M68ICS08RK2 Freescale Semiconductor, M68ICS08RK2 Datasheet

no-image

M68ICS08RK2

Manufacturer Part Number
M68ICS08RK2
Description
SIM PROGRAM FOR 68HC908RK2
Manufacturer
Freescale Semiconductor
Type
Simulator/Programmerr
Datasheet

Specifications of M68ICS08RK2

Contents
Programmer, Power Supply, Assembler/Simulator/Debugger, Cable, Software and Documentation
For Use With/related Products
68HC908RK2
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
M68ICS08RKUM/D
REV. 1
M68ICS08RK
In-Circuit Simulator
User’s Manual

Related parts for M68ICS08RK2

M68ICS08RK2 Summary of contents

Page 1

M68ICS08RK In-Circuit Simulator M68ICS08RKUM/D REV. 1 User’s Manual ...

Page 2

User’s Manual Important Notice to Users While every effort has been made to ensure the accuracy of all information in this document, Motorola assumes no liability to any party for any loss or damage caused by errors or omissions or ...

Page 3

User’s Manual — M68ICS08RK In-Circuit Simulator Section 1. Introduction . . . . . . . . . . . . . . . . . . . . . . . . . . . 13 Section 2. Hardware ...

Page 4

List of Sections User’s Manual 4 M68ICS08RK In-Circuit Simulator — Rev. 1 List of Sections MOTOROLA ...

Page 5

User’s Manual — M68ICS08RK In-Circuit Simulator 1.1 1.2 1.3 1.3.1 1.3.2 1.4 1.5 1.6 1.7 1.8 2.1 2.2 2.3 2.3.1 2.3.1.1 2.3.1.2 2.3.1.3 2.3.1.4 2.3.1.5 2.3.2 2.3.2.1 2.3.2.2 M68ICS08RK In-Circuit Simulator — Rev. 1 MOTOROLA Section 1. Introduction Contents . ...

Page 6

Table of Contents 2.3.2.3 2.3.2.4 2.3.3 2.3.4 2.3.5 2.3.6 2.3.7 2.3.8 2.4 2.5 2.6 3.1 3.2 3.3 3.4 3.5 4.1 4.2 4.3 4.4 4.5 4.6 User’s Manual 6 Board Reset Selection Header (W3 ...

Page 7

A.1 A.2 A.3 A.4 A.5 A.6 A.6.1 A.6.2 A.6.3 A.6.4 Appendix B. Technical Reference and Troubleshooting B.1 B.2 B.3 B.4 B.5 B.6 B.7 M68ICS08RK In-Circuit Simulator — Rev. 1 MOTOROLA Appendix A. S-Record Information Contents . . . . . ...

Page 8

Table of Contents User’s Manual 8 M68ICS08RK In-Circuit Simulator — Rev. 1 Table of Contents MOTOROLA ...

Page 9

... B-1 M68ICS08RK In-Circuit Simulator — Rev. 1 MOTOROLA Title RKICS Board Layout . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 21 M68ICS08RK2 In-Circuit Simulator Block Diagram . . . . . . . . . . . . 22 ICS Functional Diagram . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 22 RKICS Power Source Selection Header . . . . . . . . . . . . . . . . . . . . . . . 25 MCU Bus Frequency Selection Header . . . . . . . . . . . . . . . . . . . . . . . 25 Board Reset Selection Header . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 26 Clock Source Selection Jumper Headers . . . . . . . . . . . . . . . . . . . . . . 26 J3 DIP Emulation Cable . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 27 J4 Jumper Header Voltage Ouput Options ...

Page 10

List of Figures User’s Manual 10 M68ICS08RK In-Circuit Simulator — Rev. 1 List of Figures MOTOROLA ...

Page 11

User’s Manual — M68ICS08RK In-Circuit Simulator Table 1-1 1-2 1-3 1-4 2-1 2-2 2-3 3-1 3-2 3-3 3-4 3-5 3-6 4-1 4-2 A-1 A-2 A-3 A-4 A-5 A-6 B-1 M68ICS08RK In-Circuit Simulator — Rev. 1 MOTOROLA Title M68ICS08RK Product Components ...

