MAX6605

Low-Power Analog Temperature Sensor in SC70 Package

Low-Power Analog Temperature Sensor in an SC-70 Package


Please check latest availability status for a specific part variant.

Description

The MAX6605 precision, low-power, analog output temperature sensor is available in a 5-pin SC70 package. The device has a +2.7V to +5.5V supply voltage range and 10µA supply current over the -55°C to +125°C temperature range. For the -40°C to +105°C temperature range, the supply voltage can go as low as +2.4V. Accuracy is ±1°C at TA = +25°C and ±3°C from 0°C to +70°C.

The MAX6605 output voltage is dependent on its die temperature and has a slope of 11.9mV/°C and an offset of 744mV at 0°C. The output typically shows only +0.4°C of nonlinearity over the -20°C to +85°C temperature range.
MAX6605: Typical Application Circuit MAX6605: Typical Application Circuit Enlarge+

Key Features

  • Low Current Consumption (10µA max)
  • Small SC70 Package
  • Accurate (±0.75°C max at TA = +25°C)
  • Optimized to Drive Large Capacitive Loads

Applications/Uses

  • Battery Packs
  • Cell Phones
  • Digital Still Cameras
  • GPS Equipment
Part NumberSensor TypeInterfaceChannelsAccuracy
(±°C)
Parasite Pwr.Oper. Temp.
(°C)
Package/PinsBudgetary
Price
See Notes
MAX6605 LocalAnalogOne3No-55 to +125
SC70/5
$0.49 @1k
See All Temperature Sensors (111)
Pricing Notes:
This pricing is BUDGETARY, for comparing similar parts. Prices are in U.S. dollars and subject to change. Quantity pricing may vary substantially and international prices may differ due to local duties, taxes, fees, and exchange rates. For volume-specific and version-specific prices and delivery, please see the price and availability page or contact an authorized distributor.

CAD Symbols and Footprints

  • MAX6605MXK
  • MAX6605MXK+
  • MAX6605MXK+T
  • MAX6605MXK-T
  • MAX6605MXK/GG8
  • MAX6605MXK/V+T
  • Device   Fab Process   Technology   Sample size   Rejects   FIT at 25°C   FIT at 55°C  

    Note : The failure rates are summarized by technology and mapped to the associated material part numbers. The failure rates are highly dependent on the number of units tested.

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