CREE(能源之星)T6、U2中文版规格书

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CREE XM-L2 U2 LED 手持闪光灯用户手册说明书

CREE XM-L2 U2 LED 手持闪光灯用户手册说明书

®User ManualFeatures• Utilizes a CREE XM-L2 U2 LED • Maximum output up to 920 lumens• Integrated metal micro textured reflector for optimal peripheral illumination• Boasts a peak beam intensity of 9,000 cd and a throw distance of up to 190 meters • Tail switch designed for tactical applications• Side switches for brightness levels and modes adjustment • Features intelligent memory effect• Red LED provides constant/flashing illumination• Displays battery voltage with red light (accurate to 0.1V)• High efficiency constant current circuit enables maximum runtime of 170 hours • Direct access to turbo/red light mode• Reverse polarity protection prevents damage from incorrectly inserted batteries • Stainless steel titanium-plated two-way clip• Toughened ultra-clear mineral glass with anti-reflective coating • Robust HAIII military grade hard-anodized• Waterproof in accordance with IPX-8 (two-meter submersible)• Tail stand capabilityDimensionsLength: 3.59” (91.2mm)Head Diameter: 1” (25.4mm)Tail Diameter: 1” (25.4mm)Weight: 2.01oz (57g)(without battery)Thanks for purchasing NITECORE!SYSMAX Industry Co., Ltd.TEL: +86-20-83862000 FAX: +86-20-83882723 E-mail: *****************Web: Address : Rm1401-03, Glorious Tower, 850 East Dongfeng Road,Guangzhou, China 510600Battery OptionsThe All-Round Flashlight ExpertBrightness LevelsWhen the MT10C is switched on, press the step-up switch repeatedly to switch from the following brightness levels: red beacon-red light-ultralow-low-medium-high-turbo. The MT10C has memory effect. When it is switched on, the MT10C will enter the brightness level last used.When the MT10C is switched on, press the step-down switch repeatedly to lower its brightness until red beacon mode, after which there is no cycling back to other brightness levels.Direct Access to Red Light Mode:When the MT10C is switched on, press and hold the step-down switch for over one second to access the red light mode; OR:When the MT10C is switched off, press and hold the step-down switch and press the button on the tailcap to access the red light mode.Direct Access to Turbo:When the MT10C is switched on, press and hold the step-up switch for over one second to access turbo output (920 lumens); OR:When the MT10C is switched off, press and hold the step-up switch and press the button on the tailcap to access turbo output (920 lumens).Note: After three minutes' using of turbo mode, the flashlight will lower its output automatically to prevent overheating, and efficiently ensure the battery runtime.Special modes (Strobe/Location/SOS)With the light switched on, press both side switches to enter strobe mode. When in strobe mode, press both side switches again to cycle through Location Beacon, SOS, and Strobe modes. To exit and resume the brightness level last used, simply press the step-up or step-down switch. The MT10C has memory effect in strobe mode. If it is turned off in strobe mode, it will enter strobe mode immediately when switched on again.Power TipsWith the light switched off, press both side switches and the button on the tailcap to activate the red power indicator to blink and indicate battery voltage (accurate to 0.1V). For example, when battery voltage is at 4.2V, the red power indicator will blink 4 times, followed by a one second pause and another 2 blinks. Different voltages represent the corresponding remaining battery power levels.AccessoriesHolster, clip, lanyard, spare tailcap cover, spare O-ringNOTICEThe stated data has been measured in accordance with the international flashlight testingstandards ANSI/NEMA FL1, using one high quality IMR18350 Li-ion battery (3.7V, 700mAh) or Operating InstructionsBattery InstallationInsert one CR123 or IMR18350 battery as illustrated.WARNING1. Ensure batteries are inserted with the positive (+) end pointing towards the head. The MT10C will not be operational with incorrectly inserted battery.2. Please stop using and remove a depleted IMR18350 battery to avoid potential battery damage.Momentary IlluminationMomentary illumination can be achieved by switching theMT10Cflashlight off and holding the tail switch halfway down. Releasing switch turns the light off.On / Off OperationTo switch ON: Press the button on the tailcap all the way down until a click is heard.To switch OFF: Press the button on the tailcap all the way down once again until a click is heard.Standby Mode:When power is off, pre ss both side switches and the button on the tailcapsimultaneously to activate the red power indicator to flash and indicate battery voltage. Three seconds after electrical voltage is reported, the MT10C enters standby mode where the indicator flashes once every three seconds. In standby mode, the MT10C will operate for approximately six months with the indicator on .Low Power Full Power3.2V2.4V2.8V3.0VLow PowerFull PowerIMR18350:CR123:Changing / Charging BatteryBattery should be replaced or recharged when output appears to be dim or the flashlight becomes unresponsive.MaintenanceEvery 6 months, threads should be wiped with a clean cloth followed by a thin coating of silicon-based lubricant.Warranty ServiceAll NITECORE® products are warranted for quality. Any defective / malfunctioningNITECORE® product can be repaired free of charge for a period of 60 months (5 years) from the date of purchase. Beyond 60 months (5 years), a limited warranty applies, covering the cost of labor and maintenance, but not the cost of accessories or replacement parts.The warranty is nullified in all of the following situations:1. The product(s) is/are broken down, reconstructed and/or modified by unauthorized parties.2. The product(s) is/are damaged through improper use.3. The product(s) is/are damaged by leakage of batteries.For the latest information on NITECORE® products and services, please contact a local NITECORE®**********************************************※All images, text and statements specified herein this user manual are for reference purpose only. Should any discrepancy occurs between this manual and information specified on, information on our official website shall prevail. Sysmax Industry Co., Ltd. reserves the rights to interpret and amend the content of this document at any time without prior notice.Please find us on facebook: NITECORE Flashlights20151021。

