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Part Manufacturer Description Datasheet Download Buy Part
LTC4352CMS#PBF Linear Technology LTC4352 - Low Voltage Ideal Diode Controller with Monitoring; Package: MSOP; Pins: 12; Temperature Range: 0°C to 70°C
LTC4352HMS#PBF Linear Technology LTC4352 - Low Voltage Ideal Diode Controller with Monitoring; Package: MSOP; Pins: 12; Temperature Range: -40°C to 125°C
LT1572CS#PBF Linear Technology LT1572 - 100kHz, 1.25A Switching Regulator with Catch Diode; Package: SO; Pins: 16; Temperature Range: 0°C to 70°C
LTC4359HMS8#PBF Linear Technology LTC4359 - Ideal Diode Controller with Reverse Input Protection; Package: MSOP; Pins: 8; Temperature Range: -40°C to 125°C
LT1572CS#TRPBF Linear Technology LT1572 - 100kHz, 1.25A Switching Regulator with Catch Diode; Package: SO; Pins: 16; Temperature Range: 0°C to 70°C
LTC4364CS-1#TRPBF Linear Technology LTC4364 - Surge Stopper with Ideal Diode; Package: SO; Pins: 16; Temperature Range: 0°C to 70°C

Zener diode with 9v Datasheets Context Search

Catalog Datasheet MFG & Type PDF Document Tags
1997 - IRF540 n-channel MOSFET

Abstract:
Text: 0.01 Control Input Capacitance Note 2 5 pF Zener Diode Output Clamp VSUPPLY = 9V , indefinitely. An internal zener diode limits the gate-to-source voltage to a safe level for standard , (off) current Charge pump for high-side low-voltage applications Internal zener diode gate-to-ground , N-channel MOSFET. Supply (4×). Output voltage is limited to 16V by a zener diode . The charge pump , supply voltage is used. An external zener diode can clamp the gate-to-source voltage as shown in figure


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PDF MIC5018 MIC5018 OT-143 IRF540* IRF540 n-channel MOSFET IRF540 mosfet with maximum VDS 12v Zener diode with 9v 5V GATE TO SOURCE VOLTAGE MOSFET IRF540 mosfet TO 220 Package High current N CHANNEL MOSFET series connection of mosfet Zener 9v 20W Solenoid Driver mosfet equivalent irf540
1997 - IRF540 n-channel MOSFET

Abstract:
Text: 0.01 Control Input Capacitance Note 2 5 pF Zener Diode Output Clamp VSUPPLY = 9V , indefinitely. An internal zener diode limits the gate-to-source voltage to a safe level for standard , standby (off) current Charge pump for high-side low-voltage applications Internal zener diode , standard MOSFET The MIC5018 has an internal zener diode that limits the gateto-ground voltage to , be exceeded if a higher supply voltage is used. An external zener diode can clamp the gate-to-source


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PDF MIC5018 MIC5018 OT-143 OT-143 IRF540 n-channel MOSFET 20w SOT143 IRF540 Zener diode with 9v FOR POWER SUPPLY inverter MOSFET 9V diode marking 20W sot 143 IRFZ24 IRLZ44 MH10
Zener diode with 9v FOR POWER SUPPLY

Abstract:
Text: zener diode limits the gate-to-source voltage to a safe level for standard N-channel MOSFETs. In , applications Internal zener diode gate-to-ground MOSFET protection Operates in low- and high-side , < VgUPPLY £ 9V 2.7V < VSUppLY < 5V 5V < VSUPPLY < 9V Control Input Current Control Input Capacitance Zener Diode Output Clamp Gate Output Voltage 2.7V < VSuppLY < 9V General Note: Devices are ESD protected , consists of an oscillator and voltage quadrupler (4x). Output voltage is limited to 16V by a zener diode


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PDF MIC5018 OT-143 MIC5018 Zener diode with 9v FOR POWER SUPPLY 9V 1A MOSFET N-channel n02 mosfet input 5 volt 3 v voltage mosfet marking micrel sot cd MH10 inductor sot143 fet
Not Available

Abstract:
Text: standby (off) current Charge pump for high-side low-voltage applications Internal zener diode , than the driver supply voltage and can sustain the gate voltage indefinitely. An internal zener diode , Zener Diode Output Clamp V SUPPLY = 13 16 Gate Output Voltage V SUPPLY - 2'7V , ! Functional Diagram +2.7V to + 9V Functional Diagram with External Components (High-Side Driver , quadrupler (4x). Output voltage is limited to 16V by a zener diode . The charge pump output voltage will


