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MAX1968 DS-B F Rebranded - Analog Set the maxi-mum unipolar TEC current by applying a voltage to MAXIN Connect MAXIP to MAXIN The equation for setting MAXIN is the same for the MAX1968 and MAX1969 Take care not to exceed the positive or negative cur-rent limit on the TEC Refer to the manufacturer’s data sheet for these limits
MAX8520 21 DS - Analog Setting Voltage and Current Limits Certain TEC parameters must be considered to guarantee a robust design These include maximum positive current, maximum negative current, and the maximum voltage allowed across the TEC These limits should be used to set the MAXIP, MAXIN, and MAXV voltages
Battery Charger ICs | Analog Devices Analog Devices offers a broad portfolio of battery charger IC devices for any rechargeable battery chemistry, including Li-Ion, LiFePO4, lead acid, and nickel-based, for both wired and wireless applications These high performance battery charging devices are offered in linear or switching topologies and are completely autonomous in operation Our battery charger ICs offer many standard
MAX1978 79 DS - Analog Setting Voltage and Current Limits Consider TEC parameters to guarantee a robust design These parameters include maximum positive current, maximum negative current, and the maximum voltage allowed across the TEC These limits should be used to set MAXIP, MAXIN, and MAXV voltages
DS3231 Datasheet and Product Info | Analog Devices The DS3231 is a low-cost, extremely accurate I²C real-time clock (RTC) with an integrated temperature-compensated crystal oscillator (TCXO) and crystal The device incorporates a battery input, and maintains accurate timekeeping when main power to the device is interrupted The integration of the crystal resonator enhances the long-term accuracy of the device as well as reduces the piece-part
MAX1968EV Kit - Analog Set these (or lower) limits at the MAX1968 MAXV, MAXIP (heating current), MAXIN (cooling current) inputs See Tables 1, 2, and 3 to select resistors or refer to the MAX1968 data sheet
GMSL SerDes Applications Team Revision 2 MAR 1 , 2023 - Analog Application Use Case Each quad deserializer link is completely independent This independence allows for flexibility in mixing GMSL data rates, GMSL generations, cable types, and GMSL transmit modes All links may be configured differently, or identically based on system requirements The simplest and most common application for quad deserializers is the four-camera link application Figure 1