能源之星LED光源灯具标准最终版本

能源之星LED光源灯具标准最终版本

能源之星LED光源灯具标准最终版本能源星?计画需求为整体引导灯Partner Commitments合伙人承诺Eligible Organizations:有资格的组织:Manufacturers and Distributors of Integral LED Lamps整体的制造业者和经销商引导了灯Commitment承诺The following are the terms of the ENERGY STAR Partnership Agreement as it pertains to the当它属于时,下列各项是能源星合伙协议的期限这manufacturing and/or distributing of ENERGY STAR qualified integral LED lamps.制造以及/或被取得资格整体的能源星的分配引导了灯。

The ENERGY STAR能源星PARTNER1 (PARTNER) must adhere to the following program requirements:PARTNER1(合伙人)一定遵守下列的计画需求:???????Comply with current ENERGY STAR Eligibility Criteria, defining the performance criteria that must遵从现在的能源星适任标准,定义表现标准哪一一定be met for use of the ENERGY STAR certification mark on product packaging and the testing 在产品包装和测试上被为使用能源星遇见证明标志criteria for integral LED lamps.对整体的标准引导了灯。

The U.S. Environmental Protection Agency (EPA or The Agency), at美国环保署(环保署或代理商), 在its discretion may conduct tests on products that are referred to as ENERGY STAR qualified 它的慎重可能在被称为能源星取得资格的产品上引导测试through the third-party testing portion of the criteria.通过第三者标准的测试部分。

能源之星灯具标准2.0版本 中文翻译(1)

能源之星灯具标准2.0版本 中文翻译(1)
Daniel 2015-7-13
本文为中文译文,仅作参考,判定以原标准为依据
具或翻新套件内,也可能放在外面。
相关色温:黑体曲线上距离样品光源色坐标最近一点的色温值。(IES RP-16-10)
暗槽安装(灯具):灯具光源被突起的边缘遮住或水平凹进去,光主要射在天花和上面的墙上。在本标准中, 暗槽安装灯具的特点是透镜覆盖了灯泡、LED 光源、LED 光引擎或一体式 LED 灯。(IES RP-16-10)
灯具不能归类为定向灯范围内的,默认归类为非定向。

定向灯具(评估灯具的光度特性)
划定了范围,在标准范围和灯具分类章节中列出。
评估灯具的光度特性(光效),要求涉及灯具的光学配件。
也要满足特定的最低光通量要求和环带光通密度要求
固态(LED)灯具类型为不可拆分的(用户不可以更换/升级 LED 光引擎或一体式 LED 灯),并且没有在定向范围内列出的,应被视为不可拆分式固态照明灯具并且评估灯 具的光度特性。
LED 阵列或模组:一种一体式装配的 LED 封装或多个 LED 晶片焊在 PCB 或基板上,可能带有光学组件以及
Daniel 2015-7-13
本文为中文译文,仅作参考,判定以原标准为依据
附带散热,机械固定和用于连接 LED 驱动输出端的电气接口。该设备定义不包含电源部分和 ANSI 标准灯头。 该设备不能够直接连入电网电路。(IES RP-16-10)
Daniel 2015-7-13
本文为中文译文,仅作参考,判定以原标准为依据
1. 标准范围和灯具分类
本节概括能源之星灯具标准(下称本标准)覆盖的灯具类型。本标准限定适用于家用类型的照明产品,但 标准范围内某些产品是销售到商用市场的,他们可能会被囊括进来并以合适的方式列名给最终用户。认证 范围限于总输入功率低于 250W,直接接入电网的灯具。参考第四章节详细了解下述定向产品类型的定义。 有关产品范围的任何疑问可以直接联络 EPA 认可的认证机构或邮件至 lighting@

