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User’s Manual
M38C89T-ADF
User’s Manual
Temporary Target Board for M38C89RLFS
Rev.1.00 2003.09
* IC51-1444-1354-18 is a product of Yamaichi Electronics Co., Ltd.
• Renesas Technology Corporation and Renesas Solutions Corporation put the maximum effort into making semiconductor products better
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measures such as (i) placement of substitutive, auxiliary circuits, (ii) use of nonflammable material or (iii) prevention against any
malfunction or mishap.
• These materials are intended as a reference to assist our customers in the selection of the Renesas Technology product best suited to
the customer's application; they do not convey any license under any intellectual property rights, or any other rights, belonging to Renesas
Technology Corporation, Renesas Solutions Corporation or a third party.
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third-party's rights, originating in the use of any product data, diagrams, charts, programs, algorithms, or circuit application examples
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Keep safety first in your circuit designs!
Notes regarding these materials
• This product is a development supporting unit for use in your program development and evaluation stages. In mass-producing your
program you have finished developing, be sure to make a judgment on your own risk that it can be put to practical use by performing
integration test, evaluation, or some experiment else.
• In no event shall Renesas Solutions Corporation be liable for any consequence arising from the use of this product.
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For inquiries about the contents of this document or product, fill in the text file the installer of the emulator debugger generates in the
following directory and email to your local distributor.
* If you find any item missing or faulty, or any suggestion, contact your local distributor.
The M38C89T-ADF is a temporary target board used to develop software with a PC4701 emulator
system. It supplies to the M38C89RLFS MCU the minimum required signals needed to operate the
emulator MCU, including power supply voltage, clock signals and reset signals. Use it when the
target system is not ready. A block diagram of the M38C89T-ADF is shown in Figure 2.1.
IC1 has a pattern for mounting a socket for an M38C89MF-xxxFP/M38C89EFFP. This makes it
possible for this board to debug programs using an emulator MCU in IC2 or execute programs using
an M38C89MF-xxxFP/M38C89EFFP. A socket for M38C89MF-xxxFP/M38C89EFFP and parts
for an LCD bias circuitry are not mounted. Mount them as necessary.
Expansion boards can be installed in the through-holes of connectors J2, J3 and J4. Spacing between
connectors is given in Figure 2.1. Keep connector location in mind when making expansion boards.
Use 2.54-mm-pitch connectors. For pin array, see Table 8.1.
Quantity
1
1
Figure 2.1 Block diagram and pin layout
( 4 / 14 )
Unit: mm
3. Specifications
Table 3.1 lists specifications of the M38C89T-ADF.
Table 3.1 Specifications of the M38C89T-ADF
Applicable MCUs
Clock
VccM
VccU
Vss
RESET
External dimensionsWidth
Depth
Others
IC1: 38C8 Group (M38C89MF-xxxFP/M38C89EFFP)
IC2: M38C89RLFS (Emulator MCU)
Main clock: 4.0MHz oscillator mounted (for IC2 only)
(RC oscillation: approx. 2 MHz*1)
Sub clock: 32.768 kHz mounted (for IC2 only)
Power supply for IC1 and IC2 (supplied separately*2)
Power supply for universal part (supplied separately*2)
Common signal ground (supplied separately*2)
• Reset circuit mounted (power-on reset and reset switch)
• Connects the reset output of an emulation pod
220 mm
160 mm
• Universal part prepared
• Through hole for 2.54-mm-pitch connector prepared
• RC oscillator circuit can be selected as a main clock oscillator*
• Bias circuit for LCD prepared (parts not mounted)
*1 RC oscillation frequency will vary according to MCU power supply voltage, resistance,
temperature, etc. That listed herein was measured for reference purposes only and is not
guaranteed.
*2 Power cannot be supplied from the emulation pod for PC4701 (e.g. M38000TL2-FPD). A
separate power supply is needed.
*3 Jumpers must be changed to enable RC oscillation. For more information, see "5.3 How to Use
the RC Oscillator Circuit" (page 10).
3
( 5 / 14 )
4. Setting Up
This chapter describes how to set up the M38C89T-ADF.
With this product, the debugging with an emulator MCU and M38C89MF-xxxFP/M38C89EFFP is
possible. Use the M38C89T-ADF mounting one of these MCUs.
To use an emulator MCU:
Read "4.1 Connecting to the Emulator" (this page)
To use the M38C89MF-xxxFP/M38C89EFFP:
Read "4.2 Mounting the M38C89MF-xxxFP/M38C89EFFP" (page 8)
Note on Setting Up:
• Always shut OFF power before connecting the M38C89T-ADF.
• Do not mount the IC1 and IC2 at the same time. Mount either of them only.
4.1 Connecting to the Emulator
(1) Mounting the emulator MCU
CAUTION
Mount the emulator MCU in the IC2 socket on the M38C89T-ADF.
Raise the socket's clamp and insert the emulator MCU flush against the socket's left and bottom
sides, placing the "•" marking on the emulator MCU at the right bottom corner. Then, lower the
clamp to lock the emulator MCU in place.
If your emulator MCU does not have the "•" marking on it, use one pin (back of the MCU) for
positioning as shown below.
MCUs have 20 x 20 pins to the socket's 21 x 21 holes. Since there are more socket holes to MCU
pins, insert the MCU flush against the socket's left and bottom sides. The socket is taped to prevent
improper MCU mounting. Do not peel off the tape.
Figure 4.1 Mounting the emulator MCU on the M38C89T-ADF
(2) Connecting the emulation probe
Insert the connector on the tip of the emulation pod probe to the J1 of this board. For the direction,
see Figure 4.2.
