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SMD PIN針

  • 8-bit I2C-bus and SMBus IO port with reset

    The PCA9557 is a silicon CMOS circuit which provides parallel input/output expansion for SMBus and I2C-bus applications. The PCA9557 consists of an 8-bit input port register, 8-bit output port register, and an I2C-bus/SMBus interface. It has low current consumption and a high-impedance open-drain output pin, IO0. The system master can enable the PCA9557’s I/O as either input or output by writing to the configuration register. The system master can also invert the PCA9557 inputs by writing to the active HIGH polarity inversion register. Finally, the system master can reset the PCA9557 in the event of a time-out by asserting a LOW in the reset input. The power-on reset puts the registers in their default state and initializes the I2C-bus/SMBus state machine. The RESET pin causes the same reset/initialization to occur without de-powering the part.

    標簽: C-bus SMBus reset port

    上傳時間: 2014-01-18

    上傳用戶:bs2005

  • Adding 32 KB of Serial SRAM to

    Although Stellaris microcontrollers have generous internal SRAM capabilities, certain applicationsmay have data storage requirements that exceed the 8 KB limit of the Stellaris LM3S8xx seriesdevices. Since microcontrollers do not have an external parallel data-bus, serial memory optionsmust be considered. Until recently, the ubiquitous serial EEPROM/flash device was the only serialmemory solution. The major limitations of EEPROM and flash technology are slow write speed, slowerase times, and limited write/erase endurance.Recently, serial SRAM devices have become available as a solution for high-speed dataapplications. The N256S08xxHDA series of devices, from AMI Semiconductor, offer 32 K x 8 bits oflow-power data storage, a fast Serial Peripheral Interface (SPI) serial bus, and unlimited write cycles.The parts are available in 8-pin SOIC and compact TSSOP packages.

    標簽: Adding Serial SRAM 32

    上傳時間: 2013-10-14

    上傳用戶:cxl274287265

  • ATMEL-isp下載線電路

    ATMEL-isp下載線電路:注意:用ME300B下載線編程時,要設相關插針。   J1、JP1、JP6共5個插塊要短接。   編程器軟件類型要設為ATMEL-AT89isp線。

    標簽: ATMEL-isp 下載線 電路

    上傳時間: 2014-01-27

    上傳用戶:Bunyan

  • 用JLINK V6調試STM32的教程

    用JLINK V6 調試STM32的教程:針STM3210B-LK1評估板需要改動或設置的地方有3點:第一:STM3210B-LK1評估板的BOOT0及BOOT1跳線請跳到0位置. 第二:STM3210B-LK1評估板上的JTAG接口的第1,2腳請接上3.3V(手工飛線)。第三:JLINK 用SWD方式調試此款板子時,需要把板子上的R4,R5斷開(因其板子上有STLINK II)否則調試不成功喲 一 設置仿真器類型----JLINK或JTRACE二 JLINK仿真器相關設置三 JTAG/SWD 兩種方式的調試

    標簽: JLINK STM 32 調試

    上傳時間: 2013-10-13

    上傳用戶:標點符號

  • 基于89S51單片機的微型熱敏打印機軟件設計

    介紹了基于89S51 單片機的微型熱敏打印機的組成,分析了打印原理,詳細給出了整體流程以及各個功能模塊的軟件設計。熱敏打印頭采用I/O 口模擬串行數據傳輸實現數據加載。設計的微型熱敏打印機運用于實際,取得了良好的效果。關鍵詞:熱敏打印機 過熱保護 步進電機 數據加載由于常用的微型針式打印機的速度慢,噪聲大,無法滿足某些場合的需要。微型熱敏打印機具有打印速度快、噪音低、可靠性高、字跡清晰、機頭小而輕等優點,可滿足各種場合的打印要求,因此得到廣泛應用。筆者在汽車行駛記錄儀的開發過程中,根據廠家要求,選用較為先進的熱敏打印機作為打印設備。但微型熱敏打印頭對打印時序和溫度要求較高,一旦控制不當極易造成打印頭燒毀。因此,在有合理的硬件設計的基礎上,軟件設計也十分重要。本文使用某些軟件設計替代了部分硬件電路,使打印機的控制電路得到了簡化。

