產品型號:VK3604A 產品品牌:VINKA/永嘉微電 封裝形式:SOP16 產品年份:新年份 聯 系 人:陳銳鴻 Q Q:361 888 5898 聯系手機:188 2466 2436(信) 概述: VK3604/VK3604A具有4個觸摸按鍵,可用來檢測外部觸摸按鍵上人手的觸摸動作。該芯片具有較高的 集成度,僅需極少的外部組件便可實現觸摸按鍵的檢測。 提供了4路輸出功能,可通過IO腳選擇輸出電平,輸出模式,輸出腳結構,單鍵/多鍵和最 長輸出時間。芯片內部采用特殊的集成電路,具有高電源電壓抑制比,可減少按鍵檢測錯誤的 發生,此特性保證在不利環境條件的應用中芯片仍具有很高的可靠性。 此觸摸芯片具有自動校準功能,低待機電流,抗電壓波動等特性,為各種觸摸按鍵+IO輸 出的應用提供了一種簡單而又有效的實現方法。 特點: ? 工作電壓 2.4-5.5V ? 待機電流7uA/3.3V,14uA/5V ? 上電復位功能(POR) ? 低壓復位功能(LVR) ? 觸摸輸出響應時間:工作模式 48mS ,待機模式160mS ? 通過AHLB腳選擇輸出電平:高電平有效或者低電平有效 ? 通過TOG腳選擇輸出模式:直接輸出或者鎖存輸出 ? 通過SOD腳選擇輸出方式:CMOS輸出或者開漏輸出 ? 通過SM腳選擇輸出:多鍵有效或者單鍵有效 ? 通過MOT腳有效鍵最長輸出時間:無窮大或者16S ? 通過CS腳接對地電容調節整體靈敏度(1-47nF) ? 各觸摸通道單獨接對地小電容微調靈敏度(0-50pF) ? 上電0.25S內為穩定時間,禁止觸摸 ? 上電后4S內自校準周期為64mS,4S無觸摸后自校準周期為1S ? 封裝SOP16(150mil)(9.9mm x 3.9mm PP=1.27mm) ———————————————— 產品型號:VK3604B 產品品牌:VINKA/永嘉微電 封裝形式:TSSOP16 產品年份:新年份 聯 系 人:陳銳鴻 1.概述 VK3604B具有4個觸摸按鍵,可用來檢測外部觸摸按鍵上人手的觸摸動作。該芯片具有 較高的集成度,僅需極少的外部組件便可實現觸摸按鍵的檢測。 提供了4路直接輸出功能。芯片內部采用特殊的集成電路,具有高電源電壓抑制比,可 減少按鍵檢測錯誤的發生,此特性保證在不利環境條件的應用中芯片仍具有很高的可靠性。 此觸摸芯片具有自動校準功能,低待機電流,抗電壓波動等特性,為各種觸摸按鍵+IO 輸出的應用提供了一種簡單而又有效的實現方法。 特點 ? 工作電壓 2.4-5.5V ? 待機電流7uA/3.3V,14uA/5V ? 上電復位功能(POR) ? 低壓復位功能(LVR) ? 觸摸輸出響應時間: 工作模式 48mS 待機模式160mS ? CMOS輸出,低電平有效,支持多鍵 ? 有效鍵最長輸出16S ? 無觸摸4S自動校準 ? 專用腳接對地電容調節靈敏度(1-47nF) ? 各觸摸通道單獨接對地小電容微調靈敏度(0-50pF). ? 上電0.25S內為穩定時間,禁止觸摸. ? 封裝 TSSOP16L(4.9mm x 3.9mm PP=1.00mm) KPP841 標準觸控IC-電池供電系列: VKD223EB --- 工作電壓/電流:2.0V-5.5V/5uA-3V 感應通道數:1 通訊界面 最長回應時間快速模式60mS,低功耗模式220ms 封裝:SOT23-6 VKD223B --- 工作電壓/電流:2.0V-5.5V/5uA-3V 感應通道數:1 通訊界面 最長回應時間快速模式60mS,低功耗模式220ms 封裝:SOT23-6 VKD233DB --- 工作電壓/電流:2.4V-5.5V/2.5uA-3V 1感應按鍵 封裝:SOT23-6 通訊界面:直接輸出,鎖存(toggle)輸出 低功耗模式電流2.5uA-3V VKD233DH ---工作電壓/電流:2.4V-5.5V/2.5uA-3V 1感應按鍵 封裝:SOT23-6 通訊界面:直接輸出,鎖存(toggle)輸出 有效鍵最長時間檢測16S VKD233DS --- 工作電壓/電流:2.4V-5.5V/2.5uA-3V 1感應按鍵 封裝:DFN6(2*2超小封裝) 通訊界面:直接輸出,鎖存(toggle)輸出 