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Part Manufacturer Description Datasheet BUY
APXH006A0X-SRZ GE Critical Power PicoTLynx™ 6A: Non-Isolated DC-DC Power Module, 2.4Vdc –5.5Vdc input; 0.6Vdc to 3.63Vdc output; 6A Output Current visit GE Critical Power
APXS006A0X-SRZ GE Critical Power 12V PicoTLynxTM 6A: Non-Isolated DC-DC Power Module, 4.5Vdc –14Vdc input; 0.59Vdc to 5.5Vdc output; 6A Output Current visit GE Critical Power
APTS006A0X-SRDZ GE Critical Power 12V PicoTLynxTM 6A: Non-Isolated DC-DC Power Module - 4.5Vdc –14Vdc input; 0.59Vdc to 5.5Vdc output; 6A Output Current visit GE Critical Power
UNVT006A0X43-SRZ GE Critical Power 6A Analog SlimLynxTM Open Frame: Non-Isolated DC-DC Power Module, 3Vdc –14.4Vdc input; 0.6Vdc to 5.5Vdc output; 6A Output Current visit GE Critical Power
EHHD006A0B41Z GE Critical Power EHHD006A0B Hammerhead Series; DC-DC Converter Power Module, 18-75Vdc Input; 12Vdc, 6.0A, 72W Output visit GE Critical Power
EQW006A0B1 GE Critical Power EQW006 Series, Eight Brick Power Modules: DC-DC Converter, 36 – 75Vdc Input; 12Vdc Output; 6A Output Current visit GE Critical Power

PAL 006A

Catalog Datasheet MFG & Type PDF Document Tags

PAL 006A

Abstract: (Av = 1, R l = 150Q) 0.06° differential phase (Av = 1, R l = 1500) High CM RR (95dB), High PSRR (80 , Performance DG Diff. Gain (p-p), NTSC & PAL RL= 150Q, VOUT = ±1.5V 0.06 % dp Diff. Phase (p-p), NTSC & PAL R l= 150Q, 0.06 Deg. NF Noise Floor >100kHz -130 dB rms
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Abstract: stable 0.06% differential gain (Av = 1, Rl = 150C2) 0.06° differential phase (A v = 1, R l = 150C2 , HD3 Video Performance V0UT = 0.8 Vpp -56 dB DG Diff. Gain (p-p), NTSC & PAL RL= 150Ã2, V0UT = ±1.5V 0.06 % DP Diff. Phase (p-p), NTSC & PAL RL=150£2, V0UT =  -
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RC6333 RC6333M

led rgb amplifier

Abstract: RC6333 micdnductorâ"¢ www.fairchildsemi.com RC6333 Triple Video Amplifier Features Triple video amplifier 175 MHz -3 dB Bandwidth (Av = 2) 50 MHz ±0.1 dB gain flatness Unity gain stable 0.06% differential gain (Av = 1, Rl = 150Q) 0.06° differential phase (Av = 1, Rl = 150Q) High CMRR (95dB), High , Video Performance DG Diff. Gain (p-p), NTSC & PAL R|_ = 150£2, V0UT = ±1 -5V 0.06 % DP Diff. Phase (p-p), NTSC & PAL R|_ = 150£2, V0UT = ±1 -5V 0.06 Deg. NF Noise Floor >100kHz -130 dB rms
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led rgb amplifier DS30006333

RC6334

Abstract: RC6334M F/\IRGHII_D EMI CONDUCTOR tm www.f ai rch i Idsem i .com RC6334 Quad Video Amplifier Features Quad video amplifier 175 MHz -3 dB Bandwidth (Av = 2) 50 MHz ±0.1 dB gain flatness Unity gain stable 0.06% differential gain (Av = 1, RL = 150Q) 0.06° differential phase (Av = 1, RL = 150Q) High , -56 dB Video Performance DG Diff. Gain (p-p), NTSC & PAL R|_ = 150£2, VOUT = ±1-5V 0.06 % DP Diff. Phase (p-p), NTSC & PAL R|_ = 150£2, VOUT = ±1-5V 0.06 Deg. NF Noise Floor >100kHz
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RC6334M PAL 006A DS30006334

