TC1550 DATA SHEET (09/16/2008) DOWNLOAD

TC1550
N- and P-Channel
Enhancement-Mode Dual MOSFET
Features
General Description
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The Supertex TC1550 consists of a high voltage N-channel and
P-channel MOSFET in an 8-Lead SOIC package. This is an
enhancement-mode (normally-off) transistor utilizing an advanced
vertical DMOS structure and Supertex’s well-proven silicon-gate
manufacturing process. This combination produces a device with
the power handling capabilities of bipolar transistors and with the
high input impedance and positive temperature coefficient inherent
in MOS devices. Characteristic of all MOS structures, this device
is free from thermal runaway and thermally induced secondary
breakdown.
500V breakdown voltage
Independent N- and P-channels
Electrically isolated N- and P-channels
Low input capacitance
Fast switching speeds
Free from secondary breakdowns
Low input and output leakage
Applications
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High voltage pulsers
Amplifiers
Buffers
Piezoelectric transducer drivers
General purpose line drivers
Supertex’s vertical DMOS FETs are ideally suited to a wide range
of switching and amplifying applications where very low threshold
voltage, high breakdown voltage, high input impedance, low input
capacitance, and fast switching speeds are desired.
Ordering Information
Package Option
Device
TC1550
RDS(ON)
BVDSS/BVDGS
8-Lead SOIC
(Max)
4.90x3.90mm body
1.75mm height (max)
1.27mm pitch
N-Channel
P-Channel
N-Channel
P-Channel
(V)
(V)
(Ω)
(Ω)
TC1550TG-G
500
-500
60
125
-G indicates package is RoHS compliant (‘Green’)
Pin Configuration
DP
DN
DN
DP
Absolute Maximum Ratings
Parameter
Value
Drain-to-source voltage
BVDSS
Drain-to-gate voltage
BVDGS
Gate-to-source voltage
±20V
Operating and storage temperature
Soldering temperature
-55°C to + 150°C
300°C
*
Absolute Maximum Ratings are those values beyond which damage to the device
may occur. Functional operation under these conditions is not implied. Continuous
operation of the device at the absolute rating level may affect device reliability. All
voltages are referenced to device ground.
*
SN
SP
GN
GP
8-Lead SOIC (TG)
(top view)
Product Marking
YYWW
C1550
LLLL
YY = Year Sealed
WW = Week Sealed
L = Lot Number
= “Green” Packaging
8-Lead SOIC (TG)
Distance of 1.6mm from case for 10 seconds.
● 1235 Bordeaux Drive, Sunnyvale, CA 94089 ● Tel: 408-222-8888 ● www.supertex.com
TC1550
N-Channel Electrical Characteristics (T = 25°C unless otherwise specified)
A
Sym
Parameter
Min
Typ
Max
Units
BVDSS
Drain-to-source breakdown voltage
500
-
-
V
VGS = 0V, ID = 1.0mA
VGS(th)
Gate threshold voltage
2.0
-
4.0
V
VGS = VDS, ID =1.0mA
Change in VGS(th) with temperature
-
-3.8
-5.0
mV/OC
VGS = VDS, ID = 1.0mA
Gate body leakage current
-
-
100
nA
VGS = ±20V, VDS = 0V
-
-
10
µA
VGS = 0V, VDS = Max Rating
-
-
1.0
mA
VDS = 0.8 Max Rating,
VGS = 0V, TA = 125°C
-
100
-
150
350
-
ΔVGS(th)
IGSS
Conditions
IDSS
Zero gate voltage drain current
ID(ON)
On-state drain current
RDS(ON)
Static drain-to-source
on-state resistance
-
45
-
-
40
60
Change in RDS(ON) with temperature
-
1.0
1.7
%/OC
VGS = 10V, ID = 50mA
50
100
-
mmho
VDS = 25V, ID =50mA
ΔRDS(ON)
GFS
Forward transconductance
CISS
Input capacitance
-
45
55
COSS
Common source output capacitance
-
8.0
10
CRSS
Reverse transfer capacitance
-
2.0
5.0
td(ON)
Turn-on delay time
-
-
10
Rise time
-
-
15
Turn-off delay time
-
-
10
Fall time
-
-
10
Diode forward voltage drop
-
0.8
Reverse recovery time
-
300
tr
td(OFF)
tf
VSD
trr
mA
Ω
VGS = 5.0V, VDS = 25V
VGS = 10V, VDS = 25V
VGS = 5.0V, ID = 50mA
VGS = 10V, ID = 50mA
pF
VGS = 0V,
VDS = 25V,
f = 1.0MHz
ns
VDD = 25V,
ID = 150mA,
RGEN = 25Ω
-
V
VGS = 0V, ISD = 500mA
-
ns
VGS = 0V, ISD = 500mA
Notes:
1. All DC parameters 100% tested at 25°C unless otherwise stated. (Pulsed test: 300µs pulse at 2% duty cycle.)
2. All AC parameters sample tested.
N-Channel Switching Waveforms and Test Circuit
10V
RL
90%
Input
0V
Pulse
Generator
10%
t(ON)
td(ON)
VDD
t(OFF)
tr
10%
td(OFF)
VDD
RGEN
tf
10%
OUTPUT
D.U.T.
