CXDR75111 CXDR75112

CXDR75111 CXDR75112 are microprocessor (μP) supervisory circuits used to monitor the power supplies in μP and digital systems. High- and Low- voltage thresholds can be adjusted independently, allowing for wide hysteresis. Voltage detection thresholds are accurate to 2%. These circuits perform a single function: they assert a reset signal whenever the VCC supply voltage declines below the low-voltage threshold, keeping it asserted for at least 140ms after VCC has risen above the high-voltage threshold. The CXDR75112L has an open-drain output stage, while the CXDR75111 have push-pull outputs. The GCXDR75112’s open-drain RESET output requires a pull-up resistor that can be connected to a voltage higher than VCC. The GCXDR75111 have an active-low RESET output, while the GCXDR75111 has an active-high RESET output. The reset comparator is designed to ignore fast transients on threshold input. The IC’s power supply is separate from the detector inputs, allowing the CXDR75111/CXDR75112 to be powered from a down-stream supply. Low supply current (4μA, typical) makes the CXDR75111/CXDR75112 ideal for use in portable equipment. The CXDR75111/CXDR75112 are available in SOT -23-5 packages.

CXDR75111 CXDR75112 are microprocessor (μP) supervisory circuits used to monitor the power supplies in μP and digital systems. High- and Low- voltage thresholds can be adjusted independently, allowing

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1.产品概述       2.产品特点     uX4嘉泰姆

3.应用范围       4.技术规格书下载(PDF文档)uX4嘉泰姆

5.产品封装       6.电路原理图  uX4嘉泰姆

7.相关产品uX4嘉泰姆

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The CXDR75111/CXDR75112 are microprocessor (μP) supervisory circuits used to monitor the power supplies in μP and digital systems. High- and Low- voltage thresholds can be adjusted independently, allowing for wide hysteresis. Voltage detection thresholds are accurate to 2%. These circuits perform a single function: they assert a reset signal whenever the VCC supply voltage declines below the low-voltage threshold, keeping it asserted for at least 140ms after VCC has risen above the high-voltage threshold. The CXDR75112L has an open-drain output stage, while the CXDR75111 have push-pull outputs. The GCXDR75112’s open-drain RESET output requires a pull-up resistor that can be connected to a voltage higher than VCC. The GCXDR75111 have an active-low RESET output, while the GCXDR75111 has an active-high RESET output. The reset comparator is designed to ignore fast transients on threshold input. The IC’s power supply is separate from the detector inputs, allowing the CXDR75111/CXDR75112 to be powered from a down-stream supply. Low supply current (4μA, typical) makes the CXDR75111/CXDR75112 ideal for use in portable equipment. The CXDR75111/CXDR75112 are available in SOT -23-5 packages.

   产品特点 返回TOPuX4嘉泰姆


„ ±2.5% Voltage Threshold Accuracy uX4嘉泰姆

„ Independently Adjustable High- and LowVoltage Thresholds uX4嘉泰姆

„ Fully Specified Over Temperature uX4嘉泰姆

„ Available in Three Output Configurations Push-Pull RESET Output (CXDR75111L) Push-Pull RESET Output (CXDR75111H) Open-Drain RESET Output (CXDR75112L) uX4嘉泰姆

