产品型号:VK3604A 产品品牌:VINKA/永嘉微电 封装形式:SOP16 产品年份:新年份 联 系 人:陈锐鸿 Q Q:361 888 5898 联系手机:188 2466 2436(信) 概述: VK3604/VK3604A具有4个触摸按键,可用来检测外部触摸按键上人手的触摸动作。该芯片具有较高的 集成度,仅需极少的外部组件便可实现触摸按键的检测。 提供了4路输出功能,可通过IO脚选择输出电平,输出模式,输出脚结构,单键/多键和最 长输出时间。芯片内部采用特殊的集成电路,具有高电源电压抑制比,可减少按键检测错误的 发生,此特性保证在不利环境条件的应用中芯片仍具有很高的可靠性。 此触摸芯片具有自动校准功能,低待机电流,抗电压波动等特性,为各种触摸按键+IO输 出的应用提供了一种简单而又有效的实现方法。 特点: • 工作电压 2.4-5.5V • 待机电流7uA/3.3V,14uA/5V • 上电复位功能(POR) • 低压复位功能(LVR) • 触摸输出响应时间:工作模式 48mS ,待机模式160mS • 通过AHLB脚选择输出电平:高电平有效或者低电平有效 • 通过TOG脚选择输出模式:直接输出或者锁存输出 • 通过SOD脚选择输出方式:CMOS输出或者开漏输出 • 通过SM脚选择输出:多键有效或者单键有效 • 通过MOT脚有效键最长输出时间:无穷大或者16S • 通过CS脚接对地电容调节整体灵敏度(1-47nF) • 各触摸通道单独接对地小电容微调灵敏度(0-50pF) • 上电0.25S内为稳定时间,禁止触摸 • 上电后4S内自校准周期为64mS,4S无触摸后自校准周期为1S • 封装SOP16(150mil)(9.9mm x 3.9mm PP=1.27mm) ———————————————— 产品型号:VK3604B 产品品牌:VINKA/永嘉微电 封装形式:TSSOP16 产品年份:新年份 联 系 人:陈锐鸿 1.概述 VK3604B具有4个触摸按键,可用来检测外部触摸按键上人手的触摸动作。该芯片具有 较高的集成度,仅需极少的外部组件便可实现触摸按键的检测。 提供了4路直接输出功能。芯片内部采用特殊的集成电路,具有高电源电压抑制比,可 减少按键检测错误的发生,此特性保证在不利环境条件的应用中芯片仍具有很高的可靠性。 此触摸芯片具有自动校准功能,低待机电流,抗电压波动等特性,为各种触摸按键+IO 输出的应用提供了一种简单而又有效的实现方法。 特点 • 工作电压 2.4-5.5V • 待机电流7uA/3.3V,14uA/5V • 上电复位功能(POR) • 低压复位功能(LVR) • 触摸输出响应时间: 工作模式 48mS 待机模式160mS • CMOS输出,低电平有效,支持多键 • 有效键最长输出16S • 无触摸4S自动校准 • 专用脚接对地电容调节灵敏度(1-47nF) • 各触摸通道单独接对地小电容微调灵敏度(0-50pF). • 上电0.25S内为稳定时间,禁止触摸. • 封装 TSSOP16L(4.9mm x 3.9mm PP=1.00mm) KPP841 标准触控IC-电池供电系列: VKD223EB --- 工作电压/电流:2.0V-5.5V/5uA-3V 感应通道数:1 通讯界面 最长回应时间快速模式60mS,低功耗模式220ms 封装:SOT23-6 VKD223B --- 工作电压/电流:2.0V-5.5V/5uA-3V 感应通道数:1 通讯界面 最长回应时间快速模式60mS,低功耗模式220ms 封装:SOT23-6 VKD233DB --- 工作电压/电流:2.4V-5.5V/2.5uA-3V 1感应按键 封装:SOT23-6 通讯界面:直接输出,锁存(toggle)输出 低功耗模式电流2.5uA-3V VKD233DH ---工作电压/电流:2.4V-5.5V/2.5uA-3V 1感应按键 封装:SOT23-6 通讯界面:直接输出,锁存(toggle)输出 有效键最长时间检测16S VKD233DS --- 工作电压/电流:2.4V-5.5V/2.5uA-3V 1感应按键 封装:DFN6(2*2超小封装) 通讯界面:直接输出,锁存(toggle)输出 低功耗模式电流2.5uA-3V VKD233DR --- 工作电压/电流:2.4V-5.5V/1.5uA-3V 1感应按键 封装:DFN6(2*2超小封装) 通讯界面:直接输出,锁存(toggle)输出 低功耗模式电流1.5uA-3V VKD233DG --- 工作电压/电流:2.4V-5.5V/2.5uA-3V 1感应按键 封装:DFN6(2*2超小封装) 通讯界面:直接输出,锁存(toggle)输出 低功耗模式电流2.5uA-3V