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100uH

Catalog Datasheet MFG & Type PDF Document Tags

5mm RGB led 4 pin

Abstract: 0.47uF PWM9 PWM10 PWM11 PWM12 PWM13 PWM14 PWM15 PWM16 GND RSET SW9 L9 100µH SW13 100µH L15 SW15 VIN SW14 L14 0.47µF 100µH 0.47µF 100µH 100µH 100µH L3 0.47µF 0.47µF , . Even at a mere 2µs on-time, a 20mA LED current snaps up LT3595 100µH 10µF SW2 5000:1 PWM Dimming 100µH VCC 3V TO 5.5V L2 0.47µF 100µH LED BRIGHTNESS CONTROL L1 SW1 OPENLED PWM1 PWM2 PWM3 PWM4 PWM5 PWM6 PWM7 PWM8 SHDN VCC L16 SW16 0.47µF 100µH
Linear Technology
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5mm RGB led 4 pin 0.47uF SW11 LED television IC Generator to 2MHz square 1-800-4-LINEAR
Abstract: LEDS AT 20mA 3595 TA01b T = 10ms TON = 2µs 100µH SW13 100µH L15 SW15 VIN SW14 L14 VPWM 5V/DIV 100µH 100µH 100µH L6 0.47µF 75.0k L3 100µH 100µH 100µH SW3 5000:1 PWM Dimming at 100Hz 0.47µF LT3595 100µH 10µF SW2 0.47µF 100µH VCC 3V TO 5.5V L2 0.47µF 100µH LED BRIGHTNESS CONTROL L1 SW1 OPENLED PWM1 PWM2 PWM3 PWM4 PWM5 PWM6 PWM7 PWM8 SHDN VCC L16 SW16 0.47µF 100µH 100k Linear Technology
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TSSOP-16E LT3491 LT3497 DFN-10 LT3498 DFN-12
Abstract: 3595A TA01b T = 10ms tON = 2µs 100µH SW13 100µH L15 SW15 VIN SW14 L14 VPWM 5V/DIV 100µH 100µH 100µH L6 0.47µF 75.0k L3 100µH 100µH 100µH SW3 5000:1 PWM Dimming at 100Hz 0.47µF LT3595A 100µH 10µF SW2 0.47µF 100µH VCC 3V TO 5.5V L2 0.47µF 100µH LED BRIGHTNESS CONTROL L1 SW1 OPENLED PWM1 PWM2 PWM3 PWM4 PWM5 PWM6 PWM7 PWM8 SHDN VCC L16 SW16 0.47µF 100µH 100k 100µH VCC 0.47µF Linear Technology
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LT3517/LT3518 QFN-16 LT3590 DFN-16 LT3591

150UH

Abstract: C12-K7.5L Height max. (mm) Size typ. (mm) 1.0 Inductance Appearance Model name 1µH 10µH 100µH , (100µH) 4.6 4.6 1.5 68µH 47µH (100µH) CK Series 3.8 3.8 4.8 4.8 150µH (220µH , . (mm) Inductance Appearance Model name 1µH 10µH 100µH 1mH 10mH DC Resistance Rated DC , C12-H3R 1µH 4.2~41 3.8~11.0 4.2~12.0 2.5 5.6 5.6 150µH (680µH) 100µH 150µH 150µH (1mH) CK Series 6.6 6.6 5 8.0 8.0 5 3 150µH 100µH 10.0 10.0 4 4.5
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150UH C12-K7.5L c5-k3la MITSUMI transformers #220 500 C6-K5LA C8-H3.5R C10-K3L C10-H3 C10-K4L C10-H5R C12-K4 C12-K7
Abstract: Typical characteristics Ivcc vs Supply Voltage for L = 100uH LED Current vs Supply Voltage for L = 100uH 100 70 90 80 60 70 Ivcc (mA) LED Current, ILed (mA) 80 50 40 30 60 , Efficiency vs Supply Voltgae for L = 100uH 100 90 Efficiency (%) 80 70 60 50 40 30 20 10 0 , L = 22, 47, 68 & 100uH LED Current vs Supply Voltage for L= 22, 47, 68 & 100uH 20 80 18 , 4 10 2 0 0 1 1.1 1.2 1.3 1.4 1 1.5 1.5 L = 100uH L = 68uH 2 Zetex Semiconductors
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ZXSC380 D-81541