IC PAL 006A

Abstract: S E M IC O N D U C T O R w w w .fa irc h ild s e m i.c o m tm RC6334 Quad Video A m p lifie r Features Quad video amplifier 175 MHz -3 dB Bandwidth (Av = 2) 50 MHz ±0.1 dB gain flatness Unity gain stable 0.06% differential gain (Av = 1, Rl = 150Q) 0.06° differential phase (Av = 1 , Video Perform ance DG Diff. Gain (p-p), NTSC & PAL Rl = 150Q, V o u t = ± 1 .5V 0.06 % DP Diff. Phase (p-p), NTSC & PAL Rl = 150Q, V o u t = ± 1 .5V 0.06 Deg. NF Noise
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IC PAL 006A
Abstract: S E M IC O N D U C T O R w w w .fa irc h ild s e m i.c o m tm RC6333 Triple Video Ampl i f i er Features Triple video amplifier 175 MHz -3 dB Bandwidth (Av = 2) 50 MHz ±0.1 dB gain flatness Unity gain stable 0.06% differential gain (Av = 1, Rl = 150£2) 0.06° differential phase (Av = , an DG Diff. Gain (p-p), NTSC & PAL RL = 150£2, V0UT = ±1 -5V 0.06 % DP Diff. Phase (p-p), NTSC & PAL RL = 150£2, V0UT = ±1 -5V 0.06 Deg. NF Noise Floor >100kHz -
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PAL 006A

Abstract: IC PAL 006A programmers PALCE26V12H-20/25 28-Pin EE CMOS Versatile PAL® Device DISTINCTIVE CHARACTERISTICS 28-pln versatile PAL programmable logic device architecture Electrically erasable CMOS technology provides half , available in PAL devices. The functions are programmed into the device through electricallyerasable , by four bits controlling three multiplexers in each macrocell. BLOCK DIAGRAM PAL. PALASM, and , PAL CE 26 V 12 H-20 P C a. b. c. d. e. FAMILY TYPE PAL = Programmable Array Logic
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PALCE26V12H PAL22V10 PALCE26V12

am85c30

Abstract: . Timing analysis for the complete inter­ faces follow the solutions. PAL, equations are also included , write equation: WRITE from the 80186 and CLKOUT. The PAL equation is: DEL_WR = WRITE * D E L _ , perform the same function in a combinatorial PAL de­ vice, two macrocells are used. A hardware reset , PAL device. COMPLETE SOLUTIONS Am85C30 Enhanced Mode If using the Am85C30 in enhanced mode , DT/R ü_ 4 AD1 ADO 60186 12482B -006A Am85C30/80186 Schematic 2-87 id AMD
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8530H 85C30 PAL16L8 22V10 12482B-015A

PAL 006A

Abstract: PT 2358 , high pro gramming yield, fast programming and excellent reliabil ity. Programmable Array Logic (PAL , reduced development time and low up-front development cost. 08811-001A Figure 1. Block Diagram PAL , be implemented in a single PAL device. Each output can be dynamically controlled by a common Output , . Optional Processing PAL CE 29 MA 16 H -25 P C a. PR O G RAM M ABLE-ARRAY LOGIC CMOS ELECTRICALLY , in a single PAL device. This flexibility aids in implementing functions such as count ers
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PT 2358 PALCE29MA16H-25/35 PALCE29MA16H
Abstract: information. Package Dimensions 0.05±0.015-H h- -H K 0 5 B C .0 4 S -0.06± .0 02 0 1 + .0 2 , frequency (4.43MHz for PAL composite vid e o ) as the amplifier output is swept over a range of DC -
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160MH CLC406 OA-07 OA-12 OA-15
Abstract: errors (0.03%/0.06°) and wide bandwidth make them ideal for both composite-video and RGB applications , buffer in composite (NTSC, PAL, SECAM) video applications, because these errors correspond directly to , gain and phase errors (0.03%/0.06°) make them ideal in broadcastquality, composite video applications -
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250MH MAX498/MAX499 MAX498

Voltage Feedback Amplifiers

Abstract: THS4061CD Gain = 2, NTSC, 40 IRE Modulation VCC=±15V 0.02° VCC = ±5 V 0.06° Open loop gain Vcc =  , 0.06% 0.04% 0.02% DIFFERENTIAL GAIN vs LOADING 0% Gain = 2 Rp = 680 Q. 40 IRE - PAL , PAL Worst Case ±100 IRE Ramp 2 3 Number of 150 Q. Loads Figure 8 Figure 9 m â o c '¡5 13 a
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THS4061 THS4062 Voltage Feedback Amplifiers THS4061CD CR12V THS4061CDGN 180-MH SLOS234A- THS4061/2 4040047/D