(3) Setting the emulation pod (M38000TL2-FPD)
As the applicable emulator MCU (M38C89RLFS) for this product is RLFS type, set the switch
on the side of the emulation pod to RLSS/RLFS side.
( 6 / 14 )
(4) Connecting the control signal lines
Connect the three lines of the emulation pod to the test pins.
VCC cable (yellow) ........... VccM (test pin with a yellow bead)
GND cable (black) ............. GND (test pin with a black bead)
Reset cable (white)............. RESET (test pin with a white bead)
Figure 4.2 Connecting the M38C89T-ADF
(5) Setting jumpers
Set the jumpers (JP3 to JP7) according to your application. Table 4.1 describes the functions of
the jumpers for the emulator MCU (IC2).
Table 4.1 Functions of the jumpers (JP) of the M38C89T-ADF (1/2)
Name
JP3
JP4
JP5
JP6
JP7
Applicable signal
Vss (NC)-VLIN
OSCSEL
XIN
XOUT
VccM-VccU
Function
Remain Open.
Switches the OSCSEL pin
• Short-circuit: OSCSEL = "L"
Selects the oscillation by ceramic resonator.
• Open: OSCSEL = "H"
Selects the RC oscillation.
R10 side: RC oscillation, X2 side: Oscillation by X2
For short-circuit of VccM-VccU
Factory-setting
Open
Short-circuit
X2 side
Open
(6) Connecting a power supply
Connect a power supply (not included) to the board's VccM power supply test (large) pin and
GND. Power is supplied to Vcc of IC1 and IC2.
To use the VccU universal power supply, connect a power supply (not included) to the VccU
power supply test pin.
VccM and VccU are not connected on the board. They can be connected by short-circuiting
jumper JP7.
( 7 / 14 )
4.2 Mounting the M38C89MF-xxxFP/M38C89EFFP
(1) Mounting parts
Mount the socket for IC1 and the oscillator circuit part. Table 4.2 lists the applicable parts for this
board.
Table 4.2 Socket for the M38C89MF-xxxFP/M38C89EFFP and applicable oscillator circuit
No.
Part No.
1
IC1
2
X1
3
XC1
4
C5, C6
5
R2
6
R3
(2) Mounting the M38C89MF-xxxFP/M38C89EFFP
To mount the M38C89MF-xxxFP/M38C89EFFP, remove the emulator MCU and install the
M38C89MF-xxxFP/M38C89EFFP in the IC1 socket. Align pin No. 1 with the printed mark.
(3) Setting jumpers (JP)
Set the jumpers (J1 to J4 and J7) according to your applications. Table 4.3 describes the functions
of the jumpers.
Type name
IC51-1444-1354-18
CST4.00MGW040
SP-T2B 32.768 kHz
RPE132CH100J50
Table 4.3 Functions of the jumpers (JP) of the M38C89T-ADF (2/2)
Name
JP1
JP2
JP3
JP4
JP7
Applicable signal
XIN
XOUT
Vss (NC)-VLIN
OSCSEL
VccM-VccU
Function
R1 side: RC oscillation, X1 side: Oscillation by X1
Remain Open.
Switches the OSCSEL pin
• Short-circuit: OSCSEL = "L"
Selects the oscillation by ceramic resonator
• Open: OSCSEL = "H"
Selects the RC oscillation
For short-circuit of VccM-VccU
Factory-setting
Open
Open
Short-circuit
Open
(4) Connecting a power supply
Connect a power supply (not included) to the board's VccM power supply test (large) pin and
GND. Power is supplied to Vcc of IC1 and IC2.
To use the VccU universal power supply, connect a power supply (not included) to the VccU
power supply test pin.
VccM and VccU are not connected on the board. They can be connected by short-circuiting
jumper JP7.
( 8 / 14 )
5. Oscillator Circuit
5.1 Main Clock Generator Circuit
The main clock of 4.0 MHz is mounted (X2 only). Figure 5.1 shows the main clock generator circuit.
Figure 5.1 Main clock generator circuit
5.2 Sub Clock Generator Circuit
The sub clock generator circuit is shown in Figure 5.2. The sub clock oscillates at 32.768 kHz.
Capacitors C19 and C20 have a capacitance of 10 pF, while resistor R11 has a resistance of 0 Ω and
resistor R12 a resistance of 6.8 MΩ. Components are not mounted on the IC1 side.
If MCU power supply voltage is low, it will take time for sub clock oscillation to stabilize. Be aware
of this when changing from the main clock to the sub clock.
Figure 5.2 Sub clock generator circuit
( 9 / 14 )
5.3 How to Use the RC Oscillator Circuit
The clock selection circuit is shown in Figure 5.3. Oscillation can be switched between RC oscillation
and the oscillator by changing the jumpers. The following procedure explains how to switch to RC
oscillation.
(1) Cut jumper JP4. (When JP4 is cut, the OSCSEL pin becomes high.)
(2) To enable RC oscillation in IC1, set resistor R1 (see Table 4.3) in jumpers JP1 and JP2
described in Figure 5.1. To enable RC oscillation in IC2, set resistor R10 (see Table 4.1) in
jumpers JP5 and JP6 described in Figure 5.1.
Figure 5.3 Clock selection circuit
6. Reset Circuit
Figure 6.1 shows the reset circuit. The reset circuit is common for IC1 and IC2.
Figure 6.1 Reset circuit
7. LCD Bias Circuit
Figure 7.1 shows the LCD bias circuit. The parts are not mounted.