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Part Name(s) : Z0109MA NXP
NXP Semiconductors.
Description : LOGIC LEVEL FOUR-QUADRANT TRIAC View

General description
Passivated sensitive gate 4-Q TRIAC in a SOT54 plastic package

Direct interfacing to LOGIC LEVEL ICs
Direct interfacing to low power gate drive circuits
High blocking voltage of 600V
Sensitive gate in four quadrants

Part Name(s) : Z0107MA Z0107MAT NXP
NXP Semiconductors.
Description : LOGIC LEVEL FOUR-QUADRANT TRIAC View

General description
Passivated sensitive gate 4-Q TRIAC in a SOT54 plastic package

Features and benefits
„ Direct interfacing to LOGIC LEVEL ICs
„ Direct interfacing to low power gate drive circuits
„ High blocking voltage of 600V
„ Sensitive gate in four quadrants

Applications
„ General purpose low power motor control
„ Home appliances
„ Industrial process control
„ Low power AC Fan controllers

Part Name(s) : MAC97A6 MAC97A8 Philips
Philips Electronics
Description : LOGIC LEVEL TRIAC View

 Description
LOGIC LEVEL sensitive gate TRIAC intended to be interfaced directly to microcontrollers, LOGIC integrated circuits and other low power gate trigger circuits. Product availability:
MAC97A8 in SOT54 (TO-92)
MAC97A6 in SOT54 (TO-92) available on request - contact your sales representative.

Part Name(s) : MAC97A6 MAC97A8 Twtysemi
TY Semiconductor
Description : LOGIC LEVEL TRIAC View

Description
LOGIC LEVEL sensitive gate TRIAC intended to be interfaced directly to microcontrollers, LOGIC integrated circuits and other low power gate trigger circuits.
Product availability:
MAC97A8 in SOT54 (TO-92)
MAC97A6 in SOT54 (TO-92) available on request - contact your sales representative.


Part Name(s) : NTE56051 NTE56052 NTE-Electronic
NTE Electronics
Description : TRIAC, 8A Low LOGIC LEVEL View

Description:
The NTE56051 and NTE56052 are glass passivated, Low LOGIC LEVEL TRIACs in a TO220 type package designed for use in general purpose bidirectional switching and phase control applications. These devices are intended to be interfaced directly to microcontrollers, LOGIC integrated circuits, and other low power gate trigger circuits.

Part Name(s) : BTA208S-600D NXP
NXP Semiconductors.
Description : 3Q Hi-Com TRIAC View

General description
Planar passivated high commutation three quadrant TRIAC in a SOT428 (DPAK) surface mountable plastic package. This "series D" TRIAC balances the requirements of commutation performance and gate sensitivity and is intended for interfacing with low power drivers and LOGIC ICs including microcontrollers.

Features and benefits
• 3Q technology for improved noise immunity
• Direct gate triggering from low power drivers and LOGIC ICs
• High commutation capability
• High voltage capability
• Planar passivated for voltage ruggedness and reliability
• Surface mountable package
• Triggering in three quadrants only
• Very sensitve gate for easy LOGIC LEVEL triggering

Applications
• Electronic thermostats
• General purpose motor controls

Part Name(s) : BTA204S-800E 204S8E NXP
NXP Semiconductors.
Description : 3Q Hi-Com TRIAC View

General description
Planar passivated high commutation three quadrant TRIAC in a SOT428 (DPAK) surface-mountable plastic package. This "series E" TRIAC balances the requirements of commutation performance and gate sensitivity and is intended for interfacing with low power drivers and LOGIC ICs including microcontrollers.

Features and benefits
■ 3Q technology for improved noise immunity
■ Direct triggering from low power drivers and LOGIC ICs
■ High blocking voltage capability
■ High commutation capability
■ Planar passivated for voltage ruggedness and reliability
■ Sensitive gate for easy LOGIC LEVEL triggering
■ Surface-mountable package
■ Triggering in three quadrants only

Applications
■ AC solenoids
■ General purpose motor control
■ Home appliances

Part Name(s) : MM74HC4049 MM74HC4049M MM74HC4049MTC MM74HC4049MTCX MM74HC4049MX MM74HC4049N MM74HC4049NX MM74HC4049SJ MM74HC4049SJX MM74HC4050CW MM74HC4050 MM74HC4050M MM74HC4050MTC MM74HC4050MTCX MM74HC4050MX MM74HC4050N MM74HC4050NX MM74HC4050SJ MM74HC4050SJX Fairchild
Fairchild Semiconductor
Description : Hex Inverting LOGIC LEVEL Down Converter ? Hex LOGIC LEVEL Down Converter View

General Description
The MM74HC4049 and the MM74HC4050 utilize advanced silicon-gate CMOS technology, and have a modified input protection structure that enables these parts to be used as LOGIC LEVEL translators which will convert high LEVEL LOGIC to a low LEVEL LOGIC while operating from the low LOGIC supply. For example, 0–15V CMOS LOGIC can be converted to 0–5V LOGIC when using a 5V supply. The modified input protection has no diode connected to VCC, thus allow ing the input voltage to exceed the supply. The lower zener diode protects the input from both positive and negative static voltages. In addition each part can be used as a simple buffer or inverter without LEVEL translation. The MM74HC4049 is pin and functionally compatible to the CD4049BC and the MM74HC4050 is compatible to the CD4050BC.

Features
■ Typical propagation delay: 8 ns
■ Wide power supply range: 2V–6V
■ Low quiescent supply current: 20 µA maximum (74HC)
■ Fanout of 10 LS-TTL loads

 

Part Name(s) : MAX17079 MAX17079GTL MAX17079GTL MaximIC
Maxim Integrated
Description : 4-LEVEL or 2-LEVEL LOGIC to High-Voltage LEVEL Shifter for TFT LCD TV Display View

General Description
The MAX17079 is a 7-channel LOGIC-LEVEL input to high voltage output LEVEL shifter. Each channel has two inputs plus a shared enable input. Each channel has two outputs, which can be set to five output LEVELs. Two outputs are complementary to each other. The five output LEVELs are set by five supply rails that are common to all 14 outputs.
The five supply rails include a typical TFT VCOM rail. Two upper rails are always greater than VCOM, with VH1 always greater than VH2. The two lower rails are always less than VCOM, with VL1 always less than VL2. Other supply rails are VLS (the typical TFT AVDD supply) and VCC (the LOGIC supply). The MAX17079 can also be configured as a two-LEVEL voltage shifter.

Features
♦ 7-Channel LOGIC-LEVEL Input to High-Voltage Output LEVEL Shifter
♦ Complementary Outputs in Each Channel
♦ VLS Input Range from 10V to 18V
♦ VCC Input Range from 2.3V to 3.6V
♦ 2-LEVEL or 4-LEVEL Operation
♦ Sequential or Combinational LOGIC
♦ 3Ω Output Switches
♦ 5-LEVEL Output
♦ Short Propagation Delay (80ns typ)
♦ Fast Rise Time (30ns typ)
♦ Built-In Dead Time to Prevent Shoot-Through
♦ Thermal Shutdown
♦ VLS and VCC Undervoltage Lockout

Applications
  TFT LCD TV Panels

 

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