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TMS-SCE-1-2.0-S1-9 (5134530001) TE Connectivity (5134530001) TMS-SCE-1-2.0-S1-9 visit TE Connectivity
HX-SCE-38.1-50-9 (F93526-000) TE Connectivity (F93526-000) HX-SCE-38.1-50-9 visit TE Connectivity
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HT-SCE-3/16-2.0-9 (3206430001) TE Connectivity (3206430001) HT-SCE-3/16-2.0-9 visit TE Connectivity
HT-SCE-1/4-2.0-9 (8306110001) TE Connectivity (8306110001) HT-SCE-1/4-2.0-9 visit TE Connectivity
HX-SCE-38.1-50-4 (E76198-000) TE Connectivity (E76198-000) HX-SCE-38.1-50-4 visit TE Connectivity

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UV-SCE-1-1/2-2.0-9

Catalog Datasheet MFG & Type PDF Document Tags

Oscillator XR2209

Abstract: 2209cp 0.1 4 12 0.2 200 20 11 Referenced to Pin 6 From 10% to 90% of Swing Measured at Pin 7, S2 Closed 11 0.4 0.4 Referenced to Pin 6 CL 10pF, RL = 4.7K CL 10pF Notes Bold , , recommended values are 4kW to 200kW (see Figure 8, Figure 9, Figure 10 and Figure 11.) To avoid parasitic , R = 2k -2 2M -3 -50 -25 0 +25 +50 +75 +100 +125 Temperature (°C) Figure 11 , , Simplified Configuration Rev. 2.02 11 XR-2209 VCC VCC C 1mF RL Square Wave Output 1
Exar
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XR-2209CN XR-2209M XR-2209CP Oscillator XR2209 2209cp xr2209cp EXAR XR2209 SQUARE WAVE TO triangle wave schematic diagram

12v dc cdi schematic diagram

Abstract: 12v dc cdi schematic diagram for cdi Measured at Pin 7, S 2 Closed 11 11 0.4 0.4 Referenced to Pin 6 C L < 10pF, RL = 4.7K C L , , recommended values are 4kQ to 200kQ (see Figure 8, Figure 9, Figure 10 and Figure 11.) To avoid parasitic pick , -50 -25 0 +25 +50 +75 +100 +125 Temperature (°C) F ig u r e 11. N o r ma l i z e
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OCR Scan
12v dc cdi schematic diagram 12v dc cdi schematic diagram for cdi 2209a 20-I-24 XR-2209GN
Abstract: Voltage Rise Time Fall Time Measured at Pin 8 4 6 10 +100 0.1 4 12 0.2 200 20 11 Referenced to Pin 6 From 10% to 90% of Swing Measured at Pin 7, S2 Closed 11 0.4 0.4 Referenced , ., Figure 9., Figure 10. and Figure 11.) To avoid parasitic pick up, timing resistor leads should be kept , . Supply Voltage -50 -25 0 +25 +50 +75 +100 +125 Temperature (°C) Figure 11 -
OCR Scan

circuit diagram of o general split ac

Abstract: 2209cp 90% of Swing Squarewave Output Amplitude Saturation Voltage Rise Time Fall Time 11 12 0.2 200 20 0.4 11 12 0.2 200 20 0.4 Vpp V nsec nsec Measured at Pin 7, Sj Closed Referenced to Pin 6 CL< 10pF, RL = , , Figured Figure 10 and Figure 11.) To avoid parasitic pick up, timing resistor leads should be kept as , ( \ -50 -25 0 +25 +50 +75 +100 +125 Temperature (°C) Figure 11. Normalized Frequency Drift with , , Simplified Configuration 11 TM 3422hlfi COOTbOl 25à This Material Copyrighted By Its Respective
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OCR Scan
circuit diagram of o general split ac triangle wave application note XR2209 C23r triangle wave 2209cn

2209CP

Abstract: 11 6 10 0.1 12 0.2 200 20 4 11 0.4 12 0.2 200 20 a % 0.4 Vpp V nsec , Connection for Split Supply Operation Figure 11. Simplified Circuit Connection for Split Supply , , the simplified circuit connection of Figure 11 can be used. This circuit eliminates the diode D
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OCR Scan

circuit diagram of o general split ac

Abstract: XR2209CP Pin 6 From 10% to 90% of Swing Measured at Pin 7, Sg Closed 11 0.4 0.4 Referenced to Pin 6 CL < 10pF , +10% FM Deviation See Characteristic Curves Measured at Pin 4 1 5 0.1 % % % kß ß 11 Notes , are 4k Q to 200kQ (see Figure 8 , Figure 9, Figure 10 and Figure 11.) To avoid parasitic pick up , LL ·o E k. o Temperature (°C) Figure 11. Normalized Frequency Drift with Temperature
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OCR Scan
2209m

