EEWORLDEEWORLDEEWORLD

Part Number

Search

CXP82200-U01Q

Description
Microcontroller, 8-Bit, 10MHz, CMOS, CQFP100, PIGGY BACK, CERAMIC, QFP-100
CategoryThe embedded processor and controller    Microcontrollers and processors   
File Size186KB,6 Pages
ManufacturerSONY
Websitehttp://www.sony.co.jp
Environmental Compliance  
Download Datasheet Parametric View All

CXP82200-U01Q Overview

Microcontroller, 8-Bit, 10MHz, CMOS, CQFP100, PIGGY BACK, CERAMIC, QFP-100

CXP82200-U01Q Parametric

Parameter NameAttribute value
Is it lead-free?Lead free
Is it Rohs certified?conform to
MakerSONY
Parts packaging codeQFP
package instructionAQFP,
Contacts100
Reach Compliance Codeunknown
Has ADCYES
Address bus width16
bit size8
maximum clock frequency10 MHz
DAC channelNO
DMA channelNO
External data bus width8
JESD-30 codeR-CQFP-G100
JESD-609 codee4
length22.3 mm
Number of I/O lines72
Number of terminals100
Maximum operating temperature75 °C
Minimum operating temperature-20 °C
PWM channelYES
Package body materialCERAMIC, METAL-SEALED COFIRED
encapsulated codeAQFP
Package shapeRECTANGULAR
Package formFLATPACK, PIGGYBACK
Peak Reflow Temperature (Celsius)260
Certification statusNot Qualified
Maximum seat height10.44 mm
speed10 MHz
Maximum supply voltage5.5 V
Minimum supply voltage4.5 V
Nominal supply voltage5 V
surface mountYES
technologyCMOS
Temperature levelCOMMERCIAL EXTENDED
Terminal surfaceGold (Au)
Terminal formGULL WING
Terminal pitch0.65 mm
Terminal locationQUAD
Maximum time at peak reflow temperature10
width16.3 mm
uPs/uCs/peripheral integrated circuit typeMICROCONTROLLER

