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80mA

Catalog Datasheet MFG & Type PDF Document Tags

4pin opto isolator

Abstract: bf replacement bvceo bveco BVs KPC614" A 10 high isolation ac input response bf 500 80mA 5v 30v 5v 5000v rms kpc624" B 11 two Channels 0fkpc614 af 100 _ 80mA 5v 30v 5v 5000v rms bf 500 _ kfc644* c 12 four channels Of kpc614 af 100 _ 80mA 5v 30v 5v 5000v rms bf 500 _ k4n29*" -4n33 G 15 DIRECT REPLACEMENT forJEDEC af 100 _ 80mA 5v 30v 5v 2500v rms bf 500 _ k3620* g 16 NO BASE CONNECTION af 100 _ 80mA 5v 30v 5v 2500v rms bf 500 k5621" G 15 HIGH ISOLATION af 100 80mA 5v 30v 5v
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OCR Scan
PC-18T1 PC-18T2 PC-18T4 KPC514 KPC524 KPC544 4pin opto isolator bf replacement bf500

GALI-24

Abstract: INPUT POWER = -25dBm, Temperature = +25°C INPUT POWER = -25dBm, CURRENT = 80mA 50 50 45 - 45°C 45 60mA 40 +25°C 40 80mA 35 +85°C 35 100mA 30 (dB) (dB , . TEMPERATURE 6000 8000 7000 8000 20 21 - 45°C 21 60mA 22 +25°C 22 80mA , = +25°C INPUT POWER = -25dBm, CURRENT = 80mA 0mA 6 3000 Frequency (MHz) INPUT , 4000 5000 6000 7000 60mA 80mA 100mA 0 8000 1000 2000 3000 4000 5000
Mini-Circuits
Original
GALI-24

LS256

Abstract: = 25° C II = 12mA Il = 20mA Il = 80mA 3.9 4.7 5.5 12.2 V CMRR Common Mode Rejection f = 1kHz, Il = 12 to 80mA 50 dB 1 Gs Sending Gain Tamb â'" 25°C, f = 1kHz II = 52mA Vnii = 2mV ll = 25mA 44 48 45 49 46 50 dB 2 Sending Gain Flatness Vmi = 2mV, fref = 1kHz lL = 12 to 80mA ± 1 dB 2 Sending Distortion f = 1kHz Vso = 1V lL =16 to 80mA Vso = 1.3V 2 10 % 2 Sending Noise Vmi = , 80mA 40 kQ Sending Loss in MF Operation Vmi = 2mV II = 52mA S2 in (b) Il = 25mA -30 -30 dB 2 Gr
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OCR Scan
LS256 0DS3442
Abstract: MAXIMUM RATINGS MAX. 'F 80mA Vr 5V BVCEO 30V 30V SVECO 5V BVs 5000V rms 80mA 80mA 5V 5V 5V 5000V rms 30V 5V 5V 5V 5000V rms 80mA 80mA 80mA 5V 5V 30V 30V 2500V rms 2500V rms 5V 30V 5V 5V 5000V rms 80mA 5V , MAXIMUM RATINGS MAX. 'F 80mA 80mA 80mA _ 80mA 5V 30V 5V Vr 5V 5V BVcEO 30V BVe c O 5V BVs 2500V rms 30V 30V 5V 5V 2500V rms 5V 2500V rms 2500V rms 80mA , 80mA 80mA 80mA 5V 5V 30V 30V 30V ' 30V 30V 30V 5V 5V 2500V rms 2500V rms 5V 5V 5V 5V 5V 5V 5V 5V 5000V rms 5000V rms 80mA 80mA 5000V rms 5000V rms _ _ 8 -
OCR Scan
KPC624 KPC644 K4N29 K3620 K5621

aa sot353

Abstract: regulation in the load range from 1mA to 80mA. Changes in output voltage due to heating effects are covered , TS5213 80mA Low Noise LDO Voltage Regulator with Enable Function SOT-25 Pin Definition: 1. Input , ultra low noise output, very low dropout voltage (typically 50mV at light loads and 320mV at 80mA), and , Output Output Current up to 80mA Low Power Consumption "Zero" Off-mode Consumption Logic Controlled , Version: F12 TS5213 80mA Low Noise LDO Voltage Regulator with Enable Function Absolute Maximum
Taiwan Semiconductor
Original
aa sot353 TS5213CX5 TS5213CU5

