Fairchild/ON Semiconductor 74VHC175MTC
- Part Number:
- 74VHC175MTC
- Manufacturer:
- Fairchild/ON Semiconductor
- Ventron No:
- 3209245-74VHC175MTC
- Description:
- IC D-TYPE POS TRG SNGL 16TSSOP
- Datasheet:
- 74VHC175MTC
Fairchild/ON Semiconductor 74VHC175MTC technical specifications, attributes, parameters and parts with similar specifications to Fairchild/ON Semiconductor 74VHC175MTC.
- Factory Lead Time9 Weeks
- Lifecycle StatusACTIVE (Last Updated: 11 hours ago)
- Contact PlatingGold
- MountSurface Mount
- Mounting TypeSurface Mount
- Package / Case16-TSSOP (0.173, 4.40mm Width)
- Number of Pins16
- Weight173mg
- Operating Temperature-40°C~85°C TA
- PackagingTube
- Published2007
- Series74VHC
- JESD-609 Codee4
- Pbfree Codeyes
- Part StatusActive
- Moisture Sensitivity Level (MSL)1 (Unlimited)
- Number of Terminations16
- ECCN CodeEAR99
- SubcategoryFF/Latches
- Packing MethodRAIL
- TechnologyCMOS
- Voltage - Supply2V~5.5V
- Terminal PositionDUAL
- Terminal FormGULL WING
- Peak Reflow Temperature (Cel)NOT SPECIFIED
- Supply Voltage3.3V
- Reflow Temperature-Max (s)NOT SPECIFIED
- Base Part Number74VHC175
- FunctionMaster Reset
- Number of Outputs8
- Qualification StatusNot Qualified
- Output TypeDifferential
- Number of Elements1
- PolarityNon-Inverting
- Supply Voltage-Max (Vsup)5.5V
- Power Supplies2/5.5V
- Supply Voltage-Min (Vsup)2V
- Number of Channels4
- Load Capacitance50pF
- Number of Bits4
- Clock Frequency115MHz
- Propagation Delay15 ns
- Quiescent Current4μA
- Turn On Delay Time4.9 ns
- FamilyAHC/VHC
- Logic FunctionD-Type, Flip-Flop
- Current - Output High, Low8mA 8mA
- Max Propagation Delay @ V, Max CL9.3ns @ 5V, 50pF
- Trigger TypePositive Edge
- Input Capacitance4pF
- Clock Edge Trigger TypePositive Edge
- Height900μm
- Length5mm
- Width4.4mm
- RoHS StatusROHS3 Compliant
- Lead FreeLead Free
74VHC175MTC Overview
The flip flop is packaged in a case of 16-TSSOP (0.173, 4.40mm Width). D flip flop is included in the Tubepackage. In the configuration, Differentialis used as the output. It is configured with the trigger Positive Edge. There is an electrical part that is mounted in the way of Surface Mount. The supply voltage is set to 2V~5.5V. A temperature of -40°C~85°C TAis considered to be the operating temperature. It is an electronic flip flop with the type D-Type. In this case, it is a type of FPGA belonging to the 74VHC series. A frequency of 115MHzshould not be exceeded by its output. A total of 1 elements are present. It has been determined that there have been 16 terminations. If you search by 74VHC175, you will find similar parts. A voltage of 3.3V provides power to the D latch. The input capacitance of this JK flip flopis 4pF farads. It is a member of the AHC/VHCfamily of D flip flop. There is an electronic part that is mounted in the way of Surface Mount. The 16pins are designed into the board. This device exhibits a clock edge trigger type of Positive Edge. The part is included in FF/Latches. An electronic part designed with 4bits is used in this application. Vsup reaches 5.5V, the maximal supply voltage. The supply voltage (Vsup) should be maintained above 2V for normal operation. Considering the reliability of this T flip flop, it is well suited for RAIL. The D latch operates on 2/5.5V volts. As a result, it consumes 4μA of quiescent current without being affected by external factors. A total of 4 channels are available.
74VHC175MTC Features
Tube package
74VHC series
16 pins
4 Bits
2/5.5V power supplies
74VHC175MTC Applications
There are a lot of ON Semiconductor 74VHC175MTC Flip Flops applications.
