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a4w 41

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Abstract: °4w 3 rf o o o O u O O O O ' ^ n o o o o o o o 0 2 11 o o , & -41 4 3 2 LOC Dl REVISIONS D IS T AO P LTR D E S C R IP TIO N -
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diode a4W

Abstract: TRANSISTOR a4w -stage counter for H7CX-AW@/-A4W@ models) configuration. 2. Set to output 2 time when using as a 2-stage counter , (2-stage counter for H7CX-AW@/A4W@ models) configuration. To change to a different configuration , delivery, the H7CX is set to the 1-stage counter (2-stage counter for H7CX-AW@/-A4W@ models) configuration
OMRON
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diode a4W

Abstract: a4w SD transistor -stage counter for H7CX-AW@/-A4W@ models) configuration. 2. Set to output 2 time when using as a 2-stage counter , -stage counter for H7CX-AW@/A4W@ models) configuration. To change to a different configuration, use the , , the H7CX is set to the 1-stage counter (2-stage counter for H7CX-AW@/-A4W@ models) configuration. When
OMRON
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NW1034

Abstract: ra2zl NW1034 is programmed for this example to one (VIN = VDR = VVFRO ). V2W A4W ­ 2W = -VI N V , , as shown in Equation 21. (EQ. 15) (EQ. 21) R a1 ZO V2W 2R f A4W ­ 2W = - = ­ , (EQ. 41) Closest standard values, Ra5 = 20k + 68.1k II 1nF. The values of Ra2, Ra5, and RZO1
Intersil
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HC5503PRC ra2zl a4w 41 a4w 29 diode a4W a4w 23 BM 9924 AN9924 ISO9000

a4w SD transistor

Abstract: TRANSISTOR a4w . . . . . . . . . . . . . . . . . . . . . . . . . . . 41 4 H7CX H7CX H7CX Ordering , , the H7CX is set to the 1-stage counter (2-stage counter for H7CX-AW /-A4W # models) configuration , .) The H7CX is factory-set to the 1-stage counter (2-stage counter for H7CX-AW /A4W models , the 1-stage counter (2-stage counter for H7CX-AW#/-A4W# models) configuration. When using as a 2stage
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a4w SD transistor TRANSISTOR a4w diode a4W 18 a4w transistor Counter Omron H7CX H7CX AW N NEMA4/IP66 5B91/ B33/// E21/4EA/E B33/BA

Transistor A4W

Abstract: a4w transistor Reset 2 7 Reset 1 CP2 H7CX-AWS/-AWSD1 2-stage Transistor Output Reset 1 H7CX-AW/-A4W , -stage counter for H7CX-AW@/-A4W@ models) configuration. 2. Set to output 2 time when using as a 2-stage counter , for H7CX-AW@/A4W@ models) configuration. To change to a different configuration, use the procedure , -stage counter (2-stage counter for H7CX-AW@/-A4W@ models) configuration. When using as a 2-stage (or 1
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Y92S-29 Y92F-30 a4w 55 H7CX P2CF-11 IP66/NEMA4/UL

NJU6576

Abstract: NJU6576CH 5H3 _ NJU6576 34 1 O IÏJÃ'*#4 I2C/- y 7-f rt', tr />K* W K 9h-7h , -999 38 VSS -38 -999 39 VSS 57 -999 40 SDA 607 -999 41 SDA 702 -999 «si »»a- SDA 797 -999 43 SDA 892 , ft-XL) vdd ^_vdd vlcd \ vlcd \ Ã"*t7 V_'O- t-7' t> (WTl) (J7:4'1) a7¡4* -
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NJU6576CH SEG100 SEG99 SEG98 50X100 80X100

IP54F

Abstract: A114 pnp diode Reset 2 7 Reset 1 CP2 H7CX-AWS/-AWSD1 2-stage Transistor Output Reset 1 H7CX-AW/-A4W , -stage counter for H7CX-AW@/-A4W@ models) configuration. 2. Set to output 2 time when using as a 2-stage counter , for H7CX-AW@/A4W@ models) configuration. To change to a different configuration, use the procedure , -stage counter (2-stage counter for H7CX-AW@/-A4W@ models) configuration. When using as a 2-stage (or 1
OMRON
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IP54F A114 pnp diode omron h7cx-aw EN-61010 TRANSISTOR KP2 A114 pnp M070-E1-04 75-344-7119/F 0603-3M

A6W 85 MB3771 A6W 76 diode a4W

Abstract: A6W 76 ? . 61 Section 4 4.1 4.2 Descriptions of Windows
Hitachi Semiconductor
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A6W 85 MB3771 A6W 76 diode a4W A6W 76 Transistor A6W 87 making code a6w A6W 85 A6W 99

a4w 41

Abstract: j156k through the CODEC are not considered at this point. V2W A4W ­ 2W = -VI N V 2W VIN R f V2W , VGSX (0.82049) and V 2W (0.60196) and rearranging to solve for Ra2 results in Equation 41. Where: VGSX / V2W =1.363, and Z0=RZ01: 400 R a2 = - = 293.47 1.363 (EQ. 41) The value , ) 724-7946 9 EUROPE Intersil Europe Sarl Ave. C - F Ramuz 43 CH-1009 Pully Switzerland TEL: +41 21 7293637 FAX: +41 21 7293684 ASIA Intersil Corporation Unit 1804 18/F Guangdong Water Building 83
Intersil
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TP3057A AN9872 j156k diode a4W data sheet J156 RZ01 KRA5

ra2zl

Abstract: HC5503PRC , reference Figure 3. The gain through the TCM38C17 is equal to one (VIN = V PCMIN = VPWRO+ ). V2W A4W ­ 2W , is 0.777. The gain through the TCM38C17 (PCMIN to PWRO+) is given in Equation 41. R1 + R2 G ( PCMIN ­ PWRO ) = -R1 4 R 2 + - 4 (EQ. 41) Setting the gain in Equation 41 equal to 0.777 we can now determine the value of the gain setting resistors R1 and
Intersil
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AN9898

