Download ML610Q482 Reference Board

Transcript
FEBL610Q482RB-02
ML610Q482 Reference Board
User’s Manual
Issue Date: March. 22, 2011
ML610Q482ReferenceBoard User’s Manual
NOTICE
No copying or reproduction of this document, in part or in whole, is permitted without the consent of LAPIS
Semiconductor Co., Ltd.
The content specified herein is subject to change for improvement without notice.
The content specified herein is for the purpose of introducing LAPIS Semiconductor's products (hereinafter
"Products"). If you wish to use any such Product, please be sure to refer to the specifications, which can be obtained
from LAPIS Semiconductor upon request.
Examples of application circuits, circuit constants and any other information contained herein illustrate the standard
usage and operations of the Products. The peripheral conditions must be taken into account when designing circuits
for mass production.
Great care was taken in ensuring the accuracy of the information specified in this document. However, should you
incur any damage arising from any inaccuracy or misprint of such information, LAPIS Semiconductor shall bear no
responsibility for such damage.
The technical information specified herein is intended only to show the typical functions of and examples of
application circuits for the Products. LAPIS Semiconductor does not grant you, explicitly or implicitly, any license to
use or exercise intellectual property or other rights held by LAPIS Semiconductor and other parties. LAPIS
Semiconductor shall bear no responsibility whatsoever for any dispute arising from the use of such technical
information.
The Products specified in this document are intended to be used with general-use electronic equipment or devices
(such as audio visual equipment, office-automation equipment, communication devices, electronic appliances and
amusement devices).
The Products specified in this document are not designed to be radiation tolerant.
While LAPIS Semiconductor always makes efforts to enhance the quality and reliability of its Products, a Product
may fail or malfunction for a variety of reasons.
Please be sure to implement in your equipment using the Products safety measures to guard against the possibility
of physical injury, fire or any other damage caused in the event of the failure of any Product, such as derating,
redundancy, fire control and fail-safe designs. LAPIS Semiconductor shall bear no responsibility whatsoever for your
use of any Product outside of the prescribed scope or not in accordance with the instruction manual.
The Products are not designed or manufactured to be used with any equipment, device or system which requires an
extremely high level of reliability the failure or malfunction of which may result in a direct threat to human life or
create a risk of human injury (such as a medical instrument, transportation equipment, aerospace machinery,
nuclear-reactor controller, fuel-controller or other safety device). LAPIS Semiconductor shall bear no responsibility in
any way for use of any of the Products for the above special purposes. If a Product is intended to be used for any
such special purpose, please contact a ROHM sales representative before purchasing.
If you intend to export or ship overseas any Product or technology specified herein that may be controlled under the
Foreign Exchange and the Foreign Trade Law, you will be required to obtain a license or permit under the Law.
Copyright
2008 - 2011 LAPIS Semiconductor Co., Ltd.
ML610Q482ReferenceBoard User’s Manual
Preface
This manualdescribes the ML610Q482 Reference Board.
The following manuals are also available. Read them as necessary.
■ ML610Q482 User’s Manual
Description on the ML610Q482
■ uEASE User’s Manual
Description on the on-chip debug tool uEASE.
ML610Q482ReferenceBoard User’s Manual
1.Overview
1.1 Features
ML610Q482ReferenceBoard is a board for evaluating the function of ML610Q482.
This board can connect the pin of ML610Q482 with a user application system, it can perform the check
of a system of operation easily.
By using the board with "on-chip debug emulator" (hereinafter referred to "uEASE") not only Software debugging
but also writing Flash ROM in the devices are capable.
The hardware specification of this board is shown below.
Embedded
microcontroller
Embedded parts
・ U1: ML610Q482
(The part name is labeled on the solder side of the board.)
