SF100 programmer Serial Flash In System Programming solution

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1 4F-2, N16, Jin Jhou St, Taipei, Taiwan, ROC SF100 programmer Serial Flash In System Programming solution The Innovative solution to update the Serial Flash on board High performances for low price USB full speed support ISP connector to work with the Serial Flash soldered on board Stand alone mode: Update the Serial flash without computer Advanced features: I/O control, smart Power supply management (supplied by the computer, power boards or by the applications), application advanced protections.. DediProg Page 1/12 May 06

2 Table of content: I. GENERAL INFORMATION Our dedicated portfolio of solutions for the Serial Flash SF100 product overview... 4 II. Hardware: ISP connector USB Connector Mode switch Auto button Flash Card Connector LED management:...11 Important notice: This document is provided as a guide line and must not be disclosed without consent of DediProg. However, no responsibility is assumed for errors that might appear. DediProg reserves the right to make any changes to the product and/or the specification at any time without notice. No part of this document may be copied or reproduced in any form or by any means without prior written consent of DediProg. DediProg Page 2/12 May 06

3 I. GENERAL INFORMATION 1. Our dedicated portfolio of solutions for the Serial Flash The Universal Programmers available on the market are not optimised for the Serial Flash offering low performances for high price. Our DediProg team has then developed for you, a complete portfolio of solutions to cover all your needs and for your entire satisfaction. SF100: In System Programming solution to program the memory on application board SF200: Engineering solution to program the memory on the socket With its associated sockets: TSSOP8 - SO8N - SO8W - SO16 - MLP6*5 - MLP8*6 - Test Clip Serial Flash Programming Service: Optimized for Serial Flash to reduce your programming cost DediProg Page 3/12 May 06

4 2. SF100 product overview The I n System Program m ing ( I SP) programmer has been designed to meet the strong and growing demand of Serial Flash users to program and update the memory on board during development, production, field manipulation or repairing with high performance and low cost. The In System Programming is appreciated for its update flexibility and performance: In development: - Easy to update or read the memory on board (no need to unsolder parts) In production: - Easy to implement and no technical expertise required - Safer: programming after the memory manipulation (soldering, test) - Flexible: update at the last time in production line or in storage area with the last code revision or according to the last ordering - Performance: the DediProg ISP method uses a Fast and direct connection to the memory via the SPI bus optimised for the Serial flash speed (not limited by a slow interface). In Field or repairing channel: - Improve reliability (no problem of contact on socket or memory manipulation) - Easy to read or update with memory on board - Time saving: just connect the programmer - No technical expertise required: Click or press button to start the update The SF100 programmer offers a convenient, flexible and low cost power management: The programmer can be either powered by the USB cable from the computer or from external power supply and can be also powered directly by the application when the update is performed with application ON. The memory soldered on application can be either powered by the programmer (if application is OFF during the update) or directly powered by the application (if application is ON during the update). DediProg Page 4/12 May 06

5 The programmer can be used in two different modes selected manually by a Switch: 1) USB mode: The programmer is connected to the host computer via the USB bus. The memory management is controlled from the computer tool. This mode is very convenient, friendly and gives access to a large amount of features to be used by the experts (design, software, hardware, product, test or quality engineers) but this mode also offers an automatic mode to be easily used by inexperienced operators. 2) Stand Alone mode (in development) The programmer is self dependant and don t need to be connected to a computer. This mode is very convenient to reduce the cost of the programming in production line (no computer needed) or to execute repetitive actions on memories. It also means, allowing non-technical personnel to easily perform repeated command sequences. The operations are started by clicking the button on the programmer. In this mode, a Flash Card is used as a master reference to copy the code. DediProg Page 5/12 May 06

6 II. Hardware: The programmer is composed of the main following parts: - ISP connector: to connect the SPI signals and power supply to the application memory via a flat cable. The flat cable is flexible and convenient to manipulate, can be changed easily before connection over cycling and can be used to adapt the programmer connection to the application requirement (numbers of signals, pin-out or connector type). For customization of the cable, please contact us. - Card Flash connector: Used to plug the Flash Card that contents the reference code to be copied in the application memory in stand alone mode. - LED: to indicate the working mode and the status of the operation in progress. - A Switch to select the working mode: USB or Stand Alone - A button to launch the batch operations in Stand alone mode Fig 1: Programmer Button USB connector Flash Card Connector Switch LED Pin 1 ISP Connector DediProg Page 6/12 May 06

