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240VA PDF预览

240VA

更新时间: 2024-02-27 19:38:57
品牌 Logo 应用领域
莱迪思 - LATTICE /
页数 文件大小 规格书
25页 324K
描述
In-System Programmable 3.3V Generic Digital CrosspointTM

240VA 技术参数

生命周期:ActiveReach Compliance Code:unknown
风险等级:5.81其他特性:VSWR MAX AT 6 GHZ
特性阻抗:50 Ω连接器类型:RF TNC CONNECTOR
联系完成配合:NOT SPECIFIED触点性别:MALE
耦合类型:THREADEDDIN 符合性:NO
滤波功能:NOIEC 符合性:NO
插入损耗:0.12 dBMIL 符合性:NO
安装方式:RIGHT ANGLE安装类型:CABLE
最大工作频率:6 GHz选件:GENERAL PURPOSE
面板安装:NO端接类型:CRIMP SOLDER
电压驻波比:1.21Base Number Matches:1

240VA 数据手册

 浏览型号240VA的Datasheet PDF文件第1页浏览型号240VA的Datasheet PDF文件第3页浏览型号240VA的Datasheet PDF文件第4页浏览型号240VA的Datasheet PDF文件第5页浏览型号240VA的Datasheet PDF文件第6页浏览型号240VA的Datasheet PDF文件第7页 
Specifications ispGDX240VA  
Description (Continued)  
found in each I/O cell. Each output has individual, pro- In addition, there are no pin-to-pin routing constraints for  
grammable I/O tri-state control (OE), output latch clock 1:1 or 1:n signal routing. That is, any I/O pin configured  
(CLK), clock enable (CLKEN), and two multiplexer con- as an input can drive one or more I/O pins configured as  
trol (MUX0 and MUX1) inputs. Polarity for these signals outputs.  
is programmable for each I/O cell. The MUX0 and MUX1  
inputs control a fast 4:1 MUX, allowing dynamic selection  
of up to four signal sources for a given output. A wider  
16:1 MUX can be implemented with the MUX expander  
feature of each I/O and a propagation delay increase of  
2.0ns. OE, CLK, CLKEN, and MUX0 and MUX1 inputs  
can be driven directly from selected sets of I/O pins.  
Optional dedicated clock input pins give minimum clock-  
The device pins also have the ability to set outputs to  
fixed HIGH or LOW logic levels (Jumper or DIP Switch  
mode). Device outputs are specified for 24mA sink and  
12mA source current (at JEDEC LVTTL levels) and can  
be tied together in parallel for greater drive. On the  
ispGDXVA, each I/O pin is individually programmable for  
3.3V or 2.5V output levels as described later. Program-  
mable output slew rate control can be defined  
to-output delays. CLK and CLKEN share the same set of  
I/O pins. CLKEN disables the register clock when  
CLKEN = 0.  
independently for each I/O pin to reduce overall ground  
bounce and switching noise.  
All I/O pins are equipped with IEEE1149.1-compliant  
Boundary Scan Test circuitry for enhanced testability. In  
addition, in-system programming is supported through  
the Test Access Port via a special set of private com-  
Through in-system programming, connections between  
I/O pins and architectural features (latched or registered  
inputs or outputs, output enable control, etc.) can be  
defined. In keeping with its data path application focus,  
mands.  
the ispGDXVA devices contain no programmable logic  
arrays. All input pins include Schmitt trigger buffers for  
The ispGDXVA I/Os are designed to withstand live  
noise immunity. These connections are programmed  
insertionsystem environments. The I/O buffers are  
disabledduringpower-upandpower-downcycles. When  
designing for live insertion,absolute maximum rating  
conditions for the Vcc and I/O pins must still be met.  
2
into the device using non-volatile E CMOS technology.  
Non-volatile technology means the device configuration  
is saved even when the power is removed from the  
device.  
Table 1. ispGDXV/VA Family Members  
ispGDXV/VA Device  
ispGDX80VA  
ispGDX160V/VA ispGDX240VA  
I/O Pins  
80  
20  
20  
20  
20  
2
160  
40  
40  
40  
40  
4
240  
60  
60  
60  
60  
4
I/O-OE Inputs*  
I/O-CLK / CLKEN Inputs*  
I/O-MUXsel1 Inputs*  
I/O-MUXsel2 Inputs*  
Dedicated Clock Pins**  
EPEN  
1
1
1
TOE  
1
4
1
1
4
1
1
4
1
BSCAN Interface  
RESET  
Pin Count/Package  
100-Pin TQFP  
208-Pin PQFP 388-Ball fpBGA  
208-Ball fpBGA  
272-Ball BGA  
* The CLK/CLK_EN, OE, MUX0 and MUX1 terminals on each I/O cell can each be assigned to  
25% of the I/Os.  
** Global clock pins Y0, Y1, Y2 and Y3 are multiplexed with CLKEN0, CLKEN1, CLKEN2 and  
CLKEN3 respectively in all devices.  
2

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