Memory
Reduced system switching noise
ESD protection
Buffer registers
Matched Rise and Fall
Consumer
QML qualified product
Storage Registers
Storage registers
Instrumentation
The flip flop is packaged in a case of 16-TSSOP (0.173, 4.40mm Width). D flip flop is included in the Tubepackage. In the configuration, Differentialis used as the output. It is configured with the trigger Positive Edge. There is an electrical part that is mounted in the way of Surface Mount. The supply voltage is set to 2V~5.5V. A temperature of -40°C~85°C TAis considered to be the operating temperature. It is an electronic flip flop with the type D-Type. In this case, it is a type of FPGA belonging to the 74VHC series. A frequency of 115MHzshould not be exceeded by its output. A total of 1 elements are present. It has been determined that there have been 16 terminations. If you search by 74VHC175, you will find similar parts. A voltage of 3.3V provides power to the D latch. The input capacitance of this JK flip flopis 4pF farads. It is a member of the AHC/VHCfamily of D flip flop. There is an electronic part that is mounted in the way of Surface Mount. The 16pins are designed into the board. This device exhibits a clock edge trigger type of Positive Edge. The part is included in FF/Latches. An electronic part designed with 4bits is used in this application. Vsup reaches 5.5V, the maximal supply voltage. The supply voltage (Vsup) should be maintained above 2V for normal operation. Considering the reliability of this T flip flop, it is well suited for RAIL. The D latch operates on 2/5.5V volts. As a result, it consumes 4μA of quiescent current without being affected by external factors. A total of 4 channels are available.
74VHC175MTC Features
Tube package
74VHC series
16 pins
4 Bits
2/5.5V power supplies
74VHC175MTC Applications
There are a lot of ON Semiconductor 74VHC175MTC Flip Flops applications.
Memory
Reduced system switching noise
ESD protection
Buffer registers
Matched Rise and Fall
Consumer
QML qualified product
Storage Registers
Storage registers
Instrumentation
74VHC175MTC More Descriptions
Flip Flop D-Type Bus Interface Pos-Edge 1-Element 16-Pin TSSOP Rail - Rail/Tube
Tube 74VHC175 e4 74VHC flip flop 5mm 2V 9.3ns @ 5V 50pF 115MHz
D Flip-Flop, AHC/VHC Series, 1-Func, Positive Edge Triggered, 4-Bit, Complementary Output, CMOS, PDSO16
Flip Flops Qd D-Type Flip-Flop
D FLIP-FLOP, AHC/VHC SERIES, 1-F
CoC and 2-years warranty / RFQ for pricing
IC FF D-TYPE SNGL 4BIT 16TSSOP
The VHC175 is an advanced high-speed CMOS device fabricated with silicon gate CMOS technology. It achieves the high-speed operation similar to equivalent Bipolar Schottky TTL while maintaining the CMOS low power dissipation. The VHC175 is a high-speed quad D-type flip-flop. The device is useful for general flip-flop requirements where clock and clear inputs are common. The information on the D inputs is stored during the LOW-to-HIGH clock transition. Both true and complemented outputs of each flip-flop are provided. A Master Reset input resets all flip-flops, independent of the Clock or D inputs, when LOW. An input protection circuit insures that 0V to 7V can be applied to the input pins without regard to the supply voltage. This device can be used to interface 5V to 3V systems and two supply systems such as battery backup. This circuit prevents device destruction due to mismatched supply and input voltages.
Tube 74VHC175 e4 74VHC flip flop 5mm 2V 9.3ns @ 5V 50pF 115MHz
D Flip-Flop, AHC/VHC Series, 1-Func, Positive Edge Triggered, 4-Bit, Complementary Output, CMOS, PDSO16
Flip Flops Qd D-Type Flip-Flop
D FLIP-FLOP, AHC/VHC SERIES, 1-F
CoC and 2-years warranty / RFQ for pricing
IC FF D-TYPE SNGL 4BIT 16TSSOP
The VHC175 is an advanced high-speed CMOS device fabricated with silicon gate CMOS technology. It achieves the high-speed operation similar to equivalent Bipolar Schottky TTL while maintaining the CMOS low power dissipation. The VHC175 is a high-speed quad D-type flip-flop. The device is useful for general flip-flop requirements where clock and clear inputs are common. The information on the D inputs is stored during the LOW-to-HIGH clock transition. Both true and complemented outputs of each flip-flop are provided. A Master Reset input resets all flip-flops, independent of the Clock or D inputs, when LOW. An input protection circuit insures that 0V to 7V can be applied to the input pins without regard to the supply voltage. This device can be used to interface 5V to 3V systems and two supply systems such as battery backup. This circuit prevents device destruction due to mismatched supply and input voltages.
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