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Part Manufacturer Description Datasheet Download Buy Part
LTC2756ACG#PBF Linear Technology LTC2756 - Serial 18-Bit SoftSpan IOUT DAC; Package: SSOP; Pins: 28; Temperature Range: 0°C to 70°C
LTC2758BCLX#PBF Linear Technology LTC2758 - Dual Serial 18-Bit SoftSpan IOUT DACs; Package: LQFP; Pins: 48; Temperature Range: 0°C to 70°C
LTC2656BCFE-H16#TRPBF Linear Technology LTC2656 - Octal 16-/12-Bit Rail-to-Rail DACs with 10ppm/°C Max Reference; Package: TSSOP; Pins: 20; Temperature Range: 0°C to 70°C
LTC2656BIFE-L16#TRPBF Linear Technology LTC2656 - Octal 16-/12-Bit Rail-to-Rail DACs with 10ppm/°C Max Reference; Package: TSSOP; Pins: 20; Temperature Range: -40°C to 85°C
LTC2656CUFD-H12#TRPBF Linear Technology LTC2656 - Octal 16-/12-Bit Rail-to-Rail DACs with 10ppm/°C Max Reference; Package: QFN; Pins: 20; Temperature Range: 0°C to 70°C
LTC2656IUFD-L12#TRPBF Linear Technology LTC2656 - Octal 16-/12-Bit Rail-to-Rail DACs with 10ppm/°C Max Reference; Package: QFN; Pins: 20; Temperature Range: -40°C to 85°C

KA2 TO Datasheets Context Search

Catalog Datasheet MFG & Type PDF Document Tags
2015 - Not Available

Abstract: No abstract text available
Text: ,055 ppm/ K² to Tcf = -0,045 ppm/ K² . Name Date Dunzow W. 10.05.2000 Dunzow W , lower frequencies at the 3 dB filter attenuation level relative to the insertion loss ae. Data , compared to main signal Crosstalk Frequency inversion temperature ( To ) Temperature coefficient of , dB dB dB max. 600 ns max. 750 ns 33.34 dB 55.60 dB 10° -0,045 ppm/ K² ∆fc(Hz) = Tcf(ppm/K) x (T - To )² x fTo (MHz) Operating temperature range - 25 ° . + 75 ° C C


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PDF 80D2doc
PLC-2 Communication cables pin diagram

Abstract: "1770-6.5.16" ROCKWELL PLC-5 ladder plc3 comm cable 1785KE plc-3 programming instruction ladder logic 1785-KA 1784-T50 XMTG 1770-KF2
Text: 1771- KA2 ) to a PLC-5, the data is either read from or written to a default file in the PLC-5. This , address. For example, a 1771- KA2 with a node address of 012 (octal) will read data from and write data to , those responsible for applying this equipment must satisfy themselves as to the acceptability of each , illustrations, charts, and layout examples shown in this manual are intended solely to illustrate the text of , uses and applications. No patent liability is assumed by Allen-Bradley Company, Inc. with respect to


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PDF Copyright1988Allen-Bradley PLC-2 Communication cables pin diagram "1770-6.5.16" ROCKWELL PLC-5 ladder plc3 comm cable 1785KE plc-3 programming instruction ladder logic 1785-KA 1784-T50 XMTG 1770-KF2
PLC-2 Communication cables pin diagram

Abstract: 1772-TC plc-3 programming instruction ladder logic PLC-4 microtrol allen-bradley publication 1773-800 1770-T3 Cable Assembly and Installation Manual 1771-AL 1777-P4 PLC-2 1772-TC
Text: describes installation, operation, and programming necessary to use the KA2 communication adapter module , features: New commands have been added to the 1771- KA2 that simplify upload and download procedures. A KA2 lets you to change (remotely) the size of the PC data table. (New with 1772- KA2 module.) It has , system (cat. no. 1770-T1, -T3), or to a second KA2 , or to a 1771-KG series B module. 2-4 Chapter 2 , supplies to the I/O chassis that contains the KA2 communication adapter module. In a Mini-PLC-2, or a