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PDF MIC5018 150jjA MIC5018 OT-143 OT-23 OT-143
2012 - Not Available

Abstract:
Text: μA 8.2 VDD = 4.5V OUT Zener Diode Clamp Voltage 1 5 IN Capacitance OUT Voltage , limited to 16V typically by a zener diode . The charge pump output July 2012 6 Micrel, Inc , MIC5019 has an internal zener diode that limits the gate-to-ground voltage to approximately 16V. Lower , can be exceeded if a higher supply voltage is used. An external zener diode can clamp the , MIC5019 Ultra-Small High-Side N-Channel MOSFET Driver with Integrated Charge Pump General


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PDF MIC5019 MIC5019 MIC5019â
2012 - GRM21BR71C475KA73L

Abstract:
Text: A ms s OUT Voltage OUT Zener Diode Clamp Voltage OUT Current (5) VDD = 3.0V VDD = 4.5V VDD = , limited to 16V typically by a zener diode . The charge pump output voltage will be approximately: VOUT = , . Figure 2. Using a Standard MOSFET The MIC5019 has an internal zener diode that limits the , if a higher supply voltage is used. An external zener diode can clamp the gate-to-source voltage as , MIC5019 Ultra-Small High-Side N-Channel MOSFET Driver with Integrated Charge Pump General


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PDF MIC5019 MIC5019 MIC5019ellectual GRM21BR71C475KA73L
5v 1a ZENER DIODE

Abstract:
Text: driver supply voltage and can sustain the gate voltage indefinitely. An internal zener diode limits the , applications Internal zener diode gate-to-ground M OSFET protection Operates in low- and high-side , V V ma - 9V lo9 ic 1 in P u t Control Input Current Control Input Capacitance Zener Diode Output Clamp Gate Output Voltage 2.7V < VgyppLY < 9V Note 2 V SU PP LY = 9 V V SU PPLY = V SU , Functional Diagram +2.7V to + 9V Functional Diagram with External Com ponents (High-Side Driver


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PDF MIC5018 MIC5018 OT-143 IRF540* 5v 1a ZENER DIODE driver IC for IRF540 MOSFET
501B 8 P

Abstract:
Text: zener diode gate-to-ground M OSFET protection Operates in low- and high-side configurations TTL , internal zener diode limits the gate-to-source voltage to a safe level for standard N-channel MOSFETs. In , Miere! +2.7V to + 9V Functional Diagram Functional Diagram with External Components (High-Side , a zener diode . The charge pump output voltage will be approximately: VG = 4 x V SUppLY - 2.8V, but , Standard MOSFET The M IC5018 has an internal zener diode that limits the gateto-ground voltage to


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PDF MIC5018 MIC5018 IC5018 F540- 501B 8 P 5018B
1997 - IRF540

Abstract:
Text: VSUPPLY 9V Control Input Capacitance (2) Zener Diode Output Clamp VSUPPLY = 9V 13 16 , voltage and can sustain the gate voltage indefinitely. An internal zener diode limits the gate-to-source , zener diode gate-to-ground MOSFET protection Operates in low- and high-side configurations TTL , zener diode . The charge pump output voltage will be April 2006 5 M9999-042406 (408) 955-1690 , ) 955-1690 Micrel, Inc. MIC5018 supply voltage is used. An external zener diode can clamp the


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PDF MIC5018 MIC5018 OT-143 M9999-042406 IRF540 IRF540 mosfet with maximum VDS 30 V FULLY PROTECTED MOSFET MH10 IRLZ44 IRFZ24 Zener diode with 9v FOR POWER SUPPLY IRF540 application DIODE ZENER 20W 100V
2000 - PT200 Platinum RTD reference table

Abstract:
Text: With external transistor 250 =1 10 9V 0 10 20 30 40 50 10 20 30 , 20mA. It may, in fact, be prudent to design for V+ equal or greater than 9V with loop currents up to , could damage the power supply or the sense resistor, RL. A diode with a higher current rating is , voltage rating for the XTR103 is 40V. A zener diode may be used for D2 (Figure 6) to clamp the voltage , rating of the zener diode . In Figure 1, the RTD can be located remotely simply by extending the two


