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    Untitled

    Abstract: No abstract text available
    Text: Am10P14 /Am100P14 /Am10KP14 4,096-Bit 1 0 2 4 x 4 ECL Bipolar PROM ADVANCE INFORMATION > 3 DISTINCTIVE CHARACTERISTICS Fast Access time (8 ns typ.) — improves system cycle times Power dissipation decreases with increasing tempera­ ture m*. Internally voltage compensated providing flat AC perfor­


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    PDF Am10P14 /Am100P14 /Am10KP14 096-Bit Am10KP14 Am100P14 1024-words

    27S55A

    Abstract: No abstract text available
    Text: AmPAL* HC29MA16/AmPALHCT29MA16 24-Pin E2-Based C M O S Programmable Array Logic A D VA N C E INFORMATION • Register/Latch PR E L O A D permits full logical verifica­ tion • Available in high-speed tpo “ 35 ns, fMAX = 20 MHz and standard-speed (tpo ” 45 ns, fMAX “ 15.0 MHz)


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    PDF HC29MA16/AmPALHCT29MA16 24-Pin 300-mil 28-pin PAL29MA16 7S45A 40ns/20ns/185mA 27S45SA 25ns/10ns/185mA 27S55A

    AM27S45s

    Abstract: No abstract text available
    Text: AmPAL*HC29MA16/AmPALHCT29MA16 24-Pin E2-Based CMOS Programmable Array Logic ADVANCE INFORMATION > 3 DISTINCTIVE CHARACTERISTICS High-performance semi-custom logic replacement; Electrically Erasable E2 technology allows repro­ gram mability 16 bidirectional user-programmable I/O logic macro­


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    PDF HC29MA16/AmPALHCT29MA16 24-Pin 0ns/185mA 35ns/20ns/185mA 35ns/150mA 30ns/15ns/175mA 25ns/12ns/175mA 35ns/185mA 30ns/90mA 20ns/185mA AM27S45s

    Untitled

    Abstract: No abstract text available
    Text: Ami 0P14 / Am100P14/Am10KP14 4,096-Bit 1 0 2 4 x 4 ECL Bipolar PROM _ ADVANCE INFORMATION_ • • Fast A ccess tim e (8 ns typ.) — im proves system cycle tim es Power dissipation decreases with increasing tem perature


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    PDF Am100P14/Am10KP14 096-Bit Am10P14/Am100P14/Am10KP14 Am10P14 Am10KP14 100P14 1024-words WF021640

    Untitled

    Abstract: No abstract text available
    Text: — B M M B B B iw n n iim v i w i r w m w M t æ ^ i — -^-“ *i71iiHrcnfnORY> It 0257528 003585? I - S H b - 13 Ami OP14/Am1 OOP14/Am1 OKP14 4,096-Bit 1 0 2 4 x 4 ECL Bipolar PROM ADVANCE INFORM ATIO N • Fast Access tim e (8 ns typ.) — im proves system cycle


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    PDF i71iiHrcnfnORY> OP14/Am1 OOP14/Am1 OKP14 096-Bit Am10P14 10KP14, Am100P14 1024-words