BTS3410G
Category: Current Limit Switches , Electromechanical Infineon Technologies
Infineon Technologies Current Limit SW 2-IN 2-OUT to 1.65A 8-Pin DSO Automotive AEC-Q100 Packaging: N/ASupplier Type: Authorized Distributor2,500 available Qty Price 58 1.8314 100 1.7495 250 1.6793 500 1.6187 1,000 1.5659 2,500 1.5196
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BTS70401EPAXUMA1
Category: Current Limit Switches , Electromechanical Infineon Technologies
Infineon Technologies Current Limit SW 1-IN 1-OUT to 4.5A Automotive AEC-Q100 14-Pin TSDSO EP T/R Packaging: N/ASupplier Type: Authorized Distributor387 available Qty Price 1 1.8547 10 1.6533 25 1.5252 100 1.2752 250 0.7729
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MCP9700T-E/TT
Category: Electromechanical , Temperature , Temperature and Humidity Sensors , Temperature Sensors Microchip
Microchip The MCP9700 sensors with Linear Active Thermistor™ Integrated Circuit (IC) comprise a family of analog temperature sensors that convert temperature to analog voltage.The low-cost, low-power sensors feature an accuracy of ±4°C from 0°C to +70°C while consuming 6 µA (typical) of operating current.Unlike resistive sensors, e.g., thermistors, the Linear Active Thermistor IC does not require an additional signal-conditioning circuit. Therefore, the biasing circuit development overhead for thermistor solutions can be avoided by implementing this low-cost device. The Voltage Output pin (VOUT) can be directly connected to the ADC input of a microcontroller. The MCP9700 temperature coefficients are scaled to provide a 1°C/bit resolution for an 8-bit ADC with a reference voltage of 2.5V and 5V, respectively. The MCP9700 output 0.1°C/bit for a 12- bit ADC with 4.096V reference.The MCP9700 provide a low-cost solution for applications that require measurement of a relative change of temperature. When measuring relative change in temperature from +25°C, an accuracy of ±1°C (typical) can be realized from 0°C to +70°C. This accuracy can also be achieved by applying system calibration at +25°C.In addition, this family is immune to the effects of parasitic capacitance and can drive large capacitive loads. This provides printed circuit board (PCB) layout design flexibility by enabling the device to be remotely located from the microcontroller. Adding some capacitance at the output also helps the output transient response by reducing overshoots or undershoots. However, capacitive load is not required for the stability of sensor output. Packaging: TAPSupplier Type: Authorized Distributor5,439 available Qty Price 1 0.3794 25 0.3546 50 0.3286
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