灯泡能源之星标准草稿第二版

灯泡能源之星标准草稿第二版
灯泡必须符合下列目标色
温: 2700K 3000K 3500K 4000K/4100K 5000K 6500K
荧光灯按照 ANSI C78.375 方法老化 100 小时后测试 二段调光、三段调光设定在最大功率测试 测试样品数量:10 个,,5 个朝上/5 个朝下,如果厂商规 定了方向,那么所有的灯都按照厂商指定的方向。 结果判定: 所有样品色容差≤7 SDCM
能源之星灯泡 1.0 标准草稿第二版
标准适用范围:
灯泡种类 标准形状的泛光源 非标准形状的泛光源
标准形状的定向灯 非标准形状的定向灯
装饰灯 非标半定向灯
灯泡形状
灯头 E26, E26d, E17, E12 GU24, GU10, GU5.3, GX5.3
A, BT, G, P, PS, S, T,
T/C, 2D
LED 新增 准备用于嵌灯的定向或者近似定向灯泡要求。
中心光强:所有的符合 ANSI 标准的 PAR 灯和 MR 灯(符合 ANSI 所以只会是 LED)
中心光强:
标准 PAR 灯 和低压的 MR16 灯
120V MR16
满足
ENERGY STAR Center Beam Intensity Benchmark Tool
将 Y 面在水平方向旋转 45 度和 90 度重
复前面的测试,也要满足前面的要求
灯泡的光分布需要满足下述要求: 沿着光束的中心轴 2 个正交的平面,用 0.5 度的步进测量光强分布,测试的角 度为从中心最强光强向 2 边光强下降到 45%最大光强形成的夹角。
光分布要求:紧 凑型荧光灯裸灯 和装饰性灯泡免 除
在 0.375X 光束角的 4 个点光强≥最大中 心光强*0.62

奥德维特说明书

奥德维特说明书

PDA 系列产品的设计、制造、检查、试验及特性都应遵照适合的最新版IEC 和中国GB 标准及国际单位SI 制。

GB/T13730《地区电网数据采集与监控系统通用技术条件》GB/50171-92《电气装置安装工作盘、柜及二次回路接线施工及验收规范》DL/T630《交流采样远动终端通用技术条件》DL/478-92《静态继电保护及安全自动装置通用技术条件》GB/50062-92《电力装置的继电保护和自动装置设计规范》GB/T50063-2008《电力装置的电测量仪表装置设计规范》DL/T587-1996《微机继电保护装置运行管理规程》GB/T13729-2002《远动终端通用技术条件》GB/14285-93《继电保护和安全自动装置技术规程》GB/T17626.12-1998《振荡波抗扰度试验》GB/T17626.11-2008《电压暂降、短时中断和电压变化抗扰度试验》GB/T17626.10-1998《阻尼振荡磁场抗扰度试验》GB/T17626.8-2006《工频磁场的抗扰度试验》GB/T17626.6-2008《射频场感应的传导骚扰抗扰度》GB/T17626.5-2008《浪涌(冲击)抗扰度试验》GB/T17626.4-2008《电快速瞬变脉冲群抗扰度试验》GB/T17626.2-2006《静电放电抗扰度试验》GB/T 14047-1993《量度继电器和保护装置》GB 3836.3-2000《爆炸性气体环境用电气设备 第 3 部 分:增安型"e"》JB/T 10613-2006《数字式电动机综合保护装置》GB/T13850-1998《交流电量转换为模拟量或数字信号的电测量变送器》JJG596-1999《电子式电能表检定规程》GB/T17215.321-2008《静止式有功电能表(1级和2级)》GB/T 22264-2008《安装式数字显示电测量仪表》产品标准Contents 目 录A -01综合电力监控仪PDA-120系列B -13 三相智能型电力仪表 PDA-103系列C -31单相智能型电力仪表 PDA-101系列D -51 智能型电动机保护控制器 PDA-110MRK F -66参考设计图附录产品业绩G -73GB/T17215.322-2008《》静止式有功电能表(0.2S 级和0.5S 级)E -58 低压电动机保护装置 ADVP-1451产品简介功能详表产品特点PDA -120系列综合电力监控仪是北京奥德威特电力科技股份有限公司按IEC 国际标准开发,与当今国际先进技术同步的网络化综合电力监控仪表。

