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  9. Renesas RL78/I1D User manual

Renesas RL78/I1D User manual

RL78/I1D ターゲット・ボード
RTE5117GC0TGB00000R ユーザーズ・マニュアル
ユーザーズ・マニュアル
R20UT2893XJ0101
Rev1.012014.10.23
本製品は、ルネサス エレクトロニクス製のプログラミング機能付きオンチップ・デバッグ・エミュレータ E1 を使用して、マイコンの動作を試
すためのターゲット・ボードです。
①RL78/I1D ターゲット・ボード(RTE5117GC0TGB00000R)の特徴
●RL78/I1D(R5F117GC)搭載
●20MHz と32.768kHz の発振子を搭載
●ユニバーサル・エリア(2.54mm ピッチ)を搭載
●フラッシュ・メモリ・プログラミングおよびオンチップ・デバッグに対応(TOOL0 端子使用)
●マイコンの端子を周辺ボード・コネクタに配置した高拡張性
●アナログ入力端子へ接続用の 2.54mm ピッチスルーホールと、1608 サイズの実装パッドを用意
②ハードウエア仕様
CPU R5F117GC メイン・クロック動作周波数 20MHz(ボード上の発振子を使う場合)
サブ・クロック動作周波数 32.768kHz
搭載部品
CN1,CN2: 周辺ボードコネクタ(2.54mm ピッチ) 15pin ソケット x2 (パッドのみ)
CN3: 14pin コネクタ(E1 接続用)
Power LED: 赤x1(LED3)
評価用 LED: 黄x2(LED1 はP60,LED2 はP61 へ接続)
評価用 SW: SW1(INTP0 へ接続)
メイン・クロック(OSC1): 20MHz 発振子(X1,X2 へ接続)
サブ・クロック(OSC2): 32.768kHz 発振子(XT1,XT2 へ接続)
動作電圧 1.6V~3.6V
③寸法、部品配置など
基板上のパターン について
:パターンをカットすることで、その回路はオープンとなります。
再度接続させたい場合は半田ショートしてください。
P60,P61 を使用する場合は LED の左のショートパッドをパターンカットしてください。
回路図のパッドの表示 オープン:ショート:
④使用上の注意
・本製品に関してのサポートはお受けしておりません。初期不良の場合に限り、交換いたします。
・AVREFP,AVREFM 端子と ANI0,ANI1 端子の切り替え方法
AVREFP,AVREFM JP1,JP2 JP3,JP4
AVREFP,AVREFM (デフォルト) ショート ショート オープン
ANI0,ANI1 オープン オープン ショート
R20UT2893XJ0101 Rev.1.01Page 1 of 3
2014.10.23
RL78/I1D Target board
RTE5117GC0TGB00000R User’s Manual
User’s Manual
R20UT2893XJ0101
Rev1.012014.10.23
The RTE5117GC0TGB00000R is a target board used for evaluating microcontroller operations, using the E1, the Renesas
Electronics on-chip debug emulator with programming function.
(1) RL78/I1D target board (RTE5117GC0TGB00000R) features
●Incorporates RL78/I1D (R5F117GC)
●A 20MHz resonator and a 32.768kHz resonator are mounted
●Equipped with universal area (2.54 mm pitch)
●Supports both flash memory programming and on-chip debugging (using TOOL0 pin)
●Highly extendable; peripheral board connectors are equipped with microcontroller pins
●A 2.54mm pitch through holes for connection and a mounting pad of 1608 size are prepared for to an analog input terminal
(2) hardware specifications
CPU
R5F117GC
Main clock operating frequency
20 MHz (when use resonator mounted on board)
Sub clock operating frequency
32.768kHz
Embedded parts
CN1,CN2: Peripheral board connectors (2.54 mm pitch), 15-pin socket ×2 (pad only)
CN3: 14-pin connector (for E1 connection)
Power LED: Red ×1 (LED3)
Test LED: Yellow ×2 (LED1 connected to P60, LED2 connected to P61)
Test SW: SW1 (connected to INTP0)
Main clock (OSC1): 20 MHz resonator(connected to X1 and X2)
Sub clock (OSC2):
32.768 kHz resonator(connected to XT1 and XT2)
Operating voltage
1.6 to 3.6 V
(3) Dimensions and parts layout
Pattern on the board:
Splitting this wiring leaves open the relevant circuit ( ).
To reconnect the circuit, short the circuit by soldering ( ).
When using P60 and P61, cut off the short pad on the left side of LED.
Showing of the pad on circuit diagram. open: short:
(4) Notes on use
●Renesas Electronics will not provide any support for this board, but the board can be exchanged with a new product only when
it has an initial failure.
●Change method of AVREFP, AVREFM terminal and the ANI0, ANI1 terminal.
