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M250_15 Datasheet, PDF (1/5 Pages) Solid State Optronic – Fast turn-on (50us TYP)
M250
1 Form A
Solid State Relay
DESCRIPTION
The M250 is a bi-directional, single-pole, single-throw, normally open multipurpose solid-state relay in a 4-pin miniature small outline
package. It is designed to replace electromechanical and reed relays in special applications that call for very fast switching rates. The
relay consists of an integrated circuit that drives two special source-to-source enhancement type DMOS transistors with extremely low
output capacitance and leakage current. The IC is optically coupled to a light emitting diode which controls its switching. The design of
the circuit makes it ideal for switching high frequency signals.
FEATURES
APPLICATIONS
• Fast turn-on (50us TYP)
• Low output capacitance
• Ultra miniature 4-pin small outline package
• Low input control power consumption
• 35mA maximum continuous load current
• 300 ohms maximum on-resistance
• High input-to-output isolation (1.5kV MIN)
• Long life/high reliability
• Multiplexers
• Meter reading systems
• Data Acquisition
• Medical equipment
• Battery monitoring
• Home/Safety security systems
OPTIONS/SUFFIXES*
ABSOLUTE MAXIMUM RATINGS*
• -TR Tape and Reel (2,000 pcs/reel)
NOTE: Suffixes listed above are not included in marking on
device for part number identification.
SCHEMATIC DIAGRAM
PARAMETER
UNIT MIN TYP MAX
Storage Temperature
°C -55
125
Operating Temperature
°C -40
125
Continuous Forward
mA
50
Current
Peak Forward Current
A
1
(1us)
Reverse Input Control
V
5
Voltage
Output Power Dissipation mW
400
*The values indicated are absolute stress ratings. Functional operation of the
device is not implied at these or any conditions in excess of those defined in
electrical characteristics section of this document. Exposure to Absolute
Ratings may cause permanent damage to the device and may adversely
affect reliability.
APPROVALS
• UL / C-UL File # E201932
© 2009 Solid State Optronics • San José, CA
www.ssousa.com • +1.408.293.4600
Page 1 of 5
M250
rev 1.41 (2/17/2009)