45W UHF

Abstract: transistor 2N4891 ;n .62 max;RBB 9.1 kohm max;lv 8.0mA min;lp 25uA max. Pt 450mW;n .62 max;RBBO 9.1 kohm max;lv 8.0mA , max. Pt300mW;RBB 6.8kohm max;n .62 max;VEB1(sat) S.OV max;lv 8.0mA min. Pt 300mW;RBB 6.8kohm max;n .62 , 300mW;RBE:j 9.1 kohm max;n .62 max;vEB~(Sat) 5.0V max;lv 8.0mA min. Pt 300mW;RBB 9.1kohm max;n .62 max , ;RBB 6.8kohm max;n .68 max;VEB1(sat) S.OV max;lv 8.0mA min. Pt 300mW;RBB 6.8kohm max;n .68 max;lp 6.0uA , kohm max;n .68 max;VEB1 (sat) 5.0V max;lv 8.0mA min. Pt 300mW;RBB 9.1 kohm max;n .68 max;lp 6.0uA max
Advanced Semiconductor
Original
2N3483 45W UHF transistor 2N4891 2N4891 2N4947 2SH21 2n6120 2N1671A 2N1671B 2N1671C 2N2160 2N2213 2N2417
Abstract: '"12mA II = 20mA II = 80mA 3.9 f = 1 kHz, II = 12 to 80mA 50 Sending Gain Tamb = 25°C, f = 1kHz V mi = 2mV 44 48 V mi = 2mV, fref = 1kHz II = 12 to 80mA Sending Distortion Gs Common Mode Rejection Sending Gain Flatness CMRR f = 1kHz lL = 16 to 80mA II = 52mA II = , Input Impedance Pin 1-16 V mi = 2mV, II = 12 to 80mA Sending Loss in MF Operation Vmi = 2mV , = 0.3V, t,ef = 1kHz II = 12 to 80mA f = 1kHz lL = 12mA I l = 12mA lL = 50mA Il = 50mA ± 1 -
OCR Scan
DIP16 LS256B DG53441 DDS3442

SPEECH NETWORK WITH DIALER INTERFACE

Abstract: agc mic amp Conditions Ta = 25°C Typ. Max. 3.9 - 4.7 IL = 20mA - - 5.5 IL = 80mA VL , Ratio CMRR f = 1kHz, IL = 12 to 80mA 50 - - dB Line Matching Impedance ZL VRI = 0.3V, IL = 12 to 80mA f = 1kHz 500 600 700 IL = 25mA 48 49 50 GV (TX , TX Gain dB TX Gain Flatness GV (TX) VMI = 2mV, fref = 1kHz, IL = 12 to 80mA - - ±1 - - 2 THD TX f = 1kHz IL = 16 to 80mA VSO = 1V TX Distortion VSO = 1.3V
Samsung Electronics
Original
SPEECH NETWORK WITH DIALER INTERFACE agc mic amp S1T8501 16-DIP-300A S1T8501X01-D0B0 S1T85011

5V n mosfet 80ma

Abstract: AQY221N3V / / IF on IL=80mA 3.0mA 0.2mA IFoff IL=80mA 0.9mA 1.35VIF=5mA,1.14V VF IF50mA 1.5V 5.5 Ron IF5mAIL=80mA 1 7.5 IF0mA VB=0V f1MHz 1.0pF Cout 1.5pF 0.01nA , ) 1. 2. 4085 3. : 3-4, LED: 5mA : 10V(DC) 80mA(DC) 25 200 25 200 20 150 , 0 20 4. 5. : 34, LED: 5mA 10V (DC 80mA (DC) 0.08 0.08 80 85 1.5 1 mA 0.04 0.02 60 2 0.06 ms 0.04 80 85 : 34 10V (DC) 80mA (DC
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Original
AQY221N3VY AQY221N3VW AQY221N3V 5V n mosfet 80ma R525V

