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A14100A-CQ256M PDF预览

A14100A-CQ256M

更新时间: 2024-01-16 21:07:18
品牌 Logo 应用领域
ACTEL 时钟可编程逻辑
页数 文件大小 规格书
54页 333K
描述
Field Programmable Gate Array, 1377 CLBs, 10000 Gates, 85MHz, 1377-Cell, CMOS, CQFP256, CERAMIC, CQFP-256

A14100A-CQ256M 技术参数

是否Rohs认证: 不符合生命周期:Obsolete
包装说明:CERAMIC, CQFP-256Reach Compliance Code:compliant
风险等级:5.9其他特性:MAX 228 I/OS
最大时钟频率:85 MHzCLB-Max的组合延迟:3.5 ns
JESD-30 代码:S-CQFP-F256JESD-609代码:e0
长度:36 mm可配置逻辑块数量:1377
等效关口数量:10000输入次数:228
逻辑单元数量:1377输出次数:228
端子数量:256最高工作温度:125 °C
最低工作温度:-55 °C组织:1377 CLBS, 10000 GATES
封装主体材料:CERAMIC, METAL-SEALED COFIRED封装代码:GQFF
封装等效代码:TPAK256,3SQ,20封装形状:SQUARE
封装形式:FLATPACK峰值回流温度(摄氏度):225
电源:5 V可编程逻辑类型:FIELD PROGRAMMABLE GATE ARRAY
认证状态:Not Qualified座面最大高度:3.06 mm
子类别:Field Programmable Gate Arrays最大供电电压:5.5 V
最小供电电压:4.5 V标称供电电压:5 V
表面贴装:YES技术:CMOS
温度等级:MILITARY端子面层:TIN LEAD
端子形式:FLAT端子节距:0.5 mm
端子位置:QUAD处于峰值回流温度下的最长时间:30
宽度:36 mm

A14100A-CQ256M 数据手册

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RadTolerant FPGAs  
RadTolerant FPGAs  
General Description  
Actel builds the most reliable field programmable gate  
arrays (FPGAs) in the industry, with overall antifuse  
reliability ratings of less than 10 failures-in-time (FITs),  
corresponding to a useful life of more than 40 years.  
Actel FPGAs are production-proven, with more than five  
million devices shipped and more than one trillion  
antifuses manufactured. Actel devices are fully tested  
prior to shipment, with an outgoing defect level of only  
122 ppm (further reliability data is available in the Actel  
Device Reliability Report).  
These devices also have fully pin- and function-  
compatible commercially-equivalent devices for easy and  
inexpensive prototyping. The A1425A-CQ132C is used for  
the RT1425A, the A1460A-CQ196C is used for the  
RT1460A, and the A14100A-CQ256C is used for the  
RT14100A.  
Radiation Survivability  
Total dose results are summarized in two ways. The first  
method summarizes by the maximum total dose level  
that is reached when the parts fail to meet a device  
specification but remain functional. For Actel FPGAs, the  
parameter that exceeds the specification first is the  
standby supply current (ICC). The second method  
summarizes by the maximum total dose that is reached  
prior to the functional failure of the device.  
Additionally, the programmable architecture of these  
devices offers high performance, design flexibility, and  
fast and inexpensive prototyping—all without the  
expense of test vectors, NRE charges, long lead times,  
and schedule and cost penalties for design refinements.  
Device Description  
The Actel RT devices have varying total-dose radiation  
survivability. The ability of these devices to survive  
radiation effects is both device- and lot-dependent. The  
user must evaluate and determine the applicability of  
these devices for specific design and environmental  
requirements.  
The RT1020 device contains the same architecture as the  
A1020, A1020A, and A1020B devices. The architecture, a  
combinatorial logic module, is a logic structure with 8 inputs  
and 1 output. The logic itself is comprised of a 4-input MUX,  
as described in Figure 1-3 on page 1-4. In addition, since  
the RT1020 device contains the same number of gates and  
I/Os and has the same operating voltage as its commercial  
equivalent (A1020B), an inexpensive commercial grade  
A1020B-CQ84 device can be used during the prototype  
phase, and replaced by the RT1020 in the flight units.  
Typical results for the RT1020 device are ~100krads (Si)  
for standby ICC and >100krads for functional failure. The  
RT1280A device has results from 4 to 10krads (Si) for  
standby ICC, and 7 to 18krads for functional failure.  
Typical results for ACT 3 devices are 10 to 28krads for ICC  
and 20 to 77krads for functional failure.  
,
The RT1280A device uses the A1280A die from the ACT 2  
family of FPGAs. It utilizes a two-module architecture,  
consisting of combinatorial modules (C-modules) and  
sequential modules (S-modules) optimized for both  
combinatorial and sequential designs. Based on Actel’s  
patented channeled array architecture, the RT1280A has  
8,000 ASIC-equivalent gates and 140 user I/Os.  
Actel will provide total dose radiation testing along with  
the test data on each pedigreed lot that is available for  
sale. These reports are available on our website, or you  
can contact your local sales representative to receive a  
copy. A listing of available lots and devices is also  
provided. These results are provided only for reference  
and for customer information.  
The RT1280A device is fully pin- and function-compatible  
with the commercially-equivalent A1280A-CQ172C device  
for easy, inexpensive prototyping.  
For a radiation performance summary, see Radiation  
Performance of Actel Products on the Actel Website. This  
summary also shows single event upset (SEU) and single  
event latch-up (SEL) testing that has been performed on  
Actel FPGAs.  
The RT1425A, RT1460A and RT14100A devices use the  
A1425A, A1460A and A14100A dies, respectively. These  
devices are derived from the ACT 3 family of FPGAs,  
which also utilizes the two-module channeled array  
architecture, and offers faster performance than the  
RT1280A.  
v3.1  
1-1  

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