Toshiba Logic Gates 2,400+

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Part RoHS Manufacturer Logic IC Type Temperature Grade Terminal Form No. of Terminals Package Code Package Shape Total Dose (V) Package Body Material Schmitt Trigger Surface Mount No. of Functions Technology Screening Level No. of Inputs No. of Bits Translation Packing Method Nominal Supply Voltage / Vsup (V) Power Supplies (V) Load Capacitance (CL) Package Style (Meter) Package Equivalence Code Propagation Delay (tpd) Maximum I (ol) Sub-Category Terminal Pitch Maximum Operating Temperature Output Characteristics Minimum Operating Temperature Terminal Finish Terminal Position Control Type Minimum fmax JESD-30 Code Moisture Sensitivity Level (MSL) Maximum Supply Voltage (Vsup) Maximum Seated Height Width Qualification Output Polarity Minimum Supply Voltage (Vsup) Maximum Power Supply Current (ICC) Additional Features JESD-609 Code Maximum Time At Peak Reflow Temperature (s) Peak Reflow Temperature (C) Length Family

TC74LCX05F(EL,K,F)

Toshiba

INVERTER

TC7SZ86F,LJ

Toshiba

XOR GATE

74VHCT04AFT(TB,BJ)

Toshiba

INVERTER

74VHC05FT(TB,BJ)

Toshiba

INVERTER

TC74LCX05FK(EL,K)

Toshiba

INVERTER

TC7SET14FU,LXGJ

Toshiba

INVERTER

TC7SZ08FU,LXGJ

Toshiba

AND GATE

TC7SZ04F,LXGJ

Toshiba

INVERTER

TC7PZ07FU,LXGJ

Toshiba

BUFFER

TC74VHC04FK(EL,K)

Toshiba

INVERTER

TC7SZ32FE,LXGJ

Toshiba

OR GATE

TC7SZ07F,LJ

Toshiba

BUFFER

TC7SET34FU,LJ

Toshiba

BUFFER

TC74LCX07F(EL,K,F)

Toshiba

BUFFER

TC7SZ32FE,LJ

Toshiba

OR GATE

TC7SZ02FU,LXGJ

Toshiba

NOR GATE

74VHC9152FT(TB,BJ)

Toshiba

BUFFER

TC7SZ14AFS,L3J

Toshiba

INVERTER

TC7SH02FU,LJ

Toshiba

NOR GATE

TC7SET32F,LJ

Toshiba

OR GATE

TC7SZ34FE,LJ

Toshiba

BUFFER

TC74LCX00FTELM

Toshiba

NAND GATE

GULL WING

14

TSSOP

RECTANGULAR

PLASTIC/EPOXY

NO

YES

4

CMOS

2

3.3

50 pF

SMALL OUTLINE, THIN PROFILE, SHRINK PITCH

TSSOP14,.25

6 ns

24 Amp

.65 mm

85 Cel

-40 Cel

DUAL

R-PDSO-G14

3.6 V

1.2 mm

4.4 mm

2 V

5 mm

LVC/LCX/Z

TC7SZ08AFS,L3J

Toshiba

AND GATE

TC74VHC03FK(EL,K)

Toshiba

NAND GATE

TC7SZ05F,LJ

Toshiba

INVERTER

TC74VHCV07FK(EL,K)

Toshiba

INVERTER

TC7SZ17F,LJ

Toshiba

BUFFER

TC7SZ08FE,LJ

Toshiba

AND GATE

TC7SH02FU,LXGJ

Toshiba

NOR GATE

TC74VHCV14FK(EL,K)

Toshiba

INVERTER

TC74VHC21FK(EL,K)

Toshiba

AND GATE

74VHCT32AFT(TB,BJ)

Toshiba

OR GATE

TC7SH00FU,LXGJ

Toshiba

NAND GATE

TC7SZ02F,LJ

Toshiba

NOR GATE

TC7SET02FU,LJ

Toshiba

NOR GATE

TC7SZU04F,LJ

Toshiba

INVERTER

TC7SZ07F,LXGJ

Toshiba

BUFFER

74VHCT00AFT(TB,BJ)

Toshiba

NAND GATE

TC7SH04F,LJ

Toshiba

INVERTER

TC7SZ07FE,LJ

Toshiba

BUFFER

TC7SZ17FU,LXGJ

Toshiba

BUFFER

74VHC21FT(TB,BJ)

Toshiba

AND GATE

TC74VHC05FK(EL,K)

Toshiba

INVERTER

TC74VHCT04AFK(EL,K

Toshiba

INVERTER

TC74VHC32FK(EL,K)

Toshiba

OR GATE

TC7SZ14FU,LJ

Toshiba

INVERTER

TC7SH14F,LJ

Toshiba

INVERTER

TC74VHC20FK(EL,K)

Toshiba

NAND GATE

Logic Gates

Logic gates are electronic circuits that perform basic logical operations on one or more inputs to produce a single output. They are the building blocks of digital circuits and are used to implement digital logic functions, such as AND, OR, NOT, XOR, and NAND.

Logic gates are designed using various technologies, including transistor-transistor logic (TTL), complementary metal-oxide-semiconductor (CMOS), and field-programmable gate arrays (FPGAs). They can be classified into three main types based on their operation: combinational logic gates, sequential logic gates, and programmable logic gates.

Combinational logic gates are logic gates that produce an output based solely on the current input values. These gates include the AND gate, OR gate, NOT gate, XOR gate, and NAND gate. The output of a combinational logic gate depends on the input values and the logic function implemented by the gate.

Sequential logic gates are logic gates that have memory elements and can store information. These gates include the SR flip-flop, D flip-flop, JK flip-flop, and T flip-flop. The output of a sequential logic gate depends on the current input values and the previous state of the gate.

Programmable logic gates are logic gates that can be programmed to implement different logic functions. These gates include programmable logic arrays (PLAs), programmable array logic (PALs), and field-programmable gate arrays (FPGAs). Programmable logic gates can be reprogrammed to adapt to changing system requirements.

Logic gates are used in various applications, including digital signal processing, control systems, and memory systems. They are essential components of digital systems and can be found in many electronic devices, such as computers, mobile phones, and digital cameras.