CXP82200-U01Q Preview

CXP82200
CMOS 8-bit Single Chip Microcomputer
evaluator type
For the availability of this product, please contact the sales office.
Description
The CXP82200 is a CMOS 8-bit single chip micro-
computer of piggyback/evaluator combined type,
which is developed for evaluating the function of the
CXP82220/82224.
100 pin PQFP (Ceramic)
Piggyback/
Features
Wide-range instruction system (213 instructions) to
cover various types of data
— 16-bit operation/multiplication and division/
Boolean bit operation instructions
Minimum instruction cycle
400ns at 10MHz operation
122µs at 32kHz operation
Applicable EPROM
LCC type 27C128, LCC type 27C256
(Maximum 24K bytes are available.)
Incorporated RAM capacity 704 bytes (Including fluorescent display data area)
Peripheral functions
— A/D converter
8-bit, 8-channel, successive approximation method
(Conversion time of 32µs/10MHz)
— Serial interface
Incorporated 8-bit, 8-stage FIFO (Auto transfer for 1 to 8 bytes), 1 channel
8-bit clock sync type, 1 channel
— Timer
8-bit timer
8-bit timer/counter
19-bit time base timer
16-bit capture timer/counter
32kHz timer/counter
— Fluorescent display panel controller/driver
Maximum 384 segment display possible
1 to 16-digit dynamic display
Dimmer function
High voltage drive output (40V)
On-chip pull-down resistor (Mask option)
Hardware key scan function (Maximum 16
×
8 key matrix compatible)
— Remote control reception circuit 8-bit pulse measurement counter with on-chip 6-stage FIFO
— PWM output
14 bits, 1 channel
— CTL duty detection circuit
— High-speed output circuit
Four RTG outputs
Interruption
19 factors, 15 vectors, multi-interruption possible
Standby mode
Sleep/stop
Package
100-pin ceramic QFP
Note)
Mask option depends on the type of the CXP82200. Refer to the Products List for details.
Structure
Silicon gate CMOS IC
Sony reserves the right to change products and specifications without prior notice. This information does not convey any license by
any implication or otherwise under any patents or other right. Application circuits shown, if any, are typical examples illustrating the
operation of the devices. Sony cannot assume responsibility for any problems arising out of the use of these circuits.
–1–
E93847A78-PS
CXP82200
Pin Assignment in Piggyback Mode
PE0/EC0/INT0
PG3/RTO3
PG2/RTO2
PG1/RTO1
PG0/RTO0
PG7
PG6
PG5
PG4
Vss
V
FDP
NC
V
DD
100 99 98 97 96 95 94 93 92 91 90 89 88 87 86 85 84 83 82 81
PE1/EC1/INT1
PE2/INT2
PE3/INT3/NMI
PE4/RMC
PE5/CTL
PE6/PWM
PE7/T0/DD0/ADJ
PB0/CINT
PB1/CS0
PB2/SCK0
PB3/SI0
PB4/SO0
PB5/SCK1
PB6/SI1
PB7/SO1
PC0/KR0
PC1/KR1
PC2/KR2
PC3/KR3
PC4/KR4
PC5/KR5
PC6/KR6
PC7/KR7
PH0
PH1
PH2
PH3
PH4
PH5
PH6
1
2
3
4
5
6
7
80
79
78
77
76
75
74
T7
T8/S31
T9/S30
T10/S29
T11/S28
T12/S27
T13/S26
T14/S25
T15/S24
PI7/S23
PI6/S22
PI5/S21
PI4/S20
PI3/S19
PI2/S18
PI1/S17
PI0/S16
PF7/S15
PF6/S14
PF5/S13
PF4/S12
PF3/S11
PF2/S10
PF1/S9
PF0/S8
PD7/S7
PD6/S6
PD5/S5
PD4/S4
PD3/S3
A12
A15
NC
9
10
11
12
13
14
15
16
17
18
19
20
21
4
A6
A5
A4
A3
A2
A1
A0
NC
D0
5
6
7
8
9
10
11
12
13
14 15 16 17 18 19 20
3
2
1
32 31 30
29
28
27
26
25
24
23
22
21
A8
A9
A11
NC
OE
A10
CE
D7
D6
A7
8
V
DD
A14
A13
T0
T1
T2
T3
T4
T5
T6
73
72
71
70
69
68
67
66
65
64
63
62
61
60
59
58
57
56
55
54
53
52
51
23
24
25
26
27
28
29
30
31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50
GND
NC
D1
D2
D3
D4
D5
22
PA7/AN7
Note)
1. NC (Pin 90) is always connected to V
DD
.
2. Vss (Pins 41 and 91) are both connected to GND.
–2–
PA0/AN0
PA1/AN1
PA2/AN2
PA3/AN3
PA4/AN4
PA5/AN5
PA6/AN6
PD0/S0
PD1/S1
PD2/S2
EXTAL
AV
REF
XTAL
RST
PH7
TEX
Vss
Vss
TX
CXP82200
Pin Assignment in Evaluator Mode
PE0/EC0/INT0
PG3/RTO3
PG2/RTO2
PG1/RTO1
PG0/RTO0
PG7
PG6
PG5
PG4
Vss
V
FDP
NC
V
DD
100 99 98 97 96 95 94 93 92 91 90 89 88 87 86 85 84 83 82 81
PE1/EC1/INT1
PE2/INT2
PE3/INT3/NMI
PE4/RMC
PE5/CTL
PE6/PWM
PE7/T0/DD0/ADJ
PB0/CINT
PB1/CS0
PB2/SCK0
PB3/SI0
PB4/SO0
PB5/SCK1
PB6/SI1
PB7/SO1
PC0/KR0
PC1/KR1
PC2/KR2
PC3/KR3
PC4/KR4
PC5/KR5
PC6/KR6
