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BTA140 series GENERAL DESCRIPTION Passivated triacs plastic


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BTA140 series
GENERAL DESCRIPTION
Passivated triacs plastic envelope, intended applications requiring high bidirectional transient blocking voltage capability high thermal cycling performance. Typical applications include motor control, industrial domestic lighting, heating static switching.
QUICK REFERENCE DATA
SYMBOL VDRM IT(RMS) ITSM PARAMETER BTA140Repetitive peak off-state voltages on-state current Non-repetitive peak on-state current MAX. MAX. UNIT
PINNING TO220AB
DESCRIPTION main terminal
CONFIGURATION
SYMBOL
main terminal gate main terminal
LIMITING VALUES
Limiting values accordance with Absolute Maximum System (IEC 134). SYMBOL VDRM IT(RMS) ITSM PARAMETER Repetitive peak off-state voltages on-state current Non-repetitive peak on-state current fusing Repetitive rate rise on-state current after triggering full sine wave; full sine wave; prior surge 16.7 dIG/dt A/µs GT2- GT2- CONDITIONS MIN. -500 5001 MAX. -600 6001 -800 UNIT A/µs A/µs A/µs A/µs
dIT/dt
PG(AV) Tstg
Peak gate current Peak gate voltage Peak gate power Average gate power Storage temperature Operating junction temperature
over period
Although recommended, off-state voltages 800V applied without damage, triac switch on-state. rate rise current should exceed A/µs. 2003 1.500
BTA140 series
THERMAL RESISTANCES
SYMBOL j-mb PARAMETER CONDITIONS MIN. TYP. MAX. UNIT Thermal resistance full cycle junction mounting base half cycle Thermal resistance free junction ambient
STATIC CHARACTERISTICS
unless otherwise stated SYMBOL PARAMETER Gate trigger current CONDITIONS GT2- GT2- GT2- GT2- T2MIN. 0.25 TYP. MAX. 1.55 UNIT
Latching current
Holding current On-state voltage Gate trigger voltage Off-state leakage current
VDRM(max);
DYNAMIC CHARACTERISTICS
unless otherwise stated SYMBOL dVD/dt dVcom/dt PARAMETER Critical rate rise off-state voltage Critical rate change commutating voltage Gate controlled turn-on time CONDITIONS VDRM(max); exponential waveform; gate open circuit IT(RMS) dIcom/dt A/ms; gate open circuit VDRM(max); dIG/dt A/µs MIN. TYP. MAX. UNIT V/µs V/µs
2003
1.500
BTA140 series
Ptot
Tmb(max)
IT(RMS)
BTA140
IT(RMS)
Fig.1. Maximum on-state dissipation, Ptot, versus on-state current, IT(RMS), where conduction angle.
ITSM
Fig.4. Maximum permissible current IT(RMS) versus mounting base temperature Tmb.
IT(RMS)
1000
limit quadrant 10us time
initial 100us 10ms 100ms
0.01
surge duration
Fig.2. Maximum permissible non-repetitive peak on-state current ITSM, versus pulse width sinusoidal currents, 20ms.
ITSM ITSM time
Fig.5. Maximum permissible repetitive on-state current IT(RMS), versus surge duration, sinusoidal currents, 91°C.
VGT(Tj) VGT(25
initial
Number cycles 50Hz
1000
Fig.3. Maximum permissible non-repetitive peak on-state current ITSM, versus number cycles, sinusoidal currents,
Fig.6. Normalised gate trigger voltage VGT(Tj)/ VGT(25°C), versus junction temperature
2003
1.500
BTA140 series
IGT(Tj) IGT(25 GT2- GT2-
BTA140
1.073
0.015 ohms
Fig.7. Normalised gate trigger current IGT(Tj)/ IGT(25°C), versus junction temperature
IL(Tj) IL(25
Fig.10. Typical maximum on-state characteristic.
j-mb (K/W)
BTA140
unidirectional bidirectional
0.01
0.001 10us 0.1ms 10ms 0.1s
Fig.8. Normalised latching current IL(Tj)/ IL(25°C), versus junction temperature
IH(Tj) IH(25C)
Fig.11. Transient thermal impedance j-mb, versus pulse width
dV/dt (V/us)
1000
off-state dV/dt limit
dIcom/dt A/ms
Fig.9. Normalised holding current IH(Tj)/ IH(25°C), versus junction temperature
Fig.12. Typical commutation dV/dt versus junction temperature, parameter commutation dIT/dt. triac should commutate when dV/dt below value appropriate curve pre-commutation dIT/dt.
2003
1.500
BTA140 series
MECHANICAL DATA
Dimensions Mass:
10,3
15,8
tinned
13,5
(2x)
2,54 2,54
(3x)
Fig.13. SOT78 (TO220AB). connected mounting base. Notes Refer mounting instructions SOT78 (TO220) envelopes. Epoxy meets UL94 1/8".
2003
1.500
BTA140 series
DEFINITIONS
Data sheet status Objective specification Product specification Limiting values Limiting values given accordance with Absolute Maximum Rating System (IEC 134). Stress above more limiting values cause permanent damage device. These stress ratings only operation device these other conditions above those given Characteristics sections this specification implied. Exposure limiting values extended periods affect device reliability. Application information Where application information given, advisory does form part specification. Philips Electronics N.V. 2003 rights reserved. Reproduction whole part prohibited without prior written consent copyright owner. information presented this document does form part quotation contract, believed accurate reliable changed without notice. liability will accepted publisher consequence use. Publication thereof does convey imply license under patent other industrial intellectual property rights. This data sheet contains target goal specifications product development. This data sheet contains final product specifications. Preliminary specification This data sheet contains preliminary data; supplementary data published later.
LIFE SUPPORT APPLICATIONS
These products designed life support appliances, devices systems where malfunction these products reasonably expected result personal injury. Philips customers using selling these products such applications their risk agree fully indemnify Philips damages resulting from such improper sale.
2003
1.500

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