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    MAX6366 Search Results

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    MAX6366 Price and Stock

    Maxim Integrated Products MAX6366PKA29-T

    IC SUPERVISOR 1 CHANNEL SOT23-8
    Distributors Part Package Stock Lead Time Min Order Qty Price Buy
    DigiKey MAX6366PKA29-T Cut Tape 1,896 1
    • 1 $9.64
    • 10 $6.685
    • 100 $5.0694
    • 1000 $4.19503
    • 10000 $4.19503
    Buy Now
    MAX6366PKA29-T Digi-Reel 1,896 1
    • 1 $9.64
    • 10 $6.685
    • 100 $5.0694
    • 1000 $4.19503
    • 10000 $4.19503
    Buy Now
    Rochester Electronics MAX6366PKA29-T 5,020 1
    • 1 $2.58
    • 10 $2.58
    • 100 $2.43
    • 1000 $2.19
    • 10000 $2.19
    Buy Now

    Maxim Integrated Products MAX6366PKA31-T

    IC SUPERVISOR MPU LP SOT23-8
    Distributors Part Package Stock Lead Time Min Order Qty Price Buy
    DigiKey MAX6366PKA31-T Digi-Reel 1,340 1
    • 1 $10.23
    • 10 $6.958
    • 100 $5.1389
    • 1000 $4.725
    • 10000 $4.725
    Buy Now
    MAX6366PKA31-T Cut Tape 1,340 1
    • 1 $10.23
    • 10 $6.958
    • 100 $5.1389
    • 1000 $4.725
    • 10000 $4.725
    Buy Now
    MAX6366PKA31-T 136 1
    • 1 $10.23
    • 10 $6.958
    • 100 $5.1389
    • 1000 $5.1389
    • 10000 $5.1389
    Buy Now

    Rochester Electronics LLC MAX6366PKA23

    IC SUPERVISOR 1 CHANNEL SOT23-8
    Distributors Part Package Stock Lead Time Min Order Qty Price Buy
    DigiKey MAX6366PKA23 Bulk 102
    • 1 -
    • 10 -
    • 100 -
    • 1000 $2.96
    • 10000 $2.96
    Buy Now

    Rochester Electronics LLC MAX6366HKA29

    IC SUPERVISOR 1 CHANNEL SOT23-8
    Distributors Part Package Stock Lead Time Min Order Qty Price Buy
    DigiKey MAX6366HKA29 Bulk 102
    • 1 -
    • 10 -
    • 100 -
    • 1000 $2.96
    • 10000 $2.96
    Buy Now

    Rochester Electronics LLC MAX6366PKA29-

    MAX6366 LOW-POWER MICROPROCESSO
    Distributors Part Package Stock Lead Time Min Order Qty Price Buy
    DigiKey MAX6366PKA29- Bulk 117
    • 1 -
    • 10 -
    • 100 -
    • 1000 $2.57
    • 10000 $2.57
    Buy Now

    MAX6366 Datasheets (96)

