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LT1528CQ Linear Technology LT1528 - 3A Low Dropout Regulator for Microprocessor Applications; Package: DD PAK; Pins: 5; Temperature Range: 0°C to 70°C
LT1528CQ#TR Linear Technology LT1528 - 3A Low Dropout Regulator for Microprocessor Applications; Package: DD PAK; Pins: 5; Temperature Range: 0°C to 70°C
LT1528CQ#PBF Linear Technology LT1528 - 3A Low Dropout Regulator for Microprocessor Applications; Package: DD PAK; Pins: 5; Temperature Range: 0°C to 70°C
LT1528CT#PBF Linear Technology LT1528 - 3A Low Dropout Regulator for Microprocessor Applications; Package: TO-220; Pins: 5; Temperature Range: 0°C to 70°C
LT1528CT Linear Technology LT1528 - 3A Low Dropout Regulator for Microprocessor Applications; Package: TO-220; Pins: 5; Temperature Range: 0°C to 70°C
LT1528CQ#TRPBF Linear Technology LT1528 - 3A Low Dropout Regulator for Microprocessor Applications; Package: DD PAK; Pins: 5; Temperature Range: 0°C to 70°C

ICL 7129 Application Notes Datasheets Context Search

Catalog Datasheet MFG & Type PDF Document Tags
2007 - TA 7129

Abstract: THC63LVDF84 TISN65LVDS94 vp386 7025 tube receiver LVDS DS90CF386 LVDS Transmitter THine
Text: PLL RxCLKINPWRDWN VP386 8/28-BIT LVDS RECEIVER FOR VIDEO 1 IDTVP386 7129 /3 , IDTVP386 7129 /3 IDTVP386 8/28-BIT LVDS RECEIVER FOR VIDEO COMMERCIAL TEMPERATURE RANGE Pin , OUT Data outputs on pins (RxOUT0.27) 3 IDTVP386 7129 /3 IDTVP386 8/28-BIT LVDS , IDTVP386 7129 /3 IDTVP386 8/28-BIT LVDS RECEIVER FOR VIDEO COMMERCIAL TEMPERATURE RANGE , (VN) 8/28-BIT LVDS RECEIVER FOR VIDEO 5 IDTVP386 7129 /3 IDTVP386 8/28-BIT LVDS


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PDF IDTVP386 8/28-BIT VP386 DS90CF386, THC63LVDF84, TISN65LVDS94 56-pin TA 7129 THC63LVDF84 TISN65LVDS94 7025 tube receiver LVDS DS90CF386 LVDS Transmitter THine
ICL 7129 Application Notes

Abstract: DPM 160 DPM 2000 TA 7136 p DPM 343 DPM 50 7129 digital multimeter diagram zener DIODE 8069 DPM 702s DPM951
Text: 4 ICl 7660 4 3 5 1M 13 7 AD5 95 11 8 12 3 9 1 14 0V Panel Instrument Application Notes Issue 2 V +10 10µ 10µ 10K 1M 10µ DPM COM REF REF LO 10K 10µ 10µ 10K 20K -5V VDD (V +) VSS (V-) IN H IN L I O +5V ICL 8069 ICL 8069 , ICL 7129 SPECIFICATION. PARAMETERS Zero input reading Zero reading drift Range change accuracy , under range. The ICL 7135 and ICL 7129 based meters have such outputs and they can also be derived from


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ICL 8032

Abstract: ICL7129 LI 803-2 4031s DPM300S
Text: , AB5 A4, D4, G4 COM F4, E4, DP4 BP3 C REF + BP2 C REF- BP1 REF HI IC1 ICL 7129 REF LO CM44 OSC , fitted in order to alter the full scale reading of the meter. notes 1. Input must not exceed +500V. 2


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PDF 200mV ICL 8032 ICL7129 LI 803-2 4031s DPM300S
L7129

Abstract: GU29 icl7129acpl ICL7129A
Text: -C h ip A /D C o n v e rte r w ith LCD D riv e r 7129 ICL 7 1 2 9 A /MAX Figure 4. In te g ra to r , 4 - 1 /2 D ig it S in g le -C h ip A /D C o n v e rte r w ith LCD D riv e r ICL 7 1 2 9 A /MAX 7129 , te c h n iq u e , th e IC L 7 1 2 9 A / M A X 7129 has a + 2 0 ,0 0 0 c o u n t re s o lu tio n o n b , n g in g s y s te m s . T h e IC L7129A /M AX 7129 d e te cts and fla g s a LO W B ATTE R Y c o n d , X 7129 has a fu lls c a le a c c u ra c y o f 0.0005% , re s o lu tio n o f 10/A/, z e ro re a d in


