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OTB25LPLL 参数 Datasheet PDF下载

OTB25LPLL图片预览
型号: OTB25LPLL
PDF下载: 下载PDF文件 查看货源
内容描述: 超快速的本地和长途线网络 [Ultra-Fast Local and Long-Line Network]
分类和应用:
文件页数/大小: 174 页 / 1510 K
品牌: ACTEL [ Actel Corporation ]
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PLUS  
ProASIC  
Flash Family FPGAs  
Table 1-22 DC Electrical Specifications (VDDP = 3.3 V ±0.3 V and VDD = 2.5 V ±0.2 V)  
Commercial/Industrial/  
Military/MIL-STD-8831, 2  
Symbol  
Parameter  
Conditions  
Min.  
Typ.  
Max.  
Units  
VOH  
Output High Voltage  
3.3 V I/O, High Drive (OB33P)  
IOH = –14 mA  
IOH = –24 mA  
0.9VDDP  
2.4  
V
3.3 V I/O, Low Drive (OB33L)  
IOH = –6 mA  
0.9VDDP  
IOH = –12 mA  
2.4  
VOL  
Output Low Voltage  
3.3 V I/O, High Drive (OB33P)  
IOL = 15 mA  
IOL = 20 mA  
IOL = 28 mA  
0.1VDDP  
0.4  
0.7  
V
V
3.3 V I/O, Low Drive (OB33L)  
IOL = 7 mA  
IOL = 10 mA  
IOL = 15 mA  
0.1VDDP  
0.4  
0.7  
6
VIH  
Input High Voltage  
3.3 V Schmitt Trigger Inputs  
3.3 V LVTTL/LVCMOS  
2.5 V Mode  
1.6  
2
1.7  
VDDP + 0.3  
VDDP + 0.3  
VDDP + 0.3  
7
VIL  
Input Low Voltage  
3.3 V Schmitt Trigger Inputs  
3.3 V LVTTL/LVCMOS  
2.5 V Mode  
–0.3  
–0.3  
–0.3  
0.8  
0.8  
0.7  
V
RWEAKPULLUP Weak  
(IOB33U)  
Pull-up  
Resistance VIN 1.5 V  
7
43  
kΩ  
kΩ  
RWEAKPULLUP Weak  
(IOB25U)  
Pull-up  
Resistance VIN 1.5 V  
7
43  
IIN  
Input Current  
with pull up (VIN = GND)  
–300  
–10  
–40  
10  
µA  
µA  
without pull up (VIN = GND or VDD  
)
IDDQ  
Quiescent Supply Current  
(standby)  
Commercial  
VIN = GND4 or VDD  
Std.  
–F3  
5.0  
5.0  
15  
mA  
mA  
25  
IDDQ  
Quiescent Supply Current  
(standby)  
VIN = GND4 or VDD  
Industrial  
Std.  
Std.  
5.0  
5.0  
20  
25  
mA  
mA  
IDDQ  
Quiescent Supply Current  
(standby)  
Military  
V
IN = GND4 or VDD  
Notes:  
1. All process conditions. Commercial/Industrial: Junction Temperature: –40 to +110°C.  
2. All process conditions. Military: Junction Temperature: –55 to +150°C.  
3. All –F parts are only available as commercial.  
4. No pull-up resistor required.  
5. This will not exceed 2 mA total per device.  
6. During transitions, the input signal may overshoot to VDDP +1.0 V for a limited time of no larger than 10% of the duty cycle.  
7. During transitions, the input signal may undershoot to –1.0 V for a limited time of no larger than 10% of the duty cycle.  
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