Victron Energy 能量计说明书

Victron Energy 能量计说明书

Energy Meters start pageAt Victron Energy, we stock several types of Energy Meters.The Energy Meters are used in systems with a GX device. To measure the output of a PV inverter (more info in the Venus-OS manual here. Or as a Grid Meter in an ESS installation, more information in the ESS manual.1. Selection guideEnergy Meter ET112ET340EM24AppearanceDisplay no display no display LCD DisplayManual and Wiring Diagrams ET112 Manual ET340 Manual EM24 ManualPart Number REL300100000REL300300000REL200100000Supported Phases 1 phase 3 phase 3 phaseMaximum Current Rating100A65A per phase65A per phaseMeasurement Type Shunt Shunt ShuntFirst decide if you need single- or three phase metersFor a three phase utility connection, use a three phase meter. For a three phase PV Inverter, use a three phase meter as well. For a single phase utility connection, use a single phase meter. And in an installation with a single phase utility connection, that also has a PV Inverter that needs measuring with a Victron meter, then you can use Rutger 2 pieces of ET112; or use the ET340.Now, based on current, select the modelRequirement Type Model / SolutionSingle phase up to 100A Shunt ET112Three phase up to 65A/phase Shunt EM24/ET340*Single phase more than 100A/phase CT Not available, use the three phase CT solutionThree phase more than 65A/phase CTs Carlo Gavazzi EM24DINAV53DISX (see FAQ Q8)The EM24 meter counts energy in a different way than the ET340. For Germany and most other countries; the EM24 is the advised model. See FAQ Q5 and Q9 for further details.1.1 Support for other Carlo Gavazzi metersBesides above listed meters, there are many more meters available from Carlo Gavazzi. Use this list to see which ones are compatible.Type Support RemarksEM111Supported Compatible with ET112.ET111Supported Compatible with ET112.EM112Supported Compatible with ET112.ET340Supported None.EM340Not supported does not report exported energy per phase (unlike the ET340)EM21 72D Not supported does not report exported energy,com protocol not compatible with supported grid metersEM271Not supported does not report exported energy,com protocol not compatible with supported grid meters3. FAQQ1: Can I combine three ET112s for a three phase system?No. Use a real three-phase meter.Q2: Can I use other meters, for example from other brands?No.Q3: I already have a Fronius SmartGrid meter, can I use that?No.Q5: What are the differences between the various three phase meters?EM24 - REL200100000 - Carlo Gavazzi EM24DINAV93XISXET112 - REL300100000 - Carlo Gavazzi ET112-DIN.AV01.X.S1.XET340 - REL300300000 - Carlo Gavazzi ET340-DIN.AV23.X.S1.XDifferences:The ET meters don't have a front selector that the installer needs to put in a different setting than it comes out of the box: easier, less mistakes to be made.The ET meters have no display. The only thing they have is an LED, which blinks in case ofactive communication.The new meters have 2 RJ45 sockets for the Modbus RS485 connection. But they are not used.Note the possible confusion because of yet another RJ-45 socket in the Victron world though.Don't mix that with VE.Bus, VE.Can or . Besides the RJ-45 sockets, the meters still also have screw terminals access below the sockets for the RS485 wiring, which is how we advise to connect a meter to the RS485 to USB interface and then CCGX.Since there is no display, the Modbus address can no longer be changed on the meter.Combining multiple of those meters on one RS485 network is therefore not supported byVictron. You are advised to use multiple RS485 to USB interfaces.Three-phase new meter only (ET340):Measuring Energy from single phase PV Inverter on the second phase of the new meter, ET340, actually works. Where-as with the old meter, the EM24, only the Power Metering (Watts) works.The Energy Metering (kWh) for a single phase PV Inverter on the second phase of the EM24does not work. See Q9 for the details.Q6: Will you keep shipping both 3 phase meters? (ET340 & EM24)Yes. There are still situations suitable for each. See Q9.Q7: Can I buy those meters directly from Carlo Gavazzi instead of from you?Yes. That is also why we make no secret of the CG part numbers.Q8: I want to use Current Transformers (CTs), is that possible?Yes. You can buy the CG EM24DINAV53DISX directly from Carlo Gavazzi or one of their distributors. Even though Victron does not stock that type of meter, we do support it in our software.The EM24DINAV53DISX is the solution for three-phase systems that go over 65A per phase.Q9: What’s the difference between ET340 and EM24 in 3 phase systems?These meters have a different way of calculating the total of energy imported and exported.In the ET340 - the energy imported and exported is counted at each individual phase and then the Total is provided from the sum of those values.In the EM24 - the energy imported and exported is counted as a total power, with net differential readings from each phase cancelling each other out.Which meter is best to use with depend on your countries own metering configuration. It is most common in Australia and Germany for example to only be billed for the total in a 3 phase system. So it is more accurate to use an EM24 to match the billing.So if you are exporting from one phase, and importing from another phase after the energy meter, but before the billing meter then you will not be charged for this, and the meter should not count it as an import and an export.This is also how Victron’s phase compensation feature works, to make the most of the cost savings for an ESS system when there is a differential in generation and load across different phases.Q10: Can I use an isolated USB-RS485 interface?Yes. The interfaces we sell are non isolated; suitable for most use cases.In case an isolated one is needed; purchase it dirsctly from Hjelmslund Electronics.USB485-STIXL : Isolated USB to RS485 converterDISQUSView the discussion thread.。

