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1/led lamp circuit diagram

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Abstract: " INTERNAL CIRCUIT DIAGRAM BL-CR26xR5G10 -O R i>H>OH>H^ —[>H>l-l>K>H>l—1 BL-CR26xR6G8 LJc+ o- H , LED Component [j BetLdx OUTDOOR LAMP CLUSTER PACKAGE DIMENSION BL-CS15A BL-CS15A Series 15.0 M3.0 1 vi 1 CD "II ■ INTERNAL CIRCUIT IIAGRAM BL-CS15AR2G2 BL-CS15AR2G2 O RED GREEN , © WWW.BETLUX.COM LED Component [j BetLdx OUTDOOR LAMP CLUSTER PACKAGE DIMENSION BL-CS19A BL-CS19A Series 23.6 M3.0 INTERNAL CIRCUIT DIAGRAM BL-CS19AR2G4 BL-CS19AR2G4 BL-CS19AR3G6 BL-CS19AR3G6 RED o GREEN O ... OCR Scan
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7 pages,
237.38 Kb

internal circuit diagram BL-CS26A -R26B red green BL-CR19A BL-CR15A Internal circuit led lamp circuit diagram BL-CS15A TEXT
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Abstract: (indicator lamp) (No contact) 1: Standard type (Silver contact) 2: Low-level circuit type (Gold-clad , front of the panel [Removing the LED] (1) Insert the lamp replacement tool in the lamp housing, and , (2) Press on the head of the LED to remove it from the lamp housing. [Mounting the LED] (1) First , used to prevent adverse effects caused by noise. (Circuit example 1) Altenating current cases LED , expertise. For that reason, display lamp colors are standardized under IEC60073 IEC60073, IEC60204-1 and other ... Matsushita Electric Works
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datasheet

41 pages,
778.88 Kb

9l reset BUZZER WATERPROOF EN60947-5-1 IEC60073 IEC60204-1 Pole "Pushbutton Switch" welding machine wiring diagram NET1-28-1P red 5mm LED with holder transistor ACSL welding machine wiring diagram ND 300 IEC-60073 TEXT
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Abstract: . One possible flowchart that outlines the LED lamp selection process is shown in Figure 1. The first , Figure 1. Lamp Selection Process. 2 Table 1. Luminous efficiency and luminous efficacy of LED , the LED die. T-1 3/4 LED lamp (5 mm package) This lamp refers to a cylindrical package that is , (0.100) NOMINAL Figure 5. T-1 3/4 LED Lamp Package Outlines. 3.18 (0.125) 2.67 (0.105) 3.1 ±0.2 (0.12 , ±0.3 (0.10 ±0.01) 3.4 ±0.2 CATHODE (0.13 ±0.01) 0.4 ±0.1 CATHODE MARKS T-1 LED lamp (3 mm ... Hewlett-Packard
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20 pages,
148.4 Kb

Hewlett-Packard LED Clear dome diffuser Hewlett-Packard amber LED chip Hewlett-Packard led lamps TEXT
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Abstract: TOSHIBA [3 ] Explanations 7.3 LED Lamp Application Circuit Since the light output of an LED lamp depends on the LED's forward current I f , functions such as light output on/off can be , drive circuit. 54 TOSHIBA [3 ] E xp lan a tio n s 7.4 LED Lamp Allow able Forward , Vcc T ! & - Í . Figure 3.7.5 shows a basic circuit for driving an LED using DC power. In this , circuit in which the LED's Vp fluctuation is absorbed by a transistor. In this case, Ip is expressed by ... OCR Scan
datasheet

6 pages,
130.38 Kb

TB62705BF TB62701 ac drive circuit diagram 62004p 74hc245ap 74HC244AP TEXT
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Abstract: battery. 1.4 System Block Diagram Figure 1 shows a block diagram of this MCU-based miner's lamp , Current Sense #1 PWM#1 DC/DC #2 + External Power Sub LED Figure 1. System Block Diagram , controlled. A Miner's Lamp Using the MC9S08QG4 MC9S08QG4, Rev. 1 Freescale Semiconductor 5 LED Driver SW , 1 Introduction Contents 1 1.1 Old and New Miner's Lamps A miner's lamp is one of the , . . . . 3 1.4 System Block Diagram . . . . . . . . . . . . . . . . . . . . . . 3 2 LED Driver . . ... Freescale Semiconductor
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datasheet

