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Abstract: ZCP EP16 + ZCE 10 14 3-pole N/C + N/C + N/O snap action (XE3S P2141) ZCP 39 + ZCP EP16 + , ZCP EP16 + ZCE 02 0,9 ZCP 37 + 3-pole N/C + N/C + N/O break before make, slow break ZCP EP16 , 2-pole N/C + N/C snap action (XE2S P2141) Form E (1) ZCP 37 + ZCP EP16 + ZCE 28 9,8(A) 17 , 31 21 13 32 22 14 ZCP 39 + 3-pole N/C + N/C + N/O ZCP EP16 + ZCE H0 snap action , ZCP29 + ZCP EP16 + ZCE 06 11-12 21-22 11-12 21-22 0 0 mm ZCP 37+ 3-pole N/C + N/C + Schneider Electric
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P2110P16 P2111P16 zcp 29 xck-p schneider XCK osiswitch P2502P16 P2128P16 P2151 P2510P16 P21H0G11 37608-EN
Abstract: 21 12 22 31 21 13 32 22 ZCP 39 + ZCP EP16 + ZCE 10 14 3-pole N/C + N/C + N/O snap action (XE3S P2141) 5mm ZCP 39 + ZCP EP16 + ZCE 11 1,8 4,6(P) 21-22 31-32 , EP16 + ZCE 21 mm ZCP 39 + ZCP EP16 + ZCE 02 0,9 3-pole N/C + N/C + N/O ZCP 37 + break , 11-12 21-22 0 0,9 2-pole N/C + N/C simultaneous, slow break (XE2N P2141) ZCP 29 + ZCP , 22 14 3,1 5,6(P) 11-12 21-22 5mm 3-pole ZCP 39 + N/C + N/C + N/O ZCP EP16 + snap -
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P2102P16 P2127P16 XCK P XCKP2118P16 P2118P16 P2110G11 P2145P16
Abstract: (XE2N P2151) 11 21 12 ZCP 29 + ZCP EP16 + ZCE 10 22 2-pole N/C + N/C snap action (XE2S P2141) 5mm 11 21 12 ZCP 27 + ZCP EP16 + ZCE 10 22 2-pole N/C + N/C , ) 7,8(P) 0,9 3-pole N/C + N/C + N/O ZCP 37 + break before make, slow break ZCP EP16 + (XE3N , ) 21-22 13-14 1,5 ZCP 27 + ZCP EP16 + ZCE 11 1,8 3,2(P) 11-12 21-22 3-pole N/C + N/C + N , H2 11 21 12 22 31 21 13 32 22 14 3-pole ZCP 39 + N/C+ N/C +N/O ZCP Schneider Electric
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osiswitch zcp zcp 29 limit switch XCKP2110G11 ZCY49 schneider cat 6 cable XCKP2110P16
Abstract: bodies with integral M12 connector, with: N/C + N/O snap action contact ZCD 21M12 8 Metal bodies with contacts (1) for use in conjunction with cable gland (see below) ZCD N/C + N/C snap , ) Cannot be used on bodies: ZCD 21, ZCP 21, ZCT 21, ZCD 29, ZCP 29, ZCD 31, ZCP 31, ZCD 39.ZCP 39, ZCD 2pM12, ZCP 2pM12. 5/45 10 - -
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29M12 ZCD21 SQUARE D ROLLER ZCY54 ZCY15 ZCY71
Abstract: cover Helps prevent tampering N/A Heads rotate and adjust in 15 degree increments (levers , Interpretation For Interpretation of the Catalog Number Only XCK ­ Assembled unit ZCP ­ Plastic body , ZCP 29 + ZCPE N12 + ZCE 10 3 ZCP 29 + ZCPE N12 + ZCE 11 1.8 4.5(P) 11-12 21-22 11-12 21-22 0 5mm 0 11 21 12 22 ZCP 27 + ZCPE N12 + ZCE 10 ZCP 27 + ZCPE N12 + , 32 14 5mm ZCP 37 + ZCPE N12 + ZCE 10 1.8 3.2(P) 0 3 5mm 0 3 5mm 0.19 -
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ZCE08 xck-p 102 XCK-p 155 XCK P2102M12 2102N12 xck-p IEC 947.5.1 P2145M12 C22-2