SPEECH NETWORK WITH DIALER INTERFACE

Abstract: Unit Line Voltage Vl Ta = 25°C L = 20mA II = 80mA Common Mode Rejection Ratio Line Matching Impedance CMRR ZL f = 1KHz L = 1 2 - 80mA VR i = 0.3V, lL= 12 -80mA f=1KH z Ta = 25°C f=1K H z Vmi = 2mV Vmi = 2mV tref = 1KHz lL= 12~80mA f=1KH z lL = 1 6 - 80mA J dB Q II = 25mA lL , , L = 40mA Ta = 25°C, f = 1KHz lL= 25 - 52mA, S, = b VM i = 2mV, lL= 12 - 80mA II = 25mA V,i = 2m V , AGv (rx ) (Continued) Test Conditions Vri = 0.3V, fref = 1KHz lL= 12 -80mA L12mA = 50mA L Min
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OCR Scan
KA8500A

5V n mosfet 80ma

Abstract: LED LED 0.2mA 1.35VIF=5mA,1.14V IF50mA 1.5V 5.5 IF5mAIL=80mA 1 Ron , VB=0V f1MHz 1.1pF Cout IL=80mA 0.9mA VF IL=80mA 3.0mA IF o f , (DC) 80mA(DC) 25 200 200 10 150 mA 100 150 mA 100 6 , ) 4. 5. : 34, LED: 5mA 10V (DC 80mA (DC) 6. LED : 34, LED: 5mA 10V (DC) 80mA (DC) 0.1 : 34 10V (DC) 80mA (DC) 0.1 0.08 0.08 0.06 5 0.04 0.04 4
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Original
SSOP43 AQY221N3MY AQY221N3MW AQY221N3M

GALI-74

Abstract: gali74 INPUT POWER = -20dBm, CURRENT = 80mA INPUT POWER = -20dBm, Temperature = +25°C 40 40 35 -45°C 35 64mA 30 +25°C 30 80mA 25 +85°C 25 96mA 20 (dB) (dB) 20 15 , 12000 ISOLATION vs. TEMPERATURE 16000 0 5 -45°C 5 64mA 10 +25°C 10 80mA , . CURRENT INPUT POWER = -20dBm, CURRENT = 80mA INPUT POWER = -20dBm, Temperature = +25°C 0 0 , POWER = -20dBm, CURRENT = 80mA 25 -45°C 30 64mA 80mA 35 +85°C 40 25 30 +25°C
Mini-Circuits
Original
GALI-74 gali74 96mA

H12 SOT23

Abstract: marking H12 regulation in the load range from 1mA to 80mA. Changes in output voltage due to heating effects are covered , TS5204 80mA Low Noise LDO Voltage Regulator SOT-23 Pin Definition: 1. Output 2. Input 3. Ground , 80mA), and very low power consumption (500uA at 50mA), providing high output current even when the , protection. Features Ultra Low Noise Output Output Current up to 80mA Low Dropout Voltage Low Power , C/W o o C C 1/8 Version: H12 TS5204 80mA Low Noise LDO Voltage Regulator Electrical
Taiwan Semiconductor
Original
H12 SOT23 marking H12 685V 80mAof TS5204CX TS5204CY TS5204CQ

12 Pin Metal can fairchild

Abstract: ILC7011AIM528X www.fairchildsemi.com ILC7011 80mA SC70 Ultra Low Noise CMOS RF-LDOTM Regulator Description , Tantalum output capacitor to minimize noise and output ripple. · Only 90µA ground current at 80mA load · , Guaranteed to 80mA output current · Industry standard five lead SC70 packages · Fixed 2.5V, 2.6V, 2.8V , voltages between 2.5V and 8V The ILC7011 is an 80mA, Ultra Low Noise, Low Dropout (LDO) linear , ) VIN - VOUT IOUT = 10µA IOUT = 10mA IOUT = 20mA IOUT = 80mA IOUT = 0mA IGND IOUT = 10mA IOUT =
Fairchild Semiconductor
Original
12 Pin Metal can fairchild ILC7011AIM528X ILC7011AIM529X ILC7011AIM530X ILC7011AIM531X ILC7011AIM525X ILC7011AIM532X SC-70 ILC7011AIM533X

