MX879R IXYS, MX879R Datasheet - Page 209

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MX879R

Manufacturer Part Number
MX879R
Description
IC DVR RELAY/LOAD 8CH 60V 28-QFN
Manufacturer
IXYS
Datasheets

Specifications of MX879R

Input Type
Parallel/Serial
Number Of Outputs
8
Current - Output / Channel
120mA
Voltage - Supply
6 V ~ 60 V
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
28-QFN
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
On-state Resistance
-
Current - Peak Output
-
Medium Voltage Thyristors - Capsule Types
Medium voltage applications place additional demands on phase controlled thyristors. To meet these demands we have developed a comprehensive
range of thyristors optimised for medium voltage applications. As voltages increase, so do switching losses and turn-off time to a point where they
become significant in line frequency applications. Our patented distributed gate architecture ensures excellent switching performance over a wide
range of voltage, current and di/dt. Device lifetime is also engineered to achieve an optimum balance between conduction losses, commutation
losses and turn-off time to give maximum power handling from line frequency to 400 Hz. This also gives significant benefits when series or parallel
connection of devices is required. Medium voltage thyristors are available from 3.2 kV up to 6.5 kV with silicon diameters from 38 mm to 100 mm
making them particularly suitable for high power converters such as medium voltage DC drives, medium voltage soft starts and utility applications
such as HVDC, static VAr compensators, excitation and transfer switches.
We recognise the importance of reliability in these large, capital intensive applications and as a result we subject these parts to extended levels of
both routine and type testing to ensure that your investment gives years of trouble free service.
Ø
Ø K0349LG600
Ø K0349LG650
Ø K0443LC600
Ø K0443LC650
Ø K0443LG600
Ø K0443LG650
Ø K0682LC360 KX190LC360 3600
Ø K0682LC420 KX190LC420 4200
Ø K0682LG360
Ø K0682LG420
Ø K0769NG600
Ø K0769NG650
Ø K1120NC360 KX192NC360 3600 1120
Ø K1120NC420 KX192NC420 4200 1120
Ø K1120NG360
Ø K1120NG420
Ø K2065VC360 KX162VC360 3600 2065
Ø K2065VC420 KX162VC420 4200 2065
Ø K2065VF360 KX162VF360 3600 2065
Ø K2065VF420 KX120VF650 4200 2065
Part No.
New
K0349LC600
K0349LC650
K0769NC600
K0769NC650
K0890NC360 R295CH36
K0890NC420 R295CH42
K1121NC320
K1121NC360
K1197NC300
K1197NC320
K1351VC600 KX120VC600 6000 1351
K1351VC650 KX120VC650 6500 1351
K1351VF600 KX120VF600 6000 1351
K1351VF650 KX120VF650 6500 1351
K1947ZC400
K1947ZC440
K1947ZD400
K1947ZD440
K2095ZC360
K2095ZC420
K2095ZD360
K2095ZD420
K2359TC600 P1063CH60 6000 2359
K2359TC650 P1063CH65 6500 2359
K2359TD600
K2359TD650
K2623TC450 R1263CH45 4500 2623
K2623TC480 R1263CH48 4800 2623
K2623TC520 R1263CH52 5200 2623
K2623TD450
K2623TD480
K2623TD520
Type
Old Part No.
P201CH60
P201CH65
P410CH60
P410CH65
P440CH32
P440CH36
P480CH30
P480CH32
P855CH40
P855CH44
P855DH40
P855DH44
P880CH36
P880CH42
P880DH36
P880DH42
N/A
N/A
N/A
N/A
N/A
N/A
N/A
N/A
N/A
N/A
N/A
N/A
N/A
N/A
N/A
N/A
N/A
6000
6500
6000
6500
6000
6500
6000
6500
3600
4200
6000
6500
6000
6500
3600
4200
3600 1120
4200 1120
3200 1121
3600 1121
3000 1197
3200 1197
4000 1947
4400 1947
4000 1947
4400 1947
3600 2095
4200 2095
3600 2095
4200 2095
6000 2359
6500 2359
4500 2623
4800 2623
5200 2623
V
V
DRM
RRM
V
55°C
T
I
349
349
349
349
443
443
443
443
682
682
682
682
769
769
769
769
890
890
TAV
A
K
=
10900
10900
13500
13500
13500
13500
15000
15000
10646
10646
14300
14300
14300
14300
25000
25000
25000
25000
28000
28000
28000
28000
18200
18200
18200
18200
27000
27000
27000
27000
27000
27000
27000
27000
27000
27000
4800
4800
4800
4800
4800
4800