・ XT, C2, C3: 32.768KHz resonator and capacitors
・ PWR: Jumper for input power supply switch ( 3pin pin-header and short pin )
・ CNUE: Connector for uEASE ( 14pin connector )
・ C1, C6-C9: Capacitors for power supply and LCD bias generation circuit
Pads for mounting
・ CNU1 to CNU4: Pads for peripheral board connectors ( 34pin x 4、2.54mm pitch )
・ IN0, CS0, RCT0, RS0, RT0, CVR0, RT1, RS1, CS1, IN1, CVR1:
Pads for RC oscillation type ADC parts
・ SP1 to SP13: Pads for opening or short ( 1608 type )
・ X2, C4, C5: Pads for mounting high-speed clock oscillation circuit parts
Power supply pads
・ DVDD, GND
Monitor pads
・ RCM: RC oscillation monitor
Operating voltage
・ +1.1V to +3.6V
Board size
・ 71.12 x 60.96 mm
This board is made on the assumption that it is used mounting in the user application board.
There is a possibility of short the circuit when using it on electroconductive so that the board may have the pattern
on the solder side.
Therefore, please use the board on nonconductivity or put the protection parts on the solder side if necessary.
ML610Q482ReferenceBoard User’s Manual
1.2 PCB outline drawing
CNUE
CNU3
a. PWR
CNU4
b. RC_ADC0
e. High-speed clock
XT
U1
d. Analog Comparator
CNU2
CNU1
c. RC_ADC1
Fig.1 PCB outline drawing
ML610Q482ReferenceBoard User’s Manual
2. Function
2.1 PWR Jumper ( a. PWR )
This is a jumper which input power supply.
When supplying from uEASE, PWR jumper is set to the uE side.
The ability to supply power of the uEASE is +3.3V/100mA.
When supplying from CNU4_1pin and CNU4_2pin, PWR jumper is set to the USR side.
PWR
CNUE
uE
13pin
VDD
1,2pin
USR
CNU4
Fig.2 The connection of
PWR jumper
【Note】
Notes when the PWR jumper is set to USR side and the uEASE is connected.
Turn on the power supply of the peripheral board after starting the uEASE.
Moreover, Stop the uEASE after turning off the power supply of the peripheral board.
ML610Q482
ML610Q482ReferenceBoard User’s Manual
2.2 When you use RC_ADC0 ( b. RC_ADC0 )
(a) Please cut each short pattern of SP1, SP2, SP3, SP4 and SP5 that is on the back side of this board.
If each short pattern is not cut, the RC-ADC0 converter may not have accurate conversion result under the
influence of the noise. Please be sure the cut each short pattern.
(b) Please mount parts on the each pad of the IN0, CS0, RCT0, RS0, RT0 and CVR0 pads.
Refer to ML610Q482 User’s Manual for the parts to mount.
The example of processing is shown below.
Jumper
752
RCT0
203
CS0
RS0
Thermistor
CVR0
Cut Pattern
SP1-5
Fig.3 The example of processing of RC_ADC0
ML610Q482ReferenceBoard User’s Manual
2.3
When you use RC_ADC1 ( c. RC_ADC1 )
(a) Please cut each short pattern of SP9, SP8, SP7 and SP6 that is on the back side of this board.
If each short pattern is not cut, the RC-ADC1 converter may not have accurate conversion result under the
influence of the noise. Please be sure the cut each short pattern.
(b) Please mount parts on the each pad of the IN1, CS1, RS1, RT1 and CVR1 pads.
Refer to ML610Q482 User’s Manual for the parts to mount.
The example of processing is shown below.
RS1
203
Thermistor
CS1
Jumper
CVR1
Cut Pattern
SP6-9
Fig.4 The example of processing of RC_ADC1
ML610Q482ReferenceBoard User’s Manual
2.4 When you use Analog Comparator ( d. Analog Comparator )
CMPP is wired with VDD through SP12. Please cut the short pattern of the SP12 when you use CMPP
CMPM is wired with VDD through SP13. Please cut the short pattern of the SP13 when you use CMPM
If each short pattern is not cut, the power supply might be damaged with the short pattern.
The example of processing is shown below.
SP12
Cut Pattern
SP13
Cut Pattern
Fig.5 The example of processing of SP12 and SP13
ML610Q482ReferenceBoard User’s Manual
2.5 When you use the high-speed clock generation circuit ( e. High-speed clock )
Please mount parts on the each pad of the X2, C4 and C5 pads.
Please cut each short pattern of SP10 and SP11 if you need.
The example of processing of the high-speed clock generation circuit is shown below.
