首页 >GAL16V8D-7LJI>规格书列表

型号下载 订购功能描述制造商 上传企业LOGO

GAL16V8D-7LJI

High Performance E2CMOS PLD Generic Array Logic

Description The GAL16V8, at 3.5 ns maximum propagation delay time, combines a high performance CMOS process with Electrically Erasable (E2) floating gate technology to provide the highest speed performance available in the PLD market. High speed erase times ( Features •HIGH PERFORMANCE

文件:316 Kbytes 页数:22 Pages

Lattice

莱迪思

GAL16V8D-7LJI

All Devices Discontinued

Features •HIGH PERFORMANCE E2CMOS®TECHNOLOGY —3.5 ns Maximum Propagation Delay —Fmax = 250 MHz —3.0 ns Maximum from Clock Input to Data Output —UltraMOS® Advanced CMOS Technology •50 to 75 REDUCTION IN POWER FROM BIPOLAR —75mA Typ Icc on Low Power Device —45mA Typ Icc on

文件:767.57 Kbytes 页数:26 Pages

Lattice

莱迪思

GAL16V8D-7LJI

High Performance E2CMOS PLD Generic Array Logic?

文件:339.82 Kbytes 页数:23 Pages

Lattice

莱迪思

GAL16V8D-7LJI

High Performance E2CMOS PLD Generic Array Logic?

文件:395.51 Kbytes 页数:22 Pages

Lattice

莱迪思

GAL16V8D-7LJI

High Performance E2CMOS PLD Generic Array Logic?

文件:654.14 Kbytes 页数:24 Pages

Lattice

莱迪思

GAL16V8D-7LJI

High Performance E2CMOS PLD

文件:340.72 Kbytes 页数:23 Pages

Lattice

莱迪思

详细参数

  • 型号:

    GAL16V8D-7LJI

  • 功能描述:

    SPLD - 简单可编程逻辑器件 16 INPUT 8 OUTPUT 5V LOW POWER 7.5ns

  • RoHS:

  • 制造商:

    Texas Instruments

  • 逻辑系列:

    TICPAL22V10Z

  • 大电池数量:

    10

  • 最大工作频率:

    66 MHz

  • 延迟时间:

    25 ns

  • 工作电源电压:

    4.75 V to 5.25 V

  • 电源电流:

    100 uA

  • 最大工作温度:

    + 75 C

  • 最小工作温度:

    0 C

  • 安装风格:

    Through Hole

  • 封装/箱体:

    DIP-24

供应商型号品牌批号封装库存备注价格
LEGERITY
2025+
PLCC
4119
全新原装、公司现货热卖
询价
LATTICE
05+
原厂原装
4492
只做全新原装真实现货供应
询价
Lattice
24+
PLCC20
200
询价
LATTICE
25+
PLCC20
2155
⊙⊙新加坡大量现货库存,深圳常备现货!欢迎查询!⊙
询价
LATTICE
24+
PLCC20
1000
原装正品现货
询价
LAT
24+
PLCC-20
5000
全现原装公司现货
询价
LAT
0016+
PLCC-20
144
原装现货海量库存欢迎咨询
询价
LAT
22+
PLCC-20
2000
进口原装!现货库存
询价
LAT
23+
PLCC20
8650
受权代理!全新原装现货特价热卖!
询价
LAT
25+23+
PLCC-20
37415
绝对原装正品全新进口深圳现货
询价
更多GAL16V8D-7LJI供应商 更新时间2025-12-6 15:28:00