EPM1270F256C5N

EPM1270F256C5N
Mfr. #:
EPM1270F256C5N
Hersteller:
Intel / Altera
Beschreibung:
CPLD - Complex Programmable Logic Devices CPLD - MAX II 980 Macro 212 IO
Lebenszyklus:
Neu von diesem Hersteller.
Datenblatt:
EPM1270F256C5N Datenblatt
Die Zustellung:
DHL FedEx Ups TNT EMS
Zahlung:
T/T Paypal Visa MoneyGram Western Union
HTML Datasheet:
EPM1270F256C5N Datasheet
ECAD Model:
Mehr Informationen:
EPM1270F256C5N Mehr Informationen EPM1270F256C5N Product Details
Produkteigenschaft
Attributwert
Hersteller:
Intel
Produktkategorie:
CPLD – Komplexe programmierbare Logikgeräte
RoHS:
Y
Produkt:
MAX II
Anzahl Makrozellen:
980
Anzahl der Logik-Array-Blöcke - LABs:
127
Maximale Betriebsfrequenz:
304 MHz
Ausbreitungsverzögerung - Max:
6.2 ns
Anzahl I/Os:
212 I/O
Betriebsversorgungsspannung:
2.5 V, 3.3 V
Minimale Betriebstemperatur:
0 C
Maximale Betriebstemperatur:
+ 70 C
Montageart:
SMD/SMT
Paket / Koffer:
FBGA-256
Verpackung:
Tablett
Speichertyp:
Blinken
Serie:
EPM1270
Marke:
Intel / Altera
Feuchtigkeitsempfindlich:
ja
Anzahl der Logikelemente:
1270
Betriebsversorgungsstrom:
55 mA
Produktart:
CPLD – Komplexe programmierbare Logikgeräte
Werkspackungsmenge:
90
Unterkategorie:
Programmierbare Logik-ICs
Versorgungsspannung - Max.:
3.6 V
Versorgungsspannung - Min.:
2.375 V
Gesamtspeicher:
8192 bit
Handelsname:
MAX II
Gewichtseinheit:
1.454416 oz
Tags
EPM1270F256C5N, EPM1270F256C5, EPM1270F256C, EPM1270F256, EPM1270F25, EPM1270F2, EPM1270F, EPM1270, EPM127, EPM12, EPM1, EPM
Service Guarantees

We guarantee 100% customer satisfaction.

Quality Guarantees

We provide 90-360 days warranty.

If the items you received were not in perfect quality, we would be responsible for your refund or replacement, but the items must be returned in their original condition.
Our experienced sales team and tech support team back our services to satisfy all our customers.

we buy and manage excess electronic components, including excess inventory identified for disposal.
Email us if you have excess stock to sell.

Email: [email protected]

Step1: Vacuum Packaging with PL
Step1:
Vacuum Packaging with PL
Step2: Anti-Static Bag
Step2:
Anti-Static Bag
Step3: Packaging Boxes
Step3:
Packaging Boxes
    A***k
    A***k
    RU

    Everything corresponds to the description

    2019-06-03
    D***l
    D***l
    RO

    All is ok. Thank you!