100uH SMD

Abstract: 100uH ) LAND PATTERNS (mm) WIRE M ax 4. . 6 4 .2 Max. 2.0 ( 1.1µH - 100µH ) CDRH4D18C/LD , . 5.1 ( 1.1µH - 100µH ) CDRH4D28C Max. 5.1 DIMENSIONS (mm) LAND PATTERNS (mm) 2 , CONSTRUCTION ( 1.1µH - 100µH ) WIRE Max. 3.0 1. 4 6. 5 4. 0 CONSTRUCTION ( 1.0µH - 100µH ) WIRE Max. 3.0 1. 4 6. 4 3. 1 CONSTRUCTION ( 0.8µH - 100µH , (1.21) 1.05 830m 700m 600m 460m 410m 305m 250m Tolerance of Inductance / 1.1µH ­ 100µH ± 25% (N
Sumida
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100uH SMD 100uH 39-m CDRH4D18C CDRH4D28C/LD CDRH4D29/LD CDRH4D18CNP

0.9V - 1.5V led driver

Abstract: HIGHWAY 09 20 PIN IC PIN DIAGRAM = 100uH LED Current vs Supply Voltage for L = 100uH 100 70 90 80 60 70 Ivcc (mA , Voltage Vvcc (V) Operating Waveforms Efficiency vs Supply Voltgae for L = 100uH 100 90 , characteristics LED Current vs Supply Voltage for L = 22, 47, 68 & 100uH LED Current vs Supply Voltage for L= 22, 47, 68 & 100uH 20 80 18 70 LED Current ILed (mA) LED Current ILed (mA) 16 , 1.5 1.5 L = 100uH L = 68uH 2 3 2.5 Supply Voltage Vvcc (V) Supply Voltage Vvcc
Zetex Semiconductors
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0.9V - 1.5V led driver HIGHWAY 09 20 PIN IC PIN DIAGRAM load cell to PLC ZXSC380FH BAT54C TS16949
Abstract: ZXSC380 Typical characteristics Ivcc vs Supply Voltage for L = 100uH LED Current vs Supply Voltage for L = 100uH 100 70 90 80 60 70 50 Ivcc (mA) LED Current, ILed (mA) 80 40 , Efficiency vs Supply Voltgae for L = 100uH 100 90 Efficiency (%) 80 70 60 50 40 30 20 10 0 , for L = 22, 47, 68 & 100uH LED Current vs Supply Voltage for L= 22, 47, 68 & 100uH 20 80 , 20 4 10 2 0 0 1 1.1 1.2 1.3 1.4 1 1.5 1.5 L = 100uH L = 68uH Zetex Semiconductors
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FASTJACK-VERTICAL-10BASET

Abstract: -17dB 100µH 100µH -40dB HFJV1-1081-L11RL A G/G 1CT:1 1CT:1 -17dB 100µH 100µH -40dB HFJV1-1081-L12RL A G/Y 1CT:1 1CT:1 -17dB 100µH 100µH -40dB HFJV1-1081-L21RL A Y/G 1CT:1 1CT:1 -17dB 100µH 100µH -40dB Notes: 1. LED
HALO Electronics
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FASTJACK-VERTICAL-10BASET 10BASE-T IEEE802 1500V 5-10MH 1-10MH HFJV1-1041RL

FASTJACK-TABUP-10BASET

Abstract: -15dB 100µH 100µH -40dB HFJT1-1081-L11RL A G/G 1CT:1 1CT:1 -15dB 100µH 100µH -40dB HFJT1-1081-L12RL A G/Y 1CT:1 1CT:1 -15dB 100µH 100µH -40dB HFJT1-1081-L21RL A Y/G 1CT:1 1CT:1 -15dB 100µH 100µH -40dB Notes: 1. LED
HALO Electronics
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FASTJACK-TABUP-10BASET HFJT1-1041RL HFJT1-1041-L11RL HFJT1-1041-L12RL HFJT1-1041-L21RL HFJT1-1043RL HFJT1-1043-L11RL