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PDF XTR103 4-20mA 110dB Pt100 XTR103 4-20mA, PT200 Platinum RTD reference table RTD SENSING CIRCUIT 4-20mA PT200 RTD reference table pt100/RTD PT100 rtd pt100 4-20ma wiring diagram PT200 rtd circuit diagram temperature measurement rtd RTD SENSING CIRCUIT pt100 to 4-20 ma ic PT100 resistor
PT200 Platinum RTD reference table

Abstract:
Text: With external transistor 250 =1 10 9V 0 10 20 30 40 50 10 20 30 , 20mA. It may, in fact, be prudent to design for V+ equal or greater than 9V with loop currents up to , could damage the power supply or the sense resistor, RL. A diode with a higher current rating is , voltage rating for the XTR103 is 40V. A zener diode may be used for D2 (Figure 6) to clamp the voltage , rating of the zener diode . In Figure 1, the RTD can be located remotely simply by extending the two


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PDF XTR103 4-20mA 110dB Pt100 XTR103 4-20mA, Pt100 1N4148 RCV420 PT200 Platinum RTD reference table PT200 RTD reference table 2N2222 transistor output curve PT200 rtd pt100 to 4-20 ma ic 2N6121 PWS740 XTR103AP XTR103AU
1998 - PT200 rtd

Abstract:
Text: With external transistor 250 =1 10 9V 0 10 20 30 40 50 10 20 30 , 20mA. It may, in fact, be prudent to design for V+ equal or greater than 9V with loop currents up to , could damage the power supply or the sense resistor, RL. A diode with a higher current rating is , voltage rating for the XTR103 is 40V. A zener diode may be used for D2 (Figure 6) to clamp the voltage , rating of the zener diode . In Figure 1, the RTD can be located remotely simply by extending the two


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PDF XTR103 4-20mA 110dB Pt100 XTR103 4-20mA, Pt100 1N4148 RCV420 PT200 rtd PT200 Platinum RTD reference table RTD SENSING CIRCUIT 4-20mA pt100/RTD PT100 PT200 RTD reference table circuit diagram temperature measurement rtd rtd pt100 4-20ma wiring diagram RTD SENSING CIRCUIT PT200 sensor PT200 table
1996 - RTD TRANSFER FUNCTION

Abstract:
Text: 00 30 RL k 20 RL With external transistor 250 =1 10 9V 0 10 20 30 , 20mA. It may, in fact, be prudent to design for V+ equal or greater than 9V with loop currents up to , could damage the power supply or the sense resistor, RL. A diode with a higher current rating is , voltage rating for the XTR103 is 40V. A zener diode may be used for D2 (Figure 6) to clamp the voltage , rating of the zener diode . In Figure 1, the RTD can be located remotely simply by extending the two


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PDF XTR103 4-20mA 110dB Pt100 XTR103 4-20mA, Pt100 1N4148 RCV420 RTD TRANSFER FUNCTION PT200 Platinum RTD reference table PT200 RTD reference table pt100 to 4-20 ma ic XTR103BP XTR103AP RTD SENSING CIRCUIT 4-20mA PWS740 pt100 TRANSFER FUNCTION
2009 - 5V power supply using LM7805

Abstract:
Text: zener diode in conjunction with a series limiting resistor. Figures 2 and 3 illustrate the two approaches. The total power dissipation of all three components (LM7805, zener diode and series resistor , Battery Monitor Circuit Figure 3. Zener Diode Regulator in Battery Monitor Circuit DATEL, Inc , number one cause of problems with 9V -powered LCD meters. How to solve it - or better still, avoid it , and 9.1k on ±200V (-3) models. REFERENCE IN DC/DC converter is not used on 9V -powered models


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PDF DMS-30LCD 5V power supply using LM7805 Zener diode with 9v FOR POWER SUPPLY LM7805 100ma LM7805 IC LM7805 lm7805 4 pin IC Voltage regulator LM7805 LM7805 application note Zener diode with 9v lm7805 ic
5V power supply using LM7805

Abstract:
Text: or by using a zener diode in conjunction with a series limiting resistor. Figures 2 and 3 illustrate the two approaches. The total power dissipation of all three components (LM7805, zener diode and , Battery Monitor Circuit Figure 3. Zener Diode Regulator in Battery Monitor Circuit DATEL, Inc , condition is the number one cause of problems with 9V -powered LCD meters. How to solve it - or better , and 9.1k on ±200V (-3) models. REFERENCE IN DC/DC converter is not used on 9V -powered models