STM8L052C6T6;中文规格书,Datasheet资料

STM8L052C6T6;中文规格书,Datasheet资料

June 2012Doc ID 022924 Rev 21/52STM8L052C6Value Line, 8-bit ultralow power MCU, 32-KB Flash,256-bytes data EEPROM, RTC, LCD, timers,USART, I2C, SPI, ADCData brief target specificationFeatures■Operating conditions–Operating power supply: 1.8 V to 3.6 V –T emperature range: -40 °C to 85 °C ■Low power features– 5 low power modes: Wait, Low power run (5.1µA), Low power wait (3µA), Active-halt with full RTC (1.3µA), Halt (350nA)–Consumption: 195 µA/MHz + 440 µA –Ultra-low leakage per I/0: 50 nA –Fast wakeup from Halt: 4.7 µs■Advanced STM8 core–Harvard architecture and 3-stage pipeline –Max freq. 16 MHz, 16 CISC MIPS peak –Up to 40 external interrupt sources ■Reset and supply management–Low power, ultra-safe BOR reset with 5 selectable thresholds–Ultra low power POR/PDR–Programmable voltage detector (PVD)■Clock management–32 kHz and 1 to 16 MHz crystal oscillator –Internal 16 MHz factory-trimmed RC –Internal 38 kHz low consumption RC –Clock security system■Low power RTC–BCD calendar with alarm interrupt–Auto-wakeup from Halt w/ periodic interrupt ■LCD: up to 4x28 segments w/ step-up converter■Memories–32 KB Flash program memory and256bytes data EEPROM with ECC, RWW –Flexible write and read protection modes – 2 Kbytes of RAM■– 4 channels supporting ADC, SPI, I2C, USART , timers– 1 channel for memory-to-memory ■12-bit ADC up to 1 Msps/25 channels –Internal reference voltage■Timers–T wo 16-bit timers with 2 channels (used as IC, OC, PWM), quadrature encoder–One 16-bit advanced control timer with 3 channels, supporting motor control –One 8-bit timer with 7-bit prescaler– 2 watchdogs: 1 Window, 1 Independent –Beeper timer with 1, 2 or 4 kHz frequencies ■Communication interfaces–Synchronous serial interface (SPI)–Fast I2C 400 kHz SMBus and PMBus –USART (ISO 7816 interface and IrDA)■Up to 41 I/Os, all mappable on interrupt vectors ■Development support–Fast on-chip programming and non- intrusive debugging with SWIM –Bootloader using USARTContents STM8L052C6Contents1Introduction . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 62Description . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 72.1Device overview . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 82.2Ultra low power continuum . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 93Functional overview . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 103.1Low power modes . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 113.2Central processing unit STM8 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 123.2.1Advanced STM8 Core . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 123.2.2Interrupt controller . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 123.3Reset and supply management . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 133.3.1Power supply scheme . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 133.3.2Power supply supervisor . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 133.3.3Voltage regulator . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 133.4Clock management . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 143.5Low power real-time clock . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 153.6LCD (Liquid crystal display) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 163.7Memories . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 163.8DMA . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 163.9Analog-to-digital converter . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 173.10System configuration controller and routing interface . . . . . . . . . . . . . . . 173.11Timers . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 173.11.1TIM1 - 16-bit advanced control timer . . . . . . . . . . . . . . . . . . . . . . . . . . . 183.11.216-bit general purpose timers . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 183.11.38-bit basic timer . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 183.12Watchdog timers . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 183.12.1Window watchdog timer . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 183.12.2Independent watchdog timer . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 183.13Beeper . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 193.14Communication interfaces . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 193.14.1SPI . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 193.14.2I²C . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 19 2/52Doc ID 022924 Rev 2STM8L052C6Contents3.14.3USART . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 193.15Infrared (IR) interface . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 203.16Development support . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 204Pin description . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 214.1System configuration options . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 265Memory and register map . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 275.1Memory mapping . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 275.2Register map . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 28 6Interrupt vector mapping . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 457Package characteristics . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 477.1ECOP ACK . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 477.2Package mechanical data . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 487.2.148-pin low profile quad flat 7x7mm package (LQFP48) . . . . . . . . . . . . . 48 8Device ordering information . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 50 9Revision history . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 51Doc ID 022924 Rev 23/52List of tables STM8L052C6 List of tablesTable 1.Medium density value line STM8L05xxx low power device features and peripheral counts 8 Table 2.Timer feature comparison. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 17 Table 3.Legend/abbreviation for Table4. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 22 Table 4.Medium density value line STM8L05xxx pin description . . . . . . . . . . . . . . . . . . . . . . . . . . 22 Table 5.Flash and RAM boundary addresses. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 28 Table 6.I/O port hardware register map. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 28 Table 7.General hardware register map . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 29 Table 8.CPU/SWIM/debug module/interrupt controller registers. . . . . . . . . . . . . . . . . . . . . . . . . . . 43 Table 9.Interrupt mapping . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 45 Table 10.LQFP48 48-pin low profile quad flat package, mechanical data. . . . . . . . . . . . . . . . . . . . . 48 Table 11.Document revision history . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 51 4/52Doc ID 022924 Rev 2STM8L052C6List of figures List of figuresFigure 1.Medium density value line STM8L05xxx device block diagram. . . . . . . . . . . . . . . . . . . . 10 Figure 2.Medium density value line STM8L05xxx clock tree diagram . . . . . . . . . . . . . . . . . . . . . . 15 Figure 3.STM8L052C6 48-pin LQFP48 package pinout (with LCD) . . . . . . . . . . . . . . . . . . . . . . . . 21 Figure 4.Memory map . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 27 Figure 5.LQFP48 48-pin low profile quad flat package outline. . . . . . . . . . . . . . . . . . . . . . . . . . . . . 48 Figure 6.LQFP48 recommended footprint . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 49 Figure 7.Medium density value line STM8L05xxx ordering information scheme . . . . . . . . . . . . . . . 