FASTJACK-10BASET

Abstract: -15dB 100µH 100µH -40dB HFJ11-1081E-L11RL A G/G 1CT:1 1CT:1 -15dB 100µH 100µH -40dB HFJ11-1081E-L12RL A G/Y 1CT:1 1CT:1 -15dB 100µH 100µH -40dB HFJ11-1081E-L21RL A Y/G 1CT:1 1CT:1 -15dB 100µH 100µH -40dB Notes: 1. LED
HALO Electronics
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FASTJACK-10BASET HFJ11-1041ERL HFJ11-1041E-L11RL HFJ11-1041E-L12RL HFJ11-1041E-L21RL HFJ11-1043ERL HFJ11-1043E-L11RL

RN5RK301A

Abstract: RN5RK301B Output Voltage vs. Output Current (Topt=25°C) RN5RK301A RN5RK301A L=100µH 3.0 2.0V 2.5 1.0V , 80 RN5RK301B L=100µH 2.5 60 Output Current IOUT(mA) RN5RK301B Output Voltage VOUT , 50 RN5RK501A L=100µH 6 3.0V 1.5V VIN=0.9V 3 2 1 0 Output Voltage VOUT(V , RN5RK××1A/××1B/××2A RN5RK501B RN5RK501B L=100µH 4.0V 5 2.5V 4 3.0V 2.0V 3 VIN , =25°C) RN5RK301A RN5RK301A L=100µH 100 90 80 70 2.0V 60 1.0V Efficiency (%) Efficiency (%
Ricoh
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RN5RK302A RN5RK502A EA-045-0006

16CV470GX

Abstract: CTX100-2P Typical Applications Shutdown Enable 100µH SHDN MIC4574-5.0 +8V to +24V CIN 47µF VIN , 100µH SHDN MIC4574 +4.75V to +24V 1N5819 1.43k 1% FB VIN CIN 47µF +3V, 0.5A SW , 2 C1 C2 D1 L1 SW Nichicon Nichicon Motorola Sumida 7 3.3V/0.5A 3 100µH , Through Hole 5 100µH 1 SW 2 C1 C2 D1 L1 Figure 1. 6V­24V to 3.3V/0.5A Buck Converter , SGND PGND 4 L1 12 100µH 3 C3 3300pF C2 330µF 6.3V R1 1.50k 1% D1 6
Micrel Semiconductor
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LM2574 16CV470GX C55Y5U1H106Z CTX100-2P flyback converter 12v to 18v TTL - 24v Level Converter 100uH DIP 35CV168GX MBRS130LT3 DO3316P-104

500uH

Abstract: 0280 130 056 XF0250-HP XF0500-HP XF1000-HP 10uh 25uh 50uh 75uh 100uh 150uh 250uh 500uh 1000uh DCR OHMS , INDUCTANCE @1kHz ± 10% 10uh 25uh 50uh 75uh 100uh 10uh 25uh 50uh 75uh 100uh 250uh 25uh 50uh 75uh 100uh 250uh 500uh 750uh CURRENT DCR RATING* OHMS (AMPS DC) (MAX) 3.0 2.0 1.5 1.0 , 2.0 1.5 .015 .020 .025 .030 .070 .130 .170 .220 25uh 50uh 75uh 100uh 250uh 500uh , -XX 3XF0500-XX 3XF0750-XX 3XF1000-XX 10uh 25uh 50uh 75uh 100uh 10uh 25uh 50uh 75uh 100uh 250uh
XFMRS
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500uH 0280 130 056 250uH XF0010-HP XF0025-HP XF0050-HP XF0075-HP XF0100-HP XF0150-HP

