M306V0ME-107FP MITSUBISHI [Mitsubishi Electric Semiconductor], M306V0ME-107FP Datasheet - Page 233

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M306V0ME-107FP

Manufacturer Part Number
M306V0ME-107FP
Description
SINGLE-CHIP 16-BIT CMOS MICROCOMPUTER with CLOSED CAPTION DECODER and ON-SCREEN DISPLAY CONTROLLER
Manufacturer
MITSUBISHI [Mitsubishi Electric Semiconductor]
Datasheet
Rev. 1.0
5.6 Analog R, G, B Output Characteristics
5.4 A-D Conversion Characteristics
5.5 D-A Conversion Characteristics
Table 5.6.1 Analog R, G, B output characteristics (V
Table 5.4.1 A-D conversion characteristics (referenced to V
Table 5.5.1 D-A conversion characteristics (referenced to V
Note: This applies when using one D-A converter, with the D-A register for the unused D-A converter set to “00
R
t
t
V
V
CONV
SAMP
t
R
I
Symbol
R
V
T
Symbol
su
VREF
REF
IA
LADDER
Symbol
O
ST
OE
O
The A-D converter’s ladder resistance is not included.
Also, when the Vref is unconnected at the A-D control register, I
Resolution
Absolute
accuracy
Ladder resistance
Conversion time
Sampling time
Reference voltage
Analog input voltage
Resolution
Absolute accuracy
Setup time
Output resistance
Reference power supply input current
–10
= 25
f(X
Output impedance
Output deviation
Settling time
IN
o
C to 70
) = 10 MHz unless otherwise specified)
o
C, f(X
Sample & hold function not available
Sample & hold function available (8 bit)
Parameter
IN
Parameter
o
) = 10 MHz unless otherwise specified)
C, unless otherwise specified)
SINGLE-CHIP 16-BIT CMOS MICROCOMPUTER with CLOSED CAPTION DECODER
Parameter
V
V
V
V
REF
REF
REF
REF
(
Note
= V
= V
=
=
Measuring condition
Measuring condition
V
V
V
V
V
load capacity of 10 pF,
load resistance of 20 k ,
70 % DC level
CC
Test conditions
CC
CC
CC
CC
CC
CC
CC
)
= 5 V
= 5 V
= 4.5 V
= 5.5 V
= 4.5 V,
= 5V 10%, V
CC
CC
= AV
= 5V, V
and ON-SCREEN DISPLAY CONTROLLER
VREF
CC
MITSUBISHI MICROCOMPUTERS
SS
SS
= 5V, V
is sent.
M306V0ME-XXXFP
= 0V, f(X
= AV
Min.
Min.
Min.
2.8
0.3
4
10
SS
Standard
SS
0
Standard
Standard
= AV
M306V0EEFP
IN
= 0V at Ta = 25
Typ. Max.
Typ.
10
) = 10 MHz, Ta =
V
Max.
CC
SS
50
0.5
2
Max.
= 0 V at Ta
1.5
V
10
20
40
8
3
CC
8
5
5
Unit
k
ns
Unit
Unit
V
LSB
LSB
Bits
Bits
mA
k
k
%
V
V
s
s
s
o
16
C,
.”
233

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