RT12-240V/2.4kW Rectifier Specification
... The RT12-240V/2.4kW is a switched mode rectifier (SMR) module that delivers up to 2.4kW of output power (and up to 11A output current) into a 240V nominal DC system. The RT12 suits AC supply voltages between 208 and 240VAC but will also operate at reduced power from supplies as low as 100VAC. The RT ...
... The RT12-240V/2.4kW is a switched mode rectifier (SMR) module that delivers up to 2.4kW of output power (and up to 11A output current) into a 240V nominal DC system. The RT12 suits AC supply voltages between 208 and 240VAC but will also operate at reduced power from supplies as low as 100VAC. The RT ...
TD-1435 - IHS.com
... [1] The accuracy specification applies for any combination of operating temperature and voltage. [2] The accuracy will not be affected by power interruptions up to 1 millisecond, spaced at least 10 milliseconds apart. Transient and power loss specifications are based on a maximum duty cycle of 1/50. ...
... [1] The accuracy specification applies for any combination of operating temperature and voltage. [2] The accuracy will not be affected by power interruptions up to 1 millisecond, spaced at least 10 milliseconds apart. Transient and power loss specifications are based on a maximum duty cycle of 1/50. ...
CMOS Quad 2-Input NAND Schmitt-Trigger
... TI assumes no liability for applications assistance or the design of Buyers’ products. Buyers are responsible for their products and applications using TI components. To minimize the risks associated with Buyers’ products and applications, Buyers should provide adequate design and operating safeguar ...
... TI assumes no liability for applications assistance or the design of Buyers’ products. Buyers are responsible for their products and applications using TI components. To minimize the risks associated with Buyers’ products and applications, Buyers should provide adequate design and operating safeguar ...
CPC1218 - IXYS Integrated Circuits Division
... products including, but not limited to, the implied warranty of merchantability, fitness for a particular purpose, or infringement of any intellectual property right. The products described in this document are not designed, intended, authorized or warranted for use as components in systems intended ...
... products including, but not limited to, the implied warranty of merchantability, fitness for a particular purpose, or infringement of any intellectual property right. The products described in this document are not designed, intended, authorized or warranted for use as components in systems intended ...
LM150/250 LM350
... possibility of problems. The adjustment terminal can be bypassed to ground on the LM350 to improve ripple rejection. This bypass capacitor prevents ripple form being amplified as the output voltage is increased. With a 10µF bypass capacitor 75dB ripple rejection is obtainable at any output level. In ...
... possibility of problems. The adjustment terminal can be bypassed to ground on the LM350 to improve ripple rejection. This bypass capacitor prevents ripple form being amplified as the output voltage is increased. With a 10µF bypass capacitor 75dB ripple rejection is obtainable at any output level. In ...
RF5122 3V TO 3.6V, 2.4GHz TO 2.5GHz LINEAR POWER AMPLIFIER Features
... band. The RF5122 has integrated input, interstage and output matching components thus allowing minimal bill of material (BOM) parts count in end applications. The RF5122 is designed primarily for IEEE802.11b/g/n WiFi applications where the available supply voltage and current are limited. This ampli ...
... band. The RF5122 has integrated input, interstage and output matching components thus allowing minimal bill of material (BOM) parts count in end applications. The RF5122 is designed primarily for IEEE802.11b/g/n WiFi applications where the available supply voltage and current are limited. This ampli ...
File
... Rub a wool cap on your hair. This removes some of the electrons from your hair, giving each hair a slight positive electrical charge. Why are only electrons removed from your hair? Because only e- are on the outside of the atom so they can be pulled. What would your hair look like after, why? Your h ...
... Rub a wool cap on your hair. This removes some of the electrons from your hair, giving each hair a slight positive electrical charge. Why are only electrons removed from your hair? Because only e- are on the outside of the atom so they can be pulled. What would your hair look like after, why? Your h ...
Voltage
... Overload protection for a series regulator protects the control element in the case of a short. Also known as constant-current limiting. The load current through R4 produces a voltage from base to emitter of Q2 When IL reaches a predetermined maximum value, the voltage drop across R4 is suff ...
... Overload protection for a series regulator protects the control element in the case of a short. Also known as constant-current limiting. The load current through R4 produces a voltage from base to emitter of Q2 When IL reaches a predetermined maximum value, the voltage drop across R4 is suff ...
Circuit Note
... The AD8212 accurately amplifies a small differential input voltage in the presence of large positive common-mode voltages greater than 500 V when used in conjunction with an external PNP transistor. Galvanic isolation is provided by the ADuM5402 quad channel isolator. This is not only for protection ...
... The AD8212 accurately amplifies a small differential input voltage in the presence of large positive common-mode voltages greater than 500 V when used in conjunction with an external PNP transistor. Galvanic isolation is provided by the ADuM5402 quad channel isolator. This is not only for protection ...