14 pages,
168.27 Kb

zener diode 1N5817 1N5817 diode 2N3904 ADP7 SOT23 an3601 B320B charger on LM358 diode B320B HT7133 LM358 1N5817 SOT-89 voltage regulator MC9S08QG4CDTE MC9S08QG4 AN3601 lm358 current sense AN3601 SI2305 AN3601 w42180j AN3601 ll34 footprint AN3601 Si9435A AN3601 lm358 li ion charger circuit AN3601 AN3601 AN3601 TEXT
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Abstract: . One possible flowchart that outlines the LED lamp selection process is shown in Figure 1. The first , , the optimal LED lamp package can be selected based on the printed circuit board manufacturing process , SELECT LED MATERIALS TECHNOLOGY BASED ON COLOR AND LUMINOUS EFFICIENCY Figure 1. Lamp Selection , construction of a TH LED lamp is shown in Fig- ure 4. The anode and cathode pins are stamped out of T-1 3/4 , ) 5.6 (0.220) CATHODE 2.64 (0.100) NOMINAL 2.54 (0.100) NOMINAL Figure 5. T-1 3/4 LED Lamp ... Avago Technologies
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datasheet

17 pages,
196.16 Kb

RS-468 Projects of LED engineered diffusers TEXT
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Abstract: Through-Hole Lamp LTW-433DNCJH205D LTW-433DNCJH205D 1. Description CBI (Circuit Board Indicator) is a black , which is stackable and easy to assembly. 1. 1. Features Designed for ease in circuit board assembly , lamp is white color. 6. Specifications are subject to change without notice. 1/9 Part No. : LTW , 0.3030 Note: Tolerance of each bin limit is ±0.01 Hue specification of LED lamp LTW-433DNCJ LTW-433DNCJ for , -433DNCJH205D -433DNCJH205D BNS-OD-FC002/A4 BNS-OD-FC002/A4 Through-Hole Lamp LTW-433DNCJH205D LTW-433DNCJH205D 7.2. C.I.E. 1931 Chromaticity Diagram 6/9 Part No ... Lite-On Optoelectronics
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datasheet

9 pages,
358.67 Kb

LTW-433DNCJH205D TEXT
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Abstract: have only contact terminals, and do not have lamp terminals. 1 22 8 12.5 WIRING DIAGRAM , : Indicator (indicator lamp) (No contact) 1: Standard type (Silver contact) 2: Low-level circuit type , operating characteristics 0: Indicator (indicator lamp) 1: Single-pole (1 Form C) momentary 2 , Contact material 0: Indicator (indicator lamp) (No contact) 2: Low-level circuit type (Gold-clad contact , circuit type (Gold-clad contact) Key type 1: Standard key TYPES 1. Illuminated pushbutton switches ... Matsushita Electric Works
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datasheet

11 pages,
566.58 Kb

welding machine wiring diagram manual ACEA3222 welding machine diagram ACSA32164 ac welding machine circuit diagram diode 4j welding machine wiring diagram ND 300 IEC60073 dc welding machine circuit diagram welding machine wiring diagram IEC-60073 TEXT
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Abstract: when deciding the mounting pitch. Internal circuit diagram Notch positions (TOP VIEW) Contact 1 , information http://www.nais-e.com/ ORDERING INFORMATION 1. Illuminated pushbutton switches (LED , (indicator lamp) 1: Single-pole (1 Form C) momentary 2: Double-pole (2 Form C) momentary 3: Single-pole (1 , ) (No contact) 2: Low-level circuit type (Gold-clad contact) LED voltages and pushbutton colors , indicator (indicator lamp). 1 NS Series (ACEA, ACBA, ACSA, ACKA) 2. Pushbutton switches ... Matsushita Electric Works
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datasheet

13 pages,
255.57 Kb

9l reset 2 poles Diode Holder red 5mm LED with holder 5mm LED projects TEXT
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Abstract: FL7701 FL7701 - Smart LED Lamp Driver IC with PFC Function October 2011 FL7701 FL7701 Smart LED Lamp , Internal Reference: ±3% Description The FL7701 FL7701 LED lamp driver is a simple IC with PFC function. The , stability, which can significantly affect to LED lamp system. Applications LED Lamp for Decorative Lighting LED Lamp for Low-Power Lighting Ordering Information Part Number FL7701M FL7701M -40°C to +125°C , Corporation FL7701 FL7701 · Rev. 1.0.0 www.fairchildsemi.com FL7701 FL7701 - Smart LED Lamp Driver IC with PFC ... Fairchild Semiconductor
Original
datasheet