CDRH6D28

Abstract: ax .9 2.65 Max. 7.0 2.0 .4 2.0 6.5 ø5 ( 1.5µH - 100µH ) CDRH6D28 Max. 7.0 , 2.0 2.0 6.5 ( 3.0µH - 100µH ) CDRH6D38 Max. 7.0 DIMENSIONS (mm) LAND PATTERNS (mm) 2.65 .5 M ax .9 2.65 Max. 7.0 2.0 ø5 .4 2.0 6.5 ( 3.3µH - 100µH , SMD Shielded Type 2.0 6.5 2.0 7.3 ø5 CONSTRUCTION ( 2.2µH - 100µH ) CDRH6D26 , of Inductance / 2.2µH ­ 100µH ± 30% (N) CDRH6D26 1.5µH ­ 8.2µH ± 25% (P), 10µH ­ 100µH ± 20% (M
Sumida
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CDRR75 CDRH6D26/HP CDRH6D26NP

GM30P

Abstract: AM33P VOUT L1 100µH + C1 SW 22µF D1 GS SS12 AIC1642-27 AIC1642-30 AIC1642-33 AIC1642 , beyond which the life of a device may be impaired. â  TEST CIRCUIT VIN IIN VOUT L1 100µH , (L=100µH CD54) 180 Output current (mA) Fig. 5 AIC1642-27 Efficiency (L=100µH CD54) 2.8 85 80 , (L=100µH CD54) 6 AIC1642 TYPICAL PERFORMANCE CHARACTERISTICS (Continued) 2.80 160 2.78 , Current (mA) Fig. 15 AIC1642-30 Load Regulation (L=100µH, CD54) 7 AIC1642 TYPICAL PERFORMANCE
Analog Integrations
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GM30P AM33P DIODE gm33 and/GM30P 100KH AIC1642-37 AIC1642-45 AIC1642-50

100uH inductor

Abstract: inductor 100uH inductor and you will see about double the output current for the 47µH Vs the 100µH. For example, for 5V , Current Application Comparing efficiencies, the 47µH is less efficient than the 100uH at the maximum , SP6642/3 from 100µH to 47µH will increase the peak inductor current by 2 times from about 250mA to , the time constant for charge in the inductor. Since L changes by 1/2 from 100µH to 47µH, the DC , current using the Sumida 47uH inductor CD54-470 and the Sumida 100uH inductor CD54-101 for 3 different
Sipex
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SP6642 SP6642EU SP6643EU SP6642UEB 100uH inductor inductor 100uH 4.7uH inductor Sumida 4.7uH MAX1642/3 SP6642/6643 SP6642/6643APN/02

1. VOUT 2. GND 3. VIN 4. CE 5. VOUT SOT-23-5

Abstract: 160 e7 =25°C) RN5RK301A RN5RK301A L=100µH 3.0 2.0V 2.5 1.0V 1.3V 2.0 VIN=0.9V 1.5 1.5V 1.0 0.5 , =220µH 3.5 Output Voltage VOUT(V) 3.5 2.0 80 RN5RK301B L=100µH 2.5 60 Output Current , Current IOUT(mA) 10 30 40 50 RN5RK501A L=100µH 6 3.0V 1.5V VIN=0.9V 3 2 1 , Current IOUT(mA) 11 RN5RKxx1A/xx1B/xx2A RN5RK501B RN5RK501B L=100µH 4.0V 5 2.5V 4 , vs. Output Current (Topt=25°C) RN5RK301A RN5RK301A L=100µH 100 90 80 70 2.0V 60
Ricoh
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1. VOUT 2. GND 3. VIN 4. CE 5. VOUT SOT-23-5 160 e7 n9287 EA-045-0204 026EDVHG