Page 12

List of Tables User’s Manual 12 M68ICS08RK In-Circuit Simulator — Rev. 1 List of Tables MOTOROLA ...

Page 13

User’s Manual — M68ICS08RK In-Circuit Simulator 1.1 Contents 1.2 1.3 1.3.1 1.3.2 1.4 1.5 1.6 1.7 1.8 1.2 Overview This section provides an overview of the Motorola M68ICS08RK in-circuit simulator (RKICS). The RKICS board, a 4-inch × 6-inch printed circuit ...

Page 14

Introduction The RKICS and the RKICS software form a complete editor, assembler, programmer, simulator, and limited real-time I/O (input/output) emulator for the MC68HC908RK2 MCUs. When the RKICS is connected to a host PC (personal computer) and target hardware, the actual ...

Page 15

... RKICS Components The complete RKICS system includes hardware, software, and documentation. Table 1-1 lists the RKICS product components. Part Number ICS08RK MC68HC908RK2 M68ICS08RK2 1.3.1 M68ICS08RK Hardware Table 1-2 lists the RKICS hardware components. Components M68ICS08RK In-Circuit Simulator — Rev. 1 MOTOROLA Table 1-1 ...

Page 16

Introduction 1.3.2 ICS Interface Software Windows-optimized software components are referred collectively to as the RKICS software (part number ICS08RK). The ICS08RK software package is a product of P&E Microcomputer Systems, Inc., and is included in the RKICS kit. Table 1-3 ...

Page 17

Hardware and Software Requirements The RKICS software requires this minimum hardware and software configuration: • • • M68ICS08RK In-Circuit Simulator — Rev. 1 MOTOROLA Limited real-time emulation and debugging with ICD08SZ, including: – Loading code ...

Page 18

Introduction 1.6 Specifications Table 1-4 summarizes the M68ICS08RK hardware specifications. Temperature: Operating Storage Relative humidity Power requirement 1.7 About This Manual The procedural instructions in this manual assume that the user is familiar with the Windows interface and selection procedures. ...

Page 19

User’s Manual — M68ICS08RK In-Circuit Simulator 2.1 Contents 2.2 2.3 2.3.1 2.3.1.1 2.3.1.2 2.3.1.3 2.3.1.4 2.3.1.5 2.3.2 2.3.2.1 2.3.2.2 2.3.2.3 2.3.2.4 2.3.3 2.3.4 2.3.5 2.3.6 2.3.7 2.3.8 2.4 2.5 2.6 M68ICS08RK In-Circuit Simulator — Rev. 1 MOTOROLA Section 2. Hardware ...

Page 20

... Configuring the In-Circuit Simulator Board The RKICS includes a single 4-inch × 6-inch printed circuit board (PCB) (M68ICS08RK2). Figure 2-1 shows a diagram of the RKICS board, Figure 2-2 shows a block diagram of the RKICS board, and Figure 2-3 is the functional block diagram. ...

Page 21

M68ICS08RK In-Circuit Simulator — Rev. 1 MOTOROLA Figure 2-1. RKICS Board Layout Hardware Installation Hardware Installation Configuring the In-Circuit Simulator Board User’s Manual 21 ...

Page 22

... DD HV DC-DC LOW-VOLTAGE VOLTAGE CONVERTER REGULATOR MODE SELECT PINS HIGH-VOLTAGE IRQ AND RESET AND RESET CONFIGURATION RST, IRQ, PB0, PB2, PB3 Figure 2-2. M68ICS08RK2 In-Circuit Simulator Block Diagram PC HOST User’s Manual 22 PA0 LEVEL OSC SHIFT RST MCU SOCKET MON08 ...

Page 23

RKICS Limitations This section describes system limitations of the RKICS. 2.3.1.1 Bus Frequency The RKICS communicates using the MON08 features. This forces the communication rate to f standard baud rates allowed by the host software. See 2.3.2.2 MCU Bus ...

Page 24

Hardware Installation Table 2-1. RKICS Jumper Header Description Jumper Type Header No jumper installed (factory default) — RKICS board power is disconnected W1 Jumper on pins 1 and 2 — Target power is supplied by the RKICS board. Only 1 ...

