89c8252
Abstract: psd813
Text: Solutions Presentation #5 Flash Design Issues Solved by WSI’s FLASH PSD Some of this information is also covered in Presentation #3 Presentation #5, 9902Awebissues Return to Main Menu 1
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9902Awebissues
80C51)
PSD813F
89c8252
psd813
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Display Power
Abstract: Adjustable UVp OVp 3v shutdown DFN-10 SP6415 out UVp OVp 3v shutdown "Display Power"
Text: SP6415 Solved by TM Integrated White LED Driver With Organic LED Display Power Supply • • • • • • • • DFN-10 3mmx3mmx0.85mm Top View Integrated OLED and White-LED Driver 0 8 7 Wide Input Voltage Range: 2.7V to 5.5V Adjustable output voltage up to 20V
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SP6415
DFN-10
10Pin
SP6415
SP6415ERYWWX
Feb27-07
Display Power
Adjustable UVp OVp 3v shutdown
DFN-10
out UVp OVp 3v shutdown
"Display Power"
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SP7805V-L
Abstract: 33PF SP7812V-L SP78XX
Text: SP78XX Solved by TM 3-Terminal Positive Regulators TO-220 Package Features g g g g g g Output Current up to 1.0A Fixed Output Voltages of 5V and 12V Output Voltage Tolerances of f5% over the Full Temperature Range Internal Short Circuit Current-limiting Internal Thermal Overload Protection
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SP78XX
O-220
SP78XX
O-220
50/TUBE
SP7805V2-L/TR
O-252
500/TR
SP7812V2-L/TR
SP7805V-L
33PF
SP7812V-L
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EN50170
Abstract: DIN19245 sipex 485 ec SP1486E TIA485
Text: SP1486E Solved by TM +5V, 20Mbps PROFIBUS RS485/RS422 Transceivers Advanced Failsafe, 1/8th Unit Load, ±15kV ESD-Protected FEATURES +5V • Recommended for PROFIBUS applications • High differential output drive, minimum 2.1V into 54Ω load • 5.0V Single Supply Operation
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SP1486E
20Mbps
RS485/RS422
RS485
SP1486EEN-L/TR
SP1486EEN/TR
SP1486E
PROFIBUS/RS485
EN50170
DIN19245
sipex 485 ec
TIA485
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LT1129
Abstract: SPX1129 SPX1129M3-3-3 SOT-2233
Text: SPX1129 Solved by TM 400mA Low Dropout Voltage Regulator FEATURES • 1% Output Accuracy 3.3V, 5V, at 500mA Output ■ Very Low Quiescent Current ■ 0.42V Dropout Voltage at 400mA ■ Extremely Tight Load and Line Regulation ■ Current & Thermal Limiting
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SPX1129
400mA
500mA
400mA
LT1129
O-263
O-220
LT1129
SPX1129
SPX1129M3-3-3
SOT-2233
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SD101AWS
Abstract: SP6132 SP7651 SP7651ER
Text: SP7651 Solved by Wide Input Voltage Range 3Amp 900kHz Buck Regulator TM FEATURES • 2.5V to 20V Step Down Achieved Using Dual Input • Output Voltage down to 0.8V • 3A Output Capability Up to 5A with Air Flow • Built in Low RDSON Power FETs (40 mΩ typ)
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SP7651
900kHz
P7651ER/TR
DFN26
SP7651ER-L
SP7651ER-L/TR
SP7651
SD101AWS
SP6132
SP7651ER
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SP3225
Abstract: SP3227EEY-L SP3226 SP3227 ICL3224 ICL3225 ICL3226 MAX3224 MAX3225 MAX3226
Text: SP3224E-SP3227E Solved by TM 3.0V to 5.5V RS-232 Transceivers with Auto On-Line Plus FEATURES • 15kV ESD protected RS-232 I/O pins ■ Auto On-line® Plus automatic power saving mode ■ Meets true EIA/TIA-232-F standards from +3.0V to +5.5V power supply.