    標簽: 89S51 單片機 熱敏打印機 軟件設計

    上傳時間: 2013-11-14

    上傳用戶:digacha

  • 基于PIC單片機的低功耗讀卡器硬件設計

    基于PIC單片機的低功耗讀卡器硬件設計:本文提出了一個完整的基于串口的智能讀卡器子系統設計方案并將其實現。讀卡器的設計突出了小型化的要求,全部器件使用貼片封裝。為了減小讀卡器的體積,設計中還使用了串口竊電的技術,使用串口信號線直接給讀卡器供電。為此,讀卡器使用了省電的設計,采用了省電的集成電路,并大膽簡化了許多傳統的設計電路。關鍵字: 讀卡器, 單片機, 串口竊電 Abstract: This paper aims to put forward a complete design of Smart IC card reader based onSerial Port and propose the way of realizing it for the purpose of Network Security. SMD isadopted to make Smart IC reader smaller in this design. To reduce the volume of Smart ICreader, Serial Port powered technology is employed to get power from the signal line of Serial Port. For this reason, low-power consumption components are adopted in the design and some traditional designs are simplified to reduce the power consumption.Keywords: Card Reader; Single-chip Computer; Serial Port Powered IC 卡系統保存了加密算法所需要的工作密鑰,供加密算法對網絡上傳輸的數據加密使用,是整個系統網絡安全的核心。在IC 卡子系統中,讀卡器是一個重要的部分。它起著管理IC卡、在IC 卡和PC或網絡計算機間傳遞數據的重要作用。本文以一片PIC單片機為核心完成了基于RS232 串口的讀卡器的硬件設計。

    標簽: PIC 單片機 低功耗 讀卡器

    上傳時間: 2014-04-14

    上傳用戶:wanghui2438

  • PIC單片機設計電子密碼鎖

    介紹用PIC16F84單片機制作的電子密碼鎖。PIC16F84單片機共18個引腳,13個可用I/O接口。芯片內有1K×14的FLASHROM程序存儲器,36×8的靜態RAM的通用寄存器,64×8的EEPROM的數據存儲器,8級深度的硬堆棧。 用PIC單片機設計的電子密碼鎖微芯公司生產的PIC8位COMS單片機,采用類RISC指令集和哈弗總線結構,以及先進的流水線時序,與傳統51單片機相比其在速度和性能方面更具優越性和先進性。PIC單片機的另一個優點是片上硬件資源豐富,集成常見的EPROM、DAC、PWM以及看門狗電路。這使得硬件電路的設計更加簡單,節約設計成本,提高整機性能。因此PIC單片機已成為產品開發,尤其是產品設計和研制階段的首選控制器。本文介紹用PIC16F84單片機制作的電子密碼鎖。PIC16F84單片機共18個引腳,13個可用I/O接口。芯片內有1K×14的FLASHROM程序存儲器,36×8的靜態RAM的通用寄存器,64×8的EEPROM的數據存儲器,8級深度的硬堆棧。硬件設計  電路原理見圖1。Xx8位數據線接4x4鍵盤矩陣電路,面板布局見表1,A、B、C、D為備用功能鍵。RA0、RA7輸出4組編碼二進制數據,經74LS139譯碼后輸出逐行掃描信號,送RB4-RB7列信號輸入端。余下半個139譯碼器動揚聲器。RB2接中功率三極管基極,驅動繼電器動作。有效密碼長度為4位,根據實際情況,可通過修改源程序增加密碼位數。產品初始密碼為3345,這是一隨機數,無特殊意義,目的是為防止被套解。用戶可按*號鍵修改密碼,按#號鍵結束。輸入密碼并按#號確認之后,腳輸出RB2腳輸出高電平,繼電器閉合,執行一次開鎖動作。  若用戶輸入的密碼正確,揚聲器發出一聲稍長的“滴”提示聲,若輸入的密碼與上次修改的不符,則發出短促的“滴”聲。連續3次輸入密碼錯誤之后,程序鎖死,揚聲器報警。直到CPU被復位或從新上電。軟件設計  軟件流程圖見圖3。CPU上電或復位之后將最近一次修改并保存到EEPROM的密碼讀出,最為參照密匙。然后等待用戶輸入開鎖密碼。若5分鐘以內沒有接受到用戶的任何輸入,CPU自動轉入掉電模式,用戶輸入任意值可喚醒CPU。每次修改密碼之后,CPU將新的密碼存入內部4個連續的EEPROM單元,掉電后該數據任有效。每執行一次開鎖指令,CPU將當前輸入密碼與該值比較,看是否真確,并給出相應的提示和控制。布     局  所有元件均使用SMD表貼封裝,縮小體積,便于產品安裝,60X60雙面PCB板,頂層是一體化輸入鍵盤,底層是元件層。成型后的產品體積小巧,能很方便的嵌入防盜鐵門、保險箱柜。

    標簽: PIC 單片機設計 電子密碼鎖

    上傳時間: 2013-10-31

    上傳用戶:uuuuuuu

  • Emulating a synchronous serial

    The C500 microcontroller family usually provides only one on-chip synchronous serialchannel (SSC). If a second SSC is required, an emulation of the missing interface mayhelp to avoid an external hardware solution with additional electronic components.The solution presented in this paper and in the attached source files emulates the mostimportant SSC functions by using optimized SW routines with a performance up to 25KBaud in Slave Mode with half duplex transmission and an overhead less than 60% atSAB C513 with 12 MHz. Due to the implementation in C this performance is not the limitof the chip. A pure implementation in assembler will result in a strong reduction of theCPU load and therefore increase the maximum speed of the interface. In addition,microcontrollers like the SAB C505 will speed up the interface by a factor of two becauseof an optimized architecture compared with the SAB C513.Moreover, this solution lays stress on using as few on-chip hardware resources aspossible. A more excessive consumption of those resources will result in a highermaximum speed of the emulated interface.Due to the restricted performance of an 8 bit microcontroller a pin compatible solution isprovided only; the internal register based programming interface is replaced by a set ofsubroutine calls.The attached source files also contain a test shell, which demonstrates how to exchangeinformation between an on-chip HW-SSC and the emulated SW-SSC via 5 external wiresin different operation modes. It is based on the SAB C513 (Siemens 8 bit microcontroller).A table with load measurements is presented to give an indication for the fraction of CPUperformance required by software for emulating the SSC.