Page 25

RKICS Power Source Selection Header (W1) (For Target Cable Connection) Use W1 to select the power source for the RKICS and target system’s MCU and external circuitry (refer to Figure 2-4). To isolate the RKICS and target system power, ...

Page 26

Hardware Installation 2.3.2.3 Board Reset Selection Header (W3) The reset function of the RKICS is both an input and an output. The RKICS drives its RST pin low after encountering several different exception conditions. W3 lets you select whether the ...

Page 27

DIP Target Connector (J3) The RKICS includes an additional connector, J3, which allows a convenient connection to the target. Use the provided 20-pin ribbon cable to interconnect the RKICS to the target system via connector J3. Figure 2-8 shows ...

Page 28

Hardware Installation 2.3.4 Operating Voltage Selection Header (J4) and Adjustment Potentiometer (R39) To provide the RKICS with power input that matches the target environment, the RKICS includes a user-selectable voltage level shift. In the default setting (no jumper installed on ...

Page 29

M68ICS08RK In-Circuit Simulator — Rev. 1 MOTOROLA Configuring the In-Circuit Simulator Board J1 • • TGT-PTB0 1 2 • • Ground 3 4 • • PTB2 5 6 • • Ground 7 8 • • TGT-PTB2 9 10 • • ...

Page 30

Hardware Installation 2.3.6 MON08 Connector (J2) Use connector J2 (refer to Figure 2-11) and the provided MON08 cable to connect the RKICS board to the target system. Refer to Section 4. Using the MON08 Interface for detailed information for using ...

Page 31

Host Computer - RKICS Interconnection (P2) The host computer/RKICS interface is via the single system connector P2, which is a 9-pin, D-type, through-hole, female, right angle connector (Amp part number AMP-9726-A) mounted on the top side of the PCB. ...

Page 32

... Before beginning, locate these items: • • To prepare the RKICS for use with a host PC: 1. Install the MCU into the M68ICS08RK2 board. 2. Connect the board to the host PC. 3. Apply power to the board. 2.5 Installing the Software For instructions for installing the ICS08 software, refer to P&E Microcomputer Systems, Inc., M68ICS08 68HC08 In-Circuit Simulator Operator’ ...

Page 33

... Connecting to a Target System The two ways to connect the M68ICS08RK2 simulator board to a target system are: 1. Using the MCU on the board to break its processor signals out to the 2. Using the MON08 debug interface for communication with the target M68ICS08RK In-Circuit Simulator — Rev. 1 ...

Page 34

Hardware Installation User’s Manual 34 M68ICS08RK In-Circuit Simulator — Rev. 1 Hardware Installation MOTOROLA ...

Page 35

User’s Manual — M68ICS08RK In-Circuit Simulator 3.1 Contents 3.2 3.3 3.4 3.5 3.2 MCU Subsystem The MCU subsystem consists of the MC68HC908RK2 microcontroller, clock generation and selection, monitor mode control logic that places and holds the RKICS in monitor mode, ...

Page 36

... MCU operating voltage (2.0–3.3 volts). 3.4 RKICS Connector Signal Definitions The tables in this section describe the pin assignments for the connectors on the M68ICS08RK2 board. NOTE: The signal descriptions in the following tables are for quick reference only. The MC68HC908RK2 User's Manual, MC68HC908RK2/D, contains a complete description of the MC68HC908RK2 MCU signals. User’ ...

Page 37

Pin Schematic Mnemonic No. NET 1 PTB0/MCLK TGT-PTB0 2 PTA0 TGT-PTA0 3 V GND SS 4 PTA1/KBD1 PTA1 5 PTB1 PTB1 6 PTA2/KBD2 PTA2 7 V GND SS 8 PTA3/KBD3 PTA3 9 PTB2/TCH0 TG-PTB2 10 PTA4/KBD4 PTA4 11 V GND ...

Page 38

Support Information Table 3-1. Target Connector J1 (Continued) Pin Schematic Mnemonic No. NET 28 V TGT-VDD DD 29 None GND 30 None GND 31 None GND 32 None GND 33 None GND 34 None GND 35 None GND 36 None ...

