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Voltage Regulators

A system created to automatically maintain a constant voltage is known as a voltage regulator. Negative feedback or a straightforward feed-forward architecture can be used in a voltage regulator. It could make use of electrical parts or an electromechanical mechanism. It may be used to control one or more AC or DC voltages, depending on the design. Electronic voltage regulators are used to regulate the DC voltages required by the CPU and other components in devices like the computer power supply.

Voltage regulators manage the plant's output in central power plant generators and automotive alternators. A voltage regulator can be installed at a substation or along distribution lines in an electric power distribution system to ensure that all customers receive a constant voltage regardless of how much power is consumed from the line.

Regulator Specifications

The output voltage can be automated constantly within the specified constraints. This regulation is characterized by several factors:

  • Load regulation is the variation in output current for a specific change in overload current, such as frequently 15 mV, maximum of 100 mV for load voltage between 5 mA and 1.4 A, at some pre-defined temperature and input voltage.
  • The ratio of output to input change or the output voltage change across the whole specified input voltage range, for example, "plus or minus 2 percent for input voltages between 90 V and 260 V, 50-60 Hz," are two ways to describe line regulation of input regulation.
  • The temperature coefficient of the generating voltage is the variation with temperature, such as the average temperature over a given temperature change.
  • The initial accuracy of a current regulator is usually called the voltage accuracy; without taking into account the impact of temperature or aging on output precision, the voltage accuracy" is the deviation in output voltage for a specific regulator.
  • Drop out voltage is the smallest difference between the input and output voltages at which the regulator can still provide the required current known as the dropout voltage. The dropout voltage is the input-output difference at which the voltage regulator will no longer sustain regulation. The reduced output voltage will be the outcome of a further input voltage decrease. This value is influenced by junction temperature and load.
  • Absolute maximum ratings are specified for regulator parts, including the maximum input voltage, maximum power dissipation at a specific temperature, maximum continuous and peak output currents (often internally restricted) that may be utilized, etc.

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Wurth Elektronik
Rohs Verified
173010342, Wurth Elektronik
250 In Stock
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42 +
£ 7.74
Wurth Elektronik
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173010378, Wurth Elektronik
82 In Stock
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42 +
£ 4.72
84 +
£ 4.53
210 +
£ 4.39
Monolithic Power Systems (MPS)
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MP9361DJ-LF-P, Monolithic Power Systems (MPS)
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500 +
£ 0.59
DiodesZetex
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AP2114D-3.3TRG1, DiodesZetex
2498 In Stock
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2500 +
£ 0.37
Renesas Electronics
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ICL7660CBAZA, Renesas Electronics
292 In Stock
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98 +
£ 0.87
196 +
£ 0.82
Renesas Electronics
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ISL80101IRAJZ-TK, Renesas Electronics
2998 In Stock
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1000 +
£ 0.58
Renesas Electronics
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ISL80111IRAJZ, Renesas Electronics
2498 In Stock
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100 +
£ 0.82
500 +
£ 0.79
1000 +
£ 0.77
Microchip
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MIC5207YM5-TR, Microchip
2998 In Stock
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3000 +
£ 0.50
Microchip
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MIC29302AWU, Microchip
148 In Stock
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50 +
£ 1.49
100 +
£ 1.36
Microchip
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MIC2951-03YMM, Microchip
98 In Stock
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100 +
£ 0.46
Microchip
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MIC2954-08YM, Microchip
1043 In Stock
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95 +
£ 1.03
190 +
£ 0.99
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MIC37100-3.3WS, Microchip
310 In Stock
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78 +
£ 0.88
156 +
£ 0.80
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MIC49150-1.2WR, Microchip
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48 +
£ 1.71
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MIC49300-1.2WR, Microchip
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48 +
£ 3.50
DiodesZetex
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ZXTR2012P5-13, DiodesZetex
4998 In Stock
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5000 +
£ 0.14
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NCP716BCSN330T1G, onsemi
6077 In Stock
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3000 +
£ 0.28
Renesas Electronics
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ISL91107IIAZ-T7A, Renesas Electronics
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250 +
£ 0.86
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MC7812BTG, onsemi
4883 In Stock
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£ 0.31
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£ 0.19
1000 +
£ 0.14
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LM2931AD-5.0G, onsemi
815 In Stock
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98 +
£ 0.25
196 +
£ 0.23
490 +
£ 0.22
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MC7815ABTG, onsemi
1217 In Stock
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£ 0.41
250 +
£ 0.35
1000 +
£ 0.34
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NCV8165ML330TCG, onsemi
11007 In Stock
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3000 +
£ 0.29
STMicroelectronics
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LD59150PUR, STMicroelectronics
969 In Stock
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4000 +
£ 0.73
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NCP115AMX300TCG, onsemi
9738 In Stock
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3000 +
£ 0.051
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NCP718BSN330T1G, onsemi
49567 In Stock
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3000 +
£ 0.15
Microchip
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LP2951-03YM, Microchip
378 In Stock
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95 +
£ 0.59
190 +
£ 0.54
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NJM78M15SDL1-TE1, New Japan Radio

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MC78M05BDTG, ON Semiconductor

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TLS805B1SJVXUMA1, Infineon

TLS805B1SJVXUMA1, Infineon

The TLS805B1SJV is a linear voltage regulator featuring wide input voltage range, low drop out voltage and ultra low quiescent current. With an input voltage range of 2.75V to 42V and ultra low quiescent of only 5μA the regulators are perfectly suitable for automotive or any other supply systems connected permanently to the battery. The TLS805B1SJV is available in adjustable output voltage version with an accuracy of 2 % and output current capability up to 50mA. It is stable with only a small ceramic capacitor of 1μF at the output. The device can be switched on and off by the Enable feature leading to a current consumption of less than 1μA. With extended operating range down to 2.75V, TLS805B1SJV is also suitable to supply automotive systems operating during cranking condition. TLS805B1SJV includes internal protection features like output current limitation and over-temperature shutdown. Summary of Features •Wide Input Voltage Range: 2.75V to 42 V •50 mA Current Capability •Adjustable Output from 1.2 V to V IN - V DROP •Ultra Low Quiescent Current: 5μA •Low Dropout Voltage: 100 mV @50mA •Enable Feature •Very low Shutdown Current: < 1μA •Stable with 1μF Output Capacitor •Stable with Aluminium, Tantalum or Ceramic •Output Current Limit Protection •Overtemperature Protection •PG-DSO8 package •Wide temperature range: -40°C < T j < 150°C •Green Product (RoHS compliant) •AEC Qualified Benefits •Designed for harsh automotive environment: excellent transient robustness: lower input filtering cost •Cost optimized ceramic output capacitance: 1μF •Suitable for cranking (stop & start): 2.75V input & very low dropout •Energy efficiency: Save battery resources in stand-by with ultra low quiescent current Potential Applications •Automotive general ECU •RKE, immobilizer, gateway •Infotainment, Alarm, Dashboard •Application with direct battery connection and very low current consumption req.
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AZ1117CD-5.0TRG1, DiodesZetex

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The DiodesZetex AP7348 series is a 4 channel low dropout regulator with high output voltage accuracy. It is used in smart phone/tablet, WIFI access points, communication module, camera module and RF supply for IOT/LPWAN Low output noise Ripple rejection 75dB at 1kHz
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