VKD233DQ --- 工作电压/电流:2.4V-5.5V/5uA-3V 1感应按键 封装:SOT23-6 通讯界面:直接输出,锁存(toggle)输出 低功耗模式电流5uA-3V VKD233DM --- 工作电压/电流:2.4V-5.5V/5uA-3V 1感应按键 封装:SOT23-6 (开漏输出) 通讯界面:开漏输出,锁存(toggle)输出 低功耗模式电流5uA-3V VKD232C --- 工作电压/电流:2.4V-5.5V/2.5uA-3V 感应通道数:2 封装:SOT23-6 通讯界面:直接输出,低电平有效 固定为多键输出模式,内建稳压电路 MTP触摸IC——VK36N系列抗电源辐射及手机干扰: VK3601L --- 工作电压/电流:2.4V-5.5V/4UA-3V3 感应通道数:1 1对1直接输出 待机电流小,抗电源及手机干扰,可通过CAP调节灵敏 封装:SOT23-6 VK36N1D --- 工作电压/电流:2.2V-5.5V/7UA-3V3 感应通道数:1 1对1直接输出 触摸积水仍可操作,抗电源及手机干扰,可通过CAP调节灵敏封装:SOT23-6 VK36N2P --- 工作电压/电流:2.2V-5.5V/7UA-3V3 感应通道数:2 脉冲输出 触摸积水仍可操作,抗电源及手机干扰,可通过CAP调节灵敏封装:SOT23-6 VK3602XS ---工作电压/电流:2.4V-5.5V/60UA-3V 感应通道数:2 2对2锁存输出 低功耗模式电流8uA-3V,抗电源辐射干扰,宽供电电压 封装:SOP8 VK3602K --- 工作电压/电流:2.4V-5.5V/60UA-3V 感应通道数:2 2对2直接输出 低功耗模式电流8uA-3V,抗电源辐射干扰,宽供电电压 封装:SOP8 VK36N2D --- 工作电压/电流:2.2V-5.5V/7UA-3V3 感应通道数:2 1对1直接输出 触摸积水仍可操作,抗电源及手机干扰,可通过CAP调节灵敏封装:SOP8 VK36N3BT ---工作电压/电流:2.2V-5.5V/7UA-3V3 感应通道数:3 BCD码锁存输出 触摸积水仍可操作,抗电源及手机干扰,可通过CAP调节灵敏 封装:SOP8 VK36N3BD ---工作电压/电流:2.2V-5.5V/7UA-3V3 感应通道数:3 BCD码直接输出 触摸积水仍可操作,抗电源及手机干扰,可通过CAP调节灵敏 封装:SOP8 VK36N3BO ---工作电压/电流:2.2V-5.5V/7UA-3V3 感应通道数:3 BCD码开漏输出 触摸积水仍可操作,抗电源及手机干扰 封装:SOP8/DFN8(超小超薄体积) VK36N3D --- 工作电压/电流:2.2V-5.5V/7UA-3V3 感应通道数:3 1对1直接输出 触摸积水仍可操作,抗电源及手机干扰 封装:SOP16/DFN16(超小超薄体积) VK36N4B ---工作电压/电流:2.2V-5.5V/7UA-3V3 感应通道数:4 BCD输出 触摸积水仍可操作,抗电源及手机干扰 封装:SOP16/DFN16(超小超薄体积) VK36N4I---工作电压/电流:2.2V-5.5V/7UA-3V3 感应通道数:4 I2C输出 触摸积水仍可操作,抗电源及手机干扰 封装:SOP16/DFN16(超小超薄体积) VK36N5D ---工作电压/电流:2.2V-5.5V/7UA-3V3 感应通道数:5 1对1直接输出 触摸积水仍可操作,抗电源及手机干扰 封装:SOP16/DFN16(超小超薄体积) VK36N5B ---工作电压/电流:2.2V-5.5V/7UA-3V3 感应通道数:5 BCD输出 触摸积水仍可操作,抗电源及手机干扰 封装:SOP16/DFN16(超小超薄体积) VK36N5I ---工作电压/电流:2.2V-5.5V/7UA-3V3 感应通道数:5 I2C输出 触摸积水仍可操作,抗电源及手机干扰 封装:SOP16/DFN16(超小超薄体积) VK36N6D --- 工作电压/电流:2.2V-5.5V/7UA-3V3 感应通道数:6 1对1直接输出 触摸积水仍可操作,抗电源及手机干扰 封装:SOP16/DFN16(超小超薄体积) VK36N6B ---工作电压/电流:2.2V-5.5V/7UA-3V3 感应通道数:6 BCD输出 触摸积水仍可操作,抗电源及手机干扰 封装:SOP16/DFN16(超小超薄体积) VK36N6I ---工作电压/电流:2.2V-5.5V/7UA-3V3 感应通道数:6 I2C输出 触摸积水仍可操作,抗电源及手机干扰 封装:SOP16/DFN16(超小超薄体积) VK36N7B ---工作电压/电流:2.2V-5.5V/7UA-3V3 