Renesas RZB-ZMD16C-ZDK Board Specifications, Hardware Specifications, Operating Environment

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Applications Engineering

8.0 RZB-ZMD16C-ZDK Board Specifications

8.1. Hardware Specifications

Table 8-1lists the specifications of the RZB-ZMD16C-ZDK Board.

Table 8-1: RZB-ZMD16C-ZDK Board Specifications

Item

Specification

MCU

M30280FAHP

Clocks

Main Clock: crystal 10 MHz, PLL, or ring oscillator

 

Sub Clock: 32.768 kHz crystal

Memory

RAM: 8kB (8064 Bytes user available due to kernel)

(ICD)

High E/W Data Block: 2kB × 2 (4096 Bytes)

 

Flash ROM: 96kB (94kB user available due to kernel)

Connectors

[J1-J4]: Four 2×10-pin measurement test points connected to the MCU

 

pins. Can also be used to connect your own expansion boards via 2×10

 

headers.

 

[J7]: In-Circuit Debug connector (UART1 for FoUSB-ICD)

 

[P1]: 9-Sub-D RS232 connected via RS232 transceiver to UART2

Jumpers

[JP1]: MCU Power for Icc Measurements

 

[JP2]: Power LED and RS232 Power connect

Switches

[S1]: pushbutton (connected to P10_4)

 

[S2]: pushbutton (connected to P10_5)

 

[S3]: pushbutton (connected to P10_6)

 

[S4]: pushbutton (connected to Reset)

 

[SW1]: Power source select switch. If set toward the ICD connector: power

 

provided by ICD. If set toward the power connector: power provided via

 

power connector.

LEDs

[D1] (Red): User output (connected to P3_4)

 

[D2] (Yellow): User output (connected to P3_5)

 

[D3] (Green): User output (connected to P3_6)

 

[D4] (Red): Power On (if jumper JP2 shorted)

LCD

2-line × 8-character LCD with KS0066 controller IC

8.2. Power Supply Requirements

The RZB-ZMD16C-ZDK Board will draw about 35mA with no LEDs on. With the ICD powered from the board, the current draw will be about 85mA.

The board has a 3.3V low dropout voltage regulator with an input voltage range from 3.4V to 16V.

8.3. Operating Environment

Table 8-2lists the environmental conditions for using and storing the RZB-ZMD16C-ZDK board. Store the board in a conductive bag inside the original factory packaging box.

Table 8-2: Operating Environment

 

Environmental Condition

Ambient Temperature

Ambient Humidity

 

 

Operating

0 - 55°C

30 to 80% (non-condensing)

 

 

 

(No corrosive gas allowed)

 

 

 

Storage

-30 to 75°C

30 to 80% (non-condensing)

 

 

 

(No corrosive gas allowed)

 

 

 

 

 

 

 

 

 

 

 

 

RZB-ZMD16C-ZDK User’s Manual Rev 1.2 20/ 33

August 2006

 

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Contents ZigBee Demo Kit ZDK Table of Contents RZB-ZMD16C-ZDK User’s Manual Rev 1.2 3 August Introduction Contents of Product Package Limited Guarantee and Support ZigBee Demo Kit Setup System ConnectivityRF Sniffer Board Host Computer RequirementsRZB-ZMD16C-ZDK Boards RF Sniffer Interface Rfsi RF Sniffer Software and USB DriverIn-Circuit Debugger and Programmer ICD Software Development ToolsFoUSB Flash-over-USB Programmer Hardware ZDK Board RZB-ZMD16C-ZDKRZB-ZMD16C-ZDK Board Block Diagram RZB-ZMD16C-ZDK Board Jumper Configuration1. JP1 MCU U4 Power M16C/28 Group of MCUsTimers Limitations of the ZbRom SystemLCD Liquid Crystal Display ZigBee RFSystem Clock InterruptsFlash and RAM Usage Stack RAM UsageGlobal Variable RAM Usage MAC Address AreaZbROM Flash Size ZbROM RAM SizeCustomization of Demo Program Settings Other LimitationsSystem Operation & Limitations Kernel ROM Monitor IntroductionPin and Peripheral Limitations Memory MapRegister Name Restriction Register Operation LimitationsLimitations on Register Operation Stop or Wait Mode Limitations Performing Debug Using SymbolsInterrupt Cause M16C/28 Vector Address Kit Specification User Program’s Real-Time CapabilityRZB-ZMD16C-ZDK Board Specifications Hardware SpecificationsPower Supply Requirements SpecificationUSB Driver Problems Appendix A. Troubleshooting GuideManual Installation Debugging Problems Erratic Debug BehaviorCannot Connect to Target WindowsTable A.3 Issues that May Arise During Debug OperationsProblem Possible Cause/s and Solution Page Appendix B. Reference Manuals Appendix C. Expansion Headers MCU Function PinMCU Function Appendix D. Board Schematic & BOM RZB-ZMD16C-ZDK User’s Manual Rev 1.2 29 August RZB-ZMD16C-ZDK User’s Manual Rev 1.2 30 August Appendix E. RZB-ZMD16C-ZDK Printed Circuit Board Figure E-1 PCB Top ViewFigure E-2 PCB Bottom View Appendix F. Other Resources

RZB-ZMD16C-ZDK specifications

The Renesas RZB-ZMD16C-ZDK is an advanced evaluation kit designed for developers and engineers focused on creating next-generation embedded applications. This development board is part of the RZ family, which is renowned for its powerful features and flexibility in various applications, including industrial automation, smart home devices, and automotive systems.

One of the standout features of the RZB-ZMD16C-ZDK is its integration of a Renesas RZ/A2M microprocessor. This microprocessor offers a high performance with an ARM Cortex-A9 core that operates at clock speeds up to 600 MHz, which enables the execution of complex algorithms and control tasks. The board boasts an impressive capability to support high-resolution graphics and touchscreen interfaces, making it ideal for HMI applications.

In terms of memory, the RZB-ZMD16C-ZDK comes equipped with substantial on-chip SRAM and flash memory, enhancing its ability to run sophisticated applications without the need for external memory interfaces. This is coupled with a generous amount of expansion options, including GPIO, ADC, and PWM functionality, ensuring that developers can easily integrate additional peripherals.

The kit supports various connectivity options, including Ethernet, USB, and serial communication protocols, enabling seamless integration into existing networks and infrastructures. Its built-in Ethernet capabilities are particularly advantageous for IoT applications, facilitating real-time data exchange and remote control functionalities.

The RZB-ZMD16C-ZDK also emphasizes ease of use for developers, featuring comprehensive software support, including the Renesas Flexible Software Package (FSP). This package accelerates development by providing pre-configured drivers and middleware, which simplifies the implementation of required functionalities.

Moreover, comprehensive debugging and development tools are included, allowing engineers to efficiently test and refine their applications without needing extensive additional resources. The availability of Kano and Renesas e2 studio IDE further enriches the development experience by providing a rich set of debugging and code analysis tools.

In summary, the Renesas RZB-ZMD16C-ZDK is a powerful evaluation kit designed with an extensive feature set and cutting-edge technology. Its combination of high-performance processing, ample memory, versatile connectivity, and robust software support makes it an attractive option for professionals seeking to develop reliable embedded solutions across various industries. The RZB-ZMD16C-ZDK stands out as a critical resource for innovation in the fast-evolving field of embedded systems.