AIC1642

Abstract: AIC1642-27CXTR . TYPICAL APPLICATION CIRCUIT VIN VOUT L1 100µH + C1 SW 22µF D1 GS SS12 AIC1642 , 150 °C 260°C 2 AIC1642 TEST CIRCUIT VIN VOUT IIN D1 GS SS12 L1 100µH + C2 , Output Current (mA) Fig. 4 AIC1642-27 Load Regulation (L=100µH CD54) 180 Output current (mA) Fig. 5 AIC1642-27 Efficiency (L=100µH CD54) 2.8 85 80 2.7 Efficiency (%) Output Voltage , Output Current (mA) Fig. 9 AIC1642-27 Start-Up & Hold-ON Voltage (L=100µH CD54) 5 AIC1642 n
Analog Integrations
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AIC1642-27CXTR L1100uH MBR0530 1N4148

AIC1638

Abstract: DS-1638-03 cameras, and wireless microphones. TYPICAL APPLICATION CIRCUIT VIN VOUT L1 100µH + C1 , °C -65°C to 150 °C 260°C 2 AIC1638 TEST CIRCUIT VIN IIN VOUT D1 GS SS12 L1 100µH + , Output Current (mA) Fig. 4 AIC1638-27 Load Regulation (L=100µH CD54) 180 Output current (mA) Fig. 5 AIC1638-27 Efficiency (L=100µH CD54) 2.8 85 80 2.7 2.6 VIN=1.5V VIN , Current (mA) Fig. 9 AIC1638-27 Start-Up & Hold-ON Voltage (L=100µH CD54) 5 AIC1638 TYPICAL
Analog Integrations
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DS-1638-03 AIC1638-30 AIC1638-33 AIC1638-45 AIC1638-50

RN5RK271A

Abstract: RN5RK331A Inductor Diode Capacitor (L) : 100µH, 220µH (Sumida Electric Co., Ltd; CD-54) (SBD) : MA721 , =25°C) RN5RK301A RN5RK301A L=100µH 3.0 2.0V 2.5 1.0V 1.3V 2.0 VIN=0.9V 1.5 1.5V 1.0 0.5 , 0.5 L=220µH 3.5 Output Voltage VOUT(V) 3.5 2.0 80 RN5RK301B L=100µH 2.5 60 , Output Current IOUT(mA) 10 30 40 50 RN5RK501A L=100µH 6 3.0V 1.5V VIN=0.9V 3 , 200 Output Current IOUT(mA) 9 RN5RK RN5RK501B RN5RK501B L=100µH 4.0V 5 2.5V 4
Ricoh
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RN5RK331A RN5RK271A 2SD1628G RB111C EA-045-0602 ME-RN5RK-0310 SC-74A RN5RK241A RN5RK201A RN5RK251A
Abstract: =1.2V, STORE=3V 100 Circuit B 90 Circuit A Circuit B L 10µH PN: CBC3225T100KR 100µH PN , point. No switching is occurring. Note 4: VSTORE=3V. L=100µH. CSTORE=1µF. TS3310DS r1p2 Page 3 , Circuit B L 10µH PN: CBC3225T100KR 100µH PN: CBC3225T101KR CIN=CSTORE 10µF 1µF , 10µH PN: CBC3225T100KR 100µH PN: CBC3225T101KR CIN=CSTORE 10µF 1µF CLSW 220pF , : CBC3225T100KR 100µH PN: CBC3225T101KR CIN=CSTORE 10µF 1µF CLSW 220pF -Active-Mode IQ Touchstone Semiconductor
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TS3310
Abstract: Inductor Diode Capacitor (L) : 100µH, 220µH (Sumida Electric Co., Ltd; CD-54) (SBD) : MA721 (Matsushita , ) Output Voltage vs. Output Current (Topt=25°C) RN5RK301A 3.5 L=100µH RN5RK301A 3.5 L , 160 1.3V 1.0V 1.5V 2.0V Output Current IOUT(mA) Output Current IOUT(mA) RN5RK301B 3.5 L=100µH , 6 L=100µH 4.0V 2.0V 4 VIN=0.9V 3 2 1 0 0 50 100 150 200 1.5V 3.0V RN5RK501A 6 L=220µH 4.0V , 3.0V 200 Output Current IOUT(mA) Output Current IOUT(mA) 9 RN5RK RN5RK501B 6 L=100µH Ricoh
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RN5RK551A RN5RK221A RN5RK361A RN5RK261A RN5RK281A RN5RK321A
Abstract: VOUT L1 100µH + C1 SW 22µF D1 GS SS12 AIC1642-27 AIC1642-30 AIC1642-33 AIC1642 , beyond which the life of a device may be impaired. â  TEST CIRCUIT VIN IIN VOUT L1 100µH , (L=100µH CD54) 180 Output current (mA) Fig. 5 AIC1642-27 Efficiency (L=100µH CD54) 2.8 85 80 , (L=100µH CD54) 6 AIC1642 TYPICAL PERFORMANCE CHARACTERISTICS (Continued) 2.80 160 2.78 , Current (mA) Fig. 15 AIC1642-30 Load Regulation (L=100µH, CD54) 7 AIC1642 TYPICAL PERFORMANCE KOA Speer Electronics
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Abstract: Typical characteristics Ivcc vs Supply Voltage for L = 100uH LED Current vs Supply Voltage for L = 100uH 100 70 90 80 60 70 Ivcc (mA) LED Current, ILed (mA) 80 50 40 30 60 , Efficiency vs Supply Voltgae for L = 100uH 100 90 Efficiency (%) 80 70 60 50 40 30 20 10 0 , L = 22, 47, 68 & 100uH LED Current vs Supply Voltage for L= 22, 47, 68 & 100uH 20 80 18 , 4 10 2 0 0 1 1.1 1.2 1.3 1.4 1 1.5 1.5 L = 100uH L = 68uH 2 KOA Speer Electronics
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D-25578
Abstract: ZXSC380 Typical characteristics Ivcc vs Supply Voltage for L = 100uH LED Current vs Supply Voltage for L = 100uH 100 70 90 80 60 70 50 Ivcc (mA) LED Current, ILed (mA) 80 40 , Efficiency vs Supply Voltgae for L = 100uH 100 90 Efficiency (%) 80 70 60 50 40 30 20 10 0 , for L = 22, 47, 68 & 100uH LED Current vs Supply Voltage for L= 22, 47, 68 & 100uH 20 80 , 20 4 10 2 0 0 1 1.1 1.2 1.3 1.4 1 1.5 1.5 L = 100uH L = 68uH KOA Speer Electronics
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IHLM-2525CZ