PC7/KR7
PH0
PH1
PH2
PH3
PH4
PH5
PH6
1
2
3
4
5
6
80
79
78
77
76
75
T7
T8/S31
T9/S30
T10/S29
T11/S28
T12/S27
T13/S26
T14/S25
T15/S24
PI7/S23
PI6/S22
PI5/S21
PI4/S20
PI3/S19
PI2/S18
PI1/S17
PI0/S16
PF7/S15
PF6/S14
PF5/S13
PF4/S12
PF3/S11
PF2/S10
PF1/S9
PF0/S8
PD7/S7
PD6/S6
PD5/S5
PD4/S4
PD3/S3
A7/D7
7
8
9
10
T0
T1
T2
T3
T4
T5
T6
74
73
72
71
70
69
68
67
66
65
64
63
62
61
60
59
58
57
56
55
54
53
52
51
A12
A15
4
11
12
13
14
15
16
17
18
19
20
21
A6/D6
A5/D5
A4/D4
A3/D3
A2/D2
A1/D1
A0/D0
NC
RD
5
6
7
8
9
10
11
12
13
3
2
NC
1 32 31 30
29
28
27
26
25
24
23
22
21
A8
A9
A11
NC
HALT
A10
E/P
I/T
MON
14 15 16 17 18 19 20
23
24
25
26
27
28
29
30
31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50
SYNC
GND
RST
WR
NC
C2
C1
22
V
DD
A14
A13
PA7/AN7
Note)
1. NC (Pin 90) is always connected to V
DD
.
2. Vss (Pins 41 and 91) are both connected to GND.
–3–
PA0/AN0
PA1/AN1
PA2/AN2
PA3/AN3
PA4/AN4
PA5/AN5
PA6/AN6
PD0/S0
PD1/S1
PD2/S2
EXTAL
AV
REF
XTAL
RST
PH7
TEX
Vss
Vss
TX
CXP82200
EPROM Read Timing
(Ta = –20 to +75°C, Vcc = 4.5 to 5.5V, Vss = 0V reference)
Item
Address
Data
Input delay time
Address
Data
Hold time
Symbol
Pins
A0 to A15
D0 to D7
A0 to A15
D0 to D7
0
Min.
Max.
120
Unit
ns
ns
t
ACC
t
IH
0.8V
DD
A0 to A15
Address data
0.2V
DD
t
ACC
t
IH
0.8V
DD
Input data
0.2V
DD
D0 to D7
Products List
Products
Option item
Mask
CXP82220
Package
ROM capacitance
Pull-up resistance for reset pin
Power-on reset circuit
Pull-down resistance for high voltage drive pin
CXP82224
Piggyback/evaluator
CXP82200-U01Q
100-pin ceramic PQFP
EPROM 24K bytes
Existent
Non-existent
Only port for display
100-pin plastic QFP
20K bytes
24K bytes
Existent/Non-existent
Non-existent
Existent/Non-existent
–4–
CXP82200
Piggyback mode/evaluator mode can be switched as shown below.
Piggyback mode
Piggyback/evaluator product
Evaluator mode
Pin 1 marking
LCC type EPROM
Pin 1 marking
Pin 1 index
Note)
CPU Probe
Note) Evaluation cap should be
connected to CPU probe.
–5–
Can the debug ports PA14PA15 of STM32F103RBT6 be used as normal IO ports?
If SWJ is turned off as follows, can PA14 and PA15 be configured as normal IO ports?// SWJ disablesGPIO_PinRemapConfig(GPIO_Remap_SWJ_Disable, ENABLE);...
fuqing5542 stm32/stm8
LQFP and SQFP packages
What is the difference between the PCB package diagrams of LQFP and SQFP? The name means four-corner flat, but why is it that the first corner is basically flat? . . . . Please help me, an expert....
votex威 PCB Design
How to play RF with the 430 that is bought in group for 25 yuan?
This, this, please don't criticize me... Actually, I have always wanted to see how to get started with RF, but I don't know how to start. The main reason is that I haven't made up my mind to study and...
辛昕 Microcontroller MCU
With the resources of G2452, can I make an alarm clock?
Ask...
huang91 Microcontroller MCU
Ask: Zigbee achieves low power consumption. I see that the textbooks on the Internet all use PWRMGR_ALWAYS_ON to PWRMGR_BATTERY...
Question: Zigbee achieves low power consumption. I see that the textbooks online all replace PWRMGR_ALWAYS_ON with PWRMGR_BATTERY. Then when the OSAL system checks all task events and finds that there...
npu_wj RF/Wirelessly
Discussion on ADC and DMA of STM32
The program application is like this. I have an AC signal input, and after analog conversion, AD sampling is used. In this way, AD sampling must have two channels, one is the AC signal, and the other ...
qqwo stm32/stm8

Technical ResourceMore

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Robot
development
community

Index Files: 2029  1083  2551  710  1817  41  22  52  15  37 
Datasheet   0 1 2 3 4 5 6 7 8 9 A B C D E F G H I J K L M N O P Q R S T U V W X Y Z
Room 1530, 15th Floor, Building B, No. 18 Zhongguancun Street, Haidian District, Beijing Telephone: (010) 82350740 Postal Code: 100190
Copyright © 2005-2026 EEWORLD.com.cn, Inc. All rights reserved 京ICP证060456号 京ICP备10001474号-1 电信业务审批[2006]字第258号函 京公网安备 11010802033920号