4800
4800
6350
6350
6350
6350
8600
8600
8600
8600
I
TSM
V
A
10 ms ½ sine
R
< 60% V
1.13 x 10
1.13 x 10
1.02 × 10
1.02 × 10
1.02 × 10
1.02 × 10
3.13 × 10
3.13 × 10
3.13 × 10
3.13 × 10
3.92 x 10
3.92 x 10
3.92 x 10
3.92 x 10
1.66 × 10
1.66 × 10
1.66 × 10
1.66 × 10
3.65 × 10
3.65 × 10
3.65 × 10
3.65 × 10
3.65 × 10
3.65 × 10
3.65 × 10
3.65 × 10
3.65 × 10
3.65 × 10
115 x 10
115 x 10
115 x 10
115 x 10
115 x 10
115 x 10
115 x 10
115 x 10
202 x 10
202 x 10
202 x 10
202 x 10
370 x 10
370 x 10
370 x 10
370 x 10
594 × 10
594 × 10
911 x 10
911 x 10
911 x 10
911 x 10
567 x 10
567 x 10
A
I
2
RRM
2
t
s
3
3
3
3
3
3
3
3
3
3
3
3
3
3
3
3
3
3
3
3
3
3
3
3
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
1100-1500 6800 2000
1100-1500 6800 2000
1100-1500 6800 2000
1100-1500 6800 2000
900-1200 2100 1000
900-1200 2100 1000
900-1200 2100 1000
900-1200 2100 1000
900-1200 2100 1000
900-1200 2100 1000
900-1200 2100 1000
900-1200 2100 1000
900-1200 2050 1000
900-1200 2050 1000
900-1200 2050 1000
900-1200 2050 1000
650-1000 2600 1000
650-1000 2600 1000
650-1000 2600 1000
650-1000 2600 1000
800-1500 4500 2000
800-1500 4500 2000
800-1500 4500 2000
800-1500 4500 2000
500-1000 2600 2000
500-1000 2600 2000
500-1000 2600 2000
500-1000 2600 2000
500-1000 2600 2000
500-1000 2600 2000
200 V/µs
650-800
650-800
650-800
650-800
350-550
350-550
400-500
400-500
200-300
200-300
600-700
600-700
600-700
600-700
400-700
400-700
400-700
400-700
400-500
400-500
400-500
400-500
µs
@
t
q
1050 1000
1050 1000
1050 1000
1050 1000
1500 1000
1500 1000
1000 1000
1000 1000
1400 1000
1400 1000
3500 1000
3500 1000
3500 1000
3500 1000
4300 2000
4300 2000
4300 2000
4300 2000
2400 2000
2400 2000
2400 2000
2400 2000
Recovery Charge
Q
µC
T
ra
JM
Typ. Reverse
, 50% Chord
@ I
A
TM
@-di/dt
A/µs
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
1.568 2.428 115 0.0470 0.0490 W10
1.568 2.428 115 0.0470 0.0490 W10
1.568 2.428 115 0.0470 0.0490 W56
1.568 2.428 115 0.0470 0.0490 W56
1.568 2.428 115 0.0320 0.0388 W10
1.568 2.428 115 0.0 320 0.0388 W10
1.568 2.428 115 0.0320 0.0388 W56
1.568 2.428 115 0.0320 0.0388 W56
1.211 1.182 125 0.0320 0.0388 W10
1.211 1.182 125 0.0320 0.0388 W10
1.211 1.182 125 0.0320 0.0388 W56
1.211 1.182 125 0.0320 0.0388 W56
1.566 1.172 115 0.0240 0.0290 W11
1.566 1.172 115 0.0240 0.0290 W11
1.566 1.172 115 0.0240 0.0290 W57
1.566 1.172 115 0.0240 0.0290 W57
1.516 0.800 125 0.0240 0.0290 W11
1.516 0.800 125 0.0240 0.0290 W11
1.092 0.546 125 0.0240 0.0271 W11
1.092 0.546 125 0.0240 0.0271 W11
1.092 0.546 125 0.0240 0.0271 W57
1.092 0.546 125 0.0240 0.0271 W57
1.098 0.542 125 0.0240 0.0290 W11
1.098 0.542 125 0.0240 0.0290 W11
1.210 0.430 125 0.0240 0.0290 W11
1.210 0.430 125 0.0240 0.0290 W11
1.410 0.600 115 0.0130 0.0145 W12
1.410 0.600 115 0.0130 0.0145 W12
1.410 0.600 115 0.0130 0.0145 W62
1.410 0.600 115 0.0130 0.0145 W62
1.221 0.425 125 0.0110 0.0119 W13
1.221 0.425 125 0.0110 0.0119 W13
1.221 0.425 125 0.0110 0.0119 W46
1.221 0.425 125 0.0110 0.0119 W46
1.121 0.291 125 0.0130 0.0145 W12
1.121 0.291 125 0.0130 0.0145 W12
1.121 0.291 125 0.0130 0.0145 W62
1.121 0.291 125 0.0130 0.0145 W62
1.502 0.296 125 0.0110 0.0119 W13
1.502 0.296 125 0.0110 0.0119 W13
1.502 0.296 125 0.0110 0.0119 W46
1.502 0.296 125 0.0110 0.0119 W46
1.391 0.360 115 0.0085 0.0092 W14
1.391 0.360 115 0.0085 0.0092 W14
1.391 0.360 115 0.0085 0.0092 W51
1.391 0.360 115 0.0085 0.0092 W51
1.421 0.295 125 0.0080 0.0089 W14
1.421 0.295 125 0.0080 0.0089 W14
1.421 0.295 125 0.0080 0.0089 W14
1.421 0.295 125 0.0080 0.0089 W51
1.421 0.295 125 0.0080 0.0089 W51
1.421 0.295 125 0.0080 0.0089 W51
V
V
T0
@ T
JM
mW
r
T
WESTCODE
T
°C
JM
180°
Sine
K/W
R
thJK
Rect.
120°
K/W
Fig.
No.
187

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