    Part ECAD Model Manufacturer Description Curated Datasheet Type PDF
    MAX6366 Maxim Integrated Products SOT23, Low-Power uP Supervisory Circuits with Battery Backup and Chip-Enable Gating Original PDF
    MAX6366 Maxim Integrated Products SOT23, Low-Power uP Supervisory Circuits with Battery Backup and Chip-Enable Gating Original PDF
    MAX6366HKA23 Maxim Integrated Products SOT23, Low-Power uP Supervisory Circuit with Battery Backup and Chip-Enable Gating Original PDF
    MAX6366HKA23 Maxim Integrated Products Low-Power uP Supervisory Circuit with Chip-Enable Gating Original PDF
    MAX6366HKA23+ Maxim Integrated Products SOT23, Low-Power uP Supervisory Circuits with Battery Backup and Chip-Enable Gating Original PDF
    MAX6366HKA23+T Maxim Integrated Products SOT23, Low-Power uP Supervisory Circuits with Battery Backup and Chip-Enable Gating Original PDF
    MAX6366HKA23-T Maxim Integrated Products 2.38 V, SOT23, low-power, uP supervisory circuit with battery backup and chip-enable gating Original PDF
    MAX6366HKA26 Maxim Integrated Products SOT23, Low-Power uP Supervisory Circuit with Battery Backup and Chip-Enable Gating Original PDF
    MAX6366HKA26 Maxim Integrated Products Low-Power uP Supervisory Circuit with Chip-Enable Gating Original PDF
    MAX6366HKA26+ Maxim Integrated Products SOT23, Low-Power uP Supervisory Circuits with Battery Backup and Chip-Enable Gating Original PDF
    MAX6366HKA26+T Maxim Integrated Products SOT23, Low-Power uP Supervisory Circuits with Battery Backup and Chip-Enable Gating Original PDF
    MAX6366HKA26-T Maxim Integrated Products 2.70 V, SOT23, low-power, uP supervisory circuit with battery backup and chip-enable gating Original PDF
    MAX6366HKA29 Maxim Integrated Products SOT23, Low-Power uP Supervisory Circuit with Battery Backup and Chip-Enable Gating Original PDF
    MAX6366HKA29 Maxim Integrated Products Low-Power uP Supervisory Circuit with Chip-Enable Gating Original PDF
    MAX6366HKA29+ Maxim Integrated Products SOT23, Low-Power uP Supervisory Circuits with Battery Backup and Chip-Enable Gating Original PDF
    MAX6366HKA29+T Maxim Integrated Products SOT23, Low-Power uP Supervisory Circuits with Battery Backup and Chip-Enable Gating Original PDF
    MAX6366HKA29-T Maxim Integrated Products 3.00 V, SOT23, low-power, uP supervisory circuit with battery backup and chip-enable gating Original PDF
    MAX6366HKA31 Maxim Integrated Products Low-Power uP Supervisory Circuit with Chip-Enable Gating Original PDF
    MAX6366HKA31 Maxim Integrated Products SOT23, Low-Power uP Supervisory Circuit with Battery Backup and Chip-Enable Gating Original PDF
    MAX6366HKA31+ Maxim Integrated Products SOT23, Low-Power uP Supervisory Circuits with Battery Backup and Chip-Enable Gating Original PDF

    MAX6366 Datasheets Context Search

    Catalog Datasheet MFG & Type PDF Document Tags

    MAX6365

    Abstract: MAX6366 MAX6367 MAX6368 MAX6367PKA44 aabp marking code aaaM AABW marking code AABJ
    Text: 19-1658; Rev 4; 5/09 SOT23, Low-Power µP Supervisory Circuits with Battery Backup and Chip-Enable Gating Features The MAX6365MAX6368 supervisory circuits simplify power-supply monitoring, battery-backup control functions, and memory write protection in microprocessor


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    PDF MAX6365 MAX6368 MAX6368 MAX6366 MAX6367 MAX6367PKA44 aabp marking code aaaM AABW marking code AABJ

    AACE

    Abstract: AABE marking aabi AABJ marking code R2 sot23 MAX6365 MAX6366 MAX6367 MAX6368 AAAX
    Text: 19-1658; Rev 1; 6/01 SOT23, Low-Power µP Supervisory Circuits with Battery Backup and Chip-Enable Gating Features ♦ Low +1.2V Operating Supply Voltage VCC or VBATT ♦ Precision Monitoring of +5.0V, +3.3V, +3.0V, and +2.5V Power-Supply Voltages ♦ On-Board Gating of Chip-Enable Signals, 1.5ns


    Original
    PDF MAX6365) MAX6366) MAX6367) MAX6368) 150ms MAX6365 MAX6368 AACE AABE marking aabi AABJ marking code R2 sot23 MAX6366 MAX6367 MAX6368 AAAX