SP10
Cut Pattern
Cut Pattern
SP11
Fig.6 The example of use the high-speed clock generation circuit
ML610Q482ReferenceBoard User’s Manual
3. User Interface
3.1 The user interface of ML610Q482ReferenceBoard
Table1 shows the user interface of reference board which mounted ML610Q482.
Pin
1
2
CNU1
P03
Table 1 CNU1-4 of ML610Q482ReferenceBoard
CNU2
CNU3
PA0
N.C
CNU4
VDD
P02
PA1
N.C
VDD
3
P01
PA2
N.C
N.C
4
5
P00
NMI
PA3
PA4
N.C
N.C
N.C
N.C
6
P20
PA5
N.C
N.C
7
P21
PA6
N.C
N.C
8
P22
PA7
N.C
N.C
9
P40
N.C
N.C
N.C
10
P41
N.C
N.C
N.C
11
N.C
N.C
N.C
N.C
12
P42
N.C
N.C
N.C
13
P43
N.C
N.C
N.C
14
P44
N.C
N.C
N.C
15
P45
N.C
N.C
N.C
16
P46
N.C
N.C
N.C
17
P47
N.C
N.C
N.C
18
P30
N.C
N.C
N.C
19
P31
N.C
N.C
N.C
20
P32
N.C
N.C
N.C
21
P33
N.C
N.C
N.C
22
P34
N.C
N.C
N.C
23
P35
N.C
N.C
N.C
24
N.C
N.C
N.C
N.C
25
N.C
N.C
N.C
N.C
26
N.C
N.C
N.C
N.C
27
CMPP
N.C
N.C
28
CMPM
N.C
N.C
N.C
N.C
29
N.C
N.C
N.C
N.C
30
P24
N.C
N.C
31
P10
N.C
N.C
N.C
32
P11
N.C
VSS
N.C
VSS
RESET_N
33
VSS
VSS
34
VSS
VSS
VSS
VSS
N.C
ML610Q482ReferenceBoard User’s Manual
4. Schematics and PCB dimensional drawing
The this board schematics and the demensional drawing are shown as follows.
A
CVR0
GND
VDDL
IN
P00
P01
P02
IN
P03
IN
P24
OUT
P40
P41
I/O
P42
P43
I/O
IN
IN
I/O
I/O
2/2A
46
GND
2
GND
1
P43
1 PP7
2
RT1
1
2
0 SP6
1 PP8
2
RS1
1
2
0 SP7
1 PP9
2
CS1
1
2
0 SP8
1 PP10 2
IN1
1
2
0 SP9
1 PP11 2
CVR1
12
P42
11
P41
10
P40
9
P24
TH3
2/2A
P46 15
8
TH2
P47 16
P44 13
VSS_7
1
2/3A
P45 14
7
X2
PA1
PA0
2/1B
25
PA3
PA4
PA5
PA6
PA2
2/1B
PA1
26
2/1B
27
PA2
2/1B
28
PA3
2/1B
29
PA4
2/1B
PA7
2/1B
2/1B
31
30
PA5
PA0
TEST 17
48 XT1
P03
2/1A
IN
NMI
IN
RESET_N
IN
TEST
I/O
P47
I/O
P46
I/O
P45
I/O
P44
2
*1
2/1A
*1
2/1A
*1
2/1A
*1
3
GND
2
1
2
*1 0 SP13
2/1A
2/1A
2/1A
2/1A
2/2A
2/1A
2/1A
2/1A
2/1A
LAPIS Semiconductor Co., Ltd.