7 1. ISP connector The ISP connector is a 7X2 pin Header straight type with 2.54mm pitch. It is used to control the application memory, and if necessary supply the memory, provide the high voltage to the memory, reset the application chipset, etc ISP connector 1 I/O1 I/O4 2 3 I/O2 Vdd 4 5 Vcc GND 6 7 CS CLK 8 9 MISO MOSI Vpp I/O SCL SDA 14 Tab 1: Description of the signals: Pin Name of number signal 1, 2, 3, 12 General I/O Description General I/O are used to control optional pins of the memory (hold, Wp) or switch the application in specific mode (reset Chipset or switch OFF MOSFET) 4 Vdd Vdd is used to supply the programmer with 5V from the application to work in Stand alone mode. 5 Vcc Vcc is used to supply the application memory 6 GND GND is the common ground shared between application and programmer 7 CS SPI Chip select of the Application memory 8 CLK SPI clock signal for the application memory 9 MISO Data out from the Application memory: MISO 10 MOSI Data In of the Application memory: MOSI 11 Vpp High voltage applied on the memory to speed up the operation 13, 14 SCL, SDA I2C bus for future purpose DediProg Page 7/12 May 06

8 The application connector pin count can be optimised according to the application needs and reduced down to a minimum of 5 pins only for the SPI communication and mistake proofing pin (CS, CLK, MISO, MOSI and GND). For explanation on how to design your application and use the programmer in the different possible configurations, please, refer to the dedicated Application Note written by DediProg. a) Programmer power supply: Vdd Specification to supply the programmer via the ISP Vdd pin : Vdd = 5V ± 5% Idd max = 100mA The programmer can be supplied by two different sources: 1) By the computer or DediProg Power Boards via the USB connector 2) By the Vdd from the application board via the ISP connector (in Stand Alone mode) The programmer is protected again Hot SWAP connection with a limits Inrush Current. b) Application Memory supply: Vcc Specification for the ISP Vcc pin: Vcc = 2.8V-3.3V (default Vcc=3.3V) Icc max = 50mA The application memory can be supplied by two different sources: 1) By the programmer via ISP Vcc pin at 3.3V 2) By the application according to the memory specification c) SPI signals management: CS, CLK, MISO and MOSI The SPI signals are used to communicate with the application memory with a high frequency (24MHz). They are CMOS compatible and are switch in High Impedance when not used. Table 2: recommended condition Symbol Parameter Value Unit Vo Output Voltage (high or low state) 0 to Vcc V Ioh, Iol High or Low Level Output Current (VCC = 3 to 3.3V) 24 ma max Ioh, Iol High or Low Level Output Current (VCC = 2.8V to 3V) 12 ma max DediProg Page 8/12 May 06

9 Table 3: DC specification Symbol Parameter Test condition Value Unit Vcc (V) Io (ma) Vih High Level Input Voltage 2.8V to 3.3V 2V V min Vil Low Level Input Voltage 2.8V to 3.3V 0.8V V max Voh High Level Output 3.3V -24mA 2.2V V min Voltage 2.8V -12mA 2.2V V min Vol Low Level Output 3.3V 24mA 0.55V V max Voltage 2.8V 12mA 0.4V V max Cap Capacitance 10nF nf typ This specification is relative to individual capability of one signal. ESD high performance protection compliant with IEC level 4: 15kV (air discharge) 8kV (contact discharge) Remark: The total capacitance added on the application SPI bus will also depend on the ISP cable length. The ISP cable length must be reduced at the minimum as the Serial Flash output buffer capability (MISO) is limited compared to the programmer performances. d) Smart management of the memory Vcc and SPI signals To minimize the impact of the ISP method on the chipset and application board, the programmer supplies the application memory with Vcc and SPI signals only when needed. Advantage: The programmer is plugged on the application board with Vcc OFF and SPI signals in High Impedance to avoid inrush current. All the ISP pins are protected with ESD high performance protections to discharge the Electrostatics charge before the connection and protect the application. The memory Vcc and SPI signals are provided only when the user send the command and are switched OFF automatically when the operation is completed. DediProg Page 9/12 May 06