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PDF 0000V L7129 GU29 icl7129acpl ICL7129A
2011 - Not Available

Abstract: No abstract text available
Text: Application Note 2). When the load current exceeds the ICL setting, the output of the VRG8691/92 will be , / ICL varies directly with VIN. (See Application Note 2 for adjusting the Current Limit, ICL ). FIGURE , APPLICATION NOTE 2 (CONTINUED) SETTING THE CURRENT LIMIT To Decrease the Current Limit ( ICL ): VBIAS 0.1µF , CURRENT LIMIT ( ICL ) SCD8691 Rev F 9/9/11 5 Aeroflex Plainview APPLICATION NOTE 3 START UP SEQUENCE , demanding military and space applications. CURRENT LIMIT ( ICL ) The VRG8691/92 features internal current


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PDF VRG8691/92 SCD8691
Not Available

Abstract: No abstract text available
Text: NOT required). 2/ ICL varies directly with VIN. (See Application Note 2 for adjusting the Current , APPLICATION NOTE 2 SETTING THE CURRENT LIMIT To Increase the Current Limit ( ICL ): 4 VBIAS VBIAS , CURRENT LIMIT ( ICL ) SCD8691 Rev F 9/9/11 4 Aeroflex Plainview APPLICATION NOTE 2 (CONTINUED , LIMIT ( ICL ) The VRG8691/92 features internal current limiting making them virtually blowout-proof , decreased with the addition of one external resistor (see Application Note 2). When the load current


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PDF VRG8691/92 Desig4585 SCD8691
2013 - Not Available

Abstract: No abstract text available
Text: / ICL varies directly with VIN. (See Application Note 2 for adjusting the Current Limit, ICL ). FIGURE , Plainview APPLICATION NOTE 2 (CONTINUED) SETTING THE CURRENT LIMIT To Decrease the Current Limit ( ICL , CURRENT LIMIT ( ICL ) SCD8691 Rev G 6/4/13 5 Aeroflex Plainview APPLICATION NOTE 3 START UP SEQUENCE , demanding military and space applications. CURRENT LIMIT ( ICL ) The VRG8691/92 features internal current , Application Note 2). 1 VIN 2 3 VBIAS ENABLE GND 4 5 6 VRG8691/92 12 11 10 9 8 7 VSENSE Current Limit Slow


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PDF VRG8691/92 SCD8691
2010 - VRG8692-201-1S

Abstract: VRG8692-7 VRG8692 5962-0923701KYA
Text: resistor (see Application Note 2). When the load current exceeds the ICL setting, the output of the VRG8691 , control line is NOT required). 2/ ICL varies directly with VIN. (See Application Note 2 for adjusting , Plainview APPLICATION NOTE 2 SETTING THE CURRENT LIMIT To Increase the Current Limit ( ICL ): 4 , ideal for demanding military and space applications. CURRENT LIMIT ( ICL ) The VRG8691/92 features , IADJ - 3 µA Minimum Load Current IMIN - 0 mA Current Limit 2/ ICL 9.5


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PDF VRG8691/92 SCD8691 VRG8692-201-1S VRG8692-7 VRG8692 5962-0923701KYA
Not Available

Abstract: No abstract text available
Text: Notes : 1/ ENABLE should be asserted after both VIN and VBIAS are applied. (See Application Note 3 , directly with VIN. (See Application Note 2 for adjusting the Current Limit, ICL ). FIGURE 2 –SETTING , applications. CURRENT LIMIT ( ICL ) The VRG8691/92 features internal current limiting making them virtually , decreased with the addition of one external resistor (see Application Note 2). 1 2 11 3 VIN , Current IMIN - 0 mA Current Limit 2/ ICL 9.5 13.5 A Long Term Stability 3


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PDF VRG8691/92 SCD8691
2010 - VRG8691

Abstract: No abstract text available
Text: Stability 2/ Supply Current (VBIAS) Thermal Resistance (Junction to Case) VDROP IADJ IMIN ICL SYM VREF , IOUT VOUT = 1% VOUT TIME IBIAS JC Notes : 1. Unless otherwise specified, these , VREF (1+R1/R2) + (IADJ x R1) Typical Set-Up VREF R2 Setting Current Limit ( ICL ) ICL NOM = 75 X VIN 1/ 33 To increase or decrease ICL : R3 INC Increases ICL ICL ICL NOM + or R3 DEC Decreases ICL ICL ICL NOM Example To increases ICL by R3 INC = 75 X VIN 1/ 75 X VIN R3 INC 25 X VIN R3 DEC