„ 140ms min Power-On Reset Pulse Width uX4嘉泰姆

„ 4μA Supply Current uX4嘉泰姆

„ Power Supply Transient Immunity uX4嘉泰姆

„ SOT-23-5 PackagesuX4嘉泰姆

   应用范围 返回TOPuX4嘉泰姆


„ Computers uX4嘉泰姆

„ Controllers uX4嘉泰姆

„ Intelligent Instruments uX4嘉泰姆

„ Critical μP and μC Power Monitoring uX4嘉泰姆

„ Portable / Battery-Powered Equipment uX4嘉泰姆

„ AutomotiveuX4嘉泰姆

   技术规格书(产品PDF) 返回TOP uX4嘉泰姆


     需要详细的PDF规格书请扫一扫微信联系我们,还可以获得免费样品以及技术支持uX4嘉泰姆

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电路原理图 返回TOPuX4嘉泰姆

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 uX4嘉泰姆

Part   NO.uX4嘉泰姆

VCC(VuX4嘉泰姆

minuX4嘉泰姆

VCC(VuX4嘉泰姆

maxuX4嘉泰姆

DetectinguX4嘉泰姆

Voltage(V)uX4嘉泰姆

ManualuX4嘉泰姆

Delay (ms)uX4嘉泰姆

VthAccuX4嘉泰姆

uracy(%)uX4嘉泰姆

IsupplyuX4嘉泰姆

(μA)uX4嘉泰姆

NoteuX4嘉泰姆

PackageuX4嘉泰姆

CXDR75101uX4嘉泰姆

/2uX4嘉泰姆

1uX4嘉泰姆

5.5uX4嘉泰姆

2.93uX4嘉泰姆

NuX4嘉泰姆

360uX4嘉泰姆

--uX4嘉泰姆

9uX4嘉泰姆

CXDR75101 is a Push-Pull Reset  uX4嘉泰姆

CXDR75102 is an OpenDrain ResetuX4嘉泰姆

SOT23uX4嘉泰姆

CXDR75103uX4嘉泰姆

1uX4嘉泰姆

5.5uX4嘉泰姆

3/3.3/5uX4嘉泰姆

YuX4嘉泰姆

360uX4嘉泰姆

2uX4嘉泰姆

10uX4嘉泰姆

Push-Pull Active-low RESET Output uX4嘉泰姆

Manual Reset InputuX4嘉泰姆

SOT143uX4嘉泰姆

CXDR75104uX4嘉泰姆

/5/6uX4嘉泰姆

1.1uX4嘉泰姆

5.5uX4嘉泰姆

2.25/2.63uX4嘉泰姆

2.93/4.55uX4嘉泰姆

YuX4嘉泰姆

200uX4嘉泰姆

2uX4嘉泰姆

10uX4嘉泰姆

CXDR75104/5/6 has a watchdog uX4嘉泰姆

output CXDR75104/5 has MR# uX4嘉泰姆

SOT23-5uX4嘉泰姆

CXDR75107uX4嘉泰姆

1.1uX4嘉泰姆

5.5uX4嘉泰姆

2.25/2.63uX4嘉泰姆

2.93/4.55uX4嘉泰姆

YuX4嘉泰姆

200uX4嘉泰姆

2uX4嘉泰姆

10uX4嘉泰姆

Push-Pull Output,Dual outputsuX4嘉泰姆

SOT23-5uX4嘉泰姆

CXDR75108uX4嘉泰姆

/9uX4嘉泰姆

1uX4嘉泰姆

5.5uX4嘉泰姆

2.6/2.9/3.1uX4嘉泰姆

3.3/3.9/4.3uX4嘉泰姆

NuX4嘉泰姆

2uX4嘉泰姆

2uX4嘉泰姆

16.5uX4嘉泰姆

CXDR75108H/L is a Push-Pull uX4嘉泰姆

High/Low Reset CXDR75109L is uX4嘉泰姆

an Open-drain Low ResetuX4嘉泰姆

SOT23uX4嘉泰姆

SC70-3uX4嘉泰姆

TO92/SOT89uX4嘉泰姆

CXDR75110uX4嘉泰姆

1uX4嘉泰姆

5.5uX4嘉泰姆

2.3/2.5uX4嘉泰姆

NuX4嘉泰姆

0.06uX4嘉泰姆

1.5uX4嘉泰姆

3.3uX4嘉泰姆

CXDR75110H is an  Open-Drain uX4嘉泰姆

High Reset CXDR75110L is an uX4嘉泰姆

Open-Drain Low ResetuX4嘉泰姆

SC70-4uX4嘉泰姆

SC82uX4嘉泰姆

SOT343uX4嘉泰姆

CXDR75111uX4嘉泰姆

/2uX4嘉泰姆

2.5uX4嘉泰姆

5.5uX4嘉泰姆

Individual SetuX4嘉泰姆

 by ResistoruX4嘉泰姆

NuX4嘉泰姆

140uX4嘉泰姆

2.5uX4嘉泰姆

4uX4嘉泰姆

CXDR75111H/L is a Push-Pull uX4嘉泰姆

High/Low Reset CXDR75112L is uX4嘉泰姆

an Open-Drain Low ResetuX4嘉泰姆

SOT23-5uX4嘉泰姆

CXDR75113uX4嘉泰姆

/4uX4嘉泰姆

2.7uX4嘉泰姆

5.5uX4嘉泰姆

Individual SeuX4嘉泰姆

tby ResistoruX4嘉泰姆

YuX4嘉泰姆

200uX4嘉泰姆

2uX4嘉泰姆

18uX4嘉泰姆

CXDR75113H/L is a Push-Pull uX4嘉泰姆

High/Low Reset CXDR75114L uX4嘉泰姆

is an Open-Drain Low ResetuX4嘉泰姆

SOT23-5uX4嘉泰姆

CXDR75115uX4嘉泰姆

/6uX4嘉泰姆

1uX4嘉泰姆

5.5uX4嘉泰姆

2.63/2.93/uX4嘉泰姆

3.08/4.0/uX4嘉泰姆

4.38/4.63uX4嘉泰姆

NuX4嘉泰姆

140uX4嘉泰姆

2uX4嘉泰姆

10uX4嘉泰姆

CXDR75115H/L is a Push-Pull uX4嘉泰姆

High/Low Reset CXDR75116L uX4嘉泰姆

is an Open-Drain Low ResetuX4嘉泰姆

SOT23uX4嘉泰姆

SC70-3uX4嘉泰姆

CXDR75117uX4嘉泰姆

/8uX4嘉泰姆

1uX4嘉泰姆

5.5uX4嘉泰姆

2.64/2.91/3.1uX4嘉泰姆

3.96/4.32/4.6uX4嘉泰姆

YuX4嘉泰姆

230uX4嘉泰姆

2uX4嘉泰姆

14uX4嘉泰姆

CXDR75117H/L is a Push-Pull uX4嘉泰姆

High/Low Reset CXDR75118L isuX4嘉泰姆

an Open-Drain Low ResetuX4嘉泰姆

SOT25uX4嘉泰姆

SC70-5uX4嘉泰姆

SOT143uX4嘉泰姆

◀ 上一篇:CXDR75110 is a micro-power voltage detector supervising the power supply voltage level for microprocessors (μP) or digital systems. They provide excellent circuit reliability and low cost by eliminati

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