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SP3224E-SP3227E
RS-232
EIA/TIA-232-F
EIA/TIA-562
EIA/TIA-232
MAX3224,
ICL3224,
MAX3225,
SP3225
SP3227EEY-L
SP3226
SP3227
ICL3224
ICL3225
ICL3226
MAX3224
MAX3225
MAX3226
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C1005X5R0J105K
Abstract: GRM155R60J105KE19 GRM155R60J474KE19 GRM185R60J225KE26 GRM188R60J475KE19 SP7680
Text: Solved by SP7680 . TM LED 4 LED 3 LED 2 16 15 14 13 LED 6 1 12 LED 1 LED 7 2 11 GND SDA 3 10 C2+ SCL 4 9 C2- 5 6 7 8 VOUT VIN C1- C1+ FEATURES Complete Backlight Solution Separate control for 4 main, 2 sub, and keypad LEDs Built-in 6-bit DAC for precise current setting
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SP7680
200mV
16-pin
CA95035
SP7680:
C1005X5R0J105K
GRM155R60J105KE19
GRM155R60J474KE19
GRM185R60J225KE26
GRM188R60J475KE19
SP7680
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SP7662
Abstract: SP7662EB SP7662ER L-C Calculator
Text: Solved by SP7662 TM Evaluation Board Manual Easy Evaluation of the SP7662ER 0 to 12A Output Synchronous Buck Converter Built in Low RDS ON Power FETs UVLO Detects Both VCC and VIN Highly Integrated Design, Minimal Components High Efficiency: up to 93%
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SP7662
SP7662ER
SP7662EB
Nov27-06
SP7662
SP7662ER
L-C Calculator
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High Current Power Switch
Abstract: SP619 SP619EK-L Current Power Switch
Text: SP619 Solved by TM High Current Power Switch FEATURES • Max Rds on .377 Ohms • Overcurrent deactivation 800mA • Max leakage current less than 2µA while deactivated • Small 6 pin SOT-23 package • Built-in Over-temperature Protection • Wide Input voltage range 2.5V to 7V
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SP619
800mA
OT-23
OT23-6
SP619
Jul23-07
High Current Power Switch
SP619EK-L
Current Power Switch
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SP6203
Abstract: SP6205 SIPEX Marking Reference sp6205 SP62 SP6203EM5-2-5
Text: SP6203/6205 SP6203/6205 Solved by TM Low Noise, Noise, 300mA 300mAand and500mA 500mACMOS CMOSLDO LDORegulators Regulators Low FEATURES FiXED • Very Low Dropout Voltage: 0.61 PMOS Pass Device ■ Accurate Output Voltage: 2% over Temperature ■ Guaranteed 500mA Output Current: SP6205
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SP6203/6205
300mA
500mA
SP6205
OT-23-5
SP6203/SP6205
SP6203
SP6205
SIPEX Marking
Reference sp6205
SP62
SP6203EM5-2-5
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fuel card
Abstract: No abstract text available
Text: More than fifty-seven years ago co-founders Marlan and Rosemary Bourns set up shop in their tiny 384 square-foot garage in Altadena, California. Their idea to provide a method of accurately determining an aircraft's vertical position solved a crucial problem for pilots. The
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7662
Abstract: 7662 A SD101AWS SP6660 SP7662 TPS54973 inverter panasonic panasonic ceramic capacitor, .1uF 50v
Text: Design Solution # 52 Solved by TM SP7662 Buck Converter Design for 3.3V to 1.45V conversion Designed by: Tim Sullivan Part Number: SP7662 Application Description: An SP7662 PowerBlox is used to create a 1.45Volt output from a 3.3Volt source. A voltage doubler is used to create the 5Volts required for the SP7662 Vcc voltage.
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SP7662
SP7662
45Volt
45Volts
20III
20Loop
20Compensatio
7662
7662 A
SD101AWS
SP6660
TPS54973
inverter panasonic
panasonic ceramic capacitor, .1uF 50v
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MM1572F
Abstract: MM1573A SP6222 SP6223
Text: Solved by SP6222/23: FAQ TM Part Number: SP6222 and SP6223 Date: June 26, 2006 50mA and 150mA CMOS Linear Regulators The SP6222 and SP6223 are CMOS LDOs designed to meet a broad range of applications that require accuracy and ease of use. These LDOs offer extremely low quiescent current, providing advantages in performance over
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SP6222/23:
SP6222
SP6223
150mA
SP6223
MM1572F
MM1573A
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supercap
Abstract: supercap charge lumiled SP7685 SP7685ER TM 69
Text: Design Solution # 69 Solved by TM SP7685 Flash using a Supercap on the battery Designed by: Brian Kennedy Part Number: SP7685ER Application Description: SP7685 Flash using a Supercap on the battery Electrical Requirements: Input Voltage 2.7V to 4.2V Output LED
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SP7685
SP7685ER
CA95035
Jul5-07
supercap
supercap charge
lumiled
SP7685ER
TM 69
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SP514
Abstract: MBR0520L
Text: SP514: FAQ Solved by TM Sipex Part: SP514 Date: Mar21-07 Question: This is a mature design that we have been shipping for about 10 years. We have come to discover that yes, the problem has always existed. We didn’t notice the problem until we recently upgraded our product to use a newer mother board that uses power management. The older
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SP514:
SP514
Mar21-07
SP514s
SP514
SP514.