    2019-07-02
    P***a
    P***a
    PL

    All Ok

    2019-08-07
***ical
CPLD MAX® II Family 980 Macro Cells 201.1MHz 0.18um Technology 2.5V/3.3V 256-Pin FBGA Tray
***i-Key
IC CPLD 980MC 6.2NS 256FBGA
***ukat
980Macro 212I/O 10ns BGA256
MAX™ CPLD Series
Altera MAX™ complex programmable logic device (CPLD) Series provides you with the lowest power, lowest cost CPLDs. MAX V CPLD family, the newest family in the CPLD series, delivers the market's best value. Featuring a unique, non-volatile architecture and one of the industry's largest density CPLDs, MAX V devices provide robust new features at lower total power compared to competitive CPLDs. MAX II CPLD family, based on the same groundbreaking architecture, delivers low power and low cost per I/O pin. MAX II CPLDs are instant-on, non-volatile devices that target general-purpose, low-density logic and portable applications, such as cellular handset design. Zero power MAX IIZ CPLDs offer the same non-volatile, instant-on advantages found in the MAX II CPLD family and are applicable to a wide range of functions. Manufactured on an advanced 0.30-µm CMOS process, the EEPROM-based MAX 3000A CPLD family provides instant-on capability and offers densities from 32 to 512 macrocells.Learn More
Max® II / MAX IIG / MAX IIZ CPLDs
Altera MAX® II CPLD family devices are the lowest power, lowest cost CPLDs ever. Altera MAX II CPLD family is based on a groundbreaking architecture that delivers the lowest power and the lowest cost per I/O pin of any CPLD family. With the introduction of the MAX IIZ CPLD, there are now three variants that all use the same innovative CPLD architecture: MAX II, MAX IIG, and MAX IIZ. Zero-power MAX IIZ CPLDs offer the same non-volatile, instant-on advantages found in the low-cost MAX II CPLD family and are applicable to a wide range of functions and applications. MAX II is an instant-on, non-volatile CPLD family that targets general-purpose, low-density logic and portable applications, such as cellular handset design.Learn More
Teil # Mfg. Beschreibung Aktie Preis
EPM1270F256C5N
DISTI # 544-1336-ND
Intel CorporationIC CPLD 980MC 6.2NS 256FBGA
RoHS: Compliant
Min Qty: 1
Container: Tray
608In Stock
  • 1:$35.2500
EPM1270F256C5N
DISTI # 989-EPM1270F256C5N
Intel CorporationCPLD - Complex Programmable Logic Devices CPLD - MAX II 980 Macro 212 IO
RoHS: Compliant
346
  • 1:$35.2500
EPM1270F256C5NAltera Corporation 1
    EPM1270F256C5NAltera Corporation 46
      EPM1270F256C5NAltera CorporationFLASH PLD, PBGA2561
      • 1:$26.0000
      EPM1270F256C5NAltera CorporationFLASH PLD, PBGA2564
      • 1:$28.6000
      EPM1270F256C5NAltera CorporationFLASH PLD, PBGA25652
      • 42:$45.5200
      • 21:$48.3650
      • 1:$56.9000
      EPM1270F256C5NAltera Corporation 
      RoHS: Compliant
      Europe - 50
        EPM1270F256C5NAltera CorporationINSTOCK35196
          EPM1270F256C5NKEMET CorporationINSTOCK44517
            EPM1270F256C5N
            DISTI # 1635101
            Altera CorporationCPLD, MAX II, 1270 ELEMENTS, 256FBGA
            RoHS: Compliant
            0
            • 1:£47.0300
            • 5:£38.9700
            • 10:£34.9400
            • 25:£32.2500
            EPM1270F256C5N
            DISTI # XSFR00000002944
            Altera Corporation 
            RoHS: Compliant
            2610
              Bild Teil # Beschreibung
              MT25QL128ABA1ESE-0SIT TR

              Mfr.#: MT25QL128ABA1ESE-0SIT TR

              OMO.#: OMO-MT25QL128ABA1ESE-0SIT-TR

              NOR Flash SPI FLASH NOR SLC 32MX4 SOIC
              CC0603MRY5V9BB104

              Mfr.#: CC0603MRY5V9BB104

              OMO.#: OMO-CC0603MRY5V9BB104

              Multilayer Ceramic Capacitors MLCC - SMD/SMT .1UF 50V 20% 0603
              61083-123402LF

              Mfr.#: 61083-123402LF

              OMO.#: OMO-61083-123402LF

              Board to Board & Mezzanine Connectors 120P PLUG W/POLARIZATION
              SML-LXT0805GW-TR

              Mfr.#: SML-LXT0805GW-TR

              OMO.#: OMO-SML-LXT0805GW-TR

              Standard LEDs - SMD 0805 Thin PCB Green
              5-146284-2

              Mfr.#: 5-146284-2

              OMO.#: OMO-5-146284-2

              Headers & Wire Housings HDR 2 POS 2.54mm THRU-HOLE
              61082-121402LF

              Mfr.#: 61082-121402LF

              OMO.#: OMO-61082-121402LF

              Board to Board & Mezzanine Connectors 120P RECPT W/POLARIZATION
              61083-123402LF

              Mfr.#: 61083-123402LF

              OMO.#: OMO-61083-123402LF-AMPHENOL-ICC

              Board to Board & Mezzanine Connectors 120P PLUG W/POLARIZATION
              61082-121402LF

              Mfr.#: 61082-121402LF

              OMO.#: OMO-61082-121402LF-AMPHENOL-ICC

              Board to Board & Mezzanine Connectors 120P RECPT W/POLARIZATION
              AD7194BCPZ

              Mfr.#: AD7194BCPZ

              OMO.#: OMO-AD7194BCPZ-ANALOG-DEVICES-INC-ADI

              Analog to Digital Converters - ADC 8CH Ultra Low Noise 24Bit w/ PGA
              SML-LXT0805GW-TR

              Mfr.#: SML-LXT0805GW-TR

              OMO.#: OMO-SML-LXT0805GW-TR-LUMEX

              Standard LEDs - SMD 0805 Thin PCB Green
              Verfügbarkeit
              Aktie:
              276
              Auf Bestellung:
              2259
              Menge eingeben:
              Der aktuelle Preis von EPM1270F256C5N dient nur als Referenz. Wenn Sie den besten Preis erhalten möchten, senden Sie bitte eine Anfrage oder senden Sie eine direkte E-Mail an unser Verkaufsteam [email protected]
              Referenzpreis (USD)
              Menge
              Stückpreis
              ext. Preis
              1
              35,25 $
              35,25 $
              Aufgrund von Halbleiterknappheit ab 2021 ist der untere Preis der Normalpreis vor 2021. Bitte senden Sie eine Anfrage zur Bestätigung.
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