Showing 769–780 of 1714 results

LT1013CN8

459.00
Single Supply Operation Input Voltage Range Extends to Ground Output Swings to Ground While Sinking Current n Pin Compatible to 1458 and 324 with Precision Specs n Guaranteed Offset Voltage: 150?V Max n Guaranteed Low Drift: 2?V/?C Max n Guaranteed Offset Current: 0.8nA Max n Guaranteed High Gain 5mA Load Current: 1.5 Million Min 17mA Load Current: 0.8 Million Min n Guaranteed Low Supply Current: 500?A Max n Low Voltage Noise, 0.1Hz to 10Hz: 0.55?VP-P Low Current Noise?Better than 0P-07, 0.07pA/?Hz

LT1017IS8

606.00
Maximum Offset Voltage: 1mV n Maximum Bias Current: 15nA n Typical Output Drive: 70mA n Operates from 1.1V to 40V n Internal Pull-Up Current n Output Can Drive Loads Above V n 30?A Supply Current (LT1017) 110?A Supply Current (LT1018) n Available in 8-Lead PDIP, 8-Lead Plastic S0, and 16-Lead Plastic SO Packages

LT1019ACN8-2.5

1,232.00
The LT? 1019 is a third generation bandgap voltage reference utilizing thin film technology and a greatly improved curvature correction technique. Wafer level trimming of both reference and output voltage combines to produce very low TC and tight initial output voltage tolerance.

LT1019ACN8-4.5

1,232.00
The LT1019 can both sink and source up to 10mA and can be used in either the series or shunt mode, allowing the reference to operate with positive or negative output voltages without external components. Minimum input/ output voltage is less than 1V in the series mode, providing improved tolerance of low line conditions and excellent line regulation.

LT1019CN8-2.5

829.00
The LT? 1019 is a third generation bandgap voltage reference utilizing thin film technology and a greatly improved curvature correction technique. Wafer level trimming of both reference and output voltage combines to produce very low TC and tight initial output voltage tolerance.

LT1021DCS8-5

730.00
The LT1021 references are based on a buried zener diode structure that eliminates noise and stability problems associated with surface breakdown devices. Further, a subsurface zener exhibits better temperature drift and time stability than even the best bandgap references. Unique circuit design makes the LT1021 the first IC reference to offer ultralow drift without the use of high power on-chip heaters. The LT1021-7 uses no resistive divider to set output voltage, and therefore exhibits the best long term stability and temperature hysteresis. The LT1021-5 and LT1021- 10 are intended for systems requiring a precise 5V or 10V reference with an initial tolerance as low as ?0.05%.

LT1039CN

525.00
The LT ? 1039 is a triple RS232 driver/receiver that includes shutdown. Each receiver will accept up to ?30V input and can drive either TTL or CMOS logic. The RS232 drivers accept TTL logic inputs and output RS232 voltage levels. The outputs are fully protected against overload and can be shorted to ground or up to ?30V without damage to the drivers. Additionally, when the system is shut down or power is off, the outputs are in a high impedance state allowing data line sharing. Bipolar circuitry makes this driver/receiver exceptionally rugged against overloads and immune to latchup

LT1054CN8

591.00
The LT?1054 is a monolithic, bipolar, switched-capacitor voltage converter and regulator. The LT1054 provides higher output current than previously available converters with significantly lower voltage losses. An adaptive switch driver scheme optimizes efficiency over a wide range of output currents. Total voltage loss at 100mA output current is typically 1.1V. This holds true over the full supply voltage range of 3.5V to 15V. Quiescent current is typically 2.5mA. The LT1054 also provides regulation, a feature not previously available in switched-capacitor voltage converters. By adding an external resistive divider a regulated output can be obtained. This output will be regulated against changes in both input voltage and output current. The LT1054 can also be shut down by grounding the feedback pin. Supply current in shutdown is less than 100?A

LT1054CP

194.00
The LT1054 device is a bipolar, switched-capacitor 1? Output Current, 100 mA voltage converter with regulator. It provides higher ? Low Loss, 1.1 V at 100 mA output current and significantly lower voltage losses ? Operating Range, 3.5 V to 15 V than previously available converters. An adaptive- ? Reference and Error Amplifier for Regulation switch drive scheme optimizes efficiency over a wide range of output currents. ? External Shutdown ? External Oscillator Synchronization Total voltage drop at 100-mA output current typically is 1.1 V. This applies to the full supply-voltage range ? Devices Can Be Paralleled of 3.5 V to 15 V. Quiescent current typically is 2.5 ? Pin-to-Pin Compatible With the LTC1044/7660 mA.

LT1054CS8

640.00
The LT?1054 is a monolithic, bipolar, switched-capacitor voltage converter and regulator. The LT1054 provides higher output current than previously available converters with significantly lower voltage losses. An adaptive switch driver scheme optimizes efficiency over a wide range of output currents. Total voltage loss at 100mA output current is typically 1.1V. This holds true over the full supply voltage range of 3.5V to 15V. Quiescent current is typically 2.5mA.

LT1054CS8#PBF

640.00
The LT?1054 is a monolithic, bipolar, switched-capacitor voltage converter and regulator. The LT1054 provides higher output current than previously available converters with significantly lower voltage losses. An adaptive switch driver scheme optimizes efficiency over a wide range of output currents. Total voltage loss at 100mA output current is typically 1.1V. This holds true over the full supply voltage range of 3.5V to 15V. Quiescent current is typically 2.5mA.

LT1072CN8

525.00
The LT1072 has many unique features not found even on the vastly more difficult to use low power control chips presently available. It uses an adaptive anti-sat switch drive to allow very wide ranging load currents with no loss in efficiency. An externally activated shutdown mode reduces total supply current to 50?A typical for standby operation. Totally isolated and regulated outputs can be generated by using the optional ?flyback regulation mode? built into the LT1072, without the need for optocouplers or extra transformer windings.