circuit diagram of o general split ac

Abstract: Measured at Pin 8 4 6 10 +100 0.1 4 12 0.2 200 20 11 Referenced to Pin 6 From 10% to 90% of swing Measured at Pin 7, S2 Closed 11 0.4 0.4 Referenced to Pin 6 CL < 10pF , ., Figure 9., Figure 10. and Figure 11.) To avoid parasitic pick up, timing resistor leads should be kept , 0 +25 +50 +75 +100 +125 Temperature (°C) Figure 11. Normalized Frequency Drift with
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OCR Scan
Abstract: GND 2 VCM 3 GND 4 VDD 5 VDD 6 GND 7 AIN+ 8 AIN­ 9 GND 10 GND 11 ENC+ 12 ENC­ 13 GND 14 VDD 15 VDD 16 , FREQUENCY (MHz) 70 80 2209 G26 2209 G27 2209fa 11 LTC2209 TYPICAL PERFORMANCE , 2.25V (PGA = 0). GND (Pins 2, 4, 7, 10, 11, 14, 18): ADC Power Ground. VCM (Pin 3): 1.25V Output , ADC range of 2.25V (PGA = 0). GND (Pins 2, 4, 7, 10, 11, 14, 18): ADC Power Ground. VCM (Pin 3): 1.25V , 's Complement 2's Complement Clock Duty Cycle Stabilizer Off On On Off 2209 F11 Figure 11. Equivalent Linear Technology
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700MH 250MH 25VP-P 450MH 900MH 1900MH
Abstract: 450 8 x 11 0.1 5 x 11 0.22 5 x 11 0.33 5 x 11 0.47 5 x 11 5 x 11 1.0 5 x 11 5 x 11 6 x 11 6 x 11 8 x 11 2.2 5 x 11 5 x 11 6 x 11 8 x 11.5 10 x 12 3.3 5 x 11 5 x 11 8 x 11.5 10 x 12.5 10 x 16 10 x 16 5 x 11 4.7 5 x 11 5 x 11 5 x 11 8 x 11.5 10 x 12.5 10 x 16 10 x 20 10 5 x 11 5 x 11 5 x 11 5 x 11 6 x 11 10 x 12.5 10 x 20 10 x 20 13 x 25 22 5 x 11 5 x 11 NTE Electronics
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120HZ

Oscillator XR2209

Abstract: KHz 9 10,11 10.0 11.0 % % 9 10,11 KHz KHz 9 10,11 % % 9 10,11 KHz KHz 9 10,11 9 10,11 Frequency Accuracy fSTD ±6VsVccs±13V Power Supply Stability , +25°C Only -55°C , -55°C
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OCR Scan
1250C 200KH

ltc2209

Abstract: VDD 5 VDD 6 GND 7 AIN + 8 AIN ­ 9 GND 10 GND 11 ENC+ 12 ENC­ 13 GND 14 VDD 15 VDD 16 65 GND 48 D11 , 2209 G27 2209fb 11 LTC2209 Typical Performance Characteristics 64k Point FFT, fIN = 250.1MHz , 2.25V (PGA = 0). GND (Pins 2, 4, 7, 10, 11, 14, 18): ADC PowerGround. VCM (Pin 3): 1.25V Output. Optimum , ADC range of 2.25V (PGA = 0). GND (Pins 2, 4, 7, 10, 11, 14, 18): ADC PowerGround. VCM (Pin 3): 1.25V
Linear Technology
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LTC2208 LTC2208-14 LTC2217 300MH 140MH

Oscillator XR2209

Abstract: 2209 to Vee Vcc - ±6V Vcc = ±6V V V V V KHz KHz % % KHz KHz VO 5,6 9 10,11 9 10,11 9 10,11 , 90 2.0 4 .0 % % KHz KHz 9 10,11 9 10,11 9 10,11 Minimum Timing Resistor Maximum Timing Resistor Trmin Trmax 120 1400 Hz Hz Sweep Range SWRNQ 9 10,11 V V 4 Triangle Wave ,
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OCR Scan
2209 XR 5000 25A0AC 200KQ

ltc2209up

Abstract: LTC1461 1 GND 2 VCM 3 GND 4 VDD 5 VDD 6 GND 7 AIN+ 8 AIN­ 9 GND 10 GND 11 ENC+ 12 ENC­ 13 GND , ­120 ­130 0 10 20 30 40 50 60 FREQUENCY (MHz) 70 80 2209 G27 2209fa 11 , 2, 4, 7, 10, 11, 14, 18): ADC Power Ground. VCM (Pin 3): 1.25V Output. Optimum voltage for input , . Bypass to ground with 0.1F capacitor. GND (Pins 2, 4, 7, 10, 11, 14, 18): ADC Power Ground. VCM (Pin
Linear Technology
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ltc2209up LTC1461 220 volt stabilizer circuit GND18 marking 6cL MABA-007159-000000 LTC2254 LTC2255 LTC2299 LT5512 LT5514 LT5522
Abstract: GND 4 VDD 5 VDD 6 GND 7 AIN + 8 AIN â'" 9 GND 10 GND 11 ENC+ 12 ENCâ'" 13 GND 14 VDD 15 , 50 60 FREQUENCY (MHz) 70 80 2209 G27 2209fb 11 LTC2209 TYPICAL PERFORMANCE , set a full scale ADC range of 2.25V (PGA = 0). GND (Pins 2, 4, 7, 10, 11, 14, 18): ADC Power Ground , 0.1µF capacitor. GND (Pins 2, 4, 7, 10, 11, 14, 18): ADC Power Ground. OFâ'"/OF+ (Pins 59 and 60 Linear Technology
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600MH LT5527 LT5572 LTC6400 LTC6401