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PDF
2011 - Not Available

Abstract: No abstract text available
Text: coefficients from about 7 ppm/ K² to 2 ppm/K². The full TC range is separated in the following four , contained in this document are believed to be accurate and reliable. The software and proprietary , suitability of its products for any particular purpose due to these specifications. By this publication , subject to the respective order confirmation. Micronas Trademarks – HAL Micronas Patents , invalidates previous issues. Micronas reserves the right to review this document and to make changes to the


Original
PDF DSH000152 002EN AI000145 001EN HAL880 001EN. HAL880
Not Available

Abstract: No abstract text available
Text: coefficients from about 7 ppm/ K² to 2 ppm/K². The full TC range is separated in the following four , contained in this document are believed to be accurate and reliable. The software and proprietary , suitability of its products for any particular purpose due to these specifications. By this publication , subject to the respective order confirmation. Micronas Trademarks – HAL Micronas Patents EP 0 , . Micronas reserves the right to review this document and to make changes to the document’s content at any


Original
PDF DSH000152 003EN AI000145 001EN HAL880 HAL880 002EN.
2011 - Not Available

Abstract: No abstract text available
Text: €­3100 ppm/K up to 400 ppm/K and quadratic coefficients from about 5 ppm/ K² to 5 ppm/ K². Please refer , this document are believed to be accurate and reliable. The software and proprietary information , products for any particular purpose due to these specifications. By this publication, Micronas does not , its use. Commercial conditions, product availability and delivery are exclusively subject to the , invalidates previous issues. Micronas reserves the right to review this document and to make changes to the


Original
PDF DSH000156 002EN AI000? 001EN. 002EN. D-79108
Not Available

Abstract: No abstract text available
Text: 1000 ppm/K and quadratic coefficients from about −7 ppm/ K² to 2 ppm/K². The full TC range is , , Warranty, and Limitation of Liability The information and data contained in this document are believed to , particular purpose due to these specifications. By this publication, Micronas does not assume , . Commercial conditions, product availability and delivery are exclusively subject to the respective order , reserves the right to review this document and to make changes to the document’s content at any time


Original
PDF DSH000143 003EN HAL82x specification18, 002EN. HAL82x 003EN. D-79108
hall marking code A04

Abstract: No abstract text available
Text: ˆ’3100 ppm/K up to 400 ppm/K and quadratic coefficients from about −5 ppm/ K² to 5 ppm/ K². Please refer , this document are believed to be accurate and reliable. The software and proprietary information , products for any particular purpose due to these specifications. By this publication, Micronas does not , its use. Commercial conditions, product availability and delivery are exclusively subject to the , invalidates previous issues. Micronas reserves the right to review this document and to make changes to the


Original
PDF DSH000156 001EN AI000? O92UT-1/-2 6251-537-3DS. 001EN. D-79108 hall marking code A04
2010 - Not Available

Abstract: No abstract text available
Text: ˆ’3100 ppm/K up to 400 ppm/K and quadratic coefficients from about −5 ppm/ K² to 5 ppm/ K². Please refer , this document are believed to be accurate and reliable. The software and proprietary information , products for any particular purpose due to these specifications. By this publication, Micronas does not , its use. Commercial conditions, product availability and delivery are exclusively subject to the , invalidates previous issues. Micronas reserves the right to review this document and to make changes to the


Original
PDF DSH000156 001EN AI000? O92UT-1/-2 6251-537-3DS. 001EN. D-79108
Not Available

Abstract: No abstract text available
Text: about −5 ppm/ K² to 5 ppm/K². Please refer to Section 4.4. on page 23 for the recommended settings , information and data contained in this document are believed to be accurate and reliable. The software and , suitability of its products for any particular purpose due to these specifications. By this publication , subject to the respective order confirmation. Micronas Trademarks – HAL Micronas Patents Choppered , previous issues. Micronas reserves the right to review this document and to make changes to the documentâ


Original
PDF DSH000015 003EN HAL1000 O92UT HAL1000 003EN. D-79108 D-79008
Not Available

