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5962-9317707VTC PDF预览

5962-9317707VTC

更新时间: 2024-01-13 21:23:43
品牌 Logo 应用领域
爱特美尔 - ATMEL 先进先出芯片
页数 文件大小 规格书
20页 2049K
描述
Rad. Tolerant High Speed 16 Kb x 9 Parallel FIFO

5962-9317707VTC 数据手册

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Features  
First-in First-out Dual Port Memory  
16384 bits x 9 Organization  
Fast Flag and Access Times: 15, 30 ns  
Wide Temperature Range: - 55°C to + 125°C  
Fully Expandable by Word Width or Depth  
Asynchronous Read/Write Operations  
Empty, Full and Half Flags in Single Device Mode  
Retransmit Capability  
Bi-directional Applications  
Battery Back-up Operation: 2V Data Retention  
TTL Compatible  
Rad. Tolerant  
High Speed  
16 Kb x 9  
Single 5V 10% Power Supply  
No Single Event Latch-up below a LET Threshold of 80 MeV/mg/cm2  
Tested up to a Total Dose of 30 krads (Si) according to MIL STD 883 Method 1019  
Quality grades: QML Q and V with SMD 5962-93177 and ESCC with specification  
9301/048  
Parallel FIFO  
Description  
The M67206H implements a first-in first-out algorithm, featuring asynchronous  
read/write operations. The FULL and EMPTY flags prevent data overflow and under-  
flow. The Expansion logic allows unlimited expansion in word size and depth with no  
timing penalties. Twin address pointers automatically generate internal read and write  
addresses, and no external address information is required. Address pointers are  
automatically incremented with the write pin and read pin. The 9 bits wide data are  
used in data communications applications where a parity bit for error checking is nec-  
essary. The Retransmit pin resets the Read pointer to zero without affecting the write  
pointer. This is very useful for retransmitting data when an error is detected in the  
system.  
M67206H  
Using an array of eight transistors (8T) memory cell, the M67206H combines an  
extremely low standby supply current (typ = 0.1 µA) with a fast access time at 15 ns  
over the full temperature range. All versions offer battery backup data retention capa-  
bility with a typical power consumption at less than 2 µW.  
The M67206H is processed according to the methods of the latest revision of the MIL  
PRF 38535 (Q and V) or ESCC 9000.  
Rev. 4143J–AERO–04/07  
1

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