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Part Manufacturer Description PDF & SAMPLES
PA343 Cirrus Logic 350 V, 120 mA Peak, 2.2 mA Standby Current Dual Power Amplifier
PA340 Cirrus Logic 350 V, 120 mA Peak, 2.2 mA Standby Current Power Amplifier IC
MP103 Cirrus Logic MP103 Power Operational Amplifiers
MIN02-002EC351J-F Cornell Dubilier Electronics Inc Mica Film Capacitor; Capacitance:350pF; Capacitance Tolerance:+/- 5 %; Working Voltage, DC:300V
MCM01-014D150J-F Cornell Dubilier Electronics Inc RF/Microwave Capacitor; Capacitance:15pF; Capacitance Tolerance:+/- 5%; Series:MCM; Voltage Rating:500VDC; Capacitor Dielectric Material:Mica; Termination:SMD; Leaded Process Compatible:Yes; Working Voltage, DC:500V RoHS Compliant: Yes
DCM413U050DC2B Cornell Dubilier Electronics Inc Aluminum Electrolytic Capacitor; Capacitor Type:Computer Grade; Voltage Rating:50VDC; Capacitance:41000uF; Capacitance Tolerance:+75, -10%; Features:High Capacitance; Lead Pitch:1.25"; Leaded Process Compatible:Yes; Package/Case:DC RoHS Compliant: Yes

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current Datasheet

Part Manufacturer Description PDF Type
CGE887BO Current Electronics 870 mhz GaAs Optical Receiver Module Original
CURRENT Toshiba Photocoupler - Supplementary Information Original
Current Feedback Amplifiers National Semiconductor An Current-Feedback Amplifiers Original
Current Limiter For Motor Controller ICs TDA514X-Family NXP Semiconductors Current Limiter For Motor Controller ICs TDA514X-Family Original
Current Sensing Power MOSFETs NXP Semiconductors Current Sensing Power MOSFETs Original

current

Catalog Datasheet MFG & Type PDF Document Tags
Abstract: Temperature Tj 150 °C Storage Temperature Tstg ­55 to +150 °C Collector Current (DC) Collector Current (pulse) Note 5 EQUIVALENT CIRCUIT 3 MARK R1 2: Base 3: Collector R1 , TEST CONDITIONS ICBO VCB = -50 V, IE = 0 DC Current Gain hFE1 VCE = -5.0 V, IC = -5.0 mA hFE2 TYP. MAX. UNIT -100 Collector Cut-off Current MIN. nA VCE = -5.0 V, IC = , -130 -10 0 COLLECTOR TO EMITTER VOLTAGE vs. COLLECTOR CURRENT -80 -2 0 -4 -6 -8 NEC
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SC-75 kn4a4m
Abstract: EQUIVALENT CIRCUIT IC 0.1 A 3 Collector Current (DC) Collector Current (pulse) Note2 IC , °C) CHARACTERISTICS SYMBOL TEST CONDITIONS ICBO DC Current Gain hFE1 MIN. VCE = 5.0 V, IC = 5.0 , Collector Cut-off Current nA Note1 - VCE = 5.0 V, IC = 50 mA VCE(sat) Low-level Input , °C) COLLECTOR TO EMITTER VOLTAGE vs. COLLECTOR CURRENT IC - Collector Current - mA 50 IB = 220 A 200 , VCE - Collector to Emitter Voltage - V VCE - Collector to Emitter Voltage - V COLLECTOR CURRENT NEC
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5AN1 fa4a4 SC-59
Abstract: °C) Collector to Base Voltage Collector to Emitter Voltage Emitter to Base Voltage Collector Current (DC) Collector Current (pulse) Note Total Power Dissipation Junction Temperature Storage Temperature VCBO VCEO , °C) CHARACTERISTICS Collector Cut-off Current DC Current Gain SYMBOL ICBO hFE1 hFE2 Collector Saturation Voltage , [GA4A4M] TYPICAL CHARACTERISTICS (TA = 25°C) COLLECTOR CURRENT vs. COLLECTOR TO EMITTER VOLTAGE VCE - Collector to Emitter Voltage - V IC - Collector Current - mA 50 40 30 20 10 0 0 2 4 6 8 10 IB = 220 u A NEC
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D1649 SC-70
