Features: • 1.1 - 3.6 V Operating Voltage Range• 4 Non-inverting, Tristatable Drivers for the Following Applications: Motor Driver for Bipolar Stepper Motors in Watch/Clock Applications Driver for Piezoelectric Transducers (Buzzer) LED Driver Line Driver for Medium Speed Applicatio...
e5130: Features: • 1.1 - 3.6 V Operating Voltage Range• 4 Non-inverting, Tristatable Drivers for the Following Applications: Motor Driver for Bipolar Stepper Motors in Watch/Clock Applications...
SeekIC Buyer Protection PLUS - newly updated for 2013!
268 Transactions
All payment methods are secure and covered by SeekIC Buyer Protection PLUS.
• 1.1 - 3.6 V Operating Voltage Range
• 4 Non-inverting, Tristatable Drivers for the Following Applications:
Motor Driver for Bipolar Stepper Motors in Watch/Clock Applications
Driver for Piezoelectric Transducers (Buzzer)
LED Driver
Line Driver for Medium Speed Applications
• Motor Driver
• Radio Controlled Clock/Watch
• Line Driver for Mini Computer, Laptop
• LED Driver
• Relay Driver
Absolute maximum ratings define parameter limits which, if exceeded, may permanently change or damage the device.
All inputs and outputs on circuits are highly protected against electrostatic discharges.
However, precautions to minimize build-up of electrostatic charges during handling are recommended.
The circuits are protected against supply voltage reversal for typically 5 minutes, if the current is limited to 120 mA.
Parameters |
Symbol |
Value |
Unit |
Supply voltage |
VDD - VSS |
-0.3 to +5 |
V |
Input voltage range, all inputs |
VI |
VSS - 0.3 to VDD + 0.3 |
V |
Operating ambient temperature range |
-20 to +70 |
||
Storage temperature range |
-40 to +125 |
||
Lead temperature during soldering at 2 mm distance, 10 s |
260 |
The e5130 contains 4 independent driver outputs with an ON resistance of typically 25 (15 ) for the P-channel output transistors and typically 20 (13 ) for the N-channel output transistors at a supply voltage of 1.5 V (3 V). To obtain a fast transition of the outputs even for slow rise/fall time input signals, all digital inputs (IN1 to IN4) have a Schmitt-trigger characteristic with a hysteresis of typically 50 mV. If a higher driving capability is needed, all inputs and outputs may be connected in parallel.
In this case the rise/fall time of the input signals IN1 to IN4 must be less than 200 ns. Due to the fast switching characteristic of the tri-statable output drivers, the circuit is also suited as a low-voltage bus driver.