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MT88V32AP 参数 Datasheet PDF下载

MT88V32AP图片预览
型号: MT88V32AP
PDF下载: 下载PDF文件 查看货源
内容描述: 8 ×4高性能视频开关阵列 [8 x 4 High Performance Video Switch Array]
分类和应用: 开关输出元件
文件页数/大小: 14 页 / 240 K
品牌: MITEL [ MITEL NETWORKS CORPORATION ]
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MT88V32  
Preliminary Information  
DC Electrical Characteristics- Digital Input/Output  
Voltages are with respect to VDD=5V, VEE=-7V, VSS=0V, unless otherwise stated.  
Characteristics  
Input logic "1" level  
Sym  
Min  
Typ  
Max Units  
Test Conditions  
1
2
V
V
2
V
V
IH  
IH  
3.3  
V
=V =0, V =12V  
EE SS DD  
Input logic "0" level  
V
V
0.8  
0.8  
V
V
IL  
IL  
V
V
=V =0, V =12V  
SS DD  
EE  
3
4
5
6
7
8
Input leakage (digital pins)  
Data output high voltage  
Data output high current  
Data output low voltage  
Data output low current  
Data high impedance leakage  
I
±1  
20  
±10  
µA  
V
=V or V  
IND DD SS  
LEAK  
V
2.4  
7
V
I
=7mA@V =2.4V  
OH  
DD  
OH OH  
I
mA  
V
source V =2.4V  
OH  
OH  
V
V
0.4  
10  
I
=2mA@V =0.4V  
OL  
OL  
OZ  
SS  
OL OL  
I
2
5
1
mA  
µA  
sink V =0.4V  
OL  
I
V =0 to V  
O DD  
† DC Electrical Characteristics are over recommended temperature range and recommended power supply voltages.  
‡ Typical figures are at 25°C and are for design aid only; not guaranteed and not subject to production testing.  
Algebraic convention is adopted in this data sheet where the most negative value is a minimum and the most positive value is a  
maximum.  
AC Electrical Characteristics- Crosspoint Performance- Voltages are with respect to VDD=+5V, VDC=0,  
VEE=-7V, VSS=0V, unlesss otherwise stated. Also applicable for VEE=VSS=0, VDD=+12V, VDC=(VDD+VEE)/2.  
Characteristics  
Sym  
Min  
Typ  
Max  
Units  
Test Conditions  
1 Xi to 1 Yi  
1 Yi to 1 Xi  
1
2
3
4
5
6
On-state Xi capacitance  
On-state Yi capacitance  
Off-state Xi capacitance  
Off-state Yi capacitance  
Break-before-Make interval  
C
56  
56  
30  
15  
pF  
pF  
pF  
pF  
ns  
Xi (on)  
Yi (on)  
Xi (off)  
Yi (off)  
C
C
C
t
10  
open  
Single channel feedthrough  
(all crosspoints open)  
(see Fig. 8)  
FDT  
R = R =75Ω  
S L  
-80  
-62  
dB  
dB  
V =0.6Vpp @ 5MHz  
IN  
V =0.6Vpp @ 15MHz  
IN  
7
Single channel feedthrough  
(all crosspoints closed)  
(See Fig. 9)  
X
(sc)  
R = 10Ω, R = 10kΩ  
IN L  
talk  
-85  
-68  
dB  
dB  
V =0.6Vpp @ 5MHz  
IN  
V =0.6Vpp @ 15MHz  
IN  
X
R = 75Ω, R = 10kΩ  
IN L  
talk  
(sc)  
-70  
-50  
dB  
dB  
V =0.6Vpp @ 5MHz  
IN  
V =0.6Vpp @ 15MHz  
IN  
8
9
All channel crosstalk  
(all crosspoints closed)  
(See Fig. 10)  
X
(ac)  
-55  
dB  
R = 10Ω, R = 10kΩ  
IN L  
talk  
V =0.6Vpp @ 5MHz  
IN  
Frequency Response  
(see Fig.11)  
f
200  
0.05  
0.11  
MHz R = R =50Ω  
S L  
3dB  
o
10 Differential Phase Error  
DP  
DG  
See Note , R = 50Ω,  
S
R = 75Ω  
L
11 Differential Gain Error  
%
See Note , R = 50Ω,  
S
R = 75Ω  
L
† Timing is over recommended temperature range.  
‡ Typical figures are at 25°C and are for design aid only; not guaranteed and not subject to production testing.  
Notes:  
Valid for VEE=-7V, VDD=+5V and VDC=-2.0V. Error will increase slightly if input is biased differently.  
Input test signal: 700mV ramp biased @ -2.0Vdc with a superimposed video signal of 285Vrms @ 3.58 MHz.  
Guaranteed by design and characterization and not subject to production testing.  
3-62