Input
Output
0V
90%
90%
● 1235 Bordeaux Drive, Sunnyvale, CA 94089 ● Tel: 408-222-8888 ● www.supertex.com
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TC1550
P-Channel Electrical Characteristics (T = 25°C unless otherwise specified)
A
Sym
Parameter
Min
Typ
Max
Units
BVDSS
Drain-to-source breakdown voltage
-500
-
-
V
VGS = 0V, ID = -1.0mA
VGS(th)
Gate threshold voltage
-2.0
-
-4.5
V
VGS = VDS, ID = -1.0mA
Change in VGS(th) with temperature
-
3.5
6.0
mV/OC
VGS = VDS, ID = -1.0mA
Gate body leakage current
-
-
100
nA
VGS = ±20V, VDS = 0V
-
-
-10
µA
VGS = 0V, VDS = Max Rating
-
-
-1.0
mA
VDS = 0.8 Max Rating,
VGS = 0V, TA = 125°C
-
-90
-
-100
-240
-
ΔVGS(th)
IGSS
Conditions
IDSS
Zero gate voltage drain current
ID(ON)
On-state drain current
RDS(ON)
Static drain-to-source
on-state resistance
-
85
-
-
80
125
Change in RDS(ON) with temperature
-
0.85
-
%/OC
VGS = -10V, ID = -10mA
25
40
-
mmho
VDS = -25V, ID = -10mA
ΔRDS(ON)
GFS
Forward transconductance
CISS
Input capacitance
-
40
70
COSS
Common source output capacitance
-
10
20
CRSS
Reverse transfer capacitance
-
3.0
10
td(ON)
Turn-on delay time
-
5.0
10
Rise time
-
8.0
10
Turn-off delay time
-
8.0
15
Fall time
-
5.0
16
Diode forward voltage drop
-
-0.8
Reverse recovery time
-
200
tr
td(OFF)
tf
VSD
trr
mA
Ω
VGS = -5.0V, VDS = -25V
VGS = -10V, VDS = -25V
VGS = -5.0V, ID = -5.0mA
VGS = -10V, ID = -10mA
pF
VGS = 0V,
VDS = -25V,
f = 1.0MHz
ns
VDD = -25V,
ID = -100mA,
RGEN = 25Ω
-1.5
V
VGS = 0V, ISD = -100mA
-
ns
VGS = 0V, ISD = -100mA
Notes:
1. All DC parameters 100% tested at 25°C unless otherwise stated. (Pulsed test: 300µs pulse at 2% duty cycle.)
2. All AC parameters sample tested.
P-Channel Switching Waveforms and Test Circuit
0V
Pulse
Generator
10%
Input
-10V
t(ON
)
td(ON)
0V
Output
VDD
RGEN
90%
D.U.T.
t(OFF)
tr
td(OFF)
90%
10%
tf
Input
OUTPUT
90%
10%
RL
VDD
● 1235 Bordeaux Drive, Sunnyvale, CA 94089 ● Tel: 408-222-8888 ● www.supertex.com
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TC1550
Typical Application Circuit
+250V
+12V
VDD1
VDD2
OE
3.3V CMOS
Logic Inputs
0.47µF
VH
INA
OUTA
INB
OUTB
GND VSS1 VSS2 VL
15V
10nF
250V
Piezoelectric
Transducer
10nF
250V
15V
-250V
Supertex
TC1550TG
Supertex
MD1213K6
Block Diagram
SN 1
8 DN
N-Channel
GN 2
7 DN
3
6 DP
SP
P-Channel
GP 4
5 DP
● 1235 Bordeaux Drive, Sunnyvale, CA 94089 ● Tel: 408-222-8888 ● www.supertex.com
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TC1550
8-Lead SOIC (Narrow Body) Package Outline (TG)
4.90x3.90mm body, 1.75mm height (max), 1.27mm pitch
D
θ1
8
E
E1
L2
Note 1
(Index Area
D/2 x E1/2)
L
1
Top View
View B
A
Note 1
A
θ
L1
Seating
Plane
View B
h
h
A2
Gauge
Plane
Seating
Plane
b
e
A1
A
Side View
View A-A
Note:
1. This chamfer feature is optional. If it is not present, then a Pin 1 identifier must be located in the index area indicated. The Pin 1 Identifier can be:
a molded mark/identifier; an embedded metal marker; or a printed indicator.
Symbol
Dimension
(mm)
A
A1
A2
b
MIN
1.35*
0.10
1.25
0.31
NOM
-
-
-
-
MAX
1.75
0.25
1.65*
0.51
D
E
E1
4.80* 5.80* 3.80*
4.90
6.00
3.90
5.00* 6.20* 4.00*
e
1.27
BSC
h
L
0.25
0.40
-
-
0.50
1.27
L1
1.04
REF
L2
0.25
BSC
θ
θ1
0
5O
O
-
-
8
15O
O
JEDEC Registration MS-012, Variation AA, Issue E, Sept. 2005.
* This dimension is not specified in the original JEDEC drawing. The value listed is for reference only.
Drawings are not to scale.
Supertex Doc. #: DSPD-8SOLGTG, Version G090808.
(The package drawing(s) in this data sheet may not reflect the most current specifications. For the latest package outline
information go to http://www.supertex.com/packaging.html.)
Supertex inc. does not recommend the use of its products in life support applications, and will not knowingly sell them for use in such applications unless it receives an
adequate “product liability indemnification insurance agreement.” Supertex inc. does not assume responsibility for use of devices described, and limits its liability to the
replacement of the devices determined defective due to workmanship. No responsibility is assumed for possible omissions and inaccuracies. Circuitry and specifications
are subject to change without notice. For the latest product specifications refer to the Supertex inc. website: http//www.supertex.com.
©2008
Doc.# DSFP-TC1550
A091608
All rights reserved. Unauthorized use or reproduction is prohibited.
1235 Bordeaux Drive, Sunnyvale, CA 94089
Tel: 408-222-8888
www.supertex.com
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