MBR0520L
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SP200
Abstract: SP206B SP207B
Text: Solved by SP206B: FAQ TM Part Number: SP206B Date: Sept 19-06 Question: Page 8 in the datasheet is confusing - will leakage occur in shutdown? Are there pullup resistors at the transmitter inputs? Answer: We reviewed the datasheet and the circuit schematics. There are pull-up resistors at the transmitter inputs page
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SP206B:
SP206B
SP200,
SP206/B,
SP207B
SP211/B:
SP200
SP206B
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SP7650
Abstract: SPX5205
Text: Solved by DESIGN SOLUTION # 44 TM High Efficiency SP7650 2.5V Buck Converter with Wide 5-16V Input Range Designed by: Tim Sullivan Part Number: SP7650 Electrical Requirements: Input Voltage: Output Voltage: Output Current: 5-16V 2.5 Volts requirement for this supply is 1Amp
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SP7650
SP7650
16volts.
20III
20Loop
20Compensatio
20Oct12-06
CA95035
Jan3-07
SPX5205
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12v 10A regulator
Abstract: 12v 10A circuit SP6136 PTC36SAAN SD101AWS Si4320DY Si4354DY SP6136ER1 10ME220SWG
Text: Design Solution # 60 Solved by TM SP6136: 12V input to 1.2V output at 10A Designed by: Shahin Maloyan Part Number: SP6136ER1 Application Description: 12V input to 1.2V output at 10A Electrical Requirements: Input Voltage Output Voltage Output Current 12V 1.2V
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SP6136:
SP6136ER1
SP6136
600kHz)
CA95035
12v 10A regulator
12v 10A circuit
PTC36SAAN
SD101AWS
Si4320DY
Si4354DY
SP6136ER1
10ME220SWG
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GRM188R71E473K
Abstract: GRM188R71H152K GRM188R7-1E473K GRM1885C1H101J GRM31CR60J107 GRM31CR60J107M wurth x5r 0603 murata GRM32ER71H475K SP7655
Text: Design Solution #58 Solved by TM SP7655: 12V-22V Input to 1.2V Output at 8A Designed by: Tim Sullivan Part Number: SP7655 Application Description: 12V-22Vin to 1.2Vout at 8A Electrical Requirements: Input Voltage: Output Voltage: Output Current: 12V − 22V
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SP7655:
2V-22V
SP7655
2V-22Vin
SP7655
CA95035
GRM188R71E473K
GRM188R71H152K
GRM188R7-1E473K
GRM1885C1H101J
GRM31CR60J107
GRM31CR60J107M
wurth
x5r 0603 murata
GRM32ER71H475K
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MAR6
Abstract: MAR607 MAR-6 C1608COG1H222J Capacitor Ceramic 2.2UF TDK X5R SD101AWS SP7652 SPX5205 ERJ3EKF2003V
Text: Solved by Design Solution # 39 TM SP7652 Buck Converter for 12V to 8V conversion Part Number: SP7652 Designed by: Tim Sullivan Application Description: An SP7652 PowerBlox is used to create an 8volt output from a 12volt source. Electrical Requirements:
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SP7652
SP7652
12volt
150mA
SP7652EB
12Vin
ERJ-3EKF1003V
MAR6
MAR607
MAR-6
C1608COG1H222J
Capacitor Ceramic 2.2UF
TDK X5R
SD101AWS
SPX5205
ERJ3EKF2003V
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SIPEX
Abstract: DS24 SP322 SP526 sipex 233
Text: Solved by Design Solution # 24 TM Multiprotocol Solution using SP322 and SP526 Feb26-07 RevC DS24: Multiprotocol Solution Using SP322 and SP525 Page 1 2007 Sipex Corporation For further assistance: Email: WWW Support page: Live Technical Chat: Sipex Application Notes:
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SP322
SP526
Feb26-07
SP525
CA95035
SIPEX
DS24
SP526
sipex 233
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Untitled
Abstract: No abstract text available
Text: QWL - accessories cabling information The Bendix Q W L series of electrical connectors has been designed with the problems of multi-conductor cable users in mind. Two of these problems, namely water proofing and strain relief, are solved by the radial inward compres
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NCFMA-2-40
Abstract: NCFMA2-62 NCFMA2-40
Text: TBKAD ARIN C 6 0 0 Rack and Panel Filter C onnectors TBKAD/E connectors represent a major milestone in presenting a new rack and panel connector for support of the air transportation market. Several important design concerns have been ad dressed and solved in this series. High mating
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