CHAPter 10 - Amazon Web Services
... the supply voltage is fifteen volts as chosen, the output is 6V. In general for the circuit shown with a 15V supply, Vout = IV x (number set on the switches). This network is capable of fifteen steps; for a supply of any voltage, V, the output is: Vout = V/15 ...
... the supply voltage is fifteen volts as chosen, the output is 6V. In general for the circuit shown with a 15V supply, Vout = IV x (number set on the switches). This network is capable of fifteen steps; for a supply of any voltage, V, the output is: Vout = V/15 ...
Use Ohm`s law
... You will need read the colored bands on your resistors to figure out their values. • Start by finding the tolerance band. It is gold or silver, and usually separated from the other bands by a little gap. • Next, start at the opposite end and read off the colors of the three bands. ...
... You will need read the colored bands on your resistors to figure out their values. • Start by finding the tolerance band. It is gold or silver, and usually separated from the other bands by a little gap. • Next, start at the opposite end and read off the colors of the three bands. ...
SSM2019 数据手册DataSheet 下载
... The SSM2019 is a latest generation audio preamplifier, combining SSM preamplifier design expertise with advanced processing. The result is excellent audio performance from a monolithic device, requiring only one external gain set resistor or potentiometer. The SSM2019 is further enhanced by its unit ...
... The SSM2019 is a latest generation audio preamplifier, combining SSM preamplifier design expertise with advanced processing. The result is excellent audio performance from a monolithic device, requiring only one external gain set resistor or potentiometer. The SSM2019 is further enhanced by its unit ...
MAX1888 Low-Cost Integrated Offset Logic for Notebook CPU Power Supplies General Description
... the logical operation of the decoder. The decoder’s inputs may come from system-level logic or directly from the CPU. To interface with lowvoltage logic, the MAX1888’s input logic thresholds are designed with an input-logic high voltage of 1.2V (min) and an input-logic low voltage of 0.3V (max). The ...
... the logical operation of the decoder. The decoder’s inputs may come from system-level logic or directly from the CPU. To interface with lowvoltage logic, the MAX1888’s input logic thresholds are designed with an input-logic high voltage of 1.2V (min) and an input-logic low voltage of 0.3V (max). The ...
Specification Sheet
... Maximum input power of the emergency driver shall be 3.7watts. The unit charger shall consist of a two-stage charging system which samples the battery in relation to its temperature, state of charge and input voltage fluctuations. The charger shall be current limited, temperature compensated, short- ...
... Maximum input power of the emergency driver shall be 3.7watts. The unit charger shall consist of a two-stage charging system which samples the battery in relation to its temperature, state of charge and input voltage fluctuations. The charger shall be current limited, temperature compensated, short- ...
Lab-8, Measure Magnetic Field
... 2. Now, capture the voltage changes on the scope and make a copy for your report. You will probably need to discharge the capacitor occasionally and press the Run/Stop button on the scope to start and stop the scope trace. a) Record a scope trace that has at least 3 equal voltage changes, ΔVo. b) Re ...
... 2. Now, capture the voltage changes on the scope and make a copy for your report. You will probably need to discharge the capacitor occasionally and press the Run/Stop button on the scope to start and stop the scope trace. a) Record a scope trace that has at least 3 equal voltage changes, ΔVo. b) Re ...
Design Guidelines for JFET Audio Preamplifier Circuits By Mike
... the JFET. Resistor R3, which is listed in the above diagram, merely sets the input impedance and insures zero volts appears across the gate with no signal. Resistor R3 does almost nothing for the actual biasing voltages of the circuit. When the gate voltage goes positive, drain current will increase ...
... the JFET. Resistor R3, which is listed in the above diagram, merely sets the input impedance and insures zero volts appears across the gate with no signal. Resistor R3 does almost nothing for the actual biasing voltages of the circuit. When the gate voltage goes positive, drain current will increase ...
Schmitt trigger
In electronics a Schmitt trigger is a comparator circuit with hysteresis implemented by applying positive feedback to the noninverting input of a comparator or differential amplifier. It is an active circuit which converts an analog input signal to a digital output signal. The circuit is named a ""trigger"" because the output retains its value until the input changes sufficiently to trigger a change. In the non-inverting configuration, when the input is higher than a chosen threshold, the output is high. When the input is below a different (lower) chosen threshold the output is low, and when the input is between the two levels the output retains its value. This dual threshold action is called hysteresis and implies that the Schmitt trigger possesses memory and can act as a bistable multivibrator (latch or flip-flop). There is a close relation between the two kinds of circuits: a Schmitt trigger can be converted into a latch and a latch can be converted into a Schmitt trigger.Schmitt trigger devices are typically used in signal conditioning applications to remove noise from signals used in digital circuits, particularly mechanical contact bounce. They are also used in closed loop negative feedback configurations to implement relaxation oscillators, used in function generators and switching power supplies.