Page 39

Table 3-2. MON08 Connector J2 Pin Assignments Pin Mnemonic No. 1 RST-OUT 2 GND 3 RST-IN 4 RST 5 TGT-IRQ 6 IRQ 7 TGT-PTA0 8 PTA0 9 TGT-PTB0 10 PTB0 11 TGT-PTB2 12 PTB2 13 TGT-PTB3 14 PTB3 15 NC ...

Page 40

Support Information Pin Schematic Mnemonic No. NET 1 PTA0 TGT-PTA0 2 PTB0/MCLK TGT-PTB0 3 PTB1 PTB1 4 PTB2/TCH0 TGT-PTB2 5 PTB4/TCH1 PTB4 6 PTB5 PTB5 7 PTB3/TCLK TGT-PTB3 8 OSC1 OSC1 9 None None 10 V GND ...

Page 41

Table 3-4. Power Connector P1 Pin Assignments Pin Mnemonic No. 1 VCC 2 GND 3 GND Table 3-5. RS-232C Communication Connector P2 Pin Assignments Pin Mnemonic No. 2 RXD 3 TXD 4 DTR 5 GND M68ICS08RK In-Circuit Simulator — Rev. ...

Page 42

... Target MON08 cable Target Head Adapters M68ICS08RK2 Board Label Adapter Pin No. TGT-PTB0 TGT-PTA0 GND PTA1 PTB1 PTA2 GND PTA3 TGT-PTB2 PTA4 GND PTA5 PTB4 PTA6 GND PTA7 PTB5 GND TGT-PTB3 GND M68ICS08RK In-Circuit Simulator — Rev. 1 Support Information M68ICS08RK2 Target Head Connector J2 Pin No ...

Page 43

... M68ICS08RK2 Board Label 23 GND 23 GND 21 OSC1 24 TGT-VDD 26 TGT-RST 24 TGT-VDD 25 TGT-IRQ 24 TGT-VDD NC GND NC GND NC GND NC GND NC GND NC GND NC GND NC GND NC GND NC GND NC GND NC GND Support Information Support Information Target-Cable Pin Assignments M68ICS08RK2 Target Head Connector Adapter Pin No. J2 Pin No User’s Manual ...

Page 44

Support Information User’s Manual 44 M68ICS08RK In-Circuit Simulator — Rev. 1 Support Information MOTOROLA ...

Page 45

User’s Manual — M68ICS08RK In-Circuit Simulator 4.1 Contents 4.2 4.3 4.4 4.5 4.6 4.2 Overview The MON08 debugging interface may be used to debug and program a target system’s MCU directly. The target system must be connected to the M68ICS08RK ...

Page 46

... Using the MON08 Interface Table 4-1. MON08 Target System Connector P1 Pin M68ICS08RK2 Direction No. Label 1 RST-OUT Out to target 2 GND Ground 3 RST-IN In from target 4 RST Bidirectional 5 TGT-IRQ In from target 6 IRQ Out to target 7 TGT-PTA0 Bidirectional 8 PTA0 Bidirectional 9 TGT-PTB0 Bidirectional 10 PTB0 Bidirectional 11 TGT-PTB2 Bidirectional 12 PTB2 ...

Page 47

... Table 4-2. MON08 Target System Connector P2 Pin M68ICS08RK2 Direction No. Label 1 RST Bidirectional 4.4 Connecting to the In-Circuit Simulator Using the 16-pin cable provided with the RKICS kit, connect one end of the cable to the RKICS board at J2. Connect the other end to connector P1 on the target-system board ...

Page 48

Using the MON08 Interface For production boards, a further enhancement of this scheme would be to include cutable traces between the pins of P1 and P2, as shown in Figure 4-2. The traces may be cut when debugging is necessary. ...

Page 49

User’s Manual — M68ICS08RK In-Circuit Simulator A.1 Contents A.2 A.3 A.4 A.5 A.6 A.6.1 A.6.2 A.6.3 A.6.4 A.2 Overview The Motorola S-record format was devised to encode programs or data files in a printable format for transport between computer platforms. ...

