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TQ2SL-L-4.5V

Panasonic
Part Number TQ2SL-L-4.5V
Manufacturer Panasonic
Description SMD RELAYS
Published Jun 11, 2015
Detailed Description TQ SMD TESTING LOW-PROFILE TQ SMD RELAYSSURFACE-MOUNT RELAY 14 .551 9 .354 5.6 .220 mm inch RoHS Directive compatibi...
Datasheet PDF File TQ2SL-L-4.5V PDF File

TQ2SL-L-4.5V
TQ2SL-L-4.5V


Overview
TQ SMD TESTING LOW-PROFILE TQ SMD RELAYSSURFACE-MOUNT RELAY 14 .
551 9 .
354 5.
6 .
220 mm inch RoHS Directive compatibility information http://www.
nais-e.
com/ FEATURES • Low-profile: 6 mm .
236 inch (Tape height: max.
6.
5 mm .
256 inch) • Tape and reel package is available as standard packing style • Surge withstand between contacts and coil: 2,500 V • Breakdown voltage between contacts and coil: 1,500 V • Capacity: 2 A • High sensitivity: 2 Form C; 140 mW power consumption (Single side stable type) SPECIFICATIONS Contact Arrangement 2 Form C Initial contact resistance, max.
(By voltage drop 6 V DC 1 A) 75 mΩ Contact material Au-clad AgNi type Nominal switching capacity (resistive load) 2 A 30 V DC, 0.
5 A 125 V AC Rating Max.
switching power (resistive load) Max.
switching voltage 60 W, 62.
5 VA 220 V DC, 125 V AC Max.
switching current 2A Min.
switching capacity (Reference value)#1 10 µA 10 mV DC Nominal operating power Single side stable 1 coil latching 140 mW (1.
5 to 12 V DC) 200 mW (24 V DC) 300 mW (48 V DC) 70 mW (1.
5 to 12 V DC) 100 mW (24 V DC) 2 coil latching 140 mW (1.
5 to 12 V DC) 200 mW (24 V DC) Mechanical (at 180 cpm) 108 Expected life (min.
operations) Electrical (at 20 cpm) 2 A 30 V DC resistive 1 A 30 V DC resistive 105 2×105 0.
5 A 125 V AC resistive 105 Note: #1 This value can change due to the switching frequency, environmental conditions, and desired reliability level, therefore it is recommended to check this with the actual load.
(SX relays are available for low level load switching [10V DC, 10mA max.
level]) Remarks * Specifications will vary with foreign standards certification ratings.
*1 Measurement at same location as “Initial breakdown voltage” section.
*2 By resistive method, nominal voltage applied to the coil; contact carrying current: 2 A.
*3 Nominal voltage applied to the coil, excluding contact bounce time.
*4 Nominal voltage applied to the coil, excluding contact bounce time without diode.
*5 Half-wave pul...



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