MCHC11F1CFNE3 Freescale Semiconductor, MCHC11F1CFNE3 Datasheet - Page 145

IC MCU 8BIT 1K RAM 68-PLCC

MCHC11F1CFNE3

Manufacturer Part Number
MCHC11F1CFNE3
Description
IC MCU 8BIT 1K RAM 68-PLCC
Manufacturer
Freescale Semiconductor
Series
HC11r
Datasheets

Specifications of MCHC11F1CFNE3

Core Processor
HC11
Core Size
8-Bit
Speed
3MHz
Connectivity
SCI, SPI
Peripherals
POR, WDT
Number Of I /o
30
Program Memory Type
ROMless
Eeprom Size
512 x 8
Ram Size
1K x 8
Voltage - Supply (vcc/vdd)
4.75 V ~ 5.25 V
Data Converters
A/D 8x8b
Oscillator Type
Internal
Operating Temperature
-40°C ~ 85°C
Package / Case
68-PLCC
A/d Inputs
8-Channel, 8-Bit
Eeprom Memory
512 Bytes
Input Output
30
Interface
SCI/SPI
Memory Type
EPROM
Number Of Bits
8
Package Type
68-pin PLCC
Programmable Memory
0 Bytes
Timers
3-16-bit
Voltage, Range
3-5.5 V
Controller Family/series
68HC11
No. Of I/o's
30
Eeprom Memory Size
512Byte
Ram Memory Size
1KB
Cpu Speed
3MHz
No. Of Timers
1
Embedded Interface Type
SCI, SPI
Rohs Compliant
Yes
Processor Series
HC11F
Core
HC11
Data Bus Width
8 bit
Program Memory Size
512 B
Data Ram Size
1 KB
Interface Type
SCI, SPI
Maximum Clock Frequency
3 MHz
Number Of Timers
1
Maximum Operating Temperature
+ 85 C
Mounting Style
SMD/SMT
Minimum Operating Temperature
- 40 C
On-chip Adc
8 bit, 8 Channel
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Program Memory Size
-
Lead Free Status / Rohs Status
RoHS Compliant part

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Resolution
Non-Linearity
Zero Error
Full Scale Error
Total Unadjusted
Error
Quantization
Error
Absolute
Accuracy
Conversion
Range
V
V
Conversion
Time
Monotonicity
Zero Input
Reading
Full Scale
Reading
Sample
Acquisition Time
Sample/Hold
Capacitance
Input Leakage
Characteristic
V
RH
RL
R
TECHNICAL DATA
NOTES:
1. For f
2. Performance verified down to 2.5 V V
should equal approximately 5 k – 10 k . Source impedances greater than 10 k affect accuracy adversely be-
cause of input leakage.
V
op
DD
Number of Bits Resolved by A/D Converter
Maximum Deviation from the Ideal A/D Transfer
Characteristics
Difference Between the Output of an Ideal and
an Actual for Zero Input Voltage
Difference Between the Output of an Ideal and
an Actual A/D for Full-Scale Input Voltage
Maximum Sum of Non-Linearity, Zero Error, and
Full-Scale Error
Uncertainty Because of Converter Resolution
Difference Between the Actual Input Voltage and
the Full-Scale Weighted Equivalent of the Binary
Output Code, All Error Sources Included
Analog Input Voltage Range
Maximum Analog Reference Voltage
(Note 2)
Minimum Analog Reference Voltage
(Note 2)
Minimum Difference between V
(Note 2)
Total Time to Perform a Single
Analog-to-Digital Conversion:
Conversion Result Never Decreases with an
Increase in Input Voltage and has no Missing
Codes
Conversion Result when V
Conversion Result when V
Analog Input Acquisition Sampling Time:
Input Capacitance during Sample PE[7:0]
Input Leakage on A/D Pins
< 2 MHz, source impedances should equal approximately 10 k . For f
= 5.0 Vdc
Table A-6 Analog-To-Digital Converter Characteristics
5%, V
Freescale Semiconductor, Inc.
Parameter
SS
For More Information On This Product,
= 0 Vdc, T
ELECTRICAL CHARACTERISTICS
Internal RC Oscillator
Internal RC Oscillator
in
in
= V
= V
Go to: www.freescale.com
RH
RL
RH
R
A
, but accuracy is tested and guaranteed at V
= T
and V
L
V
to T
E Clock
E Clock
RL
PE[7:0]
RL
, V
H
, 750 kHz
RH
V
SS
Min
V
V
00
3
RL
RL
–0.1
E
3.0 MHz, unless otherwise noted
Guaranteed
Absolute
20 (Typ)
32
12
8
op
2.0 MHz 3.0 MHz 4.0 MHz Unit
t
cyc
V
2 MHz, source impedances
Max
V
V
400
DD
0.1
1.0
FF
12
1/2
1/2
RH
RH
+ 32
1
1
1
1
R
+
= 5 V
t
cyc
V
Max
V
V
400
1 1/2
DD
0.1
1.0
FF
12
1/2
RH
RH
+ 32
1
1
1
2
10%
+
t
cyc
V
Max
V
V
400
1 1/2
DD
0.1
1.0
FF
12
1/2
RH
RH
+ 32
1
1
1
2
+
A-11
LSB
LSB
LSB
LSB
LSB
LSB
Bits
Hex
Hex
t
t
pF
nA
cyc
cyc
V
V
V
V
A
s
s

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