Abstract: 0.95 Diode Capacitance (Pf) Forward Current-IF (mA) 0.9 0.85 0.8 0.75 0.7 4.41 4.4 , 8P 8Q 8R 8S 8T 8U HMBZ52XXB Series Test Current IZT(mA) 20 20 20 20 20 20 20 20 , 5.0 6.0 8.0 8.0 10 17 22 30 13 15 Max. Reverse Current IR(uA) @VR(V) 100 1.0 100 1.0 , HMBZ5221B Forward Voltage & Forward Current HMBZ5221B Reverse Voltage & Reverse Current 300 100 80 Reverse Current (mA) Forward Current (mA) 250 200 150 100 60 40 20 Hi-Sincerity Microelectronics
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HMBZ5257B HMBZ5222B HMBZ5223B HMBZ5225B HMBZ5226B HMBZ5227B 8J sot 23 HMBZ5254B HMBZ5230B HMBZ5229B HMBZ5228B HE6803
Abstract: 8D 8E 8F 8G 8H 8J 8K 8L 8M 8N 8P 8Q 8R 8S 8T 8U ZD52XXBN3 series Test Current , . Reverse Current IR(uA) @VR(V) 100 1.0 100 1.0 75 1.0 50 1.0 25 1.0 15 1.0 10 1.0 5.0 1.0 , 12 13 14 14 15 17 18 19 21 21 23 25 27 Characteristic Curves ZD5221B Forward Current vs Forward Voltage ZD5221B Reverse Current vs Reverse Voltage 100 300 80 Reverse Current (mA) Forward Current (mA) 250 200 150 100 60 40 20 50 0 0 0 200 CYStech Electronics
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ZD5222B ZD5223B ZD5226B ZD5253 marking 81J C326N3 ZD5225B ZD5227B
Abstract: controls peak inductor current. This gives rise to many serious problems, including poor noise immunity , effectively to control currents other than inductor current, allowing a much broader range of topological , current mode control actually controls inductor current. As normally used for output current control, it , level. The voltage across current sense resistor R, represents actual inductor current. The difference , n remains to be worked out. Example 1: Buck Regulator Output Current. The simple buck regulator Texas Instruments
Original
U-140 flyback loop gain 300V dc dc boost converter bode plot technique of plot current mode control switch mode circuit SWITCH MODE CURRENT SOURCE
Abstract: controls peak inductor current. This gives rise to many serious problems, including poor noise immunity , effectively to control currents other than inductor current, allowing a much broader range of topological , current mode control actually controls inductor current. As normally used for output current control, it , level. The voltage across current sense resistor R, represents actual inductor current. The difference , n remains to be worked out. Example 1: Buck Regulator Output Current. The simple buck regulator Unitrode
Original
300V dc to dc boost converter inductor 14 h toroidal transformer 120v sine wave pwm circuit power INDUCTOR 12v 6A flyback
Abstract: . Error-free operation is assured by rush current. 2. Circuit is protected until current is turned off. 3 , supply and motor protector. Error-free operations are assured by rush current. 2. Circuit is protected , requirements for power supply and motor protector. Error-free operations are assured by rush current. 2 , protection against current fuse or temperature fuse, due to its ability to return to its initial condition , Current at +60°C Current at -10°C Current (V) (mA) (mA) (A) Resistance (at 25°C) (ohm) Curie muRata
Original
transistor w08 Temperature FUSE PTGL07AR8R2M3P51B0 PTGL07AR4R6H2B51B0 PTGLS6ARR47M1B51B0 PTGLS5AR0R8M1B53B0 R90E6 PTGLS4AR1R0M1B53