Page 50

S-Record Information Each byte of binary data is encoded in the S record as a 2-character hexadecimal number: • • The five fields that comprise an S record are shown in Table A-1. The S-record fields are described in Table ...

Page 51

A.4 S-Record Types Eight types of S records have been defined to accommodate the several needs of the encoding, transport, and decoding functions. The various Motorola upload, download, and other record transport control programs, as well as cross assemblers, linkers, ...

Page 52

S-Record Information A.5 S Record Creation S-record format programs may be produced by dump utilities, debuggers, cross assemblers, or cross linkers. Several programs are available for downloading a file in the S-record format from a host system ...

Page 53

Code/Data Checksum A.6.2 First S1 Record The first S1 record is described in Table A-5. Code/Data Checksum The 16 character pairs shown in the code/data field of Table A-5 are the ASCII bytes of the actual program. M68ICS08RK In-Circuit Simulator ...

Page 54

S-Record Information The second and third S1 code/data records each also contain $13 (19T) character pairs and are ended with checksum 13 and 52, respectively. The fourth S code/data record contains 07 character pairs and has a checksum of 92. ...

Page 55

User’s Manual — M68ICS08RK In-Circuit Simulator Appendix B. Technical Reference and Troubleshooting B.1 Contents B.2 B.3 B.4 B.5 B.6 B.7 B.2 Overview This appendix provides technical support information for the M68ICS08RK in-circuit simulator kit, including: • • • • • ...

Page 56

Technical Reference and Troubleshooting B.3 RKICS Board The core component of the board is the MC68HC908RK2 MCU. This MCU resides either on the RKICS board target system. When the MCU resides on the board, the board may ...

Page 57

When the MCU resides on a target system, the RKICS board can communicate with the MCU over a 16-pin MON08 cable (Motorola part number 01-RE91008W01). The MON08 cable supports the MCU installed in either the target system or the RKICS. ...

Page 58

Technical Reference and Troubleshooting Emulation of the MC68HC908RK2’s RST signal is also limited in that the signal is not a bidirectional, open-drain signal emulated as either an input or an output (determined by jumper header W3) when using ...

Page 59

M68ICS08RK In-Circuit Simulator — Rev. 1 MOTOROLA outer barrel of the connector is ground, and the inner sleeve is +5 Vdc. If there is no power at the connector, verify that the adapter is getting power from the ac power ...

Page 60

Technical Reference and Troubleshooting 5. Make sure that the host PC can communicate with the MCU: User’s Manual 60 problems. If the MCU power LED is off, start the ICS08RKZ simulator software as described in 2.4 Installing the Hardware while ...

Page 61

Make sure that the MCU has a good clock source. Use an oscilloscope to M68ICS08RK In-Circuit Simulator — Rev. 1 MOTOROLA c. Make sure that the cable is a straight-through cable supporting all nine pins of the serial port ...

Page 62

Technical Reference and Troubleshooting 7. Make sure that the MCU can enter and remain in monitor mode. For this User’s Manual 62 frequency required for a 9600-baud communications rate. If the clock signal is not present, check to see that ...

Page 63

Make sure that external circuitry does not interfere with the monitor 9. Make sure that W2 (bus clock divisor) is jumpered correctly 10. When connecting to a target system, observe the setting of W3 (target 11. When ...

Page 64

Technical Reference and Troubleshooting B.5 Troubleshooting MON08 Mode This section describes the troubleshooting steps for the instances where the MCU is installed on a target system and the RKICS is used to interact with the target system through the MON08 ...

Page 65

Apply power to the target system. At this point, the target MCU should 8. Start the ICS08RKZ simulator software as described in 2.4 Installing 9. Make sure the host PC can communicate with the MCU: M68ICS08RK In-Circuit Simulator — ...

Page 66

Technical Reference and Troubleshooting User’s Manual 66 10, and J6 pin 7 for probing purposes. On the MON08 connector J6, pin 8 is wired to the MCU’s PTA0 pin. Driving this signal with external logic on the target system will ...