低功耗模式電流2.5uA-3V VKD233DR --- 工作電壓/電流:2.4V-5.5V/1.5uA-3V 1感應按鍵 封裝:DFN6(2*2超小封裝) 通訊界面:直接輸出,鎖存(toggle)輸出 低功耗模式電流1.5uA-3V VKD233DG --- 工作電壓/電流:2.4V-5.5V/2.5uA-3V 1感應按鍵 封裝:DFN6(2*2超小封裝) 通訊界面:直接輸出,鎖存(toggle)輸出 低功耗模式電流2.5uA-3V VKD233DQ --- 工作電壓/電流:2.4V-5.5V/5uA-3V 1感應按鍵 封裝:SOT23-6 通訊界面:直接輸出,鎖存(toggle)輸出 低功耗模式電流5uA-3V VKD233DM --- 工作電壓/電流:2.4V-5.5V/5uA-3V 1感應按鍵 封裝:SOT23-6 (開漏輸出) 通訊界面:開漏輸出,鎖存(toggle)輸出 低功耗模式電流5uA-3V VKD232C --- 工作電壓/電流:2.4V-5.5V/2.5uA-3V 感應通道數:2 封裝:SOT23-6 通訊界面:直接輸出,低電平有效 固定為多鍵輸出模式,內建穩壓電路 MTP觸摸IC——VK36N系列抗電源輻射及手機干擾: VK3601L --- 工作電壓/電流:2.4V-5.5V/4UA-3V3 感應通道數:1 1對1直接輸出 待機電流小,抗電源及手機干擾,可通過CAP調節靈敏 封裝:SOT23-6 VK36N1D --- 工作電壓/電流:2.2V-5.5V/7UA-3V3 感應通道數:1 1對1直接輸出 觸摸積水仍可操作,抗電源及手機干擾,可通過CAP調節靈敏封裝:SOT23-6 VK36N2P --- 工作電壓/電流:2.2V-5.5V/7UA-3V3 感應通道數:2 脈沖輸出 觸摸積水仍可操作,抗電源及手機干擾,可通過CAP調節靈敏封裝:SOT23-6 VK3602XS ---工作電壓/電流:2.4V-5.5V/60UA-3V 感應通道數:2 2對2鎖存輸出 低功耗模式電流8uA-3V,抗電源輻射干擾,寬供電電壓 封裝:SOP8 VK3602K --- 工作電壓/電流:2.4V-5.5V/60UA-3V 感應通道數:2 2對2直接輸出 低功耗模式電流8uA-3V,抗電源輻射干擾,寬供電電壓 封裝:SOP8 VK36N2D --- 工作電壓/電流:2.2V-5.5V/7UA-3V3 感應通道數:2 1對1直接輸出 觸摸積水仍可操作,抗電源及手機干擾,可通過CAP調節靈敏封裝:SOP8 VK36N3BT ---工作電壓/電流:2.2V-5.5V/7UA-3V3 感應通道數:3 BCD碼鎖存輸出 觸摸積水仍可操作,抗電源及手機干擾,可通過CAP調節靈敏 封裝:SOP8 VK36N3BD ---工作電壓/電流:2.2V-5.5V/7UA-3V3 感應通道數:3 BCD碼直接輸出 觸摸積水仍可操作,抗電源及手機干擾,可通過CAP調節靈敏 封裝:SOP8 VK36N3BO ---工作電壓/電流:2.2V-5.5V/7UA-3V3 感應通道數:3 BCD碼開漏輸出 觸摸積水仍可操作,抗電源及手機干擾 封裝:SOP8/DFN8(超小超薄體積) VK36N3D --- 工作電壓/電流:2.2V-5.5V/7UA-3V3 感應通道數:3 1對1直接輸出 觸摸積水仍可操作,抗電源及手機干擾 封裝:SOP16/DFN16(超小超薄體積) VK36N4B ---工作電壓/電流:2.2V-5.5V/7UA-3V3 感應通道數:4 BCD輸出 觸摸積水仍可操作,抗電源及手機干擾 封裝:SOP16/DFN16(超小超薄體積) VK36N4I---工作電壓/電流:2.2V-5.5V/7UA-3V3 感應通道數:4 I2C輸出 觸摸積水仍可操作,抗電源及手機干擾 封裝:SOP16/DFN16(超小超薄體積) VK36N5D ---工作電壓/電流:2.2V-5.5V/7UA-3V3 感應通道數:5 1對1直接輸出 觸摸積水仍可操作,抗電源及手機干擾 封裝:SOP16/DFN16(超小超薄體積) VK36N5B ---工作電壓/電流:2.2V-5.5V/7UA-3V3 感應通道數:5 