GALI-24

Abstract: , Temperature = +25°C S21 vs. TEMPERATURE INPUT POWER = -25dBm, CURRENT = 80mA 26 26 24 -45°C 24 60mA 22 +25°C 22 80mA 20 +85°C 20 100mA 16 14 14 (dB) 18 , (dB) 5000 Frequency (MHz) INPUT POWER = -25dBm, CURRENT = 80mA -14 4000 -24 -26 -24 -26 -28 -45°C -28 -30 +25°C -30 80mA -32 +85°C -32 100mA -34 , 1000 2000 3000 Frequency (MHz) S11 vs. TEMPERATURE INPUT POWER = -25dBm, CURRENT = 80mA
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Original

LS256B

Abstract: LS256 °C IL IL IL f = 1kHz, IL = 12 to 80mA Tamb = 25°C, f = 1kHz IL IL VMI = 2mV = 12mA = 20mA = 80mA = 52mA = 25mA VMI = 2mV, fref = 1kHz IL = 12 to 80mA f = 1kHz VSO = 1V VSO = 1.3V IL = 16 to 80mA VMI = 0V; IL = 40mA; S1 in (b) VMI = 2mV, IL = 12 to 80mA IL = 52mA VMI = 2mV IL = , 12 to 80mA f = 1kHz IL = 12mA VRO = 1.6V IL = 12mA VRO = 1.9V IL = 50mA VRO = 1.8V IL = 50mA VRO = 2.1V VRI = 0V; IL = 12 to 80mA; S1 in (b) VRO = 50mV, IL = 40mA 3.9 50 44 48 dB dB
STMicroelectronics
Original
PM-DIP16

mitsubishi PM30CSJ060

Abstract: PM20CSJ060 - 380 Io1 = 0 ~ 50mA, Io2 = Io3 = 0mA, Io4 = 80mA Io2 = 0 ~ 50mA, Io1 = Io3 = 0mA, Io4 = 80mA Io3 = 0 ~ 50mA, Io1 = Io2 = 0mA, Io4 = 80mA 14 15 14 14 15 15 16 16 14 15 50 , ­ 0.7 ­ ­ 0.7 ­ ­ 73 ­ Io2 = 30mA, Io1 = Io3 = 0mA, Io4 = 80mA Vo3 voltage change Io1 = 0 ~ 50mA, Io2 = Io3 = 0mA, Io4 = 80mA Vo2 voltage change Load regulation , , Io1 = Io2 = 0mA, Io4 = 80mA Vo4 voltage change Io1 = Io2 = Io3 = 0mA, Io4 = 80mA Reg-L Typ
Mitsubishi
Original
M57146U-01 AC200 PM15CSJ060 PM20CSJ060 PM20CTM060 PM30CTJ060 mitsubishi PM30CSJ060 PM30RSF060 PM30ctj060-3 1500V 15VDC 380VDC M57146U

TS5213CX550

Abstract: TS5213 regulation in the load range from 1mA to 80mA. Changes in output voltage due to heating effects are covered , TS5213 80mA Low Noise LDO Voltage Regulator with Enable Function SOT-25 Pin Definition: 1 , 80mA), and very low ground current (225uA at 20mA), providing high output current even when the , Low Noise Output Output Current up to 80mA Low Power Consumption "Zero" Off-mode , basic operating COUT >0.47uF in low noise operating 1/8 Version: C07 TS5213 80mA Low Noise
Taiwan Semiconductor
Original
TS5213CX550

