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SGS-Thomson L-2 DataSheet

No. parte # Fabricante Descripción Hoja de Datos
1
74190

SGS-THOMSON
4 BIT SYNCHRONOUS UP/DOWN COUNTERS
load input overrides counting and loads the data present on the DATA inputs into the flip-flops, which makes it possible to use the circuits as programmable counters. A countenable input serves as the carry/borrow input in multi-stage counters. Contr
Datasheet
2
SD1477

SGS-Thomson
RF & MICROWAVE TRANSISTORS
+150 0.65 Unit V V V V A W °C °C °C/W 1/6 SD1477 ELECTRICAL SPECIFICATIONS (Tcase = 25°C) STATIC S ymb o l Test Conditions BVCBO BVCES BVCEO BVEBO ICES hFE IC = 50mA IC = 100mA IC = 100mA IE = 10mA VCE = 15V VCE = 5V IE = 0mA VBE = 0V IB = 0m
Datasheet
3
SD1416

SGS-Thomson
VHF Communications Transistor
Datasheet
4
T0812MH

SGS-Thomson
Standard Triacs
IT(RMS) = 8A VDRM = 400V to 800V High surge current capability DESCRIPTION The T08xxxH series of triacs uses a high performance MESA GLASS technology. These parts are intended for general purpose switching and phase control applications. A1 A2 G TO2
Datasheet
5
74160

SGS-THOMSON
SYNCHRONOUS PRESETTABLE 4-BIT COUNTER
er dissipation. The M54/74HC160/162 are BCD Decade counters and the M54/74HC161/163 are 4 bit binary counters. The CLOCK input is active on the rising edge. Both LOAD and CLEAR inputs are active Low. Presetting of all four IC’s is synchronous on t
Datasheet
6
74162

SGS-THOMSON
SYNCHRONOUS PRESETTABLE 4-BIT COUNTER
er dissipation. The M54/74HC160/162 are BCD Decade counters and the M54/74HC161/163 are 4 bit binary counters. The CLOCK input is active on the rising edge. Both LOAD and CLEAR inputs are active Low. Presetting of all four IC’s is synchronous on t
Datasheet
7
74163

SGS-THOMSON
SYNCHRONOUS PRESETTABLE 4-BIT COUNTER
er dissipation. The M54/74HC160/162 are BCD Decade counters and the M54/74HC161/163 are 4 bit binary counters. The CLOCK input is active on the rising edge. Both LOAD and CLEAR inputs are active Low. Presetting of all four IC’s is synchronous on t
Datasheet
8
74AC4520

SGS-THOMSON
Dual 4-Bit Binary Counter
stages are D-type flip-flops having interchangeable Clock and ENABLE inputs for incrementing on either the positive-going or negative-going transition. For single-unit operation the ENABLE input is maintained ”high” and the counter advances on each p
Datasheet
9
BD911

SGS-THOMSON
COMPLEMENTARY SILICON POWER TRANSISTORS
hj-ca se Thermal Resistance Junction-case Max 1. 67 oC/W ELECTRICAL CHARACTERISTICS (Tcase = 25 oC unless otherwise specified) Symbol ICBO Parameter Collector Cut-off Current (IE = 0) ICEO Collector Cut-off Current (IB = 0) IEBO Emitter Cut
Datasheet
10
54HC191

SGS-THOMSON
4 BIT SYNCHRONOUS UP/DOWN COUNTERS
load input overrides counting and loads the data present on the DATA inputs into the flip-flops, which makes it possible to use the circuits as programmable counters. A countenable input serves as the carry/borrow input in multi-stage counters. Contr
Datasheet
11
74161

SGS-THOMSON
SYNCHRONOUS PRESETTABLE 4-BIT COUNTER
er dissipation. The M54/74HC160/162 are BCD Decade counters and the M54/74HC161/163 are 4 bit binary counters. The CLOCK input is active on the rising edge. Both LOAD and CLEAR inputs are active Low. Presetting of all four IC’s is synchronous on t
Datasheet
12
SD1484

SGS-Thomson
(SD1xxx) Transistors
Datasheet
13
HCF4045B

SGS-Thomson
COS/MOS 21-State Counter
Datasheet
14
74191

SGS-THOMSON
4 BIT SYNCHRONOUS UP/DOWN COUNTERS
load input overrides counting and loads the data present on the DATA inputs into the flip-flops, which makes it possible to use the circuits as programmable counters. A countenable input serves as the carry/borrow input in multi-stage counters. Contr
Datasheet
15
2N5591

SGS-Thomson
(2N5589 - 2N5591) VHF Power Transistor
Datasheet
16
BYX65-400

SGS-Thomson
Fast Recovery Rectifier Diodes
Datasheet
17
L297

SGS-Thomson
Stepper Motor Controllers
Datasheet
18
TEA7034

SGS-Thomson
Low Drop Out 5V Voltage Regulator
Datasheet
19
74LS245C1

SGS-Thomson
Octal Bus Transceiver
Datasheet
20
74374

SGS-Thomson
Octal D-Type Flip Flop
ents (HC534). While the OE input is low, the eight outputs will be in a normal logic state (high or low logic level), and PIN CONNECTION (top view) while high level, the outputs will be in a high impedance state. The output control does not affect th
Datasheet



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