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PDF DMS-30LCD 5V power supply using LM7805 IC Voltage regulator LM7805 IC LM7805 LM7805 100mA LM7805 LM7805 5V internal resistance lm7805 4 pin Application Notes on LM7805 LM7805 VOLTAGE REGULATOR IC 5V power supply using LM7805 datasheet
2008 - 9v Zener diode

Abstract:
Text: : The boost circuitry on DC1315 is designed to work best with VLED >13V since there is a 9V zener diode , output and sets the open LED maximum output voltage. Please note the zener diode in the boost path. The 9V zener diode reduces the boost voltage by 9V from the LED (output) voltage. A minimum of 3V is , terminals can be used to dim the LEDs with the addition of a PWM MOSFET and the resistorshort connection from LED- to GND removed. The efficiency of DC1315A with 20V input and 4 white LEDs on each 1.5A


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PDF LT3475-1 16-lead DC1315 600kHz B240A 1N4448W LT3475EFE-1 Si2318DS FMMT3904 9v Zener diode LED current Limiting Calculation Zener diode with 9v Zener LED 9.1v zener diode terminal Zener diode with 9v FOR POWER SUPPLY MMBT3904 FMMT3904 B240A
2006 - 25V Electrolytic capacitor

Abstract:
Text: rectified by the diode D1 and regulated by means of zener diodes and electrolytic capacitors. The output , Diode 1N4007 D2 Diode 1N4007 Dz1 12V Zener Diode 1N5349B730 Dz2 5.1V Zener Diode , voltage across such a capacitor is regulated by means of a zener diode of suitable value. The power , diode D, allowing the free-wheeling of the inductor current. In the proposed solution, the zener diode , Rload + + C1 C1 Vout2 Vout2 The presence of the zener diode in the free-wheeling


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PDF AN2300 VIPer12A VIPer12A, 25V Electrolytic capacitor viper12a 12v AN2300 diode ba157 ic viper12a 5v 9v -5v dc to dc buck converter circuit ic viper12a 6W Buck Topology 1N5349B730 DIODE 1N4004
2002 - VIPer12A

Abstract:
Text: achieved with a zener diode D6 directly driving the optocoupler. The resistor R3 limits the current in , its avalanche voltage of 730V. Commonly a clamper based on a RCD network or a diode with a transil , standby consumption and poor regulation (VIPer12A undervoltage is at 9V max with 8V Typical). 2.5mH , Diode BAV103 MINIMELF D5 Diode SMBY01-200 SMA D6 Diode Zener 5.1V 2% MINIMELF I1 , packages. With the availability of VIPer12A in SO-8 package and the limited number of external components


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PDF AN1484 VIPer12A 100VDC 380VDC 119mW VIPer12A sfh517 zener 4a2 SAMWHA wd 4A2 zener diode VIPer12A applications viper12a application note 4B1 bridge rectifier Samwha wl nippon chemi con kmg series
2001 - sfh517

Abstract:
Text: network or a diode with a transil to clamp the rise of the drain voltage is used. 2/11 The , zener diode D6 directly driving the optocoupler. The resistor R3 limits the current in both the zener , consumption and poor regulation (VIPer12A undervoltage is at 9V max with 8V Typical). 2.5mH Reflected , : Bottom view of Charger's Board. Zener 5mW Rectifier Diode 5mW Transfo. 4mW Figure 9b: Standby , 34mW Opto 10mW Zener 5mW Rectifier Diode 7mW Transfo. 4mW The only change is due to the


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PDF AN1484 VIPer12A 100VDC 380VDC 119mW VIPer12A sfh517 4b2 zener diode 4A2 zener diode zener 4a2 viper12a application note viper12a 12v ic viper12a transformer design ic viper12a Zener Diode 7 10v 400mW
2002 - VIPer12A

Abstract:
Text: network or a diode with a transil to clamp the rise of the drain voltage is used. 2/11 The , zener diode D6 directly driving the optocoupler. The resistor R3 limits the current in both the zener , consumption and poor regulation (VIPer12A undervoltage is at 9V max with 8V Typical). 2.5mH Reflected , VIPer12A. Figure 10a: Bottom view of Charger's Board. Zener 5mW Rectifier Diode 5mW Transfo , 22 31mW 22uA 8mW VIPer12A 34mW Opto 10mW Zener 5mW Rectifier Diode 7mW Transfo