    標簽: synchronous Emulating serial

    上傳時間: 2014-01-31

    上傳用戶:z1191176801

  • MPC106 PCI橋/存儲器控制器硬件規范說明

    The Motorola MPC106 PCI bridge/memory controller provides a PowerPCªmicroprocessor common hardware reference platform (CHRPª) compliant bridgebetween the PowerPC microprocessor family and the Peripheral Component Interconnect(PCI) bus. In this document, the term Ô106Õ is used as an abbreviation for the phraseÔMPC106 PCI bridge/memory controllerÕ. This document contains pertinent physicalcharacteristics of the 106. For functional characteristics refer to theMPC106 PCI Bridge/Memory Controller UserÕs Manual.This document contains the following topics:Topic PageSection 1.1, ÒOverviewÓ 2Section 1.2, ÒFeaturesÓ 3Section 1.3, ÒGeneral ParametersÓ 5Section 1.4, ÒElectrical and Thermal CharacteristicsÓ 5Section 1.5, ÒPin AssignmentsÓ 17Section 1.6, ÒPinout Listings 18Section 1.7, ÒPackage DescriptionÓ 22Section 1.8, ÒSystem Design InformationÓ 24Section 1.9, ÒDocument Revision HistoryÓ 29Section 1.10, ÒOrdering InformationÓ 29

    標簽: MPC 106 PCI 存儲器

    上傳時間: 2013-11-04

    上傳用戶:as275944189

  • Input Signal Rise and Fall Tim

    All inputs of the C16x family have Schmitt-Trigger input characteristics. These Schmitt-Triggers are intended to always provide proper internal low and high levels, even if anundefined voltage level (between TTL-VIL and TTL-VIH) is externally applied to the pin.The hysteresis of these inputs, however, is very small, and can not be properly used in anapplication to suppress signal noise, and to shape slow rising/falling input transitions.Thus, it must be taken care that rising/falling input signals pass the undefined area of theTTL-specification between VIL and VIH with a sufficient rise/fall time, as generally usualand specified for TTL components (e.g. 74LS series: gates 1V/us, clock inputs 20V/us).The effect of the implemented Schmitt-Trigger is that even if the input signal remains inthe undefined area, well defined low/high levels are generated internally. Note that allinput signals are evaluated at specific sample points (depending on the input and theperipheral function connected to it), at that signal transitions are detected if twoconsecutive samples show different levels. Thus, only the current level of an input signalat these sample points is relevant, that means, the necessary rise/fall times of the inputsignal is only dependant on the sample rate, that is the distance in time between twoconsecutive evaluation time points. If an input signal, for instance, is sampled throughsoftware every 10us, it is irrelevant, which input level would be seen between thesamples. Thus, it would be allowable for the signal to take 10us to pass through theundefined area. Due to the sample rate of 10us, it is assured that only one sample canoccur while the signal is within the undefined area, and no incorrect transition will bedetected. For inputs which are connected to a peripheral function, e.g. capture inputs, thesample rate is determined by the clock cycle of the peripheral unit. In the case of theCAPCOM unit this means a sample rate of 400ns @ 20MHz CPU clock. This requiresinput signals to pass through the undefined area within these 400ns in order to avoidmultiple capture events.For input signals, which do not provide the required rise/fall times, external circuitry mustbe used to shape the signal transitions.In the attached diagram, the effect of the sample rate is shown. The numbers 1 to 5 in thediagram represent possible sample points. Waveform a) shows the result if the inputsignal transition time through the undefined TTL-level area is less than the time distancebetween the sample points (sampling at 1, 2, 3, and 4). Waveform b) can be the result ifthe sampling is performed more than once within the undefined area (sampling at 1, 2, 5,3, and 4).Sample points:1. Evaluation of the signal clearly results in a low level2. Either a low or a high level can be sampled here. If low is sampled, no transition willbe detected. If the sample results in a high level, a transition is detected, and anappropriate action (e.g. capture) might take place.3. Evaluation here clearly results in a high level. If the previous sample 2) had alreadydetected a high, there is no change. If the previous sample 2) showed a low, atransition from low to high is detected now.

    標簽: Signal Input Fall Rise

    上傳時間: 2013-10-23

    上傳用戶:copu

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