14 pages,
1203.84 Kb

FL7701 reference circuits FL7701 TEXT
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Archived Files

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ST | INTERFACE CIRCUIT (RELAY AND LAMP - DRIVER) TDE1767DP TDE1767DP TDE1767ADP TDE1767ADP TDE1787DP TDE1787DP TDE1787ADP TDE1787ADP INTERFACE CIRCUIT (RELAY AND LAMP - DRIVER) Document : TDE1767 TDE1767 DP TDE1767 TDE1767 ADP TDE1787 TDE1787 DP TDE1787 TDE1787 ADP 1/10 2/10 SCHEMATIC DIAGRAM EQUIVALENT SCHEMATIC Symbol Loads Up to 1 A. USING ALARM OUTPUT Figure 17 . Parallel Alarm Outputs. Figure 18 . Led to VCC. Figure TDE1767 TDE1767, A TDE1787 TDE1787, A INTERFACE CIRCUIT (RELAY AND LAMP-DRIVER) March 1993 OPEN GROUND PROTECTION HIGH
/datasheets/files/stmicroelectronics/stonline/books/ascii/docs/1517-v2.htm
STMicroelectronics 14/06/1999 7.7 Kb HTM 1517-v2.htm
ST | INTERFACE CIRCUIT (RELAY AND LAMP - DRIVER) Datasheet INTERFACE CIRCUIT (RELAY AND LAMP - DRIVER INTERFACE CIRCUIT (RELAY AND LAMP-DRIVER) March 1993 OPEN GROUND PROTECTION HIGH OUTPUT CURRENT suitable for driving a LED is provited. This LED, normally on (if referred to ground), will die out or THERMAL DATA * Devices bonded on a 40 cm2 glass-epoxy printed circuit 0.15 cm thick with 4 cm2 of copper.
/datasheets/files/stmicroelectronics/stonline/books/ascii/docs/1517-v1.htm
STMicroelectronics 25/05/2000 9.55 Kb HTM 1517-v1.htm
ST | INTERFACE CIRCUIT (RELAY AND LAMP - DRIVER) TDE1767DP TDE1767DP TDE1767ADP TDE1767ADP TDE1787DP TDE1787DP TDE1787ADP TDE1787ADP INTERFACE CIRCUIT (RELAY AND LAMP - DRIVER) Document : TDE1767 TDE1767 DP TDE1767 TDE1767 ADP TDE1787 TDE1787 DP TDE1787 TDE1787 ADP 1/10 2/10 SCHEMATIC DIAGRAM EQUIVALENT SCHEMATIC Symbol Loads Up to 1 A. USING ALARM OUTPUT Figure 17 . Parallel Alarm Outputs. Figure 18 . Led to VCC. Figure TDE1767 TDE1767, A TDE1787 TDE1787, A INTERFACE CIRCUIT (RELAY AND LAMP-DRIVER) March 1993 OPEN GROUND PROTECTION HIGH
/datasheets/files/stmicroelectronics/stonline/books/ascii/docs/1517.htm
STMicroelectronics 02/04/1999 7.74 Kb HTM 1517.htm
ST | INTERFACE CIRCUIT (RELAY AND LAMP - DRIVER) Datasheet INTERFACE CIRCUIT (RELAY AND LAMP - DRIVER Minidip ORDERING NUMBERS : TDE1767 TDE1767 DP TDE1767 TDE1767 ADP TDE1787 TDE1787 DP TDE1787 TDE1787 ADP 1/10 2/10 SCHEMATIC DIAGRAM Parallel Driving of Loads Up to 1 A. USING ALARM OUTPUT Figure 17 . Parallel Alarm Outputs. Figure 18 . Led Raw Text Format TDE1767 TDE1767, A TDE1787 TDE1787, A INTERFACE CIRCUIT (RELAY AND LAMP-DRIVER) March 1993
/datasheets/files/stmicroelectronics/books/ascii/docs/1517.htm
STMicroelectronics 25/05/2000 10.06 Kb HTM 1517.htm
10k W 1nF L 6569 22 W 22 W STD3NA50 STD3NA50 AC LINE 180k W LAMP 100nF Figure 4: Basic application diagram LVG GND CF RF 100 STB8NA50 STB8NA50 H.V Figure 6: Basic diagram for 2x105 W lamp ballast in full bridge E=R.I (A) (B) I CTL LAMP Figure 16: Basic preheat current control diagram (a); preheat filament energy Vf V CTL t E=V /R (A) (B) V CTL LAMP Figure 17: Basic preheat voltage control diagram (a); preheat reduce the current; - an open circuit mode when the lamp filaments are inserted in the resonant circuit
/datasheets/files/stmicroelectronics/stonline/books/ascii/docs/4690-v1.htm
