Durchlassspannung [typ.]3.2 V | ChiptechnologieInGaN | Abstrahlwinkel Phi 0° [typ.]140 ° | – | – | – | – | – | VerpackungTape and Reel | MontageartSMT | Betriebstemperatur -40 °C up to +85 °C | – | Länge1.6 mm | – | Höhe0.7 mm | – | – | – | – | – | – | – | – | – | – | |||
![]() | WL-SMCW SMT Mono-color Chip LED Waterclear, 570 nm, Hellgrün | Status Aktivi| Produktion ist aktiv. Erwartete Lebenszeit: >10 Jahre. | ProduktserieWL-SMCW SMT Mono-color Chip LED Waterclear | dominante Wellenlänge [typ.]570 nm | FarbeHellgrün | Spitzen-Wellenlänge [typ.]572 nm | Lichtstärke [typ.]40 mcd | Durchlassspannung [typ.]2 V | ChiptechnologieAlInGaP | Abstrahlwinkel Phi 0° [typ.]140 ° | – | – | – | – | – | VerpackungTape and Reel | MontageartSMT | Betriebstemperatur -40 °C up to +85 °C | – | Länge1.6 mm | – | Höhe0.7 mm | – | – | – | – | – | – | – | – | – | – | ||||
![]() | WL-SMCW SMT Mono-color Chip LED Waterclear, 590 nm, Gelb | Downloads26 Dateien Strahldaten
| Status Aktivi| Produktion ist aktiv. Erwartete Lebenszeit: >10 Jahre. | ProduktserieWL-SMCW SMT Mono-color Chip LED Waterclear | dominante Wellenlänge [typ.]590 nm | FarbeGelb | Spitzen-Wellenlänge [typ.]595 nm | Lichtstärke [typ.]120 mcd | Durchlassspannung [typ.]2 V | ChiptechnologieAlInGaP | Abstrahlwinkel Phi 0° [typ.]140 ° | – | – | – | – | – | VerpackungTape and Reel | MontageartSMT | Betriebstemperatur -40 °C up to +85 °C | – | Länge1.6 mm | – | Höhe0.7 mm | – | – | – | – | – | – | – | – | – | – | |||
![]() | WL-SMCW SMT Mono-color Chip LED Waterclear, 625 nm, Rot | Downloads26 Dateien Strahldaten
| Status Aktivi| Produktion ist aktiv. Erwartete Lebenszeit: >10 Jahre. | ProduktserieWL-SMCW SMT Mono-color Chip LED Waterclear | dominante Wellenlänge [typ.]625 nm | FarbeRot | Spitzen-Wellenlänge [typ.]630 nm | Lichtstärke [typ.]250 mcd | Durchlassspannung [typ.]2 V | ChiptechnologieAlInGaP | Abstrahlwinkel Phi 0° [typ.]140 ° | – | – | – | – | – | VerpackungTape and Reel | MontageartSMT | Betriebstemperatur -40 °C up to +85 °C | – | Länge1.6 mm | – | Höhe0.7 mm | – | – | – | – | – | – | – | – | – | – | |||
![]() | WE-CBF SMT-Ferrit, –, – | Status Aktivi| Produktion ist aktiv. Erwartete Lebenszeit: >10 Jahre. | ProduktserieWE-CBF SMT-Ferrit | – | – | – | – | – | – | – | – | – | – | Nennstrom200 mA | – | – | MontageartSMT | Betriebstemperatur -55 °C up to +125 °C | – | Länge1.6 mm | – | Höhe0.8 mm | – | – | – | – | Impedanz @ 100 MHz600 Ω | Maximale Impedanz720 Ω | Maximale Impedanz200 MHz | Nennstrom 2850 mA | Gleichstromwiderstand0.45 Ω | TypBreitband | ||||
![]() | WE-CBF SMT-Ferrit, –, – | Status Aktivi| Produktion ist aktiv. Erwartete Lebenszeit: >10 Jahre. | ProduktserieWE-CBF SMT-Ferrit | – | – | – | – | – | – | – | – | – | – | Nennstrom2000 mA | – | – | MontageartSMT | Betriebstemperatur -55 °C up to +125 °C | – | Länge1.6 mm | – | Höhe0.8 mm | – | – | – | – | Impedanz @ 100 MHz60 Ω | Maximale Impedanz110 Ω | Maximale Impedanz600 MHz | Nennstrom 23000 mA | Gleichstromwiderstand0.04 Ω | TypHochstrom | ||||