BCD輸出 觸摸積水仍可操作,抗電源及手機干擾 封裝:SOP16/DFN16(超小超薄體積) VK36N5I ---工作電壓/電流:2.2V-5.5V/7UA-3V3 感應通道數:5 I2C輸出 觸摸積水仍可操作,抗電源及手機干擾 封裝:SOP16/DFN16(超小超薄體積) VK36N6D --- 工作電壓/電流:2.2V-5.5V/7UA-3V3 感應通道數:6 1對1直接輸出 觸摸積水仍可操作,抗電源及手機干擾 封裝:SOP16/DFN16(超小超薄體積) VK36N6B ---工作電壓/電流:2.2V-5.5V/7UA-3V3 感應通道數:6 BCD輸出 觸摸積水仍可操作,抗電源及手機干擾 封裝:SOP16/DFN16(超小超薄體積) VK36N6I ---工作電壓/電流:2.2V-5.5V/7UA-3V3 感應通道數:6 I2C輸出 觸摸積水仍可操作,抗電源及手機干擾 封裝:SOP16/DFN16(超小超薄體積) VK36N7B ---工作電壓/電流:2.2V-5.5V/7UA-3V3 感應通道數:7 BCD輸出 觸摸積水仍可操作,抗電源及手機干擾 封裝:SOP16/DFN16(超小超薄體積) VK36N7I ---工作電壓/電流:2.2V-5.5V/7UA-3V3 感應通道數:7 I2C輸出 觸摸積水仍可操作,抗電源及手機干擾 封裝:SOP16/DFN16(超小超薄體積) VK36N8B ---工作電壓/電流:2.2V-5.5V/7UA-3V3 感應通道數:8 BCD輸出 觸摸積水仍可操作,抗電源及手機干擾 封裝:SOP16/DFN16(超小超薄體積) VK36N8I ---工作電壓/電流:2.2V-5.5V/7UA-3V3 感應通道數:8 I2C輸出 觸摸積水仍可操作,抗電源及手機干擾 封裝:SOP16/DFN16(超小超薄體積) VK36N9I ---工作電壓/電流:2.2V-5.5V/7UA-3V3 感應通道數:9 I2C輸出 觸摸積水仍可操作,抗電源及手機干擾 封裝:SOP16/DFN16(超小超薄體積) VK36N10I ---工作電壓/電流:2.2V-5.5V/7UA-3V3 感應通道數:10 I2C輸出 觸摸積水仍可操作,抗電源及手機干擾 封裝:SOP16/DFN16(超小超薄體積) 1-8點高靈敏度液體水位檢測IC——VK36W系列 VK36W1D ---工作電壓/電流:2.2V-5.5V/10UA-3V3 1對1直接輸出 水位檢測通道:1 可用于不同壁厚和不同水質水位檢測,抗電源/手機干擾封裝:SOT23-6 備注:1. 開漏輸出低電平有效 2、適合需要抗干擾性好的應用 VK36W2D ---工作電壓/電流:2.2V-5.5V/10UA-3V3 1對1直接輸出 水位檢測通道:2 可用于不同壁厚和不同水質水位檢測,抗電源/手機干擾封裝:SOP8 備注:1. 1對1直接輸出 2、輸出模式/輸出電平可通過IO選擇 VK36W4D ---工作電壓/電流:2.2V-5.5V/10UA-3V3 1對1直接輸出 水位檢測通道:4 可用于不同壁厚和不同水質水位檢測,抗電源/手機干擾封裝:SOP16/DFN16 備注:1. 1對1直接輸出 2、輸出模式/輸出電平可通過IO選擇 VK36W6D ---工作電壓/電流:2.2V-5.5V/10UA-3V3 1對1直接輸出 水位檢測通道:6 可用于不同壁厚和不同水質水位檢測,抗電源/手機干擾封裝:SOP16/DFN16 備注:1. 1對1直接輸出 2、輸出模式/輸出電平可通過IO選擇 VK36W8I ---工作電壓/電流:2.2V-5.5V/10UA-3V3 I2C輸出 水位檢測通道:8 可用于不同壁厚和不同水質水位檢測,抗電源/手機干擾封裝:SOP16/DFN16 備注:1. IIC+INT輸出 2、輸出模式/輸出電平可通過IO選擇 KPP841
標簽: 3604 輸出 VK 體積 藍牙音箱 檢測 方式 芯片 觸控 鎖存
上傳時間: 2022-04-11
上傳用戶:shubashushi66