STMicroelectronics 02/04/1999 27.65 Kb HTM 4690-v1.htm
10k W 1nF L 6569 22 W 22 W STD3NA50 STD3NA50 AC LINE 180k W LAMP 100nF Figure 4: Basic application diagram LVG GND CF RF 100 STB8NA50 STB8NA50 H.V Figure 6: Basic diagram for 2x105 W lamp ballast in full bridge E=R.I (A) (B) I CTL LAMP Figure 16: Basic preheat current control diagram (a); preheat filament energy Vf V CTL t E=V /R (A) (B) V CTL LAMP Figure 17: Basic preheat voltage control diagram (a); preheat reduce the current; - an open circuit mode when the lamp filaments are inserted in the resonant circuit
/datasheets/files/stmicroelectronics/stonline/books/ascii/docs/4690-v2.htm
STMicroelectronics 14/06/1999 27.62 Kb HTM 4690-v2.htm
CF RF 100 STB8NA50 STB8NA50 H.V Figure 6: Basic diagram for 2x105 W lamp ballast in full bridge circuit easily supplies the required operating current. Using a CF18DT CF18DT lamp ( I L > 230 mA) the control diagram (a); preheat filament energy curve (b) 2_RF 3_CF 1_Vs C F_ST C F R F C R current; - an open circuit mode when the lamp filaments are inserted in the resonant circuit. When the is de - tected by analog means. A logic circuit can also detect the presence of the lamp
/datasheets/files/stmicroelectronics/stonline/books/ascii/docs/4690-v3.htm
STMicroelectronics 21/09/2000 29.66 Kb HTM 4690-v3.htm
10k W 1nF L 6569 22 W 22 W STD3NA50 STD3NA50 AC LINE 180k W LAMP 100nF Figure 4: Basic application diagram LVG GND CF RF 100 STB8NA50 STB8NA50 H.V Figure 6: Basic diagram for 2x105 W lamp ballast in full bridge ) I CTL LAMP Figure 16: Basic preheat current control diagram (a); preheat filament energy curve (b voltage control diagram (a); preheat filament energy curve (b) 2_RF 3_CF 1_Vs C F_ST C F R F C R L6569 L6569 overcurrent protection in - creases the frequency to reduce the current; - an open circuit mode when the lamp
/datasheets/files/stmicroelectronics/stonline/books/ascii/docs/4690.htm
STMicroelectronics 20/10/2000 30.89 Kb HTM 4690.htm
further miniaturize the electronic circuit associated to the lamp. This paper describes, after a brief driving circuit. The proposed solution allows lamp ballast designers to eliminate the saturable core characteristic of a typical low pressure fluorescent lamp (see figure 1). Once the arc is established, the components of the relevant waveforms. From figure 1 it is also evident that the voltage across the lamp is diagram is shown in figure 3. It describes a lamp ballast voltage fed topology. In fact, the
/datasheets/files/stmicroelectronics/stonline/books/ascii/docs/7537.htm
STMicroelectronics 24/01/2001 16.81 Kb HTM 7537.htm
j = 25 5 C - 30 5 C < T j < + 100 5 C 25 23 32 38 40 V V I 1 3 sc Lamp Driver Circuit Current 300 FAULT DIAGNOSTICS . DRIVES 3 W LAMP DIRECTLY . LAMP SHORT CIRCUIT PROTECTION . SENSING INTERRUPT 4.18 V V V 1 3 sat Lamp Driver Saturation Voltage I 1 3 = 250mA 1.5 V V 1 3 off Lamp Driver Voltage voltage supply). 7. When the voltage at pin 1 is greater than V 1 dp the internal darlington of the lamp = -30 5 C 100 90 V V Notes : 1. d = 50 % the duty cycle of the output signal at pin 6. 2. The lamp
/datasheets/files/stmicroelectronics/stonline/books/ascii/docs/1368-v2.htm
STMicroelectronics 14/06/1999 12.01 Kb HTM 1368-v2.htm