AVREFP,AVREFM
JP1,JP2
JP3,JP4
AVREFP,AVREFM (Default)
short
short
open
ANI0,ANI1
open
open
short
R20UT2893XJ0101 Rev.1.01Page 1 of 3
2014.10.23
RL78/I1D ターゲット・ボード
RTE5117GC0TGB00000R ユーザーズ・マニュアル
ユーザーズ・マニュアル
R20UT2893XJ0101
Rev1.012014.10.23
○アナログ入力端子にコンデンサを実装する場合
各アナログ入力信号には 10uF と0.1uF のコンデンサが付いています。
リードタイプのコンデンサの場合にはスルーホール(C51-C64)、チップタイプのコンデンサの場合には実装パッド(C37-C50)を
各アナログ端子(ANI0-ANI13)に1箇所ずつ用意していますので、そちらに実装してください。
<Top View> <Bottom View>
アナログ入力用コンデンサ実装箇所の一覧表
アナログ入力端子 スルーホール 実装パッド
ANI0 C51 C37
ANI1 C52 C38
ANI2 C53 C39
ANI3 C54 C40
ANI4 C55 C41
ANI5 C56 C42
ANI6 C57 C43
ANI7 C58 C44
ANI8 C59 C45
ANI9 C60 C46
ANI10 C61 C47
ANI11 C62 C48
ANI12 C63 C49
ANI13 C64 C50
注意. ANI0-ANI13 端子を兼用しているデジタル出力端子として使用する場合、その端子に接続されている 10uF と0.1uF のコンデンサ
を取り外してください。コンデンサに蓄えられた電荷によって端子が破壊する場合があります。
R20UT2893XJ0101 Rev.1.01Page 2 of 3
2014.10.23
RL78/I1D Target board
RTE5117GC0TGB00000R User’s Manual
User’s Manual
R20UT2893XJ0101
Rev1.012014.10.23
- When a capacitor is mounted in an analog input terminal
Each analog input signal has the capacitor of 10uF and 0.1uF.
In the case of a lead type capacitor, use the through holes (C51-C64).
In the case of a chip type capacitor, use the mounting pads (C37-C50).
Since it is preparing for each analog terminal (ANI0-ANI13), please mount there.
<Top View> <Bottom View>
The table of the capacitor mounting part for analog inputs
Analog input terminal through holes mounting pads
ANI0
C51
C37
ANI1
C52
C38
ANI2
C53
C39
ANI3
C54
C40
ANI4
C55
C41
ANI5
C56
C42
ANI6
C57
C43
ANI7
C58
C44
ANI8
C59
C45
ANI9
C60
C46
ANI10
C61
C47
ANI11
C62
C48
ANI12
C63
C49
ANI13
C64
C50
Caution. When using ANI0 to ANI13 as shared digital output, please remove the connected capacitors of 10uF and 0.1uF on that pin. It
may cause pin destruction by capacitor electrical charge.
R20UT2893XJ0101 Rev.1.01Page 2 of 3
2014.10.23
5
5
4
4
3
3
2
2
1
1
D D
C C
B B
A A
+
-
Near the IC1
/16V/10V
P54
P53
P52
P51
P50
P57
P60
P63
P31
P123
P30
P00
XT1
X2
P124
X1P121
P122
P56
P33
P32
RESET
X1
X2
XT2
P55
P01
P130
P40
P03
P04
P02
P31 P32
P33
P17
P23
P21 P22
P20
P25 P24
P10 P11P12 P13P14 P15P16
P130
P40
P03 P04
P02
T_RESETTOOL0
RESET
XT1
XT2
P61
P62
TOOL0
P17
P16
P15
P12
P13
P14
P20
P21
P22
P23
P24
P25
P11
P10
P137
P123
P00
P60
P137
P124T_RESET
P121P122
P01
P52 P53P54
P63
P61 P57
P50 P51
P55P56
P30
P62
VDD
VDD
VDD
VDD
VDD
VDD
VDD
AVDD
VDD
VDD
VDDVDD VDD
AVDD
AVDD
AVDD
VDD
AVDD AVDD
C64 xxF
1 2
C47 xxF
1 2
X1
P121
AVREFM
C62 xxF
1 2
C35 10uF
1 2
TP3
LC-22-G-RED
1
C13 0.1uF
1 2
LED1
SML-311YTx