50Doc ID 022924 Rev 25/52Introduction STM8L052C66/52Doc ID 022924 Rev 21 I ntroductionThis document describes the features, pinout, mechanical data and ordering information ofthe medium density value line STM8L052C6 microcontroller with 32-Kbyte Flash memory density. For further details on the whole STMicroelectronics medium density family please refer to Section 2.2: Ultra low power continuum .For detailed information on device operation and registers, refer to the reference manual (RM0031).For information on to the Flash program memory and data EEPROM, refer to the programming manual (PM0054).For information on the debug module and SWIM (single wire interface module), refer to the STM8 SWIM communication protocol and debug module user manual (UM0470).For information on the STM8 core, refer to the STM8 CPU programming manual (PM0044).Medium density value line devices provide the following benefits:●Integrated system–32 Kbytes of medium density embedded Flash program memory –256 bytes of data EEPROM – 2 Kbytes of RAM –Internal high speed and low-power low speed RC –Embedded reset ●Ultra low power consumption–195 µA/MHZ + 440 µA (consumption)–0.9 µA with LSI in Active-halt mode –Clock gated system and optimized power management –Capability to execute from RAM for Low power wait mode and low power run mode ●Advanced features–Up to 16 MIPS at 16 MHz CPU clock frequency –Direct memory access (DMA) for memory-to-memory or peripheral-to-memoryaccess● Short development cycles–Application scalability across a common family product architecture withcompatible pinout, memory map and modular peripherals –Wide choice of development tools Refer to T able 1: Medium density value line STM8L05xxx low power device features and peripheral counts and Section 3: Functional overview for an overview of the complete range of peripherals proposed in this family.Figure 1 shows the block diagram of the medium density value line STM8L05xxx family.STM8L052C6Description 2 DescriptionThe medium density value line STM8L05xxx devices are members of the STM8L ultra lowpower 8-bit family.The value line STM8L05xxx ultra low power family features the enhanced STM8 CPU coreproviding increased processing power (up to 16 MIPS at 16 MHz) while maintaining theadvantages of a CISC architecture with improved code density, a 24-bit linear addressingspace and an optimized architecture for low power operations.The family includes an integrated debug module with a hardware interface (SWIM) whichallows non-intrusive In-application debugging and ultra-fast Flash programming.Medium density value line STM8L05xxx microcontrollers feature embedded data EEPROMand low-power, low-voltage, single-supply program Flash memory.All devices offer 12-bit ADC, real-time clock, 16-bit timers, one 8-bit timer as well asstandard communication interface such as SPI, I2C, USART and 4x28-segment LCD. The4x 28-segment LCD is available on the medium density value line STM8L05xxx.The STM8L05xxx family operates from 1.8 V to 3.6 V and is available in the -40 to +85 °Ctemperature range.The modular design of the peripheral set allows the same peripherals to be found in differentST microcontroller families including 32-bit families. This makes any transition to a differentfamily very easy, and simplified even more by the use of a common set of developmenttools.All value line STM8L ultra low power products are based on the same architecture with thesame memory mapping and a coherent pinout.Doc ID 022924 Rev 27/52Description STM8L052C68/52Doc ID 022924 Rev 22.1 Device overviewTable 1.Medium density value line STM8L05xxx low power device features andperipheral countsFeaturesSTM8L052C6Flash (Kbytes)32Data EEPROM (bytes)256RAM (Kbytes)2LCD4x28Timers Basic1 (8-bit)General purpose 2(16-bit)Advanced control 1 (16-bit)CommunicationinterfacesSPI1I2C1USART 1GPIOs41(1)1.The number of GPIOs given in this table includes the NRST/PA1 pin but the application can use theNRST/PA1 pin as general purpose output only (PA1).12-bit synchronized ADC (number of channels) 1 (25)Others RTC, window watchdog, independent watchdog,16-MHz and 38-kHz internal RC,1- to 16-MHz and 32-kHz external oscillatorCPU frequency 16 MHz Operating voltage 1.8 V to 3.6 V Operating temperature -40 to +85 °C PackageLQFP48STM8L052C6DescriptionDoc ID 022924 Rev 29/522.2 Ultra low power continuumThe ultra low power value line STM8L05xxx and STM8L15xxx are fully pin-to-pin, software and feature compatible. Besides the full compatibility within the STM8L family, the devices are part of STMicroelectronics microcontrollers ultra low power strategy which also includes STM8L101xx and STM32L15xxx. The STM8L and STM32L families allow a continuum of performance, peripherals, system architecture, and features.They are all based on STMicroelectronics 0.13µm ultra-low leakage process.Note:1The STM8L05xxx is pin-to-pin compatible with STM8L101xx devices.2The STM32L family is pin-to-pin compatible with the general purpose STM32F family. Please refer to STM32L15x documentation for more information on these devices.PerformanceAll families incorporate highly energy-efficient cores with both Harvard architecture and pipelined execution: advanced STM8 core for STM8L families and ARM Cortex™-M3 core for STM32L family. In addition specific care for the design architecture has been taken to optimize the mA/DMIPS and mA/MHz ratios.This allows the ultra low power performance to range from 5 up to 33.3DMIPs.Shared peripheralsSTM8L05x, STM8L15x and STM32L15xx share identical peripherals which ensure a very easy migration from one family to another:●Analog peripheral: ADC1●Digital peripherals: RTC and some communication interfacesCommon system strategyTo offer flexibility and optimize performance, the STM8L and STM32L devices use a common architecture:●Same power supply range from 1.8 to 3.6V●Architecture optimized to reach ultra-low consumption both in low power modes and Run mode●Fast startup strategy from low power modes ●Flexible system clock●Ultra-safe reset: same reset strategy for both STM8L and STM32L including power-on reset, power-down reset, brownout reset and programmable voltage detectorFeaturesST ultra low power continuum also lies in feature compatibility:●More than 10 packages with pin count from 20 to 100 pins and size down to 3 x 3mm ●Memory density ranging from 4 to 128 KbytesFunctional overview STM8L052C610/52Doc ID 022924 Rev 23 Functional overviewFigure 1.Medium density value line STM8L05xxx device block diagram1.Legend :ADC: Analog-to-digital converter BOR: Brownout resetDMA: Direct memory accessI²C: Inter-integrated circuit multimaster interface LCD: Liquid crystal displayPOR/PDR: Power on reset / power down reset RTC: Real-time clockSPI: Serial peripheral interfaceSWIM: Single wire interface moduleUSART: Universal synchronous asynchronous receiver transmitter WWDG: Window watchdog IWDG: independent watchdog16 MHz internal RC Clock Clocks A d d r e s s , c o n t r o l a n d d a t a b u s e sDebug moduleSPI132 Kbytes Interrupt controller2 Kbytes RAMto core and peripheralsIWDG (38 kHz clock)(SWIM)Port A Port B Port C I²C1USART1PowerVOLT. REG.Port F 1-16 MHz oscillator 32 kHz oscillator 38 kHz internal RC LCD driver 4x28WWDGSTM8 Corecontroller and CSS256 bytes Port D Port E BeeperRTC memoryprogram data EEPROM @V DDV DD18V DD1 =1.8 VV SS1SWIMSCL, SDA,MOSI, MISO, SCK, NSS RX, TX, CKADC1_INxV DDA V SSASMB @V DDA /V SSA12-bit ADC1V REF+V REF-3.6 V NRSTPA[7:0]PB[7:0]PC[7:0]PD[7:0]PE[7:0]PF0BEEPALARM, CALIBSEGx, COMxPOR/PDR OSC_IN,OSC_OUT OSC32_IN,OSC32_OUTto BOR PVDPVD_INRESET DMA18-bit Timer 416-bit Timer 3 16-bit Timer 2 16-bit Timer 1 (4 channels)2 channels 2 channels3 channelsV LCD = 2.5 V 3.6 VtoLCD boosterInternal referencevoltageVREFINT outInfrared interface IR_TIM分销商库存信息: STMSTM8L052C6T6。