![]() | WE-CBF SMT-Ferrit, –, – | Status Aktivi| Produktion ist aktiv. Erwartete Lebenszeit: >10 Jahre. | ProduktserieWE-CBF SMT-Ferrit | – | – | – | – | – | – | – | – | – | – | Nennstrom5000 mA | – | – | MontageartSMT | Betriebstemperatur -55 °C up to +125 °C | – | Länge4.5 mm | – | Höhe1.6 mm | – | – | – | – | Impedanz @ 100 MHz60 Ω | Maximale Impedanz120 Ω | Maximale Impedanz1000 MHz | Nennstrom 26000 mA | Gleichstromwiderstand0.01 Ω | TypHochstrom | ||||
![]() | Simulation– | Downloads7 Dateien | Status Aktivi| Produktion ist aktiv. Erwartete Lebenszeit: >10 Jahre. | ProduktserieWR-PHD Stiftleisten - Zweireihig | – | – | – | – | – | – | – | Pins40 | – | – | Nennstrom3000 mA | Arbeitsspannung250 V (AC) | VerpackungBeutel | MontageartTHT | Betriebstemperatur -40 °C up to +105 °C | – | Länge50.8 mm | – | – | – | – | – | – | – | – | – | – | – | TypGerade | |||
![]() | WR-DC Power Jacks, –, – | Simulation– | Status Aktivi| Produktion ist aktiv. Erwartete Lebenszeit: >10 Jahre. | ProduktserieWR-DC Power Jacks | – | – | – | – | – | – | – | – | Mittelstift Ø2 mm | Recommended Plug outer Ø5.5 mm | Nennstrom5000 mA | Arbeitsspannung30 V (AC) | VerpackungBeutel | MontageartTHT | Betriebstemperatur -40 °C up to +85 °C | – | – | – | – | – | – | – | – | – | – | – | – | – | TypAbgewinkelt | |||
![]() | WS-DISV Small Compact SMT Flat Actuator with Top Tape 1.27 mm, –, – | Simulation– | Status Aktivi| Produktion ist aktiv. Erwartete Lebenszeit: >10 Jahre. | – | – | – | – | – | – | – | Pins8 | – | – | – | – | VerpackungTape and Reel | – | Betriebstemperatur -40 °C up to +85 °C | Poles8 | Länge11.33 mm | DampfphasenprozessJa | – | Betätigungskraft500 g | Elektrische Lebensdauer1000 Cycles | Actuator farbeWeiß | WaschbarJa | – | – | – | – | – | – | ||||
![]() | WS-TASV J-Bend SMT Washable Tact Switch 6x6 mm, –, – | Simulation– | Status Aktivi| Produktion ist aktiv. Erwartete Lebenszeit: >10 Jahre. | ProduktserieWS-TASV J-Bend SMT Washable Tact Switch 6x6 mm | – | – | – | – | – | – | – | – | – | – | Nennstrom50 mA | – | VerpackungTape and Reel | – | Betriebstemperatur -40 °C up to +85 °C | – | – | Dampfphasenprozessnicht spezifiziert | Höhe3.1 mm | Betätigungskraft160 g | Elektrische Lebensdauer1000000 Cycles | Actuator farbeSchwarz | WaschbarJa | – | – | – | – | – | – | |||
![]() | WR-PHD Stiftleisten - Zweireihig, –, – | Simulation– | Status Aktivi| Produktion ist aktiv. Erwartete Lebenszeit: >10 Jahre. | ProduktserieWR-PHD Stiftleisten - Zweireihig | – | – | – | – | – | – | – | Pins6 | – | – | Nennstrom3000 mA | Arbeitsspannung250 V (AC) | VerpackungBeutel | MontageartTHT | Betriebstemperatur -40 °C up to +105 °C | – | Länge7.62 mm | – | – | – | – | – | – | – | – | – | – | – | TypGerade | |||
![]() | WR-PHD Stiftleisten - Einreihig, –, – | Simulation– | Status Aktivi| Produktion ist aktiv. Erwartete Lebenszeit: >10 Jahre. | ProduktserieWR-PHD Stiftleisten - Einreihig | – | – | – | – | – | – | – | Pins10 | – | – | Nennstrom3000 mA | Arbeitsspannung250 V (AC) | VerpackungBeutel | MontageartTHT | Betriebstemperatur -40 °C up to +105 °C | – | Länge25.4 mm | – | – | – | – | – | – | – | – | – | – | – | TypGerade |