SPEECH NETWORK WITH DIALER INTERFACE

Abstract: Voltage VL Ta = 25°C lL = 20mA lL = 80mA V Common Mode Rejection Ratio Line Matching Impedance CMRR z L f = 1KHz, lL= 12 ~ 80mA V ri = 0.3V, lL = 12 ~ 80mA f = 1KHz Ta = 25°C f 1KHz VM i , = 1 2 - 80mA < C ß II - dB o T H D tx > G 'V 1ST) Z |(M IC ) < % lL = 1 6 - 80mA , V (LOSS) z o ä 25°C, ~ - - lL= 25 52mA 40 - VM i = 2mV, lL= 1 2 - 80mA , = 1.6V V,o = 1.9V V,o = 1.8V V,o = 2.1V Min 2.4 0.5 2 lL = 12 - 80mA fM F = 1KHz VM F = 80mV 15
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OCR Scan
KA8501A

dialer

Abstract: Telephone Dialer Circuit IL = 20mA - - 5.5 IL = 80mA Line Voltage - - 12.2 50 - - dB 500 600 700 f = 1KHz, IL = 12 ~ 80mA VRI = 0.3V, IL = 12 ~ 80mA f = 1KHz Ta = 25°C f , ~ 80mA dB dB f = 1KHz VSO = 1V - - 2 IL = 16 ~ 80mA VSO = 1.3V - - 10 , ~ 52mA VMI = 2mV, IL = 12 ~ 80mA VMI = 2mV Ta = 25°C VRI = 0.3V f = 1KHz IL = 25 ~ 52mA 40 - , Flatness Test Conditions VRI = 0.3V, fref = 1KHz Min Typ - - IL = 12 ~ 80mA Max
Samsung Electronics
Original
dialer Telephone Dialer Circuit

SN7400

Abstract: SN74H , BW = 1.28MHz, Sample clk = 32 MHz IQ Mod Filter = 2.1 MHz 16 85 °C 30 10 Icq = 80mA
Texas Instruments
Original
SN74LVT244 SN7400 SN74H 4 to 20 mA and gatter SN7440 SN74ABT240 SN74LV00 SN74LV244 SN74LVC244 SN74ALVC16244

AP602-F

Abstract: AP602 Mod Filter = 2.1 MHz 16 85 °C 30 10 Icq = 80mA Icq=100mA -48 25 °C 3
WJ Communications
Original
AP602 AP602-F JESD22-A114 AP602-PCB1960 AP602-PCB2140 AP602-PCB900 JESD22-C101 J-STD-020 1-800-WJ1-4401
Abstract: ;n .62 max;RBB 9.1 kohm max;lv 8.0mA min;lp 25uA max. Pt 450mW;n .62 max;RBBO 9.1 kohm max;lv 8.0mA , max. Pt300mW;RBB 6.8kohm max;n .62 max;VEB1(sat) S.OV max;lv 8.0mA min. Pt 300mW;RBB 6.8kohm max;n .62 , 300mW;RBE:j 9.1 kohm max;n .62 max;vEB~(Sat) 5.0V max;lv 8.0mA min. Pt 300mW;RBB 9.1kohm max;n .62 max , ;RBB 6.8kohm max;n .68 max;VEB1(sat) S.OV max;lv 8.0mA min. Pt 300mW;RBB 6.8kohm max;n .68 max;lp 6.0uA , kohm max;n .68 max;VEB1 (sat) 5.0V max;lv 8.0mA min. Pt 300mW;RBB 9.1 kohm max;n .68 max;lp 6.0uA max ON Semiconductor
Original
NCP716 511BR NCP716/D

SN74LV

Abstract: SN74AC11240 TS5213 80mA Low Noise LDO Voltage Regulator with Enable Function SOT-25 Pin Definition: 1 , 80mA), and very low ground current (225uA at 20mA), providing high output current even when the , Low Noise Output Output Current up to 80mA Low Power Consumption "Zero" Off-mode , basic operating COUT >0.47uF in low noise operating 1/8 Version: C07 TS5213 80mA Low Noise , 0.008 0.3 % Load Regulation (Note 6) 0.1mA Io 80mA - 0.08 0.3 % Io
Texas Instruments
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SN74LV SN74AC11240 SN74ALS00 SN74LS00 sdya010 SN74F40 SDYA010 N74BCT25240