T6产品说明书[1]

T6产品说明书[1]

高清视频 无损音频 图片
数字接口 HDMI V1.4 with audio 可播放到 1080P24 及 1080p60,码流超过 40mbps 可播放 TrueHD、DTS、DTSHD、DTS-HSMA、Dobly、Dolbly Plus 实现 7.1 数字音频输出 JPG、GIF、BMP、TIF、PNG
尽享海量网络高清电影
炫 影 多 媒 体 播 放 器( T6)使用手册
目录
简 介 ............................................................................................................................................ 2 关于本用户说明书 ........................................................................................................................ 2 知识产权 ........................................................................................................................................ 2 主要功能及随机附件 .................................................................................................................... 3 使用前的注意事项 ........................................................................................................................ 4 产品介绍 ........................................................................................................................................ 5 连接 ................................................................................................................................................ 7 设置 .............................................................................................................................................. 10 使用功能介绍 ...............................................................................................................................11 附 录 .......................................................................................................................................... 15
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颜色 冷白 中性白 显色指数 80 白光 暖白 显色指数 85 白光
显色指数 90 白光
色温范围
最小
最大
5,000 K
8,300 K
3,700 K
5,000 K
2,600 K
4,300 K
2,600 K
3,700 K
2,600 K
3,200 K
2,600 K
3,200 K
基本订购代码 最小光通量 @ 700 mA
T4
240
332
472
593
XMLAWT-00-0000-000LT40E4
T5
260
360
511
643
XMLAWT-00-0000-000LT50F4
T2
200
277
393
494
XMLAWT-00-0000-000HT20E7
T3
220
305
433
544
XMLAWT-00-0000-000HT30F7
(lm)