Abstract: No abstract text available
Text: €­3100 ppm/K up to 400 ppm/K and quadratic coefficients from about 5 ppm/ K² to 5 ppm/ K². Please refer , Liability The information and data contained in this document are believed to be accurate and reliable , guarantee regarding the suitability of its products for any particular purpose due to these specifications , delivery are exclusively subject to the respective order confirmation. Micronas Trademarks – HAL , . Any new issue of this document invalidates previous issues. Micronas reserves the right to review


Original
PDF DSH000156 002EN 001EN. 002EN. D-79108 D-79008 DSHDSH000156
2012 - Not Available

Abstract: No abstract text available
Text: coefficients from about 7 ppm/ K² to 2 ppm/K². The full TC range is separated in the following four , contained in this document are believed to be accurate and reliable. The software and proprietary , suitability of its products for any particular purpose due to these specifications. By this publication , subject to the respective order confirmation. Micronas Trademarks – HAL Micronas Patents EP 0 , . Micronas reserves the right to review this document and to make changes to the document’s content at any


Original
PDF DSH000152 003EN AI000145 001EN HAL880 HAL880 002EN.
Not Available

Abstract: No abstract text available
Text: ˆ’3100 ppm/K up to 400 ppm/K and quadratic coefficients from about −5 ppm/ K² to 5 ppm/K². Please refer , Liability The information and data contained in this document are believed to be accurate and reliable , guarantee regarding the suitability of its products for any particular purpose due to these specifications , delivery are exclusively subject to the respective order confirmation. Micronas Trademarks – HAL , previous issues. Micronas reserves the right to review this document and to make changes to the documentâ


Original
PDF DSH000034 003EN HAL810 HAL810 003EN. D-79108 D-79008
Not Available

Abstract: No abstract text available
Text: > 47 x 103 = 47 k£2 270°±20° Operating temp /L e ft side (1) only . . .circuit type C , °C, please refer to the derating curve shown below. c v R -n n n -s o i CVR-f T g 80 o 2 60 I a , CVRi G L D -2 2 4 CVR-i n r 1-304 C V R -n n n -3 3 4 : C V R -G O tO T c v R - n n n - s iiw , -n n n -3 3 3 Full resistance value (£2, k£2 ,M£2) 100 £2 150 £2 200 £2 220 £2 300 £2 330 £2 470 £2 500 £2 680 £2 1.0 k£2 1.5 k£2 2.0 k£2 2.2 k£2 3.0 k£2 3.3 k£2 4.7 k£2


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PDF CVR-32 CVR-42 CVR-43 000pcs
kA2 smd

Abstract: No abstract text available
Text: VALUE AND RESISTANCE TEMPERATURE COEFFICIENT 100 £2 to 10 K£2 100 £2 to 5.1 K£2 100 £1 to 3.3 K£2 100 £2 to 3.3 K£2 100 £1 to 3.3 K£2 51 £1 to 560 £2 33 £2 to 360 £2 33 £2 to 100 £2 • 100 a to 24 K£2 100 £2 to 10 K£2 100 £2 to 4.7 K£2 100 £2 to 4.7 K£2 ± 5% (J) 100 £2 to 4.7 K£2 51 £2 to 1 K£2 33 £2 to 680 £2 33 £2 to 250 a 05 10 20 24 30 39 42 , protection. The LTC thermistor can be mounted directly on to a circuit board or similar substrate. It can


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PDF
CVR-32

Abstract: lt 0310 210105 wo 13005 13005 equivalent logarithmic multiplier MARKING 32 K2 CVR-42 CVR4 000SS
Text: screwdriver. How To Order: cvr-43c-223 sw □ Others Standard Quantity Per Package CVR-4 1 = 1,000pcs 5 , • Example (a) 4 (b) 3 => 47 x 103 = 47 k£2 Standard Values Rated Power vs. Ambient Temp. When ambient temp, exceeds 70°C, please refer to the derating curve shown below. Rated power ratio (% , - □□□ -471 470 £2 4 1 cvr- : -501 500 £2 5 1 CVR- □□□ -681 680 £2 6 1 cvr-mc -102 1.0 k£2 1 2 CVR-DDD -152 1.5 k£2 A 2 CVR- □□□ -202 2.0 k£2 2 2 CVR- ddd "222 2.2 k£2 CVR


