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AN214 参数 Datasheet PDF下载

AN214图片预览
型号: AN214
PDF下载: 下载PDF文件 查看货源
内容描述: CCD摄像机信号处理器IC [CCD Video Camera Signal Processor ICs]
分类和应用: 摄像机
文件页数/大小: 6 页 / 110 K
品牌: PANASONIC [ PANASONIC ]
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Electrical Characteristics (V  
4.6V, Ta=25±2˚C)  
CC=  
Parameter  
Symbol  
Condition  
min  
42  
typ  
60  
max  
78  
Unit  
mA  
V
Itot  
Total circuit current  
VREF  
VCPOB  
VPBLK  
VCP2  
1.68  
2.1  
0.6  
2.1  
0.6  
0.6  
0.4  
0.6  
1.1  
22.5  
–9  
1.8  
2.5  
1.0  
2.5  
1.0  
1.0  
0.8  
1.0  
1.5  
26  
1.92  
2.9  
1.4  
2.9  
1.4  
1.4  
1.2  
1.4  
1.9  
28.5  
–4  
Reference voltage (or VREF output voltage)  
Pulse separation level CPOB  
Pulse separation level PBLK  
Pulse separation level CP2  
Pulse separation level CBLK  
Pulse separation level FH/2  
Pulse separation level SP  
V
V
V
VCBLK  
VFH/2  
V
V
VSP  
V
VWBLK  
VDSYN  
VYMAX  
VYMIN  
VCMAX  
VCMIN  
V
Pulse separation level WBLK  
Pulse separation level SYNC  
Luminance AGC max. gain  
Luminance AGC mini. gain  
Color difference AGC min. gain Note A)  
Color difference AGC max. gain Note A)  
V
V65=10STEP 50mVP–P  
dB  
dB  
dB  
dB  
V65=10STEP 1500mVP–P  
V65=Sin500kHz 50mVP–P  
V65=Sin500kHz 1500mVP–P  
–6  
22.5  
–9  
26  
28.5  
–4  
–6  
V69=10STEP 1000mVP–P  
3rd step  
V69=10STEP 1000mVP–P  
5 step  
V69=10STEP 1000mVP–P  
10 step  
VYGAM1  
VYGAM2  
VYGAM3  
350  
470  
720  
470  
630  
970  
600 mVP–P  
810 mVP–P  
1260 mVP–P  
Luminance g characteristics (1)  
Luminance g characteristics (2)  
Luminance g characteristics (3)  
Luminance fade characteristics  
Horizontal AP generation circuit characteristics Note A)  
Base clip characteristics Note B)  
Output luminance signal amplitude  
Output high-clip characteristics  
Output low-clip characteristics  
Synchronous signal level  
VYFADE  
VHAP  
V16=10STEP 300mVP–P  
V16=Sin3.5kHz 100mVP–P  
V11=Sin500kHz 40mVP–P  
V29=10STEP 600mVP–P  
V29=10STEP 1000mVP–P  
V29=10STEP 200mVP–P (reverse)  
V29=C–GND  
–26  
dB  
dB  
18.5  
22  
24.5  
VBCLIP  
VYOUT  
VHCLIP  
VLCLIP  
VSYNC  
VPED1  
VPED2  
60 mVP–P  
580  
800  
–50  
268  
40  
680  
890  
–28  
295  
60  
800 mVP–P  
1100  
–12  
mV  
mV  
322 mVP–P  
V29=C–GND  
100  
0
mV  
mV  
Pedestal control characteristics (1)  
Pedestal control characteristics (2)  
V29=C–GND  
–30  
–10  
V20=Sin3.5MHz 600mVP–P  
(V29=white signal)  
V65=square wave 500kHz  
1VP–P  
Chroma clip characteristics Note B)  
VCCLIP  
VSH  
–20  
dB  
300  
450  
600 mVP–P  
S/H characteristics  
VSW  
VSWOFF  
VRWB  
VCYG  
V48, V50, V54, V56=C–GND  
V48, V50, V54, V56=C–GND  
V56=10STEP 200mVP–P  
V54=10STEP 200mVP–P  
V50=10STEP 200mVP–P  
V48=10STEP 200mVP–P  
V50=10STEP 200mVP–P  
V56=10STEP 200mVP–P  
V24=10STEP 500mVP–P  
–12  
–30  
420  
420  
420  
420  
380  
380  
0
0
12  
30  
mV  
mV  
Switch level  
Switch DC offset  
580  
580  
580  
580  
520  
520  
760 mVP–P  
760 mVP–P  
760 mVP–P  
760 mVP–P  
710 mVP–P  
710 mVP–P  
100 mVP–P  
RWB control characteristics  
CY+G control characteristics  
BWB control characteristics  
YE+G control characteristics  
R-Y matrix control characteristics  
B-Y matrix control characteristics  
γ control signal leak  
VBWB  
VYEG  
VRMAT  
VBMAT  
VGAML  
V22=10STEP 500mVP–P  
V24=10STEP 1VP–P  
3rd step  
V22=10STEP 500mVP–P  
V24=10STEP 1VP–P  
5 step  
Color difference γ  
characteristics (1)  
VCGAM1  
300  
380  
410  
530  
530 mVP–P  
690 mVP–P  
Color difference γ  
characteristics (2)  
VCGAM2  
Note A) Sine wave with BLK and pedestal  
Note B) Sine wave with BLK  
The value in the above characteristics is not a guaranteed value, but reference one on design.  
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