Abstract: 10 ZCE 11 (1) ZCE 1A (2) ZCE 13 Plastic bodies with integral M12 connector, with: N/C + N/O snap action contact 8 Plastic bodies with contacts (3) with 2 cable entries ISO M16 x 1.5 Pg 11 N/C + N/C snap action contact 1/2" NPT with adaptor DE9 RA1012 ZCP 29M12 9 , (3) for use in conjunction with cable gland (see below) ZCP 21M12 ZCE A6 (2) ZCP EP16 ISO M16 x 1.5 ZCP EP20 ISO M20 x 1.5 ZCP EG11 Pg 11 ZCP EG13 Pg 13.5 ZCP EN12 1/2" NPT -
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osiswitch zcp 27 ZCP21M12 ZCE21 ZCE29 ZCE10
Abstract: externally AC-coupled into the zero crossing detector at pins ZCP and ZCN. The normal filter output NORM is , retains its normal function. PIN LIST AND DESCRIPTIONS Pin Name Type 1 N/C 2 SMDIFFN O/P , 10 AGCHOLD I/P 11 NTEST I/P 12 REFCLK I/P 13 PRESEL I/P 14 N/C 15 N/C 16 VCCPLL 17 GNDPLL 18 N/C 19 VCOI I/P 20 CEN I/P 21 CP3 O/P 22 CP2 I/P 23 CP1 O/P 24 VCCDIG 25 RDGATE I/P 26 PRESEL O/P 27 RAWDAT O/P 28 SYNCDT O/P 29 SYNCLK O/P 30 SMDATA O/P 31 N/C 32 GNDDIG GEC Plessey Semiconductors
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PCA844 DS3827
Abstract: ZigBee V1.0-3.8 ZigBee ZigBee Compliant Platform ZCP ZCP Readme 2007 Microchip , C aBaseSuperframeDuration aBaseSlotDuration 60 a N u m S u p e r f r a m e S , Microchip ZigBee ZigBee 10.-3.8 Microchip ZigBee ZigBee Readme ZCP ZigBee Microchip Technology
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AN965 PIC18 MFR24J40 ENC-MIC-32 PIC18FJ zigbee microchip ENC-MIC-64 zigbee remote dimmer RS-422 RS485 DS00965C
Abstract: HARRIS S E M I C O N D U C T O R ACS161MS Radiation Hardened 4-Bit Synchronous Counter Pinouts 16 PI N CERAMIC DUAL-IN-LINE MIL-STD-1835, DESIGNATOR CDIP2-T16, LEAD FINISH C TOP VIEW MR Q CP [ 7 PO Q PI [ 7 P2 ^ P 3 [][ PE^ g n d [? January 1996 Features Devices QML Qualified in , to +125°C Significant Power Reduction Compared to ALSTTL Logic DC Operating Voltage R a n g e , occurwhile ZCP is High for conventional operation. 3. The Low-to-High transition of SPE should only occur -
OCR Scan
4 bit synchronous counter CERAMIC FLATPACK 16 MIL-PRF-38535 CDFP4-F16 ACS161
Abstract: DIFFP are externally AC-coupled into the zero crossing detector at pins ZCP and ZCN. The normal filter , retains its normal function. PIN LIST AND DESCRIPTIONS Pin Name Type 1 N/C 2 SMDIFFN O/P , 10 AGCHOLD I/P 11 NTEST I/P 12 REFCLK I/P 13 PRESEL I/P 14 N/C 15 N/C 16 VCCPLL 17 GNDPLL 18 N/C 19 VCOI I/P 20 CEN I/P 21 CP3 O/P 22 CP2 I/P 23 CP1 O/P 24 VCCDIG 25 RDGATE I/P 26 PRESEL O/P 27 RAWDAT O/P 28 SYNCDT O/P 29 SYNCLK O/P 30 SMDATA O/P 31 N/C 32 GNDDIG GEC Plessey Semiconductors
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phase sequence detector zero crossing detector
Abstract: A Spindle V phase output 35 SUBGND P Ground for spindle 36 N A Spindle N , Three State Input Control 45 N SUBGND 39 FG Generator 6 CCOMP U V W N , SPEED hard commutatio n INTERNAL READY READY user option 0.27sec Figure 2. Typical , . Back-EMF comparator detects zero crossing point (ZCP) of unexcited phase back-EMF. The output frequency of , . Overall concept of SPM speed control is shown Figure3. U V W N VDD i spll Freal FG 6 Fairchild Semiconductor