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PDF AN1484 VIPer12A 100VDC 380VDC 119mW VIPer12A ic viper12a 4b2 zener diode viper12a application note sfh517 ic viper12a transformer design viper12a 12v transformer less power supply 6v output viper12 design SAMWHA wd
SONALERT

Abstract:
Text: Description The LM1801 is an extremely low power comparator with a high current, open-collector output stage , 0.5A. The LM1801 is designed to oper ate in a standby mode for 1 year, powered by a 9V alkaline battery. Provision is made for operation from supplies of up to 14V. An internal 14.5V zener clamp may be used for , . Features 8V to 14V operation Direct drive to horn Internal zener for supply regulation Parallel , sounds when probe conductors are bridged with water droplets. A suitable probe can be etched In copper


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PDF LM1801 LM1801 TL/H/9138-6 SONALERT
IR2085S

Abstract:
Text: Rectifier Diode Zener Diode Zener Diode Zener Diode Ceramic cap Ceramic cap Ceramic cap Ceramic cap , , open-loop isolated half-bridge DC-DC converter with 6:1 input to output voltage conversion ratio. The , *IRDC2085S-DF 150W DC Bus Demo Board Fig. 1 Front side of the DC Bus Converter demo board with IR2085S ChipSet with marked input and output pins. This version of the Demo Board employs DirectFET Power MOSFETs for , circuit will start to operate as soon as the primary Vcc reaches about 9V ­ typically at 12Vin. At this


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PDF IRDC2085S-DF IR2085S) IRF7493) IRF6603) IRF7380) IRF9956) 100mOhm 73mOhm IR2085S IRF7832 PCC2224CT-ND Zener diode with 9v PQ TRANSFORMER IRF9956 IRF7493 IRF7380 IRF6603
1996 - 4-20mA transmitter for a bridge type transducer

Abstract:
Text: , in fact, be prudent to design for V+ equal or greater than 9V with loop currents up to 34mA to , resistor, RL. A diode with a higher current rating is needed for D2 to withstand the highest current that , maximum applied voltage rating for the XTR104 is 40V. A zener diode can be used for D2 (Figure 7) to , than the voltage rating of the zener diode . A refined value for RLIN, arrived at either by active , higher-order nonlinearity of the sensor. There are special zener diode types (Figure 7) specifically


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PDF XTR104 4-20mA 50ppm/ 110dB XTR104 4-20mA, 1N4148 RCV420 4-20mA transmitter for a bridge type transducer circuit diagram bridge transducer 4-20ma 2N6121 XTR104BP XTR104AU XTR104AP SCADA complete notes PWS740 4-20mA transmitter for a bridge type transducer circuit
1995 - LX5600

Abstract:
Text: isolation diode inherent in any junction-isolated integrated circuit The zener may be used with or without , can provide a 6 9V reference with a temperature drift of less than 1 ppm and excellent long term , discrete zener diode However these diodes often presented significant problems For example ordinary , zener and temperature compensation diode not being at the same temperature A 1 C difference may cause , in monolithic IC's usually used the emitter-base junction of an NPN transistor as a zener diode


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PDF LM199 LX5600 LM308 replacement lm308 equivalent LM308 LM199 Zener diode with 9v LM108A C1995 LM321 LM321 equivalent
IRF7832

Abstract:
Text: N-Channel Power MOSFET Dual N-Channel Power MOSFET Dual Rectifier Diode Rectifier Diode Zener Diode Zener Diode Zener Diode Ceramic cap Ceramic cap Ceramic cap Ceramic cap Ceramic cap Ceramic cap , , open-loop isolated half-bridge DC-DC converter with 6:1 input to output voltage conversion ratio. The , 150W DC Bus Demo Board Fig. 1 Front side of the DC Bus Converter demo board with IR2085S ChipSet with , will start to operate as soon as the primary Vcc reaches about 9V ­ typically at 12Vin. At this low


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PDF IRDC2085S-S IRDC2085S-DF IR2085S) IRF7493) IRF7832) IRF7380) IRF9956) 100mOhm 73mOhm IRF7832 IR2085S PCC2224CT-ND bav16wdict zener diode db2 how mosfets connect parallel IRF7380 IRF7493 IRF9956
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