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Panasonic MA8 DataSheet

No. Partie # Fabricant Description Fiche Technique
1
MA8100-M

Panasonic
Vertical Driver LSI for Video Camera CCD Area Image Sensor

• Extremely low noise voltage caused from the diode (2.4V to 39V, 1/3 to 1/10 of our conventional MAZ3000 series)
• Extremely good rising performance (in the low-current range)
• Easy-to-select the optimum diode because of their finely divided zener-
Datasheet
2
MA8027

Panasonic
Silicon planar type

• Extremely low noise voltage caused from the diode (2.4V to 39V, 1/3 to 1/10 of our conventional MAZ3000 series)
• Extremely good rising performance (in the low-current range)
• Easy-to-select the optimum diode because of their finely divided zener-
Datasheet
3
MA81300L

Panasonic
Silicon planar type

• Extremely low noise voltage caused from the diode (2.4V to 39V, 1/3 to 1/10 of our conventional MAZ3000 series)
• Extremely good rising performance (in the low-current range)
• Easy-to-select the optimum diode because of their finely divided zener-
Datasheet
4
MA8033

Panasonic
Silicon planar type

• Extremely low noise voltage caused from the diode (2.4V to 39V, 1/3 to 1/10 of our conventional MAZ3000 series)
• Extremely good rising performance (in the low-current range)
• Easy-to-select the optimum diode because of their finely divided zener-
Datasheet
5
MA80430L

Panasonic
Silicon planar type

• Extremely low noise voltage caused from the diode (2.4V to 39V, 1/3 to 1/10 of our conventional MAZ3000 series)
• Extremely good rising performance (in the low-current range)
• Easy-to-select the optimum diode because of their finely divided zener-
Datasheet
6
MA8051

Panasonic
Silicon planar type

• Extremely low noise voltage caused from the diode (2.4V to 39V, 1/3 to 1/10 of our conventional MAZ3000 series)
• Extremely good rising performance (in the low-current range)
• Easy-to-select the optimum diode because of their finely divided zener-
Datasheet
7
MA80560L

Panasonic
Silicon planar type

• Extremely low noise voltage caused from the diode (2.4V to 39V, 1/3 to 1/10 of our conventional MAZ3000 series)
• Extremely good rising performance (in the low-current range)
• Easy-to-select the optimum diode because of their finely divided zener-
Datasheet
8
MA80620H

Panasonic
Silicon planar type

• Extremely low noise voltage caused from the diode (2.4V to 39V, 1/3 to 1/10 of our conventional MAZ3000 series)
• Extremely good rising performance (in the low-current range)
• Easy-to-select the optimum diode because of their finely divided zener-
Datasheet
9
MA81000M

Panasonic
Silicon planar type

• Extremely low noise voltage caused from the diode (2.4V to 39V, 1/3 to 1/10 of our conventional MAZ3000 series)
• Extremely good rising performance (in the low-current range)
• Easy-to-select the optimum diode because of their finely divided zener-
Datasheet
10
MA8120

Panasonic
Silicon planar type

• Extremely low noise voltage caused from the diode (2.4V to 39V, 1/3 to 1/10 of our conventional MAZ3000 series)
• Extremely good rising performance (in the low-current range)
• Easy-to-select the optimum diode because of their finely divided zener-
Datasheet
11
MA81300M

Panasonic
Silicon planar type

• Extremely low noise voltage caused from the diode (2.4V to 39V, 1/3 to 1/10 of our conventional MAZ3000 series)
• Extremely good rising performance (in the low-current range)
• Easy-to-select the optimum diode because of their finely divided zener-
Datasheet
12
MA82000M

Panasonic
Silicon planar type

• Extremely low noise voltage caused from the diode (2.4V to 39V, 1/3 to 1/10 of our conventional MAZ3000 series)
• Extremely good rising performance (in the low-current range)
• Easy-to-select the optimum diode because of their finely divided zener-
Datasheet
13
MA82400H

Panasonic
Silicon planar type

• Extremely low noise voltage caused from the diode (2.4V to 39V, 1/3 to 1/10 of our conventional MAZ3000 series)
• Extremely good rising performance (in the low-current range)
• Easy-to-select the optimum diode because of their finely divided zener-
Datasheet
14
ZU-1870MA8R

Panasonic Semiconductor
MAGNETIC CARD READER SPECIFICATION
........................................................................................................................ 2 2.3. FUNCTION .................................................................................................................
Datasheet
15
MA8024

Panasonic
Silicon planar type

• Extremely low noise voltage caused from the diode (2.4V to 39V, 1/3 to 1/10 of our conventional MAZ3000 series)
• Extremely good rising performance (in the low-current range)
• Easy-to-select the optimum diode because of their finely divided zener-
Datasheet
16
MA80270L

Panasonic
Silicon planar type

• Extremely low noise voltage caused from the diode (2.4V to 39V, 1/3 to 1/10 of our conventional MAZ3000 series)
• Extremely good rising performance (in the low-current range)
• Easy-to-select the optimum diode because of their finely divided zener-
Datasheet
17
MA8030

Panasonic
Silicon planar type

• Extremely low noise voltage caused from the diode (2.4V to 39V, 1/3 to 1/10 of our conventional MAZ3000 series)
• Extremely good rising performance (in the low-current range)
• Easy-to-select the optimum diode because of their finely divided zener-
Datasheet
18
MA80300H

Panasonic
Silicon planar type

• Extremely low noise voltage caused from the diode (2.4V to 39V, 1/3 to 1/10 of our conventional MAZ3000 series)
• Extremely good rising performance (in the low-current range)
• Easy-to-select the optimum diode because of their finely divided zener-
Datasheet
19
MA80300L

Panasonic
Silicon planar type

• Extremely low noise voltage caused from the diode (2.4V to 39V, 1/3 to 1/10 of our conventional MAZ3000 series)
• Extremely good rising performance (in the low-current range)
• Easy-to-select the optimum diode because of their finely divided zener-
Datasheet
20
MA80330H

Panasonic
Silicon planar type

• Extremely low noise voltage caused from the diode (2.4V to 39V, 1/3 to 1/10 of our conventional MAZ3000 series)
• Extremely good rising performance (in the low-current range)
• Easy-to-select the optimum diode because of their finely divided zener-
Datasheet



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