MC68HC912D60A MOTOROLA [Motorola, Inc], MC68HC912D60A Datasheet - Page 409
MC68HC912D60A
Manufacturer Part Number
MC68HC912D60A
Description
Microcontrollers
Manufacturer
MOTOROLA [Motorola, Inc]
Datasheet
1.MC68HC912D60A.pdf
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MC68HC912D60A — Rev 3.0
MOTOROLA
Analog supply voltage
Analog supply current, normal operation
Reference voltage, low
Reference voltage, high
V
Input voltage
Input current, off channel
Reference supply current
Input capacitanceNot Sampling
Maximum total supply current
WAIT: (All peripheral functions shut down)
STOP:
Maximum power dissipation
1. For information only. Supply current guaranteed at 8MHz only.
2. On the 80 QFP package option, unbonded pins must be made outputs or have pullups enabled.
3. Includes I
1. For each ATD module.
2. To obtain full-scale, full-range results, V
3. Maximum leakage occurs at maximum operating temperature. Current decreases by approximately one-half for each 10°C
REF
RUN:
Single-chip mode, no clocks
Sampling
Single-chip mode
Expanded mode
Single-chip mode
Expanded mode
−40 to +85
+85 to +105
+105 to +125
Single-chip mode
Expanded mode
decrease from maximum temperature.
differential reference voltage
(2)
V
DD
DD
(2)
= 5.0 Vdc ±10%, V
and I
V
Characteristic
DD
DDA
= 5.0 Vdc ±10%, V
.
(3)
Characteristic
Table 20-5. ATD DC Electrical Characteristics
(3)
Freescale Semiconductor, Inc.
SS
For More Information On This Product,
= 0 Vdc, T
SSA
Table 20-4. Supply Current
SS
(1)
(2)
= 0 Vdc, T
≤ V
Go to: www.freescale.com
Electrical Specifications
RL
A
= T
≤ V
L
INDC
A
to T
Symbol
W
= T
S
I
P
DD
≤ V
IDD
IDD
H
D
L
, ATD Clock = 2 MHz, unless otherwise noted
RH
to T
≤ V
H
, unless otherwise noted
DDA
Frequency of Operation (E-clock)
2 MHz
.
100
165
V
Symbol
18
30
10
50
50
4
5
RH
V
V
C
C
I
I
I
V
V
DDA
INDC
OFF
REF
DDA
INN
INS
(1)
RH
RL
−V
RL
4 MHz
V
165
275
V
V
30
50
10
50
50
Min
DDA
6
9
4.5
4.5
SSA
SSA
(1)
Electrical Specifications
/2
V
8 MHz
V
V
Max
DDA
100
250
5.5
1.0
5.5
275
467
10
15
Technical Data
DDA
DDA
Tables of Data
50
85
12
10
50
50
8
/2
Unit
Unit
mW
mA
mA
mA
µA
µA
µA
nA
µA
pF
pF
V
V
V
V
V
409
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