TITLE
4
ML610Q482 Reference Board
APPLICATION
*1: Unmounted
DRAWN By
A
P10
20
47 XT0
6
C1
IN
*1
2/3A,2/2C
U1
VDDX
5 P02
2
P11
2
C4
1
RESET_N 18
VDDL
IN
*1
VPP
NMI 19
P11 2
1
2
*1 0 SP12
P21
CMPM
VDD_43
21
*1
GND
DVDD
IN
ML610Q482
TQFP48
2/2A
1
C5
1
32.768KHz
*1
CMPP
PA6
VPP_20
1
GND
C2
PA7 32
41 P33
P01
X1
XTAL
2/2A
P20
VSS_21
4
GND
GND
0.1UF
*1
33
40 P32
45 VSS_45
1
C3
VSS_33
P10/OSC0 22
44
3
P21
39 P34
43
2/2A
1
2 *1
0 SP11
24
P11/OSC1 23
P00
I/O
2
VDD_24
38 P31
42 P35
2/2A
1
2 *1
0 SP10
DVDD
GND
RT0
2
2/1A
2/1A
36
P22
37 P30
3
TH1
1
P35
2
1 PP6
RCM
RS0
CMPP
*1
2
34
1
2
0 SP5
1 PP5
*1
2/2A
I/O
DVDD
P20
1
2
0 SP4
1 PP4
2/2A
I/O
P22
RCT0
2/1A
2
P21 35
1 PP3
I/O
1
2
0 SP3
I/O
*1
2/2A
I/O
GND
I/O
CS0
I/O
2
I/O
1 PP2
I/O
*1
1
2
0 SP2
IN0
I/O
P33
I/O
2
I/O
P32
1 PP1
I/O
P34
1
2
0 SP1
I/O
P31
*1
2/2A
I/O
1
D
2/2A
I/O
2 CMPM
P30
C
B
B
C
4
ML610Q482
DWG NO
QTU-11603
SHEET
1 of 2
D
REV
1.0
A
C
B
*1
CNU1
HIF3FC-34DA-2_54DSA
1
P03
P02
P01
P00
NMI
P20
P21
P22
P40
P41
OUT
OUT
OUT
OUT
OUT
IN
IN
IN
I/O
I/O
P42
P43
P44
P45
P46
P47
P30
P31
P32
P33
P34
P35
I/O
I/O
I/O
I/O
I/O
I/O
I/O
I/O
CMPP
CMPM
P24
P10
P11
2
I/O
I/O
I/O
I/O
IN
IN
IN
OUT
OUT
1/4B
1/4B
1/3B
1/3B
1/2D
1/1C
1/1C
1/1B
1/4B
1/4B
(NC)
1/4B
1/4B
1/3D
1/3D
1/2D
1/2D
1/1A
1/1A
1/1A
1/2A
1/1A
1/2B
(NC)
(NC)
(NC)
1/3B
1/3B
(NC)
1/4B
1/1D
1/1D
D
*1
CNU2
HIF3FC-34DA-2_54DSA
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
PA0
PA1
PA2
PA3
PA4
PA5
PA6
PA7
1/1C
1/1C
1/1C
1/1C
1/1C
1/1C
1/1C
1/1C
I/O
I/O
I/O
I/O
I/O
I/O
I/O
I/O
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
GND
*1
CNU3
HIF3FC-34DA-2_54DSA
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
RESET_N
GND
1/2D,2/3A
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
1
2
GND
*1
CNU4
HIF3FC-34DA-2_54DSA
PWR
J1
GND
OUT
TEST
2
RESET_N
1UF C9
OUT
1
1/2D
2
USR
GND
GND
0.1UF C8
1UF C7
GND
1 2
1 2
1UF C6
uE
1 2
UVDD_O
DVDD
1
VDDL
1/2D,2/2C
TH5
SDATA
3
DVDD
VDDL
A2-3PA-2_54DSA
1
3
VPP
SCLK
1
2
3
4
5
6
7
8
9
10
11
12
13
14
VPP
1
VTref
DVDD
TH4
CNUE
HIF3FC-14PA-2_54DSA
GND
GND
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
(NC)
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
3
GND 340
F10
LAPIS Semiconductor Co., Ltd.
*1: Unmounted
TITLE
4
ML610Q482 Reference Board
APPLICATION
ML610Q482
DWG NO
DRAWN By
A
B
C
QTU-11603
SHEET
2 of 2
D
REV
1.0
4
60.96
2.54
1
2.54
2
34
33
1
2
CN_uE
2 1
uE
14 13
CNU3
PWR
15.24
34 33
10.16
CNU2
10.16
58.42
60.96
33 34
CNU1
1
2.54
2
2
1
33
34
CNU4
55.88
15.24
68.58
71.12
USR
2.54
ML610Q4xx Reference Board TOP_VIEW
LAPIS Semiconductor Co.,Ltd.
ML610Q4xx Reference Board
Dimensional drawing