lauterbach JTAG Programmer Schematics

Abstract: AP1231 '¢ iMX233 ARM926J processor at 454Mhz 64 MB RAM SD-card connector for booting the Linux image TV PAL/NTSC , consumption it should be around 0.06A before initializing all the peripherals. IMPORTANT! We discovered a , .656 D1 digital video stream output mode (PAL/NTSC), with onthefly RGB to YCbCr color-space-conversion. â , block-based rotation engine î' Integrated TV-Out Support â'" Integrated PAL/NTSC TV-encoder fully pipelined , measuring the current consumption it should be around 0.06A before initializing all the peripherals. If
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lauterbach JTAG Programmer Schematics AP1231 rtl8188
Abstract: PAL22V10 Family, AmPAL22V10/A Advanced Micro Devices 24-Pin TTL Versatile PAL Device , logic transfer function, the sum of products. The PAL de­ vice is a programmable AND array driving a , : PAL 22 V 10 -7 P C FAMILY TYPE -PAL or AmPAL - Programmable Array , : PAL 22 V 10 -12 IB L A LEAD FINISH A - Hot Solder Dip FAMILY TYPE -PAL or AmPAL Programmable Array Logic PACKAGE TYPE L - 24-Pin 300-mil Ceramic SKINNYDIP (CD3024 -
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PAL22V10/A
Abstract: crosstalk (THS4062 only) VCC = ±5 V or ±15 V, 0.06° f = 1 MHz 65 dB â'  Full range = , nV/âšHz 1.6 pA/âšHz 0.02° % 0.02 0.06° â'  Full range = â'55°C to 125°C for , LOADS DIFFERENTIAL PHASE vs NUMBER OF LOADS 0.2% 1° Gain = 2 RF = 680 â"¦ 40 IRE â' PAL , 0.08% Gain = 2 RF = 680 â"¦ 40 IRE â' PAL Worst Case ±100 IRE Ramp 0.9° Differential Texas Instruments
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SLOS234E ISO/TS16949
Abstract: Channel-to-channel crosstalk (THS4062 only) VCC = ±5 V or ±15 V, 0.06° f = 1 MHz 65 dB â'  Full , 0.06° â'  Full range = â'55°C to 125°C for M suffix dc performance Open loop gain IIB , RF = 680 â"¦ 40 IRE â' PAL Worst Case ±100 IRE Ramp 0.18% 0.16% 0.14% 0.8° VCC = ±15 Gain 0.12% 0.1% VCC = ±5 Gain 0.08% Gain = 2 RF = 680 â"¦ 40 IRE â' PAL Worst Case  Texas Instruments
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pal 007c

Abstract: PAL 007E 0278 0279 0280 0281 0282 0283 0284 0285 0286 0287 0288 0067 0068 0069 006A 006B
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pal 007c PAL 007E pal 007B pal 007a pac 007a pac 007a datasheet TLC32040 TMS320 SLAU001A
Abstract: both NTSC and PAL standards. Increasing the closed loop gain degrades the DP and DG. frequency of , 3.58MHz and the PAL subcarrier of 4.43MHz. All NTSC measure­ ments were performed using a Tektronix , Package Number 006â'" 8-Pin Plastic Single-Wide DIP MILLIMETERS MIN MAX 1.37 1.73 0.10 023 0.36 -
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OPA642 450MH 12-BIT 5M-1982
Abstract: ANALOG DEVICES 200 mA Output Current High Speed Amplifier AD8010 FEATURES 200 mA of O utput Current 9 i Load l SFDR -5 4 dBc @ 1 MHz Differential Gain Error 0.04% , f = 4.43 MHz Differential Phase Error 0.06°, f = 4.43 MHz M aintains Video Specifications Driving Eight Parallel 75 i Loads l 0.02% Differential Gain 0.03° Differential Phase 0.1 dB Gain Flatness to 60 MHz THD -7 2 , (PAL) â'" R L = 1 8 .7 5 il cC I ÏIFFE.REh TIAL GAI MdG IN % [ )IFFE.REN TIAL PHA S E d < IN -
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GL850G application circuit

Abstract: rtl8188 '¢ â'¢ SD-card connector for booting the Linux image TV PAL/NTSC video output â'¢ â'¢ 3 USB , 0.06A before initializing all the peripherals. The consumption raises to 0.12A without WIFI and USB , Flexible Display Controller â'" 8-bit data ITU-R BT.656 D1 digital video stream output mode (PAL/NTSC , Support â'" Integrated PAL/NTSC TV-encoder fully pipelined to display controllerâ'™s D1 resolution
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GL850G application circuit schematic diagram of usb 2.0 hub GL850G GL850G SY8008 MP1482DS
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