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FAN8621B RB4110 spindle and VCM motor controller 3 phase bldc controller hdd vcm controller brake failure indicator result brake failure indicator hard drive spindle motors diagram 48-QFPH-1414 SSD2003
Abstract: externally AC-coupled into the zero crossing detector at pins ZCP and ZCN. The normal filter output NORM is , Threshold Voltage Pulse Detector Input Circuit Reference Voltage (VCCANA/2) Analog V CC connection 1 N/C , 10 AGCHOLD I/P 11 NTEST I/P 12 REFCLK I/P 13 PRESEL I/P 14 N/C 15 N/C 16 VCCPLL 17 GNDPLL 18 N/C 19 , /P 28 SYNCDT O/P 29 SYNCLK O/P 30 SMDATA O/P 31 N/C 32 GNDDIG 33 SYNCEN I/P 34 PULEN I/P 35 AGCSET I/P 36 RAGCCD O/P 37 CAGCCD O/P 38 RAGCMO O/P 39 CAGCMO O/P 40 ZCN I/P 41 ZCP I/P 42 THRESH I/P 43 GEC Plessey Semiconductors
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Abstract: ACS161MS S E M I C O N D U C T O R Radiation Hardened 4-Bit Synchronous Counter January 1996 Features Pinouts · Devices QML Qualified in Accordance with MIL-PRF-38535 · Detailed Electrical and Screening Requirements are Contained in SMD# 5962-96706 and Harris' QM Plan 16 PIN CERAMIC DUAL-IN-LINE MIL-STD-1835, DESIGNATOR CDIP2-T16, LEAD FINISH C TOP VIEW · 1.25 Micron Radiation Hardened , (HHHH). 2. The High-to-Low transition of PE or TE should only occur while ZCP is High for conventional Harris Semiconductor
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5962F9670601VEC 5962F9670601VXC ACS161HMSR
Abstract: Withstand voltage 1,000 VAC for 1 min, leakage current: 1 mA max. Cable pulling strength 50 N (5.1 , LINK FOR PROGRAMMABLE TERMINALS 1:1 NT Link 1:N NT Link High-speed communications can be , , as shown in the illustration at below. OMRON PTs that support the 1:N NT Link must be used , C200HS-CN220-EU cable (2 m) 1:N Host Link Connection Response Command IBM PC/AT or compatible , ) 85 AREA RANGE COMPARE (-V2 models only) ZCP ­­ J TIMER/COUNTER INSTRUCTIONS Instruction OMRON
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cpm1-cif11 omron CPM1-CIF01 rs 232 manual omron srt2-id16 SRT2-ROC16 OMRON MANUAL CPM1-CIF01 transistor C3306 RS-232C SRM1-C01-V2 SRM1-C02-V2 1-800-55-OMRON
Abstract: ,AMPLIFIER, D C :D C CONVERTER, INVERTER A N D R E G U LATOR A P P L I C A T I O N S FEATURES: . High C o , i c a t i o n for h p E and V(jE(sat) U p to 20A: h F E =5.0 (Min.) @ V CE=4.0V, IC =20A vCE(sat)=2.0V (Max.) @ IC =20A, IB = 4.0A . L o w Satura t i o n Voltage: V C E ( s a t ) = 0 - 7 5 , High C o l l ector Power D i s s i p a t i o n Capability: P C = 2 0 0 W (Max.) Weight : 1 2 . 6g MAXIMUM RATINGS (Ta=25°C) SYMBOL C H A R ACTERISTIC U N IT v CBO Collec t o r - E m i t t e -
OCR Scan
2N5303