Page 67

Make sure that the MCU can enter and remain in monitor mode. For this 11. Make sure that the target circuitry does not interfere with the monitor M68ICS08RK In-Circuit Simulator — Rev. 1 MOTOROLA to happen, the following conditions ...

Page 68

Technical Reference and Troubleshooting B.6 Parts List The parts list for the RKICS board is given in Table B-1. Table B-1. RKICS Parts List (Sheet Reference Designator C1, C2, C3, C4, C6, C7, C8, C10, C11, Capacitor, ...

Page 69

Table B-1. RKICS Parts List (Sheet Reference Designator L2 Inductor Power jack, 2 Connector, DB9, socket, R/A Q1 Transistor, NPN, MMBT3904 Q2, Q4 Transistor, PNP, MMBT3906 Q3, Q5 Transistor, PFET, MMBF0201 R1, ...

Page 70

Technical Reference and Troubleshooting Table B-1. RKICS Parts List (Sheet Reference Designator U12 IC, single OR gate U14 IC, switch mode controller U15 IC, voltage regulator U2 IC, quad, analog, multiplexer U3 IC, RS323-XCVR U4, U5, IC, ...

Page 71

B.7 Board Layout and Schematic Diagrams Figure B-1 shows the RKICS board layout and component locations. The RKICS schematic diagrams follow. Figure B-1. M68IC508RK2 Board Layout M68ICS08RK In-Circuit Simulator — Rev. 1 MOTOROLA Technical Reference and Troubleshooting Technical Reference and ...

Page 72

...

Page 73

...

Page 74

...

Page 75

...

Page 76

...

Page 77

User’s Manual — M68ICS08RK In-Circuit Simulator 8-bit MCU — A microcontroller whose data is communicated over a data bus A — An abbreviation for the accumulator of the MC68HC908RK2 MCU. accumulator — An 8-bit register of the MC68HC908RK2 CPU. The ...

Page 78

Glossary C — An abbreviation for carry/borrow in the condition codes register of the CCR — An abbreviation for condition code register in the MC68HC908RK2. clock — A square wave signal that is used to sequence events in a computer. ...

Page 79

A set of conductors that are used to convey binary information development tools — Software or hardware devices used to develop computer EPROM — Erasable, programmable read-only memory. A non-volatile type EEPROM — Electrically erasable, programmable read-only ...

Page 80

Glossary listing — A program listing shows the binary numbers that the CPU needs LSB — Least significant bit. MCU – Microcontroller unit — Microcontroller. A complete computer MSB — Most significant bit. N — Abbreviation for negative, a bit ...

Page 81

PC — Abbreviation for program counter CPU register of the program counter — The CPU register that holds the address of the next RAM — Random access memory. Any RAM location can be read or written registers — Memory locations ...

Page 82

Glossary V — The 0-volt dc power supply return for a microcontroller. SS Word — A group of binary bits. Some larger computers consider a set of X — Abbreviation for index register, a CPU register in the MC68HC908RK2. Z ...

Page 83

User’s Manual — M68ICS08RK In-Circuit Simulator ASCII assembler baud rates . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . ...

Page 84

Index electrostatic discharge ...

Page 85

... LVI M68ICS08RK in-circuit simulator M68ICS08RK2 board . . . . . . . . . . . . . . . . . . . . . . . . . . . . 15, 20, 32, 33, 36, 42 MC68HC908RFRK2 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 23 MC68HC908RK2 MCU . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 15, 35 MCU . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 13, 15, 35 MCU subsystem memory MON08 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 15, 33, 42, 57, 58, 64, 65, 67 operating systems . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 17 parts list port ports, serial . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 17 power M68ICS08RK In-Circuit Simulator — Rev. 1.0 MOTOROLA ICG MON08 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 23 LVI MON08 ...

Page 86

Index requirements . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . ...

Page 87

specifications, hardware . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . ...

Page 88

Index User’s Manual 88 M68ICS08RK In-Circuit Simulator — Rev. 1.0 Index MOTOROLA ...

Page 89

...

Page 90

Motorola reserves the right to make changes without further notice to any products herein. Motorola makes no warranty, representation or guarantee regarding the suitability of its products for any particular purpose, nor does Motorola assume any liability arising out of ...

Related keywords