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Part : 52NL38 Supplier : Siemens Manufacturer : Allied Electronics & Automation Stock : 5 Best Price : $3.17 Price Each : $3.34
Part : NL3/8"SP Supplier : NORD-LOCK International AB Manufacturer : Bisco Industries Stock : 98 Best Price : - Price Each : -
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NL3/8"SP

Catalog Datasheet MFG & Type PDF Document Tags

S3d2

Abstract: NL3C NL3-P 200V NL3 Antenna only - NL1-C ANTENNA ASSY (Same for NL1, NL2, and NL3) Note , Model NL1 Degree of protection Supply voltage NL2 12 VDC NL3 IP60 Rated frequency , ) Approx. 680 g (NL@-SP, -SC) *1. The NL3 has a capacitor and resistor for the protection of the built-in SCR. Therefore, the NL3 has leakage current. *2. The NL3 requires a current of 30 mA for circuit , be 30 to 300 mA. (Black) Obtain R from the following formula. R NL3 Black (Blue) V R= (k) 30
OMRON
Original
S3d2 NL3C 3M Touch Systems GROUNDING ROD IEC335 IEC947-5-1

soil moisture sensor circuit diagram

Abstract: S3D2-AK Series Power supply voltage NL1 NL2 Model 12 VDC NL3 Model NL1-C NL1-P 24 VDC , only - NL1-C ANTENNA ASSY (Same for NL1, NL2, and NL3) Note: Each model is provided with a , voltage NL2 12 VDC NL3 IP60 Rated frequency 24 VDC 100 VAC or 200 VAC - 50/60 , , -SC) *1. The NL3 has a capacitor and resistor for the protection of the built-in SCR. Therefore, the NL3 has leakage current. *2. The NL3 requires a current of 30 mA for circuit protection. Red
OMRON
Original
soil moisture sensor circuit diagram S3D2-AK thyristor control arc welding machines circuit drill motor speed control circuit welding transformer SCR GI CONDUIT

G2YM400VL20

Abstract: 3 phase monitoring relays Sinus (48 to 63Hz) terminals N-L1, N-L2, N-L3 terminals N-L1, N-L2, N-L3 terminals N-L1, N-L2, N-L3
Tele Automation Components
Original
1000VA G2YM400VL20 3 phase monitoring relays G2YM115VL20 750VA 1250VA 100VA

J00-0061

Abstract: J00-0045NL -6 Compliant Part No. Data Rate J00-0025 NL3 J00-0051NL 3 J00-0062 NL3 J00-0063NL 3 10BT 10BT
Pulse Engineering
Original
J00-0051 J00-0063 J00-0061 J00-0045NL j00-0064 J00-0065NL 10BT J00-0014 1-10MH J00-0025/51/62/63 D-71083

U6205B

Abstract: temic Tv tuner Diagram Description Data Format MSB LSB Address byte 1 1 0 0 0 ASI AS2 0 A Progr. divider byte 1 0 nl4 nl3 , switch SF = 16384*nl4 + 8192*nl3 + . +2*nl + nO PSC = 1: prescaler on (PSF = 8) PSC = 0: prescaler
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OCR Scan
U6205B U6205B-FPG3 temic Tv tuner Diagram Temic Semiconductors 15-bit-divider 88/540/EEC 91/690/EEC D-74025

J00-0061

Abstract: j00-0061nl Part No. Data Rate J00-0025 NL3 J00-0051NL 3 J00-0062 NL3 J00-0063NL 3 10BT 10BT 10BT
Pulse Engineering
Original
j00-0061nl J00-0045 pulse J00-0046NL J00-0042 12 pin RJ45 LED 12 pin rj45 with integrated LED F-39270

J00-0045 pulse

Abstract: -0025 NL3 J00-0051NL 3 J00-0062 NL3 J00-0063NL 3 Data Rate TX Turns Ratios RX EMI 1 Fingers 1CT:1
Pulse Engineering
Original
J00-0045 J00-0046

R/M81714/6-CB1

Abstract: Tuner ADR SCL SDA -bit-divider Scaling factor of prescaler 1 MSP 1 0 n7 1 SW7 1 nl4 n6 51 X 0 nl3 n5 T1 X 0 nl2 n4 TO SW4 Scaling , SW1 LSB 0 n8 nO OS SWO A A A A A SF = 16384*nl4 + 8192*nl3 + . +2*nl + n0 PSC = 1
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OCR Scan
R/M81714/6-CB1 Tuner ADR SCL SDA U6206B-EFP D015442

kt 714

Abstract: 61545 DATATRONICS HbE D 2bsma2 oDDDEfli a â  T"-4-n-l3 SERIES 615 14 PIN TWO OUTPUTS FAST LOGIC DELAY MODULES * 14 Pin DIP Auto-lnsertable *TTL and DTL Compatible »Two Outputs Specifications: â'¢ Supply Voltage â'¢ Logic 1 Input Current â'¢ Logic 0 Input Current â'¢ Logic 1 Volt Out â'¢ Logic 0 Volt Out â'¢ Logic 1 Fan-Out â'¢ Logic 0 Fan-Out â'¢ Output Rise Time'2* â'¢ Operating Temp Range â'¢ Temperature Coefficient Input Test Conditions: â'¢ Input Pulse Voltage â'¢ Input Rise Time â
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OCR Scan
kt 714 61545 dtl 302 615-60 25VDC

