|Category||Discrete => Thyristors => Triacs => 4-Quadrant triacs|
|Description||Z0103/07/09 Series; Triacs;; Package: SOT54B|
|Company||Philips Semiconductors (Acquired by NXP)|
|Datasheet||Download Z0107MN datasheet
|Cross ref.||Similar parts: STM1A60, Z0107DN, Z0107MNT1G, FT0104MN, FT0107MN, FT0107DN, FT0107BN, FT0104DN, FT0104BN|
Passivated triacs in conventional and surface mounting packages. Intended for use in applications requiring high bidirectional transient and blocking voltage capability. Available in a range of gate current sensitivities for optimum performance. Product availability: in SOT223.
s Home appliances s Fan controllers s Small motor control s Small loads in industrial process control.
Table 1: Pin Pinning (TO-92), SOT223, simplified outline and symbol Description terminal 2 (T2) gate (G) terminal 1 (T1)
Table Z0109MN Z0109NN Ordering information Voltage (VDRM) 800 V Gate Sensitivity (IGT) 10 mA Package (TO-92) SOT223 Part Number
Table 3: Limiting values In accordance with the Absolute Maximum Rating System (IEC 60134). Symbol Parameter VDRM repetitive peak off-state voltage Z0103/07/09NA; Z0103/07/09NN VRRM repetitive peak reverse voltage Z0103/07/09NA; Z0103/07/09NN ITSM non-repetitive peak on-state current full sine wave; 25 °C prior to surge; Figure 2 and Figure 16.7 ms IT(RMS) RMS on-state current (TO-92) I2t dIT/dt IGM PGM PG(AV) Tstg Tj
all conduction angles; Figure 4 Tsp 90 °C Tlead 10 ms ITM 2 x IGT; dIG/dt = 100 mA/µs 20 µs over any 20 ms period
rate of rise of on-state current peak gate current peak gate power average gate power storage temperature junction temperature© Koninklijke Philips Electronics N.V. 2002. All rights reserved.
Fig 1. Maximum on-state power dissipation as a function of RMS on-state current; typical values.
Fig 2. Maximum permissible non-repetitive peak on-state current as a function of number of cycles for sinusoidal currents; typical values.
Fig 3. Maximum permissible non-repetitive peak on-state current as a function of surge duration for sinusoidal currents; typical values.
Fig 4. Maximum permissible RMS on-state current as a function of lead temperature and solder point temperature; typical values.
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