通量 (lm)
计算的最小光通量 (lm)* 1000 mA 1500 mA 2000 mA
订购代码
T5
260
360
511
643
XMLAWT-00-0000-0000T5051
T6
280
388
551
692
XMLAWT-00-0000-0000T6051
U2
300
416
590
742
XMLAWT-00-0000-0000U2051
华刚国际贸易Cr有ee限, 公In司c. USA电传Tw光e话真wlD:电::w4香u+子6++.rc1港h088r中.科a0e955沙m心e122技S田.9,ci22大l3.oi香N344cm道楼oC122港n342/东2x科3.D8257l0a学22737r1mi2300v园号室8703pe 电邮:CreeSalesAsia@
XLamp XM-L LED 使得在那些需要数以 万计流明的新应用中采用 LED 灯成为可 能,比如高棚照明和高输出区域照明。 对需要高光输出和最大光效的照明应用, 比如,LED 灯泡、室外照明、便携式照 明、室内照明及太阳能照明,XM-L 都是 理想的选择。
特点
目录
• 最大驱动电流: 3000 mA
/XLAMP
XLAMP XM-L LED
通量特征 (TJ = 25°C)
下表提供了 XLamp XM-L LED 的几个基本订购代码。请特别注意此处所列的基本订购代码只是产品系列全部订购代码的一小部分。 如需要更多订购代码,以及订购代码命名规则的详细说明,请参阅 XLamp XM-L 分档和标贴文档。
S6
182
252
358
450
XMLAWT-00-0000-000PS60E7
S4
164
227
323
406
XMLAWT-00-0000-000US40E7
S5
172
238
338
425
XMLAWT-00-0000-000US50E7
S6
182
252
358
450
XMLAWT-00-0000-000US60E7
4
XLAMP XM-L LED 热设计 最大正向电流由 LED 结和环境之间的热阻决定。最终产品的设计方式必须能够将焊点到环境的热阻减至最小,以便延长灯的使用寿命,优化 光学特征,这一点非常重要。
相对通量与电流曲线图 (TJ = 25°C)
Copyright © 2010 Cree, Inc. All rights reserved. The information in this document is subject to change without notice. Cree, the Cree logo and XLamp are registered trademarks o版f权C所re有e, I©nc2.010-2012 Cree, Inc. 保留所有权利。本文档中的信息若有更改,恕不另行通知。 Cree、Cree 徽标和 XLamp 都是 Cree, Inc. 的注册商标。
• 热阻低:2.5°C/W • 最高结温:150°C • 视角:125°
Lab通el量特w征i..t.h.......C..r.e..e.......B..i.n......C..o..d..e2, Qty特, L征o..t..#.............................................................................3 10 Lab相el对w光it谱h功C率us分to布m...e..r..O...r.d..e..r..C..o..d..e..,...3. 10 相对通量与结温曲线图.................... 4 Qty电, R气e特el征I..D..,..P..O...#....................................................4. 10
5
相对色度与电流的关系(冷白) 相对色度与温度的关系(冷白)
XLAMP XM-L LED
Copyright © 2010 Cree, Inc. All rights reserved. The information in this document is subject to change without notice. Cree, the Cree logo and XLamp are registered trademarks o版f权C所re有e, I©nc2.010-2012 Cree, Inc. 保留所有权利。本文档中的信息若有更改,恕不另行通知。 Cree、Cree 徽标和 XLamp 都是 Cree, Inc. 的注册商标。
说明.........................................10
外形尺寸....................................12
载带和卷盘.................................13
包装.........................................14 Label with Cree Bin Code, Qty, Lot #.................................. 10 Label with Customer Order Code,......................................... 10 Qty, Reel ID, PO#...................... 10
• 在不超过 30ºC/85% 相对湿度
典型光强分布型式.......................... 8
条件下,车间寿命不受限制
回流焊特征.................................. 9
• 可回流焊 JEDEC J-STD-020C 标准
• 散热部分不带电 (热电分离) • 符合 RoHS 和 REACh 要求 • 通过 UL 认证 (E349212)
T2
200
277
393
494
XMLAWT-00-0000-000LT20E7
T3
220
305
433
544
XMLAWT-00-0000-000LT30F7
S4
164
227
323
406
XMLAWT-00-0000-000PS40E7
S5
172
238
338
425
XMLAWT-00-0000-000PS50E7
2
特征
特征 热阻,结到焊点 视角 (FWHM) 电压温度系数 ESD 类别 (HBM,依照 Mil-Std-883D) 直流正向电流 反向电压 正向电压 (700 mA 时) 正向电压 (1500 mA 时) 正向电压 (3000 mA 时) LED 结温
相对光谱功率分布
XLAMP XM-L LED
* 计算的通量值仅供参考
Copyright © 2010 Cree, Inc. All rights reserved. The information in this document is subject to change without notice. Cree, the Cree logo and XLamp are registered trademarks o版f权C所re有e, I©nc2.010-2012 Cree, Inc. 保留所有权利。本文档中的信息若有更改,恕不另行通知。 Cree、Cree 徽标和 XLamp 都是 Cree, Inc. 的注册商标。
CLD-DS33 REV 7
Cree® XLamp® XM-L LED
产品系列技术数据表
产品说明
XLamp XM-L LED 是行业内性能最高 的单芯片白光照明级 LED。在相同电流 下,XLamp XM-L 的效率要比 XLamp XP-G 高出 20%,并且在每瓦 100 流 明光效下,光通量可高达 1000 流明。 XLamp XM-L LED 具有 Cree 的行业 领先特点:视角宽、对称封装、车间寿 命不受限制,以及散热部分不带电 (热电 分离)。
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