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MAX6775, MAX6776, MAX6777, MAX6778, MAX6779, MAX6780, MAX6781
µDFN 및 SC70 패키지로 제공되는 저전력, 1% 정확도 배터리 모니터


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제품 설명
전체 데이터 시트 (PDF, 200kB)
English Download this datasheet in PDF format다운로드
The MAX6775–MAX6781 low-power, 1%-accurate battery monitors are available in the ultra-small µDFN package (1.0mm x 1.5mm) and SC70 packages. These low-power devices are ideal for monitoring single lithium-ion (Li+) cells, or multicell alkaline/NiCd/NiMH power sources. These devices offer single (MAX6775/MAX6776/MAX6777/MAX6778) or dual (MAX6779/MAX6780/MAX6781) low-battery outputs and feature fixed or resistor-adjustable hysteresis. Hysteresis eliminates the output chatter sometimes associated with battery voltage monitors, usually due to input-voltage noise or battery terminal voltage recovery after load removal.

These devices are available in several versions: with single- or dual-voltage monitors, and with fixed or adjustable hysteresis. The MAX6775/MAX6776 offer a single battery monitor and factory-set hysteresis of 0.5%, 5%, or 10%. The MAX6779/MAX6780/MAX6781 have two battery monitors in a single package and factory-set hysteresis of 0.5%, 5%, or 10%. The MAX6777/MAX6778 offer a single battery monitor with external inputs for the rising and falling thresholds, allowing external hysteresis control.

For convenient interface with system power circuitry or microprocessors, both open-drain and push-pull outputs are available. The single-channel devices are available with open-drain or push-pull outputs. The dual-channel devices are available with both outputs open-drain, both outputs push-pull, or one of each (see the Selector Guide in the full data sheet). This family of devices is offered in small 5-pin SC70 and ultra-small 6-pin µDFN packages, and is fully specified over the -40°C to +85°C extended temperature range.

주요기능   애플리케이션/용도
  • 1.0%-Accurate Threshold Specified Over Temperature
  • Single/Dual, Low-Battery Output Options
  • Low 3µA Battery Current
  • Open-Drain or Push-Pull Low-Battery Outputs
  • Fixed or Adjustable Hysteresis
  • Low-Input Leakage Current Allows Use of Large Resistors
  • Guaranteed Valid Low-Battery-Output Logic State Down to VBATT = 1V
  • Immune to Short Battery Transients
  • Fully Specified from -40°C to +85°C
  • Small 5-Pin SC70 or Ultra-Small 6-Pin µDFN (1mm x 1.5mm) Package

 
  • 배터리 전원 시스템 (단일 셀 Li+ 또는 멀티셀 NiMH, NiCd, 알카라인)
  • 휴대전화/무선 전화기
  • 전자 장난감
  • MP3 플레이어
  • 호출기
  • PDA
  • 휴대용 의료 장치

    Key Specifications:  Battery Protectors, Selectors and Monitors
    Part Number Package/Pins Smallest Available Pckg.
    (mm2)
    Oper. Temp.
    (°C)
    Price
    max w/pins See Notes
    MAX6775 
    µDFN/6
    SC70/5
    2 -40 to +85 $0.89 @1k
    모두 보기Battery Protectors, Selectors and Monitors (25)

    Key Specifications:  Supervisors (1 Monitored Voltage)
    Part Number Reset Thresh.
    (V)
    Reset Out tRESET Watchdog Feature Supervisor Features Reset Thresh. Accur.
    (%)
    ICC
    (µA)
    Price
    Active Low min @ +25°C max See Notes
    MAX6775 
    1.2 to 1.8
    1.8 to 2.5
    2.5 to 3.3
    3.3 to 5.5
    >=5.5
    Push-Pull <1ms No Watchdog Power Fail Comparator/Low Battery Detect 1 7 $0.89 @1k
    MAX6776  Open Drain $0.89 @1k
    MAX6777  Push-Pull $0.89 @1k
    MAX6778  Open Drain $0.89 @1k
    모두 보기Supervisors (1 Monitored Voltage) (274)

    Key Specifications:  Supervisors (2 Monitored Voltages)
    Part Number Interface Reset Thresh.
    (V)
    Reset Out tRESET Watchdog Feature Supervisor Features Reset Thresh. Accur.
    (%)
    ICC
    (µA)
    Price
    Active Low min @ +25°C max See Notes
    MAX6779  R/C Adjustable
    1.2 to 1.8
    1.8 to 2.5
    2.5 to 3.3
    3.3 to 5.5
    >=5.5
    Push-Pull <1ms No Watchdog Power Fail Comparator/Low Battery Detect 1 7 $1.11 @1k
    MAX6780  Open Drain $1.11 @1k
    MAX6781 
    Open Drain
    Push-Pull
    $1.11 @1k
    모두 보기Supervisors (2 Monitored Voltages) (84)

    다이어그램
    MAX6775, MAX6776, MAX6777, MAX6778, MAX6779, MAX6780, MAX6781: Typical Operating Circuit
    일반 동작 회로

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    문서 레퍼런스 19-3774; 개정판 4; 2009-07-30
    이 페이지는 최근에 변경됨: 2009-07-30


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