UDN2559BT Allegro Microsystems Inc, UDN2559BT Datasheet - Page 2

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UDN2559BT

Manufacturer Part Number
UDN2559BT
Description
IC DRIVER QUAD PROTECTED 16DIP
Manufacturer
Allegro Microsystems Inc
Type
Low Sider
Datasheet

Specifications of UDN2559BT

Input Type
Logic, AND
Number Of Outputs
4
Current - Output / Channel
700mA
Current - Peak Output
1A
Voltage - Supply
4.75 V ~ 5.25 V
Operating Temperature
-20°C ~ 85°C
Mounting Type
Through Hole
Package / Case
16-DIP (0.300", 7.62mm)
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
On-state Resistance
-
Other names
Q3789291

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
UDN2559BT
Manufacturer:
ALLEGRO
Quantity:
3 188
Features and Benefits
▪ 700 mA output current per channel
▪ Independent overcurrent protection for each driver
▪ Thermal protection for device and each driver
▪ Low output-saturation voltage
▪ Integral output flyback diodes
▪ TTL and 5 V CMOS-compatible inputs
Packages:
Not to scale
29317.14L
with exposed thermal tabs
(B package)
16-pin DIP
with internally fused pins
ENABLE
16-pin SOICW
(LB package)
IN
N
(Package EB)
28-pin PLCC
Functional Block Diagram
V
CC
(1 of 4 Channels)
Protected Quad Power Driver
Thermal
Description
Providing improved output current limiting, the UDK,
UDN, and UDQ2559B, EB, and LB quad power drivers
combine AND logic gates and high-current bipolar outputs
with complete output protection. Each of the four outputs
sink 700 mA in the on state. The outputs have a minimum
breakdown voltage (load dump) of 60 V and a sustaining
voltage of 40 V. The inputs are compatible with TTL and
5 V CMOS logic systems.
Overcurrent protection for each channel has been designed
into these devices and is activated at approximately 1 A. It
protects each output from short circuits with supply voltages
up to 25 V. When an output current trip point is reached, that
output stage is driven linearly resulting in a reduced output
current level. If an over-current or short-circuit condition
continues, the thermal-limiting circuits will first sense the rise
in junction temperature and then the rise in chip temperature,
further decreasing the output current. Under worst-case
conditions, these devices will tolerate short circuits on all
outputs, simultaneously.
These devices can be used to drive various loads including
incandescent lamps (without warming or limiting resistors)
or inductive loads such as relays, solenoids, or dc stepping
motors.
The packages offer fused leads for enhanced thermal dissipation.
Package B is a 16-pin power DIP with exposed tabs, EB is a
28-lead power PLCC, and LB is a 16-lead power wide-body
SOIC for surface-mount applications. They are lead (Pb) free
with 100% matte tin leadframe plating.
Limit
K
<< 1Ω
OUT
N
2559

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