感应通道数:7 BCD输出 触摸积水仍可操作,抗电源及手机干扰 封装:SOP16/DFN16(超小超薄体积) VK36N7I ---工作电压/电流:2.2V-5.5V/7UA-3V3 感应通道数:7 I2C输出 触摸积水仍可操作,抗电源及手机干扰 封装:SOP16/DFN16(超小超薄体积) VK36N8B ---工作电压/电流:2.2V-5.5V/7UA-3V3 感应通道数:8 BCD输出 触摸积水仍可操作,抗电源及手机干扰 封装:SOP16/DFN16(超小超薄体积) VK36N8I ---工作电压/电流:2.2V-5.5V/7UA-3V3 感应通道数:8 I2C输出 触摸积水仍可操作,抗电源及手机干扰 封装:SOP16/DFN16(超小超薄体积) VK36N9I ---工作电压/电流:2.2V-5.5V/7UA-3V3 感应通道数:9 I2C输出 触摸积水仍可操作,抗电源及手机干扰 封装:SOP16/DFN16(超小超薄体积) VK36N10I ---工作电压/电流:2.2V-5.5V/7UA-3V3 感应通道数:10 I2C输出 触摸积水仍可操作,抗电源及手机干扰 封装:SOP16/DFN16(超小超薄体积) 1-8点高灵敏度液体水位检测IC——VK36W系列 VK36W1D ---工作电压/电流:2.2V-5.5V/10UA-3V3 1对1直接输出 水位检测通道:1 可用于不同壁厚和不同水质水位检测,抗电源/手机干扰封装:SOT23-6 备注:1. 开漏输出低电平有效 2、适合需要抗干扰性好的应用 VK36W2D ---工作电压/电流:2.2V-5.5V/10UA-3V3 1对1直接输出 水位检测通道:2 可用于不同壁厚和不同水质水位检测,抗电源/手机干扰封装:SOP8 备注:1. 1对1直接输出 2、输出模式/输出电平可通过IO选择 VK36W4D ---工作电压/电流:2.2V-5.5V/10UA-3V3 1对1直接输出 水位检测通道:4 可用于不同壁厚和不同水质水位检测,抗电源/手机干扰封装:SOP16/DFN16 备注:1. 1对1直接输出 2、输出模式/输出电平可通过IO选择 VK36W6D ---工作电压/电流:2.2V-5.5V/10UA-3V3 1对1直接输出 水位检测通道:6 可用于不同壁厚和不同水质水位检测,抗电源/手机干扰封装:SOP16/DFN16 备注:1. 1对1直接输出 2、输出模式/输出电平可通过IO选择 VK36W8I ---工作电压/电流:2.2V-5.5V/10UA-3V3 I2C输出 水位检测通道:8 可用于不同壁厚和不同水质水位检测,抗电源/手机干扰封装:SOP16/DFN16 备注:1. IIC+INT输出 2、输出模式/输出电平可通过IO选择 KPP841
标签: 3604 输出 VK 体积 蓝牙音箱 检测 方式 芯片 触控 锁存
上传时间: 2022-04-11
上传用户:shubashushi66
The LPC2292/2294 microcontrollers are based on a 16/32-bit ARM7TDMI-S CPU with real-time emulation and embedded trace support, together with 256 kB of embedded high-speed flash memory. A 128-bit wide memory interface and a unique accelerator architecture enable 32-bit code execution at the maximum clock rate. For critical code size applications, the alternative 16-bit Thumb mode reduces code by more than 30 pct with minimal performance penalty. With their 144-pin package, low power consumption, various 32-bit timers, 8-channel 10-bit ADC, 2/4 (LPC2294) advanced CAN channels, PWM channels and up to nine external interrupt pins these microcontrollers are particularly suitable for automotive and industrial control applications as well as