Technical Specifications
Parameters and characteristics commom to parts in this series
Specification | E-L6219DSATR | E-L6219 Series |
---|---|---|
Applications | - | General Purpose |
Current - Output | - | 500 - 750 mA |
Function | - | Driver - Fully Integrated, Control and Power Stage |
Interface | - | Parallel |
Motor Type - AC, DC | - | Brushed DC |
Motor Type - Stepper | - | Bipolar |
Mounting Type | - | Surface Mount |
null | - | |
Operating Temperature | - | 150 °C |
Operating Temperature | - | -40 - -20 °C |
Output Configuration | - | Half Bridge (4) |
Package / Case | - | 7.5 mm |
Package / Case | - | 24-SOIC |
Package / Case | - | 0.295 in |
Step Resolution | - | 0.5 - 1 |
Supplier Device Package | - | 24-SO |
Voltage - Load | - | 10 - 46 V |
Voltage - Load | - | 4.5 - 10 V |
Voltage - Supply | - | 4.75 V |
Voltage - Supply | - | 5.25 V |
Pricing
Prices provided here are for design reference only. For realtime values and availability, please visit the distributors directly
Distributor | Package | Quantity | $ | |
---|---|---|---|---|
Digikey | Cut Tape (CT) | 1 | $ 3.26 | |
10 | $ 2.93 | |||
25 | $ 2.77 | |||
100 | $ 2.40 | |||
250 | $ 2.28 | |||
500 | $ 2.04 | |||
Digi-Reel® | 1 | $ 3.26 | ||
10 | $ 2.93 | |||
25 | $ 2.77 | |||
100 | $ 2.40 | |||
250 | $ 2.28 | |||
500 | $ 2.04 | |||
Tape & Reel (TR) | 1000 | $ 1.72 | ||
2000 | $ 1.64 | |||
5000 | $ 1.57 | |||
Newark | Each (Supplied on Cut Tape) | 1 | $ 3.14 | |
10 | $ 2.37 | |||
25 | $ 2.23 | |||
50 | $ 2.09 | |||
100 | $ 1.95 | |||
250 | $ 1.84 | |||
500 | $ 1.78 | |||
1000 | $ 1.71 |
E-L6219 Series
Stepper Motor Driver, Injection control
Part | Step Resolution | Mounting Type | Supplier Device Package | Motor Type - Stepper | Current - Output | Applications | Voltage - Supply [Min] | Voltage - Supply [Max] | Function | Interface | Package / Case [custom] | Package / Case | Package / Case [custom] | Voltage - Load [Max] | Voltage - Load [Min] | Motor Type - AC, DC | Operating Temperature [Max] | Operating Temperature [Min] | Output Configuration |
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
STMicroelectronics E-L6219R013TR | 0.5, 1 | Surface Mount | 24-SO | Bipolar | 500 mA | General Purpose | 4.75 V | 5.25 V | Driver - Fully Integrated, Control and Power Stage | Parallel | 7.5 mm | 24-SOIC | 0.295 in | 10 V | 4.5 V | Brushed DC | 150 °C | -20 °C | Half Bridge (4) |
STMicroelectronics E-L6219DSATR | |||||||||||||||||||
STMicroelectronics E-L6219DSATR | |||||||||||||||||||
STMicroelectronics E-L6219R013TR | |||||||||||||||||||
STMicroelectronics E-L6219DSA | 0.5, 1 | Surface Mount | 24-SO | Bipolar | 750 mA | General Purpose | 4.75 V | 5.25 V | Driver - Fully Integrated, Control and Power Stage | Parallel | 7.5 mm | 24-SOIC | 0.295 in | 46 V | 10 V | Brushed DC | 150 °C | -40 °C | Half Bridge (4) |
STMicroelectronics E-L6219R | 0.5, 1 | Surface Mount | 24-SO | Bipolar | 500 mA | General Purpose | 4.75 V | 5.25 V | Driver - Fully Integrated, Control and Power Stage | Parallel | 7.5 mm | 24-SOIC | 0.295 in | 10 V | 4.5 V | Brushed DC | 150 °C | -20 °C | Half Bridge (4) |
STMicroelectronics E-L6219DSATR | |||||||||||||||||||
STMicroelectronics E-L6219DSA | |||||||||||||||||||
STMicroelectronics E-L6219R013TR | |||||||||||||||||||
STMicroelectronics E-L6219DSATR | 0.5, 1 | Surface Mount | 24-SO | Bipolar | 750 mA | General Purpose | 4.75 V | 5.25 V | Driver - Fully Integrated, Control and Power Stage | Parallel | 7.5 mm | 24-SOIC | 0.295 in | 46 V | 10 V | Brushed DC | 150 °C | -40 °C | Half Bridge (4) |
Description
General part information
E-L6219 Series
The L6219DSA is a bipolar monolithic integrated circuit intended to control and drive both windings of a bipolar stepper motor or bidirectionally control two DC motors.
With only a few external components, the L6219DSA controls and drives the circuit for LS-TTL or microprocessor-controlled stepper motor systems. The power stage is a dual full bridge sustaining 46 V and including four diodes for current recirculation.
Cross conduction protection is provided to avoid simultaneous cross conduction during switching current direction.
Documents
Technical documentation and resources