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PDF VRG8691/92 SCD8691 VRG8691
2011 - icl 555

Abstract: MIP554 ICL300
Text: , ICL = ICLmax + 50 mA VDD = VDD(ON) + 0.1 V, VD = 5 V, VIN = 30 V, IEX = 0 mA, ICL = ICLmax + 50 mA VD = 5 V, IEX = 0 mA, ICL = ICLmax + 50 mA VDD = VDD(ON) - 0.2 V, VD = 5 V, IEX = 0 mA, ICL = ICLmax + 50 mA VDD = VDD(ON) + 0.1 V, VD = 5 V, IEX = 0 mA, ICL = ICLmax + 50 mA VDD = VDD(ON) + 0.1 V, ICL = ICLmax + 50 mA, ILIMIT = ILIMITmin *Fig. 2 VDD = VDD(ON) + 0.1 V, ICL = ICLmax + 50 mA *Fig. 2 Delta_IEX = IEXoff - IEXH VDD = VDD(ON) + 0.1 V, ICL = ICLmax + 50 mA, IEX = 150 mA VDD = VDD(ON) + 0.1 V, ICL


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PDF MIP5540MS O-220IPD7-A2 MIP554 MIP803/804 MIP52 MIP816/826 MIP55 MIP50 MIP51 icl 555 MIP554 ICL300
2011 - MIP554

Abstract: ICL300 MIP5540MS icl 555
Text: , ICL = ICLmax + 50 mA VDD = VDD(ON) + 0.1 V, VD = 5 V, VIN = 30 V, IEX = 0 mA, ICL = ICLmax + 50 mA VD = 5 V, IEX = 0 mA, ICL = ICLmax + 50 mA VDD = VDD(ON) - 0.2 V, VD = 5 V, IEX = 0 mA, ICL = ICLmax + 50 mA VDD = VDD(ON) + 0.1 V, VD = 5 V, IEX = 0 mA, ICL = ICLmax + 50 mA VDD = VDD(ON) + 0.1 V, ICL = ICLmax + 50 mA, ILIMIT = ILIMITmin *Fig. 2 VDD = VDD(ON) + 0.1 V, ICL = ICLmax + 50 mA *Fig. 2 Delta_IEX = IEXoff - IEXH VDD = VDD(ON) + 0.1 V, ICL = ICLmax + 50 mA, IEX = 150 mA VDD = VDD(ON) + 0.1 V, ICL


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PDF MIP5540MS O-220IPD7-A2 MIP554 MIP00* MIP55* MIP816/826 MIP50* MIP02* MIP52* MIP56* MIP554 ICL300 MIP5540MS icl 555
2011 - MIP5530MD

Abstract: MIP553MD MIP53 MIP553 traffic light using 68K TO-220IPD7-A2 triac applications circuit diagram for dimmer lamp
Text: , IEX = 0 mA, ICL = ICLmax + 50 mA VD = 5 V, VIN = 50 V, IEX = 0 mA, ICL = ICLmax + 50 mA VDD = VDD(ON) - 0.2 V, VD = 5 V, VIN = 50 V, IEX = 0 mA, ICL = ICLmax + 50 mA VDD = VDD(ON) + 0.1 V, VD = 5 V, VIN = 50 V, IEX = 0 mA, ICL = ICLmax + 50 mA VDD = VDD(ON) + 0.1 V, ICL = ICLmax + 50 mA, VIN = 50 V, ILIMIT = ILIMITmin *Fig. 2 VDD = VDD(ON) + 0.1 V, ICL = ICLmax + 50 mA, VIN = 50 V *Fig. 2 VDD = VDD(ON) + 0.1 V, ICL = ICLmax + 50 mA, IEX = 150 mA, VIN = 50 V VDD = VDD(ON) + 0.1 V, ICL = ICLmax + 50 mA


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PDF MIP5530MD O-220IPD7-A2 MIP553MD voltageP01* MIP00* MIP55* MIP816/826 MIP50* MIP02* MIP52* MIP5530MD MIP553MD MIP53 MIP553 traffic light using 68K TO-220IPD7-A2 triac applications circuit diagram for dimmer lamp
2011 - MIP553