24E166

Abstract: E141-E142 × 10 3 (64) ( VCAL 4 - VCAL3 ) (255 ) IFS × 10 3 NL3 56 00100000 - - +15 -15 +15 -15 0 00100000 - 24 E35 V NL3 = (E35 - VCAL3 ) IFS × 10 3 , ) IFS × 10 3 NL3 NL4 NL5 64 11011111 - - +15 -15 +15 -15 0 00100000 - 24 E43 V NL3 = (E43 - VCAL5 ) - - - - % 65 , ) (255 ) IFS × 10 3 NL3 159 00100000 - - +15 -15 +15 -15 0 00100000
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Original
GDIP1-T16 24E166 E141-E142 E74-E75 220 e78 E137-E138 MIL-M-38510/113B MIL-M-38510/113A MIL-PRF-38535 MIL-M-38510 MIL-STD-1835

soh dl6

Abstract: Hitachi DSA0087 /Off Control Instruction 23 HD66740 Display Line Control NL3-0: Set NL2­NL0 bits when SW = 0, and the NL3 bit when SW = 1 to specify the display lines. Display lines change the liquid crystal , DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0 0 0 0 0 1 1 1 NL2 NL1 NL0 (SW = 0) CN1 CN0 NL3 (SW = 1) Figure 8 Display-line Control Instruction Table 9 NL Bits and Display Lines NL3
Hitachi Semiconductor
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soh dl6 Hitachi DSA0087 017p transistor 115 46F HCD66740BP HCD66740WBP ADE-207-334 D-85622
Abstract: n7 1 SW7 1 n l4 n6 51 X 0 nl3 n5 T1 X 0 n l2 n4 TO X 0 n il n3 X X , SF = 16384*nl4 + 8192*nl3 + . +2*nl + nO PSC = 1: prescaler on (PSF = 8) PSC = 0: prescaler off -
OCR Scan
U6207B U6207B-FPG3
Abstract: byte 2 Control byte 1 Control byte 2 MSB 1 0 n7 1 SW7 DATA FORMAT 1 nl4 n6 51 X 0 nl3 n5 Tl X 0 , consumption. SF = 16384 X nl4 + 8192 X nl3 + . + 2 X nl + nO nO . nl4: Scaling factor (SF) PSC = 1 -
OCR Scan
U6216B U6216B-FPG3

soh dl6

Abstract: 5591 3087 Control Instruction 25 HD66729 Display Line Control NL3-0: Set NL2­NL0 bits when SW = 0, and the NL3 bit when SW = 1 to specify the display lines. A line consists of 8 dots. Display lines change the , lines. R/W RS DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0 0 0 0 0 1 1 1 NL2 NL1 NL0 (SW = 0) 0 CN NL3 (SW = 1) Figure 9 Display-line Control Instruction Table 9 NL3 0 0 0 0 0 0 0 0 1 NL2 0 0 0 0 1 1 1 1 0 NL Bits , LCD-drive duty ratio must be 1/48 or less (NL3­0 = 0000­0101). For details, see the Partial-display-on
Hitachi Semiconductor
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5591 3087 Hitachi DSA002732 4532 op

soh dl6

Abstract: COM4201 byte 1 Control byte 2 1 )\T \ l-ORMVr MSB 1 0 n7 1 SW7 1 n l4 n6 51 X 0 nl3 n5 , nl3 + . + 2 X n l + nO PSC = 1: prescaler on (PSF = 8) PSC = 0: prescaler off (PSF = 1) T1 = 1
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COM4201 HD66717 HD66724 HD66725 TCP-243 HD66727
Abstract: byte 2 Control byte 1 Control byte 2 MSB 1 0 n7 1 SW7 1 nl4 n6 51 X 0 nl3 n5 Tl X DATA FORMAT 0 nl2 n4 , : PSC: TO, T l: Scaling factor (SF) Prescaier on/off Testmode selection SF = 16384 x n l4 + 8192 x nl3 + -
OCR Scan
Abstract: .Tempdata( T) tcc2 ,2.Tempdata( T) 2 tcc3 ,2.Tempdata( T) 3 NL3( T) tcc0 ,3 tcc1 ,3.Tempdata( T , function is then given by: OLC( T ,P) NL1( T).Pdata( T ,P) NL0( T) NL2( T).Pdata( T ,P) 2 NL3 , .Tempdata( T) tcc2 ,2.Tempdata( T) 2 tcc3 ,2.Tempdata( T) 3 NL3( T) tcc0 ,3 tcc1 ,3.Tempdata( T , ) NL2( T).Pdata( T ,P) 2 NL3( T).Pdata( T ,P) 3 OLC( T ,P) 2 nsgainshfts.fnSensC( T).OLCPdata -
OCR Scan
IS00145

KL SN 102 lcd

Abstract: KSD 303 Address byte 1 1 0 0 AS2 0 0 AS1 Prqgr. divider byte 1 0 nl4 nl2 nil nl3 n9 nlO n8 Progr. divider byte 2 , Charge pump current switch Output switch Description. A A A A A SF = 16384*nl4 + 8192*nl3 + .
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OCR Scan
HD66728 KL SN 102 lcd KSD 303 112x64 112X24 5x7 within 6x8 font kanji HCD66728A05BP
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