RC4194D ,Dual tracking voltage regulatorsRC4194Dual Tracking Voltage Regulators
RC4194D ,Dual tracking voltage regulatorsFeatures• Simultaneously adjustable outputs with one resistor • Internal thermal shutdown at T = +1 ..
RC4194K ,Dual tracking voltage regulatorsBlock DiagramThe RC/RM4194 are dual polarity tracking regulators 4194designed to provide balanced o ..
RC4194N ,Dual tracking voltage regulatorsBlock DiagramThe RC/RM4194 are dual polarity tracking regulators 4194designed to provide balanced o ..
RC4195N , Fixed 15V Dual Tracking Voltage Regulator
RC4200 ,Analog MultiplierBlock Diagram. The nominal etary means of inherently compensating for this undesired relationship b ..
RJH60F5DPK , Silicon N Channel IGBT High Speed Power Switching
RJH60F7ADPK , Silicon N Channel IGBT High Speed Power Switching
RJJ0101DPD , P Channel Power MOS FET High Speed Switching
RJJ0101DPD , P Channel Power MOS FET High Speed Switching
RJJ0621DPP , P Channel Power MOS FET High Speed Switching
RJJ1011DPD , P Channel Power MOS FET High Speed Switching
RC4194D-RC4194K-RC4194N
Dual tracking voltage regulators
Features Simultaneously adjustable outputs with one resistor
to ±42V Load current – ±200 mA with 0.04% load regulation
DescriptionThe RC/RM4194 are dual polarity tracking regulators
designed to provide balanced or unbalanced positive and
negative output voltages at currents to 200 mA.
A single external resistor adjustment can be used to change
both outputs between the limits of ±50 mV and ±42V.
These devices are designed for local “on-card” regulation,
eliminating distribution problems associated with single-
point regulation. To simplify application the regulators
require a minimum number of external parts.
The device is available in three package types to accommo-
date various power requirements. The K (TO-66) power
package can dissipate up to 3W at TA = +25°C. The D
14-pin dual in-line will dissipate up to 1W and the N
14-pin dual in-line will dissipate up to 625 mW. Internal thermal shutdown at TJ = +175°C External balance for ±VOUT unbalancing 3W power dissipations