Abstract: ) omitted) Rating Collector-Base Voltage Collector-Emitter Voltage Collector Current Symbol VCBO VCEO IC , CHARACTERISTICS Collector-Base Cutoff Current (VCB = 50 V, IE = 0) Collector-Emitter Cutoff Current (VCE = 50 V, IB = 0) Emitter-Base Cutoff Current (VEB = 6.0 V, IC = 0) MUN5311DW1T1 MUN5312DW1T1 MUN5313DW1T1 , CHARACTERISTICS (Note 4.) DC Current Gain (VCE = 10 V, IC = 5.0 mA) MUN5311DW1T1 MUN5312DW1T1 MUN5313DW1T1 , CURRENT GAIN (NORMALIZED) VCE = 10 V TA = 75°C 25°C -25°C 100 VCE(sat) , COLLECTOR VOLTAGE (VOLTS ON Semiconductor
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MUN5311DW1T1/D
Abstract: -12-48 Obsolete PM30-48S12 76 DRP60-1 Current Model 32 AD10-1205-5 AD10-1212-12 Obsolete 74 PM30-12S15 76 DRP120-1 Current Model 32 76 AS25-15-12 AS25-15-24 Obsolete Obsolete 2 x PP PM10-12D12 Obsolete PM30-24S15 76 DRP240-1 Current Model 32 AD10-1212-24 Obsolete PM10-24D12 76 AS25-15-48 Obsolete PM30-48S15 76 DRP240-3H Current Model , -5-24 Obsolete 76 DRP480-3H DSR180-12-24 Current Model Obsolete PM3D-12S05 PM30-24S05 76 -
OCR Scan
SE5002 LWQ-80-5222 LWQ-80-5224 LOS-X-12 DSR30-5-24 LWQ-80-5FF5 213XX1A RP0750-3 AD10-1515-5 AS3-15-48 213XX1L PFD0750-3
Abstract: voltage Collector-emitter breakdown v=ge Emitter-base breakdown voltage Collector cutoff current Collector-emitter saturation voltage Base-emitter saturation voltage DC current transfer ratlo _~.~ ~Transltlon , : SST3 ( 1 ) Emitter (2) Base (3) Collector l Electrical characteristics (Ta=25 C) D C current , Transistors BC848BW I BC848B / BC848C JO 0 01 IO 10 Ic-COLLECTOR CURRENT (mA) 100 1 _ oon Fig.3 DC current gain vs. collector current ( I ) F AZ 1 I / IO 01 10 I I 10 I / 100 ROHM
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2SC174OS MMST8098 PN3906 TRANSISTOR PNP SPEC-C37 PNP switching transistor 2N3906 mhz SPEC-A38 PN3906 SPT/TO-92 SPTTO-92 U--800 OO-60 2SA1774 2SC4617
Abstract: °C Collector Current (DC) Collector Current (pulse) Note2 0.65 0.3 +0.1 -0 V , °C) CHARACTERISTICS SYMBOL TEST CONDITIONS ICBO DC Current Gain hFE1 MIN. VCE = -5.0 V, IC = -5.0 mA TYP. VCB = -50 V, IE = 0 MAX. UNIT -100 Collector Cut-off Current nA Note1 , COLLECTOR TO EMITTER VOLTAGE vs. COLLECTOR CURRENT -80 -2 0 -4 -6 -8 -10 VCE - Collector to Emitter Voltage - V VCE - Collector to Emitter Voltage - V IC - Collector Current - mA NEC
Original
r2kv
Abstract: 44 45 46 47 48 49 50 51 52 53 54 55 56 57 ZD52XXBSG series Test Current IZT(mA , 13 15 16 17 19 21 23 25 29 33 35 41 44 49 58 Max. Reverse Current IR(uA) @VR(V , ZD5221B Forward Current vs Forward Voltage ZD5221B Reverse Current vs Reverse Voltage 100 300 Reverse Current (mA) Forward Current (mA) 250 200 150 100 80 60 40 20 50 0 0 0 200 400 600 Forward Voltage (mV) 800 100 0 ZD5222B Forward Current CYStech Electronics
Original
C326SG MIL-STD-750 625/W UL94V-0
Abstract: currents ramp up linearly, so does the current sense voltage. Because the output of voltage error , current through the inductor in the output loop contains both ramping up and down current. If the current , voltage and output load current. At the same time the saturation current of the inductor should also meet , Application Note PIC-007 Selection of Three Locations of Current Sense Resistor in Buck Converter Song Liu, Alpha & Omega Semiconductor (Shanghai), Ltd. Abstract In current mode converters Alpha & Omega Semiconductor
Original
Current Loop Converters disadvantages of mosfet current sense amplifier buck converter with pic controller MOSFET current sense amplifier msofet