Abstract: MIP5530MD MIP553MD TO-220IPD7-A2 traffic light using 68K
Text: , IEX = 0 mA, ICL = ICLmax + 50 mA VD = 5 V, VIN = 50 V, IEX = 0 mA, ICL = ICLmax + 50 mA VDD = VDD(ON) - 0.2 V, VD = 5 V, VIN = 50 V, IEX = 0 mA, ICL = ICLmax + 50 mA VDD = VDD(ON) + 0.1 V, VD = 5 V, VIN = 50 V, IEX = 0 mA, ICL = ICLmax + 50 mA VDD = VDD(ON) + 0.1 V, ICL = ICLmax + 50 mA, VIN = 50 V, ILIMIT = ILIMITmin *Fig. 2 VDD = VDD(ON) + 0.1 V, ICL = ICLmax + 50 mA, VIN = 50 V *Fig. 2 VDD = VDD(ON) + 0.1 V, ICL = ICLmax + 50 mA, IEX = 150 mA, VIN = 50 V VDD = VDD(ON) + 0.1 V, ICL = ICLmax + 50 mA


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PDF MIP5530MD O-220IPD7-A2 MIP553MD MIP553 MIP5530MD MIP553MD TO-220IPD7-A2 traffic light using 68K
LM199

Abstract: No abstract text available
Text: Temperature (Soldering, 10s) 300°CM axim um Package Power Dissipation ( Notes 1 and 2 ) . 300m W NOTES : 1. Rating applies for case temperatures to +125°C to IC L8211 M T Y /8212M TY , Output Current Hysteresis Leakage Current SYMBOL TEST CONDITIONS ( Notes 3 & 4) bH VOUT = , -15 -15 NOTES : 3. The m axim um output current of the IC L 82 11 is limited by design to 15mA , measured with respect to V + V th = 1.3V 0.3 V - mA VouT = 30V Iout = 3mA ( Notes 3


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PDF ICL8211 jLS212 ICL8211/8212 LM199 ICL8212 LM199 ICL8211 ICL8212.
2003 - Not Available

Abstract: No abstract text available
Text: ; heat sink selection; Apex's complete Application Notes library; Technical Seminar Workbook; and , delivered power is highly application dependent and therefore can be misleading. For example, the 135W , infinite heatsink. TYPICAL APPLICATION THERMAL STABILITY APEX has eliminated , * * * * * * * * * * * ±10 ±40 25 .6 .9 30 * * * * * * V mA °C/W °C/W °C/W °C ­25 NOTES : * The , the operating conditions for a specific application . GENERAL Please read Application Note 1


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PDF 12-PIN 100kHz PA13U
2003 - 12-PIN

Abstract: PA13 PA13A 120w audio power amplifier
Text: dissipation, current limit; heat sink selection; Apex's complete Application Notes library; Technical Seminar , package is electrically isolated. TYPICAL APPLICATION , manufacturers and gives conservative results. Rating delivered power is highly application dependent and , TC = ­55 to +125°C Meets full range specification NOTES : PA13/PA13A 100V 15A 135W ±VS ­3V , Application Note 1 "General Operating Considerations" which covers stability, supplies, heat sinking


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PDF 12-PIN 100kHz PA13U PA13 PA13A 120w audio power amplifier
2004 - PA10

Abstract: PA10A
Text: dissipation, current limit; heat sink selection; Apex's complete Application Notes library; Technical , STYLE CE TYPICAL APPLICATION DESCRIPTION DC and low distortion AC current , of 33.3 W. When output voltage increases to 36V, the current limit is 1.69A. Refer to Application , RANGE, case NOTES : * 1. 2. 3. 4. 5. CAUTION TC = ­55 to +125°C, F > 60Hz TC = ­55 to , Please read Application Note 1 "General Operating Considerations" which covers stability, supplies, heat


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PDF PA10A) 100kHz PA10U PA10 PA10A
2004 - Not Available

Abstract: No abstract text available
Text: ; heat sink selection; Apex's complete Application Notes library; Technical Seminar Workbook; and , SUPPLIES UP TO 90V AUDIO AMPLIFIERS UP TO 60W RMS 8-PIN TO-3 PACKAGE STYLE CE TYPICAL APPLICATION , current limit is 1.69A. Refer to Application Note 9 on foldover limiting for details. EQUIVALENT , * * * * * * ±50 * * * +125 ±40 15 1.9 2.4 30 * * * * * * * ­25 NOTES : * 1. 2. 3. 4. 5. The , ) 690-8601 · EMAIL prodlit@apexmicrotech.com 3 PA10 · PA10A GENERAL Please read Application Note 1


