Fairchild/ON Semiconductor MM74HCT373WMX
- Part Number:
- MM74HCT373WMX
- Manufacturer:
- Fairchild/ON Semiconductor
- Ventron No:
- 3218661-MM74HCT373WMX
- Description:
- IC LATCH OCTAL D-TYPE 20-SOIC
- Datasheet:
- MM74HCT373WMX
Fairchild/ON Semiconductor MM74HCT373WMX technical specifications, attributes, parameters and parts with similar specifications to Fairchild/ON Semiconductor MM74HCT373WMX.
- Factory Lead Time4 Weeks
- Lifecycle StatusACTIVE (Last Updated: 3 days ago)
- MountSurface Mount
- Mounting TypeSurface Mount
- Package / Case20-SOIC (0.295, 7.50mm Width)
- Number of Pins20
- Weight801mg
- Operating Temperature-40°C~85°C
- PackagingTape & Reel (TR)
- Published2009
- Series74HCT
- JESD-609 Codee3
- Pbfree Codeyes
- Part StatusActive
- Moisture Sensitivity Level (MSL)1 (Unlimited)
- Number of Terminations20
- ECCN CodeEAR99
- Terminal FinishTin (Sn)
- SubcategoryFF/Latches
- Packing MethodTAPE AND REEL
- TechnologyCMOS
- Voltage - Supply4.5V~5.5V
- Terminal PositionDUAL
- Terminal FormGULL WING
- Number of Functions1
- Supply Voltage5V
- Base Part Number74HCT373
- Output TypeTri-State
- Operating Supply Voltage5V
- Circuit8:8
- PolarityNon-Inverting
- Power Supplies5V
- Load Capacitance50pF
- Number of Ports2
- Number of Bits8
- Propagation Delay40 ns
- Quiescent Current1mA
- Turn On Delay Time25 ns
- FamilyHCT
- Logic FunctionD-Type, Latch
- Current - Output High, Low7.2mA 7.2mA
- Logic TypeD-Type Transparent Latch
- Max I(ol)0.006 A
- Number of Input Lines3
- Independent Circuits1
- Height2.34mm
- Length13mm
- Width7.6mm
- Radiation HardeningNo
- RoHS StatusROHS3 Compliant
- Lead FreeLead Free
MM74HCT373WMX Overview
In the package 20-SOIC (0.295, 7.50mm Width), it can be found. Tape & Reel (TR) is the way it is packaged. It uses the output configuration Tri-State. D-Type Transparent Latch is the logic type of this electrical device. This electronic part is mounted in the way of Surface Mount. There is no supply voltage for this device. It operates at -40°C~85°C degrees Celsius. The 74HCT series contains FPGAs of this type. The design of this electronic part is based on 8 bits. In this device, there are 20 terminations that have been designed. It is a member of the 74HCT373 family. A 5V voltage supply is required for operation. HCT is the family of this electronic device. Designed with 20 pins, it is compatible with a wide range of devices. Electronic parts are mounted using the Surface Mount method. This device has 2 ports. The part belongs to the FF/Latches subcategory. It operates from 5V power supplies. Electronic circuits are represented by 3 input lines. As a result of its reliable performance, it is well suited for TAPE AND REEL. If you want to achieve high efficiency, make sure the supply voltage is at 5V. As far as external factors are concerned, it consumes 1mA of quiescent current without getting affected by them.
MM74HCT373WMX Features
20-SOIC (0.295, 7.50mm Width) package
74HCT series
8 Bits
74HCT373 family
20 pins
5V power supplies
MM74HCT373WMX Applications
There are a lot of ON Semiconductor MM74HCT373WMX Latches applications.