16CAP

Abstract: capacitor 4700uF 50 volts 0.1 5 x 11 0.22 5 x 11 0.33 5 x 11 0.47 5 x 11 5 x 11 1.0 5 x 11 5 x 11 6 x 11 6 x 11 8 x 11 8 x 11 2.2 5 x 11 5 x 11 6 x 11 8 x 11.5 10 x 12 10 x 16 3.3 5 x 11 5 x 11 8 x 11.5 10 x 12.5 10 x 16 10 x 16 4.7 5 x 11 5 x 11 5 x 11 5 x 11 8 x 11.5 10 x 12.5 10 x 16 10 x 20 10 5 x 11 5 x 11 5 x 11 5 x 11 6 x 11 10 x 12.5 10 x 20 10 x 20 13 x 25 22 5 x 11
NTE Electronics
Original
16CAP capacitor 4700uF 50 volts
Abstract: OVDD SENSE 1 GND 2 VCM 3 GND 4 VDD 5 VDD 6 GND 7 AIN+ 8 AIN­ 9 GND 10 GND 11 ENC+ 12 ENC­ 13 GND 14 VDD , 50 60 FREQUENCY (MHz) 70 80 2209 G25 2209 G26 2209 G27 2209f 11 LTC2209 , will set a full scale ADC range of 2.25V (PGA = 0). GND (Pins 2, 4, 7, 10, 11, 14, 18): ADC Power , , 7, 10, 11, 14, 18): ADC Power Ground. VCM (Pin 3): 1.25V Output. Optimum voltage for input common Linear Technology
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500MH

XR2209CP

Abstract: 2209cp < 10pF, RL = 4.7KC1 CL < 10pF 11 11 0.4 0.4 'These parameters, although guaranteed over the , respect to ground.) Figure 11. Simplified Circuit Connection for Split Supply Operation With Vcc - VEE , excess of 17 volts, the simplified circuit connection of Figure 11 can be used. This circuit elim inates
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OCR Scan
XR2209CN 2209 A 01 XR-2209C
Abstract: AIN­ 9 GND 10 GND 11 ENC+ 12 ENC­ 13 GND 14 VDD 15 VDD 16 65 48 D11+/DA6 47 D11­/DA5 46 D10+/DA4 45 , 50 60 FREQUENCY (MHz) 70 80 2209 G25 2209 G26 2209 G27 2209f 11 LTC2209 , will set a full scale ADC range of 2.25V (PGA = 0). GND (Pins 2, 4, 7, 10, 11, 14, 18): ADC Power , , 7, 10, 11, 14, 18): ADC Power Ground. VCM (Pin 3): 1.25V Output. Optimum voltage for input common Linear Technology
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10000uf, 63v electrolytic capacitor

Abstract: 5600 MF CAPACITOR 250v 25 35 50 5 x 11 5 x 11 5 x 11 5 x 11 5 x 11 5 x 11 5 x 11 63 5 x 11 5 x 11 5 x 11 5 x 11 5 x 11 5 x 11 5 x 11 5 x 11 5 x 11 6 x 11 8 x 11.5 8 x 11.5 10 x 12.5 10 x 20 13 x 20 13 x 25 16 x 25 , 5 x 11 6 x 11 6 x 11 8 x 11.5 8 x 11.5 8 x 11 10 x 12.5 10 x 20 13 x 21 13 x 25 13 x 26 16 x 25 16 x 36 18 x 32 22 x 41 5 x 11 6 x 11 8 x 11.5 10 x 12.5 10 x 12.5 10 x 12 10 x 20 13 x 25 13 x 25 16 x 25 16 x 26 18 x 36 18 x 40 8 x 11 10 x 12 10 x 16 10 x 16 10 x 15 10 x 20 13 x 25 16 x 25 16 x 33 16
NTE Electronics
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10000uf, 63v electrolytic capacitor 5600 MF CAPACITOR 250v capacitor 6800 uf 63v

EIA-364-09C

Abstract: EIA-364-13B Attachment 11 Product Spec. # S-SATA-031 Rev : A ECN# HK5894 Page: 16 of 17 Date : 12/22/09 Page , File Name : PEMASTER\SPEC\SSATA031-A. Doc. Attachment 11 Product Spec. # S-SATA-031 Rev : A ECN , . COP-0440-QRF-R01 File Name : PEMASTER\SPEC\SSATA031-A. Doc. Attachment 11 Product Spec. # , milliohm Max. COP-0440-QRF-R01 File Name : PEMASTER\SPEC\SSATA031-A. Doc. Attachment 11 Page , of 11 ms duration. Three shocks in each direction applied along three mutually perpendicular planes
Amphenol
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SATA00100793 EIA-364-09C EIA-364-13B EIA-364-52 SATA00100783 SATA-001-0078-3 SATA-001-0079-3 UL94V-0 2002/95/EC
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