Abstract: R90C.pdf 05.07.22 s PRG18BB471MB1RB 40 60 PRG18BB221MB1RB 1 30 Current (mA) Trip current 20 Protective threshold current 20 10 Non-operating current Non-operating current Current (mA) 40 Trip current Protective threshold current 0 Y10 0 10 20 30 40 50 60 0 Y10 0 10 20 , 100 PRG18BB470MB1RB 80 60 Current (mA) Trip current 40 Protective threshold current Current (mA) 60 Protective threshold current 40 Trip current 20 Non-operating current Non-operating current muRata
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varistor 10c 471 420 v 592 BC varistor 903M18 PTC 15K PTGL07AS5R6K4B51A0 varistor 471 14 51/60V 24/30/32V 56/80V 125/140V 250/265V 125/250/265V
Abstract: average current-mode control, with the circuit configured such that the average current flowing into the , the input capacitors (C1 and C2) is used to control the current in the current-mirror circuit formed , - PCB pads, respectively. 3) Clip the current probe across the LED+ wire to measure the HBLED current. , average current-modecontrol HBLED driver IC for step-down (buck), step-up (boost), and step-up/step-down , PFC. The HBLED driver uses a fixed-frequency average current-mode to control the duty cycle of the Maxim Integrated Products
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230V AC to 12V DC ic 230v ac to 12v dc without transformer 230V AC to 5V DC ic BRIDGE-RECTIFIER 12v 5A transformer from 230V AC to 5V DC 3A, 50V BRIDGE-RECTIFIER MAX16840L MAX16840 MAX16840LEVKIT
Abstract: 44 45 46 47 48 49 50 51 52 53 54 55 56 57 ZD52XXBS2 series Test Current IZT(mA , 13 15 16 17 19 21 23 25 29 33 35 41 44 49 58 Max. Reverse Current IR(uA) @VR(V , ZD5221B Forward Current vs Forward Voltage ZD5221B Reverse Current vs Reverse Voltage 100 300 Reverse Current (mA) Forward Current (mA) 250 200 150 100 80 60 40 20 50 0 0 0 200 400 600 Forward Voltage (mV) 800 100 0 ZD5222B Forward Current CYStech Electronics
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ZD5243 C326S2
Abstract: LED Dimmable Indoor Series 10W - 60W Model Watts Output Voltage Output Current Input Voltage Dimension(mm) Current Type FSP18-ZZAP(035)M 18W 40-52V 350mA 120-277V 130 x35 x26 Constant Current FSP18-ZZAP(050)M 18W 20-36V 500mA 120-277V 130 x35 x26 Constant Current FSP18-ZZAP(070)M 18W 15-26V 700mA 120-277V 130 x35 x26 Constant Current FSP30-ZZAP(050)M 25W 24-50V 500mA 120-277V 148 x 40 x 30 Constant Current Sparkle Power
Original
FSP40-ZZAP FSP50-ZZAP FSP150-SZAE FSP120-NZKVH-24 FSP120-NZKVH-30 FSP120-NZKVH-36
Abstract: A IC(pulse) 0.95 V °C Collector Current (DC) Collector Current (pulse) Note , °C) CHARACTERISTICS SYMBOL TEST CONDITIONS ICBO VCB = -50 V, IE = 0 DC Current Gain hFE1 VCE = -5.0 V, IC = -5.0 mA hFE2 TYP. MAX. UNIT -100 Collector Cut-off Current MIN. nA , -230 -180 -20 -130 -10 0 COLLECTOR TO EMITTER VOLTAGE vs. COLLECTOR CURRENT -80 -2 , Voltage - V IC - Collector Current - mA COLLECTOR CURRENT vs. COLLECTOR TO EMITTER VOLTAGE - 0.5 NEC
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R24020
Abstract: Storage Temperature 0.9 ± 0.1 2.0 ± 0.2 A Total Power Dissipation Collector Current (pulse , R2 0.3 A Collector Current (DC) 0.65 0.3 +0.1 -0 V Collector to , CONDITIONS ICBO DC Current Gain hFE1 MIN. VCE = 5.0 V, IC = 5.0 mA TYP. VCB = 50 V, IE = 0 hFE2 Collector Saturation Voltage MAX. UNIT 100 Collector Cut-off Current nA , [GA4A4M] TYPICAL CHARACTERISTICS (TA = 25°C) COLLECTOR TO EMITTER VOLTAGE vs. COLLECTOR CURRENT IC - NEC
Original
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