TMS 3874

Abstract: Dynachip LE WE WE D AR O AW AW[0:3] D Q LE A4W D Q LE A4R D Q LE R WE , of write address (A0W - A4W), a data input (D), a write enable (WE) and a clock input. All 12 inputs , on the D input will be written to the location specified by addresses A0W - A4W. The dual port RAM
DynaChip
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DL6000 TMS 3874 Dynachip oasis Carlo DL6009 DL6000TM E-120

HD6417709AF133

Abstract: hd6417709a .41 Setting Registers , ? . 69 Section 4 4.1 4.2 Section 5 5.1 5.2 5.3 6.5 6.6 CPU Board Specifications , [Program] Window (Setting a Software Breakpoint) . 41 , 3.41 Figure 3.42 Figure 3.43 Figure 3.44 Figure 3.45 Figure 4.1 Figure 4.2 Figure 4.3 Figure , 2.1 Table 2.2 Table 3.1 Table 3.2 Table 3.3 Table 3.4 Table 4.1 Table 4.2 Table 4.3 Table 4.4
Hitachi
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HD6417709AF133 hd6417709a BUFFER HD74LS244 A6W 87 HD6417709AF hitachi sr 2010 receiver SH7709A HS7709ASTC01H SH7729 HS7729STC01H ADE-702-215 HS7709ASTC01HE

omron h7cx

Abstract: diode a4W H7CX-AW/-A4W/-AWD1 2-stage Contact Output 11 12 13 12 VDC 11 OUT1 12 13 OUT1 , @/-A4W@ models) configuration. 2. Set to output 2 time when using as a 2-stage counter or batch counter , to the 1-stage counter (2-stage counter for H7CX-AW@/-A4W@ models) configuration. To change to a , H7CX-AW@/-A4W@ models) configuration. When using as a 2-stage (or 1-stage) counter, total and preset
OMRON
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omron h7cx diode a4s H7Cx-a a4w 45 H7CX-R11 8 Position 16 Pin SPST dip switch

omron h7cx

Abstract: Counter Omron H7CX Reset 1 CP2 H7CX-AWS/-AWSD1 2-stage Transistor Output Reset 1 H7CX-AW/-A4W/-AWD1 2 , , the H7CX is set to the 1-stage counter (2-stage counter for H7CX-AW@/-A4W@ models) configuration. 2 , -stage counter (2-stage counter for H7CX-AW@/-A4W@ models) configuration. To change to a different , (2-stage counter for H7CX-AW@/-A4W@ models) configuration. When using as a 2-stage (or 1
OMRON
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marking a4w h7cxaw OMRON DIP switch OMRON A4W H7CX-A11

FTF6080C

Abstract: Digital line follower sensor 38 39 40 41 42 43 44 45 1 1 1 1 1 1 1 2 SSC NS puls/CR Trig_in VA high TG/A1_WX A2_WX A3_WX , VPS VNS VNS TG A4Y A3Y A2Y A1Y N9 SFD VPS VNS VNS TG A4Z A3Z A2Z A1Z A1W A2W A3W A4W TG VNS VNS VPS
DALSA Professional Imaging
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FTF6080C Digital line follower sensor 6000H FTF6080C/HG FTF6080C/IG FTF6080C/EG FTF6080C/TG
Abstract: rms 2* f i DSoNQ1 = 0.593W Pd in c a p = Iin_ caprm 2 * ESR = 0 A4W s The gate drive losses , -1 41/1/ VoUT â'¢ I OUT E ff = The total power loss for Q1 is the sum of these three: y, UT -
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UCC2585 UCC3585 UCC2585/UCC3585

16C450

Abstract: A128 reading MSR bit-4. This pin has no effect on the UART's transmit or receive operation. -DSR 37 41 39 I , -RI 39 43 41 I Ring I ndicator (active low) - A logic 0 on this pin indicates the modem has received a , Clock pulse duration 17 17 ns "'"a« Oscillator/Clock frequency 8 24 MHz Ï4w Address strobe
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ST16C450 NS16450 16C450 A128 ST16C450CJ44 ST16C450CP40

otl 6080

Abstract: RAM has 5 bits of read ad dress (AOR - A4R), 5 bits of write address (AOW - A4W), a data input (D), a , addresses AOW - A4W. The dual port RAM is always in read mode. The state of WE is unimportant thus WE can
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otl 6080 PQ208 DL5000

FZ 77

Abstract: FZ77 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 5Q' e.seg« » segs â  seg4 > segj ' segi = seg , 11 12 13 14 15 16 1 fr 00 01 02 03 04 05 06 07 08 09 OA OB OC OD OE OF 2 -ff 40 41 42 43 44 45 46 47 , OA OB OC OD OE OF 10 (40! - 41 42 43 44 45 46 47 48 49 4A 4B 4C 4D 4E 4F 50 (S '¡â 'i i-7 H 27 00 01 02 03 04 05 06 07 08 09 OA OB OC OD OE 67 40 41 42 43 44 45 46 47 48 49 4A 4B 4C 4D 4E , . (1-8) Kv-f/til» â'¢ffiüiÃ"w K9-à ' Hf-t H9-à 't+. frfc$"ro
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NJU6420B HJU642DB NJU6408B COM25 FZ 77 FZ77 SiI 9190 hs 5101 a s NJ06420BT Z8011 COM24
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