Abstract: Many digital devices incorporate analog circuits. For instance, microprocessors, applicationspecificintegrated circuits (ASICs), and field-programmable gate arrays (FPGAs) may have internalvoltage references, analog-to-digital converters (ADCs) or digital-to-analog converters (DACs). However,there are challenges when you integrate more analog onto a digital design. As with all things in life, inelectronics we must always trade one parameter for another, with the application dictating the propertrade-off of analog function. In this application note, we examine how the demand for economy of spaceand cost pushes analog circuits onto digital substrates, and what design challenges emerge.
上傳時間: 2013-11-17
上傳用戶:菁菁聆聽
Abstract: This application note describes a new generation of digital-input Class D audio amplifiers that achieve high PSRRperformance, comparable to traditional analog Class D amplifiers. More importantly, these digital-input Class D amplifiersprovide additional benefits of reduced power, complexity, noise, and system cost.
上傳時間: 2013-12-20
上傳用戶:JIUSHICHEN
Abstract: This application note describes how sampling clock jitter (time interval error or "TIE jitter") affectsthe performance of delta-sigma digital-to-analog converters (DACs). New insights explain the importanceof separately specifying low-frequency (< 2x passband frequency) and high-frequency or wideband (> 2xpassband frequency) jitter tolerance in these devices. The article also provides an application example ofa simple highly jittered cycle-skipped sampling clock and describes a method for generating a properbroadband jittered clock. The document then goes on to compare Maxim's audio DAC jitter tolerance tocompetitor audio DACs. Maxim's exceptionally high jitter tolerance allows very simple and low-cost sampleclock implementations.