    MAX6364

    Abstract: MAX6361 MAX6362 MAX6363 MAX6365 MAX6365-MAX6368 MAX6366 MAX6367 MAX6368
    Text: SMALLEST, LOWEST POWER BATTERY SWITCHOVER ICs OPTIMIZED FOR PORTABLE SYSTEMS Reduce Supply Current by 20x and Cut Board Space by 70% T23 SO -6 +2.4V TO +5.5V m m x 3.0 MAX6361MAX6364 m m m m 3.0 3.0 m ♦ Backup-Battery Switchover T23 SO -8 m x 3.0 MAX6365MAX6368


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    PDF MAX6361-MAX6364 MAX6365-MAX6368 MAX6365 MAX6364 MAX6361 MAX6362 MAX6363 MAX6365 MAX6365-MAX6368 MAX6366 MAX6367 MAX6368

    max14574

    Abstract: MAX1786 MAX1788 MAX8899 DS1849 MAX16908 MAX4967 DS3610 max17018 max13487
    Text: Monitor Reports by Product: 1. Find the product of interest in the table below. Note the process and/or package for that product. 2. Use the "Back" button to return to the home page. 3. Select the process in the "Process Reliability" for the product of interest.


    Original
    PDF

    marking code AABJ

    Abstract: sot23 mark code AAAM marking code aaam aabp AABB SOT23 5
    Text: 19-1658; Rev 5; 10/11 SOT23, Low-Power µP Supervisory Circuits with Battery Backup and Chip-Enable Gating Features The MAX6365MAX6368 supervisory circuits simplify power-supply monitoring, battery-backup control functions, and memory write protection in microprocessor


    Original
    PDF MAX6365 MAX6368 MAX6368 marking code AABJ sot23 mark code AAAM marking code aaam aabp AABB SOT23 5

    marking code AABJ

    Abstract: AACE AABE marking aabi AABJ marking code ce SOT23 marking code R2 sot23 MAX6365 MAX6366 MAX6367
    Text: 19-1658; Rev 3; 12/05 SOT23, Low-Power µP Supervisory Circuits with Battery Backup and Chip-Enable Gating Features The MAX6365MAX6368 supervisory circuits simplify power-supply monitoring, battery-backup control functions, and memory write protection in microprocessor


    Original
    PDF MAX6365 MAX6368 MO178 OT-23, MAX6368 marking code AABJ AACE AABE marking aabi AABJ marking code ce SOT23 marking code R2 sot23 MAX6366 MAX6367

    intel 80.82

    Abstract: MAX6820 32khz 3 channel clock ic 8mhz resonator maxim adc 16 bit 8 channel Dual Comparators fet input ESD Pushbutton data sheet glucose INTEL 80,82 MAX6355
    Text: µP SUPERVISORY MIXED SIGNAL 5 DESIGN GUIDE Data Sheets Applications Notes • • Free Samples N ITIO D E 21st Maximize Your System Uptime X µMA SO T2 3 µP SUPERVISORS MONITOR DOWN TO 0.5V MAX6700/MAX6709/MAX6710/MAX6714 MAX6715MAX6745 • Monitor 3 to 4 Voltages


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    PDF MAX6700/MAX6709/MAX6710/MAX6714 MAX6715 MAX6745 MAX6381 MAX6390 10-bit intel 80.82 MAX6820 32khz 3 channel clock ic 8mhz resonator maxim adc 16 bit 8 channel Dual Comparators fet input ESD Pushbutton data sheet glucose INTEL 80,82 MAX6355

    MAX6367PKA29

    Abstract: maxim CODE TOP MARKING MARKING AABV marking code AABJ aabp marking aabz sot23 AAAK marking 8pin aabi marking AACE marking code R2 sot23
    Text: 19-1658; Rev 0; 7/00 SOT23, Low-Power µP Supervisory Circuits with Battery Backup and Chip-Enable Gating Features ♦ Low +1.2V Operating Supply Voltage VCC or VBATT ♦ Precision Monitoring of +5.0V, +3.3V, +3.0V, and +2.5V Power-Supply Voltages ♦ On-Board Gating of Chip-Enable Signals, 1.5ns