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PDF CVR-32/CVR-42/CVR-43 cvr-43c-223 000pcs 000pcs CVR-32 lt 0310 210105 wo 13005 13005 equivalent logarithmic multiplier MARKING 32 K2 CVR-42 CVR4 000SS
E0C6274

Abstract: p0342 DP10P
Text: count: 125ms/800 count: 62.5ms A/D conversion accuracy: ±0.2% (Zone of temperature: 0°C to 50 , circuit built-in (Correspond to 3.0V to 4.5V LCD: VR adjustment) â , interrupt 3 lines Serial I/O interrupt 1 line A/D interrupt 1 line . Operating : 2.4V to 5.5V (Single external power supply) No operating : 1,8V to 5.5V (Single external power supply) SLEEP mode : 0.7^iA (3V , output terminal SEGO—31 41-72 39-70 o LCD seqment output terminal (Convertible to DC output by mask


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PDF PF590-05 E0C6274 E0C6274 E0C6200A, 100pF, QFP5-100pin QFP15-100pin p0342 DP10P
Not Available

Abstract: No abstract text available
Text: ,* ) < ฀ ฀ . < K฀2 ฀- Z฀X 8 2* N)^c .* N)^c T1 )T )T2 ) K ฀ ฀. < K฀2 ฀ - Z฀X 0* 8)vc . ?K cdQdYS u,* N à , =G9฀GD97=:=98 &?-?5/฀/4-=-/?1=5>?5/> F5=B GCIF79฀6F95?8CKB฀JC@H5;9 . #9J$ K฀2 ฀) <฀Z J5@5B7<9฀6F95?8CKB฀JC@H5;9 . #9J$ K฀2 ฀) < ฀ ' 1* ' , ¸€JC@H5;9฀8F5=B฀7IFF9BH ) K฀2 ฀. ? K฀2 ฀ - Z฀X ' . ' . < K฀2


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PDF F97CJ9FMà F5H98 75D56= 577CF8 26892F 009-134-A O-247
p1245

Abstract: VR2A 77-AH
Text: : 125ms/800 count: 62.5ms A/D conversion accuracy: ±0.2% (Zone of temperature: 0°C to 50°C) Analog , circuit built-in (Correspond to 3.0V to 4.5V LCD: VR adjustment) â , : 2.4V to 5.5V (Single external power supply) No operating : 1,8V to 5.5V (Single external power supply , 62 SEG21 87 GND 13 R02 38 COM2 63 SEG22 88 Vdda 14 R01 39 COM1 64 SEG23 89 AOU TO 15 R00 40 COMO , R03 35 COM3 60 SEG21 85 GND 11 R02 36 COM2 61 SEG22 86 Vdda 12 R01 37 COMI 62 SEG23 87 AOU TO 13


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PDF SMC6274 SMC6274 SMC6200A, QFP5-100pin QFP15-100pin p1245 VR2A 77-AH
Not Available

Abstract: No abstract text available
Text: 2 V Step, R l = 1 k£2 2 V Step G = -1 , 2 V Step 0 V to ±4 V Step at Input 400 120 140 , 500 £2 ±4 V to ± 6 V -5 5 5 6 15 mV mV |jV/°C ma nA/°C ±|J,A k£2  , G = + 1 ,V 0 = 2 V Step, RF = 1 k£2 2 V Step G = -1 , 2 V Step 0 V to ± 2 V Step at Input , 150 £2 to 2.5 V RL = 1 k£2 to 2.5 V V0 = 1.5 V to 3.5 V 1.4 1.2 30 1.1 to 3.9 0.9 to 4.1 , or -In p u t + Input + Input 2 V p-p, R l = 1 k£2 , RF = 500 £2 4 V to 5.5 V -5 5


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PDF w/500 OT-23-5 OT-23) hv\000v
dvd photodiode