上傳時間: 2013-10-25
上傳用戶:banyou
The MAX5713/MAX5714/MAX5715 4-channel, low-power,8-/10-/12-bit, voltage-output digital-to-analog converters(DACs) include output buffers and an internal referencethat is selectable to be 2.048V, 2.500V, or 4.096V. TheMAX5713/MAX5714/MAX5715 accept a wide supplyvoltage range of 2.7V to 5.5V with extremely low power(3mW) consumption to accommodate most low-voltageapplications. A precision external reference input allowsrail-to-rail operation and presents a 100kI (typ) load toan external reference.
上傳時間: 2013-12-23
上傳用戶:ArmKing88
Abstract: This tutorial discusses methods for digitally adjusting the output voltage of a DC-DC converter. The digital adjustmentmethods are with a digital-to-analog converter (DAC), a trim pot (digital potentiometer), and PWM output of a microprocessor.Each method is assessed and several DACs and digital potentiometers presented.
上傳時間: 2013-11-20
上傳用戶:zycidjl
Abstract: This article discusses application circuits for Maxim force/sense digital-to-analog converters (DACs). Applications include:selectable fixed-gain DAC, programmable gain DAC, photodiode bias control, amperometric sensor control, digitally programmablecurrent source, Kelvin load sensing, temperature sensing, and high current DAC output. A brief description of the various DAC outputconfigurations is also given.
標簽: DAC
上傳時間: 2013-11-04
上傳用戶:youmo81
Digital-to-analog converters (DACs) are prevalent inindustrial control and automated test applications.General-purpose automated test equipment often requiresmany channels of precisely controlled voltagesthat span several voltage ranges. The LTC2704 is ahighly integrated 16-bit, 4-channel DAC for high-endapplications. It has a wide range of features designed toincrease performance and simplify design.
上傳時間: 2013-11-22
上傳用戶:元宵漢堡包
Differential Nonlinearity: Ideally, any two adjacent digitalcodes correspond to output analog voltages that are exactlyone LSB apart. Differential non-linearity is a measure of theworst case deviation from the ideal 1 LSB step. For example,a DAC with a 1.5 LSB output change for a 1 LSB digital codechange exhibits 1⁄2 LSB differential non-linearity. Differentialnon-linearity may be expressed in fractional bits or as a percentageof full scale. A differential non-linearity greater than1 LSB will lead to a non-monotonic transfer function in aDAC.Gain Error (Full Scale Error): The difference between theoutput voltage (or current) with full scale input code and theideal voltage (or current) that should exist with a full scale inputcode.Gain Temperature Coefficient (Full Scale TemperatureCoefficient): Change in gain error divided by change in temperature.Usually expressed in parts per million per degreeCelsius (ppm/°C).Integral Nonlinearity (Linearity Error): Worst case deviationfrom the line between the endpoints (zero and full scale).Can be expressed as a percentage of full scale or in fractionof an LSB.LSB (Lease-Significant Bit): In a binary coded system thisis the bit that carries the smallest value or weight. Its value isthe full scale voltage (or current) divided by 2n, where n is theresolution of the converter.Monotonicity: A monotonic function has a slope whose signdoes not change. A monotonic DAC has an output thatchanges in the same direction (or remains constant) for eachincrease in the input code. the converse is true for decreasing codes.
標簽: Converters Defini DAC
上傳時間: 2013-10-30
上傳用戶:stvnash
特點(FEATURES) 精確度0.1%滿刻度 (Accuracy 0.1%F.S.) 可作各式數學演算式功能如:A+B/A-B/AxB/A/B/A&B(Hi or Lo)/|A| (Math functioA+B/A-B/AxB/A/B/A&B(Hi&Lo)/|A|/etc.....) 16 BIT 類比輸出功能(16 bit DAC isolating analog output function) 輸入/輸出1/輸出2絕緣耐壓2仟伏特/1分鐘(Dielectric strength 2KVac/1min. (input/output1/output2/power)) 寬范圍交直流兩用電源設計(Wide input range for auxiliary power) 尺寸小,穩定性高(Dimension small and High stability)
上傳時間: 2013-11-24
上傳用戶:541657925