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 J105 / J106 / J107 / JFTJ105
Discrete POWER & Signal Technologies
J105 J106 J107
JFTJ105
G
D G SD
TO-92
G
SOT-223
S
N-Channel Switch
This device is designed for analog or digital switching applications where very low On Resistance is mandatory. Sourced from Process 59.
Absolute Maximum Ratings*
Symbol
VDG VGS IGF TJ, Tstg Drain-Gate Voltage Gate-Source Voltage Forward Gate Current
TA = 25C unless otherwise noted
Parameter
Value
25 - 25 10 -55 to +150
Units
V V mA C
Operating and Storage Junction Temperature Range
*These ratings are limiting values above which the serviceability of any semiconductor device may be impaired.
NOTES: 1) These ratings are based on a maximum junction temperature of 150 degrees C. 2) These are steady state limits. The factory should be consulted on applications involving pulsed or low duty cycle operations.
Thermal Characteristics
Symbol
PD RJC RJA
TA = 25C unless otherwise noted
Characteristic
Total Device Dissipation Derate above 25C Thermal Resistance, Junction to Case Thermal Resistance, Junction to Ambient
Max
J105 / J106 / J107 350 2.8 125 357
Units
mW mW/C C/W C/W
(c)1997 Fairchild Semiconductor Corporation
J105 J106 J107 JFTJ105 J105 // J106 //J107 / /NDSJ105
N-Channel Switch
(continued)
Electrical Characteristics
Symbol Parameter
TA = 25C unless otherwise noted
Test Conditions
Min
Max
Units
OFF CHARACTERISTICS
V(BR)GSS IGSS VGS(off) Gate-Source Breakdown Voltage Gate Reverse Current Gate-Source Cutoff Voltage I G = - 10 A, VDS = 0 VGS = - 15 V, VDS = 0 VGS = - 15 V, VDS = 0, TA = 100C VDS = 15 V, ID = 10 nA J105 J106 J107 - 25 - 3.0 - 200 - 10 - 6.0 - 4.5 V nA nA V V V
- 4.5 - 2.0 - 0.5
ON CHARACTERISTICS
IDSS Zero-Gate Voltage Drain Current* VDS = 15 V, IGS = 0 VDS 0.1 V, VGS = 0 J105 J106 J107 J105 J106 J107 500 200 100 3.0 6.0 8.0 mA mA mA
rDS(on)
Drain-Source On Resistance
SMALL SIGNAL CHARACTERISTICS
Cdg(on) Csg(on) Cdg(off) Csg(off) Drain Gate & Source Gate On Capacitance Drain-Gate Off Capacitance Source-Gate Off Capacitance VDS = 0, VGS = 10 V, f = 1.0 MHz VDS = 0, VGS = 10 V, f = 1.0 MHz VDS = 0, VGS = 10 V, f = 1.0 MHz 160 35 35 pF pF pF
*Pulse Test: Pulse Width 300 s, Duty Cycle 2.0%
Typical Characteristics
Common Drain-Source Characteristics
200 ID - DRAIN CURRENT (mA) ID - DRAIN CURRENT (mA)
V =0 V GS -1V
Common Drain-Source Characteristics
50
V =0V GS - 0.1V T A = + 25 C
0
150
40 30
TYP V = -0.7V GS(OFF)
-2V
- 0.2V
100
-3V
20 10 0
- 0.3V
50
-4V -5V
T
A
= + 25 C
0
-0.4V - 0.5V
TYP V = -5V GS(OFF)
0
0
0.5 1 1.5 VDS - DRAIN-SOURCE VOLTAGE(V)
2
0
1 2 3 4 VDS - DRAIN-SOURCE VOLTAGE(V)
5
J105 / J106 / J107 / JFTJ105
N-Channel Switch
(continued)
Typical Characteristics
(continued)
Parameter Interactions
)
Capacitance vs Voltage
2,000
f=0.1-1.0MHz
200
r
rDS - DRAIN "ON" RESISTANCE (
50 20 10 5 2
V @ VDS = 5.0V, ID =3nA GS(OFF)
I D- DRAIN CURRENT (mA)
100
DS
1,000
I DSS
Cis (Crs) - CAPACITANCE (pf)
@ VDS=100MV, VGS = 0
C
500 200 100
is
(V
DS
= 5V)
20 10 5
C
rs
( V DS = 0 V )
r
DS
50 20
1 0.1
0.2 0.3 0.5 1 23 5 V GS - GATE CUT OFF VOLTAGE (V)
10 10
1
0
-5 -10 -15 V GS - GATE-SOURCE VOLTAGE (V)
-20
--- NORMALIZED RESISTANCE
Normalized Drain Resistance vs Bias Voltage
) 20 10 5
V GS(OFF) @5V, 10uA r rDS = --------------V GS 1 - ---------V
On Resistance vs Drain Current
r DS - DRAIN "ON" RESISTANCE (
V GS =0
V
20 10 5
= - 3.0V GS(OFF)
DSb
0
+125 C +125 C
0 0
GS(OFF)
+25 C +25 C - 55 C V = - 5.0V GS(OFF)
0 0
1 0 0.2 0.4 0.6 0.8 1 V GS / VGS(OFF) NORMALIZED GATE TO SOURCE VOLTAGE (V) -0.5
r DSb
1
1
2
3 5 10 20 30 I D - DRAIN CURRENT (mA)
50
100
OUTPUT CONDUCTANCE (u mhos)
- TRANSCONDUCTANCE (u mhos)
Output Conductance vs Drain Current
V DG = 5.0V 10V 15V 20V 10V 15V 20V 5.0V 10V 15V 20V 5.0V V
Transconductance vs Drain Current
V DG = 10.0V T A = +25
0
C
f = 1.0 k Hz
T = - 55 C A T A= +25 0 C 0 TA = +125 C
0
GS(OFF)
20 10
-4.0V
20 10
V = - 1.0V GS(OFF)
-2.0V
5
T A = +25 -1.0V f = 1.0 K Hz
0
5
V
C
= - 3.0V GS(OFF) = - 5.0V GS(OFF)
V
os -
g
1 0.1
fs
0.2 0.3 0.5 1 2 3 I D - DRAIN CURRENT (mA)
5
10
1 0.1
g
0.2 0.3 0.5 1 2 3 I D - DRAIN CURRENT (mA)
5
10
J105 / J106 / J107 / JFTJ105
N-Channel Switch
(continued)
Typical Characteristics
(continued)
Noise Voltage vs Frequency
Hz
Power Dissipation vs Ambient Temperature
PD - POWER DISSIPATION (mW) 350 300 250 200 150 100 50 0 0 25 50 75 100 TEMPERATURE ( oC) 125 150
20
V DG = 10 V BW = 6.0 Hz @ f = 10Hz, 100 Hz = 0.2f @ f > 1.0 k Hz
en - NOISE VOLTAGE (nV/
)
15
TO-92
10
I = 1 mA
D
5
ID = 10 mA
0 0.01