Abstract: 101H AD8014 AD8014AR AD8014ART
Text: Large Signal Bandwidth V0 = 2 V p-p, RL = 1 k£2 20 MHz Slew Rate, 25% to 75%, VG = 4 V Step Rl = 1 k£2 , = -1, RL = 1 k£2 2500 V/|js Settling Time to 0.1% G = +1, V0 = 2 V Step, Rl= 1 k£2 24 ns Rise , MHz Slew Rate, 25% to 75%, VQ = 2 V Step Rl = 1 k£2 , Rf = 500 £2 3900 V/jjs RL = 1 k£2 1100 V/jjs G = -1, RL= 1 k£2 , RF = 500 £2 1800 V/JJS G = 1, Rl= 1 k£2 1100 V/JJS Settling Time to 0.1% G = +1, V0 = 2 V Step, RF = 1 k£2 24 ns Rise and Fall Time 10% to 90% 2 V Step 1.9 ns G =


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PDF AD8014 w/500 OT-23-5 OT-23) dvd photodiode 101H AD8014AR AD8014ART
Not Available

Abstract: No abstract text available
Text: Recom m ended to use by dividing AG C voltage with externally resistor (ex. 100 k£2 ). AGC Vcc1 , ) Embossed tape 12 mm wide. Pin 1 indicates pull-out direction of tape. Qty 2.5 kp/reel. To order , ) Caution electro-static sensitive device The information in this document is subject to change , ground pattern as wide as possible to maintain the minimum impedance. AG C IN 1 Note 1 1.02 Signal input pin to AG C amplifier. 1.02 VAGC 0 to 5 Gain control pin. This pin’s bias


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PDF uPC3206GR PC3206GR 20-pin PC3206GR-E1 C10535E) P13710EJ2V0DS00
Not Available

Abstract: No abstract text available
Text: f = 10 kHz, +Input, -Input Black Level Clamped to +2 V, f = 3.58 MHz Rl = 150 £2/1 k£2 Rl = 150 , , -Input +Input, -Input, T min- T max VCM = 1-5 V to 3.5 V 200 150 U n its mV mV k£2 k£2 -56 1.5 to 3.5 -60 1.2 to 3.8 k£2 pF |jA |jA dB V 1 to 4 50 0.1 0.9 to 4.2 100 , 20 ns Settling Time to 0.1% Low Distortion -7 2 dBc Worst Harmonic @ 500 kHz, RL = 100 i i -6 6 , % Differential Gain Error 0.06° Differential Phase Error Gain Flatness 0.1 dB to 40 MHz 60 ns Overdrive


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PDF AD8012 AP1497^ RM-08)
2IL02

Abstract: k292 TZA1015T TZA1015 SAA7370A S028 360J photo diode amplifier photo amplifier cd photo diode
Text: amplifiers ZcONV conversion impedance central diodes, GSE = LOW 41 47 54 k£2 D1 to D4 GSE = HIGH , resistors RF data amplifier with wide bandwidth designed for data rates up to a maximum of 30x , bandwidth and laser switch-on current slope using external capacitor Protection circuit to prevent laser damage due to supply voltage dip Optimized interconnection between data amplifier and Philips' digital , consumption. The device contains 6 transimpedance amplifiers to amplify and filter the focus and radial photo


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PDF TZA1015 2IL02 k292 TZA1015T TZA1015 SAA7370A S028 360J photo diode amplifier photo amplifier cd photo diode
AD22057

Abstract: No abstract text available
Text: to Pin 8 280 90 90 240 ±0.5 400 M ax U n its +24 Typ V V dB dB k£2 % , o f A l is connected to Pin 3 via a 100 k£2 resistor, w hich is trim m ed to ±3% (R12 in Figure , required, and w here a finite input resis­ tance (240 k£2 to ground, 400 k£2 betw een differential , doubled for R = 200 k£2 . Overall gains of up to Xl60 (R = 114 kQ) are readily achievable in this way. N , er). A m axim ally flat response occurs when the resistor is low ered to 196 k£2 and the scaling is


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PDF AD22057 AD22057
Supplyframe Tracking Pixel