Abstract: crossing detector at pins ZCP and ZCN. The normal filter output NORM is AC-coupled into the threshold , Voltage Pulse Detector Input Circuit Reference Voltage (VCCANA/2) Analog V CC connection 1 N/C 2 , AGCHOLD I/P 11 NTEST I/P 12 REFCLK I/P 13 PRESEL I/P 14 N/C 15 N/C 16 VCCPLL 17 GNDPLL 18 N/C 19 VCOI I/P , SYNCDT O/P 29 SYNCLK O/P 30 SMDATA O/P 31 N/C 32 GNDDIG 33 SYNCEN I/P 34 PULEN I/P 35 AGCSET I/P 36 RAGCCD O/P 37 CAGCCD O/P 38 RAGCMO O/P 39 CAGCMO O/P 40 ZCN I/P 41 ZCP I/P 42 THRESH I/P 43 PULDETIN I/P GEC Plessey Semiconductors
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Abstract: L I N F I N I T Y A P P L I C AT I O N N O T E UNDERSTANDING THE SINGLE-ENDED SCSI BUS 1 , peripherals is defined as C' = (N * CLOAD)/length, where N is the number of loads, C LOAD is the capacitance , current use 648mA for wide SCSI and 432mA for narrow SCSI. The maximum common path impedance is then ZCP , frequency is the fCO = ZCP /(2 * * LTOT). 3) Calculate the bypass capacitor size using the common path , * * f CO * ZCP). As an example, a wide SCSI system has 9 feet of cable with an inductance of 100nH/ft Linfinity Microelectronics
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1N5820 AWG28 FT 434 IEEE-485 LX5218 LX5285 LX5212
Abstract: DIFFP are externally AC-coupled into the zero crossing detector at pins ZCP and ZCN. The normal filter , retains its normal function. PIN LIST AND DESCRIPTIONS Pin Name Type 1 N/C 2 SMDIFFN O/P , 10 AGCHOLD I/P 11 NTEST I/P 12 REFCLK I/P 13 PRESEL I/P 14 N/C 15 N/C 16 VCCPLL 17 GNDPLL 18 N/C 19 VCOI I/P 20 CEN I/P 21 CP3 O/P 22 CP2 I/P 23 CP1 O/P 24 VCCDIG 25 RDGATE I/P 26 PRESEL O/P 27 RAWDAT O/P 28 SYNCDT O/P 29 SYNCLK O/P 30 SMDATA O/P 31 N/C 32 GNDDIG GEC Plessey Semiconductors
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APPLICATIONS zero crossing comparator MARK ZCP
Abstract: 47 48 Pin Name PCS V SUBGND N U PVCC CCOMP BRAKE CBRAKE SENSE12 GND CNTL1 CNTL2 CNTL3 READY RPMSEL IO , output Ground for spindle Spindle N phase output Spindle U phase output 12V power line for spindle , Retract External Brake 40 41 U V W N 38 BRAKE CBRAKE U FG 6 FG Generator CSOFT , Power Driver PVCC 36 37 Commutation Sequencing & Spindle Control 34 32 35 pre amp 31 N U V W , commutatio n INTERNAL READY soft commutation VCM enable +0.7% SPEED READY user option 0.27sec Fairchild Semiconductor
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25V7K spindle motor VCM controller 64 12v 12 volt 200 Amp PWM 180 volt DC motor speed control pwm hdd spindle motor controller VCM AND SPINDLE MOTOR CONTROLLER
Abstract: Power Reduction Compared to ALSTTL Logic DC Operating Voltage R a n g e , Flatpack Die CAUTIO N : These devices are sensitive to electrostatic discharge. Users should follow , High-to-Low transition of PE or TE should only occur while ZCP is High for conventional operation. 3. The -
OCR Scan
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