medical systems and fault-tolerant maintenance buses. The number of available fast GPIOs ranges from 76 (with external memory) through 112 (single-chip). With a wide range of additional serial communications interfaces, they are also suited for communication gateways and protocol converters as well as many other general-purpose applications. Remark: Throughout the data sheet, the term LPC2292/2294 will apply to devices with and without the /00 or /01 suffix. The suffixes /00 and /01 will be used to differentiate from other devices only when necessary.
上传时间: 2014-12-30
上传用户:aysyzxzm
Keil C51 V8 专业开发工具(PK51) PK51是为8051系列单片机所设计的开发工具,支持所有8051系列衍生产品,,支持带扩展存储器和扩展指令集(例如Dallas390/5240/400,Philips 51MX,Analog Devices MicroConverters)的新设备,以及支持很多公司的一流的设备和IP内核,比如Analog Devices, Atmel, Cypress Semiconductor, Dallas Semiconductor, Goal, Hynix, Infineon, Intel, NXP(founded by Philips), OKI, Silicon Labs,SMSC, STMicroeleectronics,Synopsis, TDK, Temic, Texas Instruments,Winbond等。 通过PK51专业级开发工具,可以轻松地了解8051的On-chip peripherals与及其它关键特性。 The PK51专业级开发工具包括… l μVision Ø 集成开发环境 Ø 调试器 Ø 软件模拟器 l Keil 8051扩展编译工具 Ø AX51宏汇编程序 Ø ANSI C编译工具 Ø LX51 连接器 Ø OHX51 Object-HEX 转换器 l Keil 8051编译工具 Ø A51宏汇编程序 Ø C51 ANSI C编译工具 Ø BL51 代码库连接器 Ø OHX51 Object-HEX 转换器 Ø OC51 集合目标转换器 l 目标调试器 Ø FlashMON51 目标监控器 Ø MON51目标监控器 Ø MON390 (Dallas 390)目标监控器 Ø MONADI (Analog Devices 812)目标监控器 Ø ISD51 在系统调试 l RTX51微实时内核 你应该考虑PK51开发工具包,如果你… l 需要用8051系列单片机来开发 l 需要开发 Dallas 390 或者 Philips 51MX代码 l 需要用C编写代码 l 需要一个软件模拟器或是没有硬件仿真器 l 需要在单芯片上基于小实时内核创建复杂的应用
上传时间: 2013-10-30
上传用户:yy_cn
光学设计软件zemax源码: This DLL models an nular aspheric surface as described in: "Annular surfaces in annular field systems" By Jose M. Sasian Opt. eng. 36 (12) P 3401-3401 December 1997 This surface is essentially an odd aspheric surface with an offset in the aspheric terms. The sag is given by: Z = (c*r*r) / (1+(1-((1+k)*c*c*r*r))^ 1/2 ) + a*(r-q)^2 + b*(r-q)^3 + c*(r-q)^4 + ... Note the terms a, b, c, ... have units of length to the -1, -2, -3, ... power.