AK
C19 0.1uF
1 2
C5
7pF
12
C43 xxF
1 2
C57 xxF
1 2
C24 10uF
1 2
RESET
LED2
SML-311YTx
AK
C27 10uF
1 2
CN1
FFC-30BMEP1
1
1
3
3
5
5
7
7
9
9
11
11
13
13
15
15
17
17
19
19
21
21
23
23
25
25
27
27
29
29
22
44
66
88
10 10
12 12
14 14
16 16
18 18
20 20
22 22
24 24
26 26
28 28
30 30
R1
750ohm
12
RL78/I1D
IC1
R5F117GC
P01/PCLBUZ1
1
P00
2
RESET
3
P124/XT2/EXCLKS
4
P123/XT1
5
P137/INTP0
6
P122/X2/EXCLK
7
P121/X1
8
REGC
9
VSS/EVSS
10
VDD/EVDD
11
P60
12
P61
13
P62
14
P63/SSI00
15
P57/(TI03/TO03)/INTP4/VCOUT1
16
P56/SCK00/SCL00/INTP3
17
P55/SI00/RxD0/SDA00/INTP2/TOOLRXD
18
P54/SO00/TxD0/INTP1/TOOLTXD
19
P53/KR2/SO01/VCOUT0
20
P52/KR1/SI01/SDA01/TI03/TO03
21
P51/KR0/SCK01/SCL01/TI02/TO02
22
P50/(TI00/TO01)/RTC1HZ
23
P30/(SCK00)/(SCL00)/TI00/TO01/IVREF0
24
P31/TI01/TO00/PCLBUZ0/IVREF1 25
P32/KR3/(TI01/TO00)/INTP6 26
P33/(TI02/TO02)/INTP5 27
P20/ANI13/IVCMP1/AMP3O 28
P21/ANI12/AMP3- 29
P22/ANI11/AMP3+ 30
P23/ANI10/AMP2O 31
P24/ANI9/AMP2- 32
P25/ANI8/AMP2+ 33
AVDD 34
AVSS 35
P17/ANI7/AMP1O 36
P16/ANI6/AMP1- 37
P15/ANI5/AMP1+ 38
P14/ANI4/IVCMP0/AMP0O 39
P13/ANI3/AMP0- 40
P12/ANI2/AMP0+ 41
P11/ANI1/AVREFM 42
P10/ANI0/AVREFP 43
P130 44
P40/TOOL0 45
P04/ANI18 46
P03/ANI17 47
P02/ANI16 48
C2
0.47uF
12
C41 xxF
1 2
C63 xxF
1 2
C46 xxF
1 2
C22 0.1uF
1 2
R3
750ohm
12
E1_VDD
P123
TOOL0
C61 xxF
1 2
C39 xxF
1 2
C15 0.1uF
1 2
CN3
TSM-107-01-L-DH-x
1
1
3
3
5
5
7
7
9
9
11
11
13
13
22
44
66
88
10 10
12 12
14 14
J1
1060x
1
2
C50 xxF
1 2
C42 xxF
1 2
C25 10uF
1 2
C10 0.1uF
1 2
C23 10uF
1 2
JP4
C9 0.1uF
1 2
OSC2
32.768KHz
1 2
C36 10uF
1 2
VDD
C20 0.1uF
1 2
TP4
LC-22-G-BLACK
1
C21 0.1uF
1 2
C56 xxF
1 2
XT2
C51 xxF
1 2
C16 0.1uF
1 2
R6
10Kohm
12
JP1
R5
1Kohm
12
C40 xxF
1 2
C45 xxF
1 2
X2
P61
AVREFP
C38 xxF
1 2
C29 10uF
1 2
C34 10uF
1 2
C18 0.1uF
1 2
C49 xxF
1 2
C1
0.1uF
12
R4
10Kohm
12
C14 0.1uF
1 2
C53 xxF
1 2
C8
10uF
12
C12 0.1uF
1 2
C4
10uF
12
C6
7pF
12
P122
C32 10uF
1 2
AVSS
C60 xxF
1 2
JP2
C55 xxF
1 2
C26 10uF
1 2
JP3
SW1
SKQMBBE010
1 2
CN2
FFC-30BMEP1
1
1
3
3
5
5
7
7
9
9
11
11
13
13
15
15
17
17
19
19
21
21
23
23
25
25
27
27
29
29
22
44
66
88
10 10
12 12
14 14
16 16
18 18
20 20
22 22
24 24
26 26
28 28
30 30
R2
750ohm
12
C3
0.1uF
12
C28 10uF
1 2
C31 10uF
1 2
AVDD
OSC1
20MHz
1 3
2
C48 xxF
1 2
C52 xxF
1 2
C30 10uF
1 2
C37 xxF
1 2
TP2
LC-22-G-BLACK
1
C44 xxF
1 2
P124
C11 0.1uF
1 2
C33 10uF
1 2
TP1
LC-22-G-RED
1
P137
LED3
SML-311UTx
AK
C59 xxF
1 2
C58 xxF
1 2
XT1
C17 0.1uF
1 2
C7
0.1uF
12
P60
R7
1Kohm
12
C54 xxF
1 2
R20UT2893XJ0101Rev1.01Page3of3

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