10 e) High voltage supply: Vpp Specification for the ISP Vpp pin Vpp = 8.5V-12.5V Ipp max = 50mA The Vpp high voltage can be supplied by the programmer and used to speed up programming of the Application memory if this feature is supported by the memory supplier. The Vpp supply will be applied automatically by the programmer on the Vpp pin only during the erase, write or programming operations and only if the Vpp option has been selected on the computer tool. The programmer will also control the Vpp voltage level according to the memory connected and its specification. f) I/O management: I/O1, I/O2, I/O3, I/O4 Four general Outputs are available on the ISP connector for custom used. These Outputs can be controlled via the computer tool. The default values are: I/O1, I/O4 = driven High I/O2, I/O3 = driven Low These Outputs can be then useful to drive the pin Wp, Hold or reset of the memory, to reset the application chipset or switch OFF the MOSFET transistors or any others purposes. They are CMOS compatible and are switch in High Impedance when not used. Table 4: DC specification Symbol Parameter Test condition Value Unit Vcc (V) Io (ma) Vih High Level Input Voltage 2.8V to 3.3V 0.7Vcc V min Vil Low Level Input Voltage 2.8V to 3.3V 0.3Vcc V max Voh High Level Output 3.3V -5 ma 2V V min Voltage -2 ma 2.5V V min Vol Low Level Output 3.3V 5mA 1.2V V max Voltage 2mA 0.5V V max Vo Output Voltage (high or low state) 0 to Vcc V This specification is relative to individual capability of one signal. ESD high performance protection compliant with IEC level 4: 15kV (air discharge) 8kV (contact discharge) DediProg Page 10/12 May 06

11 2. USB Connector The USB connector type A is available to communicate with the computer tool and/or supply the programmer from the computer power supply or any external 5V power supply in Stand Alone mode 3. Mode switch The switch is used to select manually in which mode the programmer must work: - USB mode: to control the programming via the computer tool - Stand Alone mode: to work independently from computer The Switch is useful to force the Stand Alone mode even if the programmer is connected to the Computer via the USB cable for its power supply only and update the application easily by a RUN button click. 4. Auto button The Auto button is used in Stand Alone mode, to start the operations batch set (like: Blank Check, Erase, Programming and verify) and update the application memory easily. 5. Flash Card Connector The flash Card connector is used to plug the Flash Card on the programmer. The Flash Cards are available in different densities up to 128Mbits and are used to store the master code or reference code to be copied in the target memory when the programmer is in Stand Alone mode. The Flash Card memory can be accessed in USB mode just by selecting the Flash Card communication option in the computer tool. So the user can update the Flash Card content with the reference or master content to be copied in the application memory later when in Stand Alone mode. The Flash Cards are very convenient to store different reference codes and select the good Flash Card according to the application code. The operator has just to plug the good Flash Card in the programmer according to the code version and click the Run button to start the copy of the Flash card content to the application memory. The Flash Card is accessed in Read only, when programmer is in Stand alone mode. 6. LED management: Three LED indicate the status of the programmer: USB mode: green light Stand Alone mode: Orange light Operation on going: Green or Orange Flash Warning: red light DediProg Page 11/12 May 06

12 DediProg Inc 4F-2, N16, Jin Jhou St, Taipei, Taiwan, ROC for technical support: for Sale information: Information furnished is believed to be accurate and reliable. However, DediProg assumes no responsibility for the consequences of use of such information nor for any infringement of patents or other rights of third parties which may result from its use. Specifications mentioned in this publication are subject to change without notice. This publication supersedes and replaces all information previously supplied. All rights reserved Printed in Taiwan. This specification was last revised on: May DediProg Page 12/12 May 06

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