    Original
    PDF MAX6365) MAX6366) MAX6367) MAX6368) 150ms MAX6365 MAX6368 MAX6367PKA29 maxim CODE TOP MARKING MARKING AABV marking code AABJ aabp marking aabz sot23 AAAK marking 8pin aabi marking AACE marking code R2 sot23

    marking code aaaM

    Abstract: 6 marking aaav sot23 mark code AAAM AACE AABE marking aabi AABJ marking code ce SOT23 MAX6365 marking code aabh
    Text: 19-1658; Rev 1; 6/01 SOT23, Low-Power µP Supervisory Circuits with Battery Backup and Chip-Enable Gating Features ♦ Low +1.2V Operating Supply Voltage VCC or VBATT ♦ Precision Monitoring of +5.0V, +3.3V, +3.0V, and +2.5V Power-Supply Voltages ♦ On-Board Gating of Chip-Enable Signals, 1.5ns


    Original
    PDF MAX6365) MAX6366) MAX6367) MAX6368) 150ms MAX6365 MAX6368 marking code aaaM 6 marking aaav sot23 mark code AAAM AACE AABE marking aabi AABJ marking code ce SOT23 marking code aabh

    aabi

    Abstract: AACE AABJ MAX6366 MAX6367 MAX6368 KA46 MAX636 MAX6365 MAX6367HKA31
    Text: 19-1658; Rev 0; 4/00 SOT23, Low-Power µP Supervisory Circuits with Battery Backup and Chip-Enable Gating Features ♦ Low +1.2V Operating Supply Voltage VCC or VBATT ♦ Precision Monitoring of +5.0, +3.3V, +3.0V, and +2.5V Power-Supply Voltages ♦ On-Board Gating of Chip-Enable Signals, 1.5ns


    Original
    PDF MAX6365) MAX6366) MAX6367) MAX6368) 150ms MAX6365 MAX6368 aabi AACE AABJ MAX6366 MAX6367 MAX6368 KA46 MAX636 MAX6367HKA31

    SOT-23 aabd

    Abstract: AACE MAX636 5 PIN SOT-23 MARKING AABB aabi AABJ marking code R2 sot23 AAAX MAX6365-8 AABY
    Text: 19-1658; Rev 2; 5/05 SOT23, Low-Power µP Supervisory Circuits with Battery Backup and Chip-Enable Gating Features The MAX6365MAX6368 supervisory circuits simplify power-supply monitoring, battery-backup control functions, and memory write protection in microprocessor


    Original
    PDF MAX6365 MAX6368 MO178. OT-23, MAX6368 SOT-23 aabd AACE MAX636 5 PIN SOT-23 MARKING AABB aabi AABJ marking code R2 sot23 AAAX MAX6365-8 AABY

    marking code AABJ

    Abstract: marking code AACD code marking aabt AABV AACE aabi sot23 mark code AAAM MAX6365 MAX6366 MAX6368
    Text: 19-1658; Rev 4; 5/09 SOT23, Low-Power µP Supervisory Circuits with Battery Backup and Chip-Enable Gating Features The MAX6365MAX6368 supervisory circuits simplify power-supply monitoring, battery-backup control functions, and memory write protection in microprocessor


    Original
    PDF MAX6365 MAX6368 MAX6368 marking code AABJ marking code AACD code marking aabt AABV AACE aabi sot23 mark code AAAM MAX6366

    MARKING AABB

    Abstract: marking code AABJ AABF SOT23 MARKING CODE
    Text: 19-1658; Rev 5; 10/11 SOT23, Low-Power µP Supervisory Circuits with Battery Backup and Chip-Enable Gating Features The MAX6365MAX6368 supervisory circuits simplify power-supply monitoring, battery-backup control functions, and memory write protection in microprocessor


    Original
    PDF MAX6365â MAX6368 MAX6365) MAX6368 MARKING AABB marking code AABJ AABF SOT23 MARKING CODE

    Untitled

    Abstract: No abstract text available
    Text: Let your application determine the right microprocessor supervisor There are a series of steps to follow when implementing a processor-supervisor circuit. Follow them, and you’ll be sure to make the right choice. Jam e s Horste, C hoosing an appropriate microprocessor-supervisor


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