
制造商:TI
The LF298 and LFx98x devices are monolithic sample-and-hold circuits that use BI-FET technology to obtain ultrahigh DC accuracy with fast acquisition of signal and low droop rate. Operating as a unity-gain follower, DC gain accuracy is 0.002% typical and acquisition time is as low as 6 μs to 0.01%. A bipolar input stage is used to achieve low offset voltage and wide bandwidth. Input offset adjust is accomplished with a single pin and does not degrade input offset drift. The wide bandwidth allows the LF198-N to be included inside the feedback loop of 1-MHz operational amplifiers without having stability problems. Input impedance of 1010 Ω allows high-source impedances to be used without degrading accuracy.
P-channel junction FETs are combined with bipolar devices in the output amplifier to give droop rates as low as 5 mV/min with a 1-μF hold capacitor. The JFETs have much lower noise than MOS devices used in previous designs and do not exhibit high temperature instabilities. The overall design ensures no feedthrough from input to output in the hold mode, even for input signals equal to the supply voltages.
Logic inputs on the LF198-N are fully differential with low input current, allowing for direct connection to TTL, PMOS, and CMOS. Differential threshold is
1.4 V. The LF198-N will operate from ±5-V to ±18-V supplies.
An A version is available with tightened electrical specifications.
Operates from ±5-V to ±18-V Supplies
Less than 10-μs Acquisition Time
Logic Input Compatible With TTL, PMOS, CMOS
0.5-mV Typical Hold Step at Ch = 0.01 μF
Low Input Offset
0.002% Gain Accuracy
Low Output Noise in Hold Mode
Input Characteristics Do Not Change During Hold Mode
High Supply Rejection Ratio in Sample or Hold
Wide Bandwidth
Space Qualified, JM38510
LF398-N 封裝圖
LF398-N 封裝圖
LF398-N電路圖
LF398-N 引腳圖
型號 | 制造商 | 描述 | 購買 |
---|---|---|---|
LF398N/NOPB | TI | LF398-N 單片采樣保持電路(10μs 采集,7mV 失調(diào)電壓) | 立即購買 |
LF398M | TI | 立即購買 | |
LF398AN/NOPB | TI | 采樣和保持 放大器 1 電路 8DIP | 立即購買 |
LF398M/NOPB | TI | LF398-N 單片采樣保持電路(10μs 采集,7mV 失調(diào)電壓) | 立即購買 |
LF398MX/NOPB | TI | LF398-N 單片采樣保持電路(10μs 采集,7mV 失調(diào)電壓) | 立即購買 |
? | - | - | 立即購買 |
峰值電壓采樣保持電路:峰值電壓采樣保持電路如圖12-50所示。峰值電壓采樣保持電路南一片采樣保持器芯片LF398和一塊電壓比較器LM311構(gòu)成。LF398的輸出電壓和輸入電壓通過LM3J1進(jìn)行比較t當(dāng)U.》Uo時.
由于成本上的優(yōu)勢,目前市場上的NAND閃存主流已經(jīng)變成了TLC、QLC,MLC都很罕見了,SLC閃存更是鳳毛麟角,消費(fèi)級市場上幾乎消失了。
摘要 :本文介紹了一種以采樣/ 保持器 L F398 芯片為主要器件的峰值保持電路。該電路具有結(jié)構(gòu)簡單、調(diào)試方便、性能優(yōu)良等優(yōu)點(diǎn) ,可廣泛應(yīng)用于各種脈沖分析系統(tǒng)。
兩個采樣保持放大器LF398構(gòu)成的階梯波發(fā)生電路圖 如圖所示為由兩個LF398構(gòu)成的階梯波發(fā)生電路。初始狀態(tài):兩個
lf198/lf298/lf398應(yīng)用電路
在A/D轉(zhuǎn)換后能跟蹤輸入信號的變化。能完成這種功能的器件叫采樣/保持器。采樣/保持器在保持階段相當(dāng)于一個“模擬信號存儲器”。
.LF398的8腳是采樣/保持的邏輯控制端,當(dāng)該控制端輸入高電平時,LF398進(jìn)行采樣,而輸入低電平時保持。保持時,回路阻抗很大,故保持能力 很強(qiáng);采樣時,輸入信號使采樣/保持電容Ch迅速充電到Ui。Ch的質(zhì)量對電 路的性能影響...
當(dāng)作為單一放大器時,其直流增益精度為0.002%,采樣時間小于6us時精度可達(dá)0.01%;輸入偏置電壓的調(diào)整只需在偏置端(2腳)調(diào)整即可,并且在不降低偏置電流的情況下,帶寬允許1MHz,其主要
LM324-MIL | LAN9313 | LM833 | LC709203F |
LMV331 | LM258_XFCS | LAN9220 | LE25U40PCMC |
LM385-1.2-N | LIS2HH12 | LM339S | LM2903 |
LM555 | LMV242 | LMK03806 | LMV982 |
LMC6081-MIL | LA6597FMC | LV8907UW | LMK04805 |