Abstract: IHLM-2525-CZ L1 100µH + C1 SW 22µF AIC1638-27 AIC1638-30 AIC1638-33 AIC1638-45 AIC1638 , VOUT L1 100µH + C1 SW 22µF D1 GS SS12 AIC1638-27 AIC1638-30 AIC1638-33 AIC1638 , . 4 AIC1638-27 Load Regulation (L=100µH CD54) 180 Output current (mA) Fig. 5 AIC1638-27 Efficiency (L=100µH CD54) 2.8 85 80 2.7 2.6 VIN=1.5V VIN=1.2V VIN=1.8V Efficiency , -27 Start-Up & Hold-ON Voltage (L=47µH CD54) Fig. 9 AIC1638-27 Start-Up & Hold-ON Voltage (L=100µH CD54
Vishay BCcomponents
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IHLM-2525CZ IHLP-2525BD-01 IHLM-2525-CZ 5050ez 038w IHLP-2525AH IHLP-2525BD IHLP-2525CZ IHLP-2525EZ IHLP-5050CE
Abstract: VIN VOUT L1 100µH D1 SS12 SS6642-xxG + + C1 SW 22µF VOUT C2 47µF GND , CIRCUIT VIN VOUT IIN D1 SS12 L1 100µH IS SS6642-xxG + C2 22µF SW VOUT SS6642 , 160 180 0 20 40 Fig. 4 SS6642-27 Load Regulation (L=100µH CD54) 60 80 100 , =2.0V Fig. 5 SS6642-27 Efficiency (L=100µH CD54) www.SiliconStandard.com 5 of 22 SS6642G , Hold-ON Voltage (L=47µH CD54) Fig. 9 SS6642-27 Start-Up & Hold-ON Voltage (L=100µH CD54) 2.80 160 Analog Integrations
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