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Número de pieza | BYV27-600 | |
Descripción | Ultra fast low-loss controlled avalanche rectifiers | |
Fabricantes | NXP Semiconductors | |
Logotipo | ||
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No Preview Available ! DISCRETE SEMICONDUCTORS
DATA SHEET
handbook, 2 columns
M3D116
BYV27 series
Ultra fast low-loss
controlled avalanche rectifiers
Product specification
Supersedes data of 1996 Oct 02
1997 Nov 24
1 page Philips Semiconductors
Ultra fast low-loss
controlled avalanche rectifiers
GRAPHICAL DATA
handbook2, .h0alfpage
I F(AV)
(A)
1.6
MGA849
20 15 10 lead length (mm)
1.2
0.8
0.4
0
0 100
BYV27-50 to 200
a = 1.42; VR = VRRMmax; δ = 0.5.
Switched mode application.
Ttp (oC)
200
Fig.2 Maximum permissible average forward
current as a function of tie-point temperature
(including losses due to reverse leakage).
Product specification
BYV27 series
handbook2, .h0alfpage
I F(AV)
(A)
1.6
MLC293
lead length 10 mm
1.2
0.8
0.4
0
0 100
BYV27-300 and 400
a = 1.42; VR = VRRMmax; δ = 0.5.
Switched mode application.
Ttp (oC)
200
Fig.3 Maximum permissible average forward
current as a function of tie-point temperature
(including losses due to reverse leakage).
3
handbook, halfpage
IF(AV)
(A)
2
lead length 10 mm
MGK648
2.0
handbook, halfpage
I F(AV)
(A)
1.6
1.2
MGA848
0.8
1
0.4
0
0 100
BYV27-500 and 600
a = 1.42; VR = VRRMmax; δ = 0.5.
Switched mode application.
Ttp (°C)
200
Fig.4 Maximum permissible average forward
current as a function of tie-point temperature
(including losses due to reverse leakage).
0
0 100
BYV27-50 to 200
a = 1.42; VR = VRRMmax; δ = 0.5.
Device mounted as shown in Fig. 25.
Switched mode application.
Tamb (oC)
200
Fig.5 Maximum permissible average forward
current as a function of ambient temperature
(including losses due to reverse leakage).
1997 Nov 24
5
5 Page Philips Semiconductors
Ultra fast low-loss
controlled avalanche rectifiers
handbook, h6alfpage
IF
(A)
4
MBH649
103
handbook, halfpage
IR
(µA)
102
Product specification
BYV27 series
MGC550
2 10
0
0
1
VF (V)
2
BYV27-500 and 600
Dotted line: Tj = 175 °C.
Solid line: Tj = 25 °C.
Fig.20 Forward current as a function of forward
voltage; maximum values.
1
0
100
Tj (°C)
200
VR = VRRMmax.
Fig.21 Reverse current as a function of junction
temperature; maximum values.
handbook1, 0ha2lfpage
Cd
(pF)
10
MLC295
handbook1, 0ha2lfpage
Cd
(pF)
10
MLC296
1
1 10 102 VR (V) 103
1
1 10 102 VR (V) 103
BYV27-50 to 200
f = 1 MHz; Tj = 25 °C.
Fig.22 Diode capacitance as a function of reverse
voltage; typical values.
BYV27-300 and 400
f = 1 MHz; Tj = 25 °C.
Fig.23 Diode capacitance as a function of reverse
voltage; typical values.
1997 Nov 24
11
11 Page |
Páginas | Total 16 Páginas | |
PDF Descargar | [ Datasheet BYV27-600.PDF ] |
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