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PDF PA10A) 100kHz PA10A PA10U
2004 - Not Available

Abstract: No abstract text available
Text: ; heat sink selection; Apex's complete Application Notes library; Technical Seminar Workbook; and , SUPPLIES UP TO 90V AUDIO AMPLIFIERS UP TO 60W RMS 8-pin TO-3 PACKAGE STYLE CE TYPICAL APPLICATION , current limit is 1.69A. Refer to Application Note 9 on foldover limiting for details. EQUIVALENT , * * * * * * ±50 * * * +125 ±40 15 1.9 2.4 30 * * * * * * * ­25 NOTES : * 1. 2. 3. 4. 5. The , ) 690-8601 · EMAIL prodlit@apexmicrotech.com 3 PA10 · PA10A GENERAL Please read Application Note 1


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PDF PA10A) 100kHz PA10A PA10U
2008 - PA13U

Abstract: PA13 PA13A
Text: selection; Apex's complete Application Notes library; Technical Seminar Workbook; and Evaluation Kits , specification * +85 * °C/W * °C NOTES : 1. (All Min/Max characteristics and specifications , application dependent and therefore can be misleading. For example, the 135W internal dissipation rating of , . TYPICAL APPLICATION THERMAL STABILITY APEX has eliminated the tendency of class A/B output stages , . PA13U PA13 · PA13A Product Innovation From GENERAL Please read Application Note 1 "General


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PDF PA13A 100kHz PA13U PA13U PA13 PA13A
2012 - PA10A

Abstract: No abstract text available
Text: selection; Apex Microtechnology’s complete Application Notes library; Technical Seminar Workbook; and , common mode rejection ranges. Please refer to Application Notes , AN01 and AN22 for detailed information , APPLICATION R2A +42V DESCRIPTION CONTROL –42V R2B FIGURE 1. VOLTAGE-TO-CURRENT CONVERSION DC , current limit is 1.69A. Refer to Application Note 9 on foldover limiting for details. Q2B Q1 2 , RESISTANCE, DC, junction to case RESISTANCE, junction to air TEMPERATURE RANGE, case NOTES : * 1. 2


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PDF PA10A PA10A) 100kHz PA10U PA01U PA10A
2012 - Not Available

Abstract: No abstract text available
Text: ; heat sink selection; Apex Precision Power's complete Application Notes library; Technical Seminar , amplifiers with wide common mode rejection ranges. Please refer to Application Notes , AN01 and AN22 for , -3 PACKAGE STYLE CE TYPICAL APPLICATION R2A +42V R1A PA10 CONTROL .82 R1B ­42V R2B LOAD 0-24 .82 RS , limit is 1.69A. Refer to Application Note 9 on foldover limiting for details. 2 EQUIVALENT SCHEMATIC , NOTES : * 1. 2. 3. 4. 5. The specification of PA10A is identical to the specification for PA10 in


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PDF PA10A PA10A PA10A) 100kHz PA10U
2012 - PA01U

Abstract: PA10A
Text: limit; heat sink selection; Apex Microtechnology's complete Application Notes library; Technical Seminar , amplifiers with wide common mode rejection ranges. Please refer to Application Notes , AN01 and AN22 for , -3 PACKAGE STYLE CE TYPICAL APPLICATION R2A +42V R1A PA10 CONTROL .82 R1B ­42V R2B LOAD 0-24 .82 RS , limit is 1.69A. Refer to Application Note 9 on foldover limiting for details. 2 EQUIVALENT SCHEMATIC , NOTES : * 1. 2. 3. 4. 5. The specification of PA10A is identical to the specification for PA10 in


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PDF PA10A PA10A PA10A) 100kHz PA10U PA01U
2003 - Not Available

Abstract: No abstract text available
Text: , internal power dissipation, current limit; heat sink selection; Apex's complete Application Notes library , application dependent and therefore can be misleading. For example, the 135W internal dissipation rating of , . TYPICAL APPLICATION +73V 47µF 11,12 9,10 .2 2 2.5VP-P 1 PA13 7,8 5,6 47µF ­22V RCL+ .1µF , * * * * * V mA .6 .9 30 ­25 .7 1.1 +85 * * * * * * * °C/W °C/W °C/W °C NOTES : * The , PA13 GENERAL Please read Application Note 1 "General Operating Considerations" which covers stability


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PDF PA13A 546-APEX SIP02) 100kHz PA13U
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