HZIP Motion Control ICs 3

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Part RoHS Manufacturer Other IC type Temperature Grade No. of Terminals Package Code Package Shape Surface Mount Package Body Material Maximum Supply Current (Isup) Maximum Output Current No. of Functions No. of Channels Technology Screening Level Terminal Form Nominal Negative Supply Voltage (Vsup) Nominal Supply Voltage (Vsup) Power Supplies (V) Package Style (Meter) Package Equivalence Code Sub-Category Terminal Pitch Maximum Operating Temperature Minimum Operating Temperature Terminal Finish Maximum Output Voltage Terminal Position JESD-30 Code Moisture Sensitivity Level (MSL) Maximum Supply Voltage (Vsup) Maximum Seated Height Width (mm) Qualification Minimum Supply Voltage (Vsup) Additional Features Minimum Input Voltage JESD-609 Code Maximum Time At Peak Reflow Temperature (s) Peak Reflow Temperature (C) Length Adjustable Threshold Maximum Input Voltage

TA8411H

Toshiba

STEPPER MOTOR CONTROLLER

INDUSTRIAL

25

HZIP

RECTANGULAR

NO

PLASTIC/EPOXY

.8 A

1

BIPOLAR

THROUGH-HOLE

5 V

IN-LINE, HEAT SINK/SLUG

1.27 mm

85 Cel

-40 Cel

TIN LEAD

ZIG-ZAG

R-PZIP-T25

5.5 V

17.3 mm

5 mm

Not Qualified

4.5 V

e0

36 mm

TD62917H

Toshiba

BRUSH DC MOTOR CONTROLLER

INDUSTRIAL

25

HZIP

RECTANGULAR

NO

PLASTIC/EPOXY

120 mA

1.5 A

2

BIPOLAR

THROUGH-HOLE

24 V

24

IN-LINE, HEAT SINK/SLUG

ZIP25,.08,.1

Motion Control Electronics

1.27 mm

85 Cel

-40 Cel

Tin/Lead (Sn/Pb)

ZIG-ZAG

R-PZIP-T25

17.3 mm

5 mm

Not Qualified

e0

36 mm

TA8425H

Toshiba

STEPPER MOTOR CONTROLLER

INDUSTRIAL

25

HZIP

RECTANGULAR

NO

PLASTIC/EPOXY

2.5 A

1

BICMOS

THROUGH-HOLE

5 V

IN-LINE, HEAT SINK/SLUG

1.27 mm

85 Cel

-40 Cel

TIN LEAD

ZIG-ZAG

R-PZIP-T25

5.5 V

17.3 mm

5 mm

Not Qualified

4.5 V

e0

36 mm

Motion Control ICs

Motion control ICs are electronic components designed to control and regulate the movement of mechanical systems. They are used in a wide range of applications, including robotics, manufacturing equipment, and aerospace systems.

Motion control ICs use various technologies to control motion, including microcontrollers, motor drivers, and sensors. They can be used to control the speed, position, and direction of motors, actuators, and other mechanical systems.

One of the main applications of motion control ICs is in robotics, where they are used to control the movement of robot arms, legs, and other components. They can also be used in manufacturing equipment to control the movement of conveyor belts, assembly lines, and other machinery.

Motion control ICs can provide high levels of precision and accuracy in controlling motion. They are often designed to operate in harsh environments and can withstand high temperatures, vibration, and shock.