SN74LVC244

Abstract: sn7400 application note bvceo bveco BVs KPC614" A 10 high isolation ac input response bf 500 80mA 5v 30v 5v 5000v rms kpc624" B 11 two Channels 0fkpc614 af 100 _ 80mA 5v 30v 5v 5000v rms bf 500 _ kfc644* c 12 four channels Of kpc614 af 100 _ 80mA 5v 30v 5v 5000v rms bf 500 _ k4n29*" -4n33 G 15 DIRECT REPLACEMENT forJEDEC af 100 _ 80mA 5v 30v 5v 2500v rms bf 500 _ k3620* g 16 NO BASE CONNECTION af 100 _ 80mA 5v 30v 5v 2500v rms bf 500 k5621" G 15 HIGH ISOLATION af 100 80mA 5v 30v 5v
Texas Instruments
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sn7400 application note SN74LS240 SN74LS40 SN74S00 SN74S240 SN74S40
Abstract: TS5213 80mA Low Noise LDO Voltage Regulator with Enable Function SOT-25 Pin Definition: 1. Input , ultra low noise output, very low dropout voltage (typically 50mV at light loads and 320mV at 80mA), and , Output Output Current up to 80mA Low Power Consumption "Zero" Off-mode Consumption Logic Controlled , Version: F12 TS5213 80mA Low Noise LDO Voltage Regulator with Enable Function Absolute Maximum , Regulation (Note 6) Conditions VIN=Vo + 1V -40ºC TJ +125ºC (Note 5) Vo+1V VIN 16V 0.1mA Io 80mA Io ON Semiconductor
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AP602

Abstract: AP602-F '"12mA II = 20mA II = 80mA 3.9 f = 1 kHz, II = 12 to 80mA 50 Sending Gain Tamb = 25°C, f = 1kHz V mi = 2mV 44 48 V mi = 2mV, fref = 1kHz II = 12 to 80mA Sending Distortion Gs Common Mode Rejection Sending Gain Flatness CMRR f = 1kHz lL = 16 to 80mA II = 52mA II = , Input Impedance Pin 1-16 V mi = 2mV, II = 12 to 80mA Sending Loss in MF Operation Vmi = 2mV , = 0.3V, t,ef = 1kHz II = 12 to 80mA f = 1kHz lL = 12mA I l = 12mA lL = 50mA Il = 50mA ± 1
WJ Communications
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1-64DPCH

Abstract: MAXIMUM RATINGS MAX. 'F 80mA Vr 5V BVCEO 30V 30V SVECO 5V BVs 5000V rms 80mA 80mA 5V 5V 5V 5000V rms 30V 5V 5V 5V 5000V rms 80mA 80mA 80mA 5V 5V 30V 30V 2500V rms 2500V rms 5V 30V 5V 5V 5000V rms 80mA 5V , MAXIMUM RATINGS MAX. 'F 80mA 80mA 80mA _ 80mA 5V 30V 5V Vr 5V 5V BVcEO 30V BVe c O 5V BVs 2500V rms 30V 30V 5V 5V 2500V rms 5V 2500V rms 2500V rms 80mA , 80mA 80mA 80mA 5V 5V 30V 30V 30V ' 30V 30V 30V 5V 5V 2500V rms 2500V rms 5V 5V 5V 5V 5V 5V 5V 5V 5000V rms 5000V rms 80mA 80mA 5000V rms 5000V rms _ _ 8
WJ Communications
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1-64DPCH

SZZA008

Abstract: SCBD002C Conditions Ta = 25°C Typ. Max. 3.9 - 4.7 IL = 20mA - - 5.5 IL = 80mA VL , Ratio CMRR f = 1kHz, IL = 12 to 80mA 50 - - dB Line Matching Impedance ZL VRI = 0.3V, IL = 12 to 80mA f = 1kHz 500 600 700 IL = 25mA 48 49 50 GV (TX , TX Gain dB TX Gain Flatness GV (TX) VMI = 2mV, fref = 1kHz, IL = 12 to 80mA - - ±1 - - 2 THD TX f = 1kHz IL = 16 to 80mA VSO = 1V TX Distortion VSO = 1.3V
Texas Instruments
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SZZA008 SDYDE01B SCBD002C SN74xxx SN74ALSxxx CMOS Data Book Texas Instruments Incorporated SN74HCxx SDYA009B SDYA014 SCBA012A SDYA012
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