标签: described aspheric surfaces Annular
上传时间: 2014-01-08
上传用户:yyyyyyyyyy
The latest release, ver 1.16 of the ARM (7TDMI, 720T, 920T) port for uC/OS-II V2.61 (and higher) includes ports for the following platforms: 1. S3c2410x ( ARM920T from Samsung ) on SMDK2410 eval board. 2. LPC2xxx - LPC210x & LPC213x ( ARM7TDMI-S from Philips ) on IAR s Kickstart & OLIMEX boards. 3. EP7312 ( ARM720T from CIRRUS ) on CDK238 eval board. Should also work on boards based on the CS89712. Tool-chains: GCC 3.3.2, ADS 1.2 & SDT 2.51. Op-modes: Pure ARM & ARM-THUMB interworked. Endianess: Big endian & Little endian modes
标签: release latest higher OS-II
上传时间: 2014-01-26
上传用户:小眼睛LSL
We have a group of N items (represented by integers from 1 to N), and we know that there is some total order defined for these items. You may assume that no two elements will be equal (for all a, b: a<b or b<a). However, it is expensive to compare two items. Your task is to make a number of comparisons, and then output the sorted order. The cost of determining if a < b is given by the bth integer of element a of costs (space delimited), which is the same as the ath integer of element b. Naturally, you will be judged on the total cost of the comparisons you make before outputting the sorted order. If your order is incorrect, you will receive a 0. Otherwise, your score will be opt/cost, where opt is the best cost anyone has achieved and cost is the total cost of the comparisons you make (so your score for a test case will be between 0 and 1). Your score for the problem will simply be the sum of your scores for the individual test cases.
标签: represented integers group items
上传时间: 2016-01-17
上传用户:jeffery
This paper presents a low-power asynchronous implementation of the 80C51 microcontroller. It was realized in a 0.5 µ m CMOS process and it shows a power advantage of a factor 4 compared to a recent synchronous implementation in the same technology. The chip is fully bit compatible with the synchronous implementation, and timing compatible for external memory access. The circuit is a compiled VLSI-program, using Tangram as VLSI-programming language and the Tangram tool set to compile the design automatically to a standard-cell netlist. This design approach proves to be powerful enough to describe the microcontroller and derive an efficient implementation. Further, it offers the designer the possibility to explore various alternatives in the design space.
标签: microcontroller implementation asynchronous low-power
上传时间: 2016-06-07
上传用户:冇尾飞铊
FIR滤波器的C++实现 Below are program source listings for FIR.h and FIR.cpp, the header file and class file for implementing arbitrary causal FIR filters in the Synthesis Tool Kit (STK) framework
上传时间: 2013-12-11
上传用户:heart520beat
Perl and XML XML is a text-based markup language that has taken the programming world by storm. More powerful than HTML yet less demanding than SGML, XML has proven itself to be flexible and resilient. XML is the perfect tool for formatting documents with even the smallest bit of complexity, from Web pages to legal contracts to books. However, XML has also proven itself to be indispensable for organizing and conveying other sorts of data as well, thus its central role in web services like SOAP and XML-RPC. As the Perl programming language was tailor-
标签: programming text-based XML language
上传时间: 2014-01-07
上传用户:jichenxi0730
A robotic s subject work from the university. An example of Denavit-Hartemberg application over a concrete robot. The code is writen for Matlab with the use of the free tool Hemero. The documentation of the work is in Spanish.
标签: Denavit-Hartemberg application university robotic
上传时间: 2014-01-01
上传用户:thuyenvinh