Counter timers
Data acquisition
Flip-flops
Serial Input
Four-bit storage with output enable
Motor Drives
General-Purpose Register
Parallel data synchronization
Shift right register
Pattern generators
In the package 20-SOIC (0.295, 7.50mm Width), it can be found. Tape & Reel (TR) is the way it is packaged. It uses the output configuration Tri-State. D-Type Transparent Latch is the logic type of this electrical device. This electronic part is mounted in the way of Surface Mount. There is no supply voltage for this device. It operates at -40°C~85°C degrees Celsius. The 74HCT series contains FPGAs of this type. The design of this electronic part is based on 8 bits. In this device, there are 20 terminations that have been designed. It is a member of the 74HCT373 family. A 5V voltage supply is required for operation. HCT is the family of this electronic device. Designed with 20 pins, it is compatible with a wide range of devices. Electronic parts are mounted using the Surface Mount method. This device has 2 ports. The part belongs to the FF/Latches subcategory. It operates from 5V power supplies. Electronic circuits are represented by 3 input lines. As a result of its reliable performance, it is well suited for TAPE AND REEL. If you want to achieve high efficiency, make sure the supply voltage is at 5V. As far as external factors are concerned, it consumes 1mA of quiescent current without getting affected by them.
MM74HCT373WMX Features
20-SOIC (0.295, 7.50mm Width) package
74HCT series
8 Bits
74HCT373 family
20 pins
5V power supplies
MM74HCT373WMX Applications
There are a lot of ON Semiconductor MM74HCT373WMX Latches applications.
Counter timers
Data acquisition
Flip-flops
Serial Input
Four-bit storage with output enable
Motor Drives
General-Purpose Register
Parallel data synchronization
Shift right register
Pattern generators
MM74HCT373WMX More Descriptions
Latch Transparent 3-ST 8-CH D-Type 20-Pin SOIC W T/R - Tape and Reel
74HCT373 Tape & Reel (TR) HCT 74HCT latch circuit 7.2mA 7.2mA 40ns 801mg -40C~85C
The MM74HCT373 octal D-type latches and MM74HCT374 Octal D-type flip flops advanced silicon-gate CMOS technology, which provides the inherent benefits of low power consumption and wide power supply range, but are LS-TTL input and output characteristic & pin-out compatible. The 3-STATE outputs are capable of driving 15 LS-TTL loads. All inputs are protected from damage due to static discharge by internal diodes to VCC and ground. When the MM74HCT373 LATCH ENABLE input is HIGH, the Q outputs will follow the D inputs. When the LATCH ENABLE goes LOW, data at the D inputs will be retained at the outputs until LATCH ENABLE returns HIGH again. When a high logic level is applied to the OUTPUT CONTROL input, all outputs go to a high impedance state, regardless of what signals are present at the other inputs and the state of the storage elements. The MM74HCT374 are positive edge triggered flip-flops. Data at the D inputs, meeting the setup and hold time requirements, are transferred to the Q outputs on positive going transitions of the CLOCK (CK) input. When a high logic level is applied to the OUTPUT CONTROL (OC) input, all outputs go to a high impedance state, regardless of what signals are present at the other inputs and the state of the storage elements. MM74HCT devices are intended to interface between TTL and NMOS components and standard CMOS devices. These parts are also plug in replacements for LS-TTL devices and can be used to reduce power consumption in existing designs.
74HCT373 Tape & Reel (TR) HCT 74HCT latch circuit 7.2mA 7.2mA 40ns 801mg -40C~85C
The MM74HCT373 octal D-type latches and MM74HCT374 Octal D-type flip flops advanced silicon-gate CMOS technology, which provides the inherent benefits of low power consumption and wide power supply range, but are LS-TTL input and output characteristic & pin-out compatible. The 3-STATE outputs are capable of driving 15 LS-TTL loads. All inputs are protected from damage due to static discharge by internal diodes to VCC and ground. When the MM74HCT373 LATCH ENABLE input is HIGH, the Q outputs will follow the D inputs. When the LATCH ENABLE goes LOW, data at the D inputs will be retained at the outputs until LATCH ENABLE returns HIGH again. When a high logic level is applied to the OUTPUT CONTROL input, all outputs go to a high impedance state, regardless of what signals are present at the other inputs and the state of the storage elements. The MM74HCT374 are positive edge triggered flip-flops. Data at the D inputs, meeting the setup and hold time requirements, are transferred to the Q outputs on positive going transitions of the CLOCK (CK) input. When a high logic level is applied to the OUTPUT CONTROL (OC) input, all outputs go to a high impedance state, regardless of what signals are present at the other inputs and the state of the storage elements. MM74HCT devices are intended to interface between TTL and NMOS components and standard CMOS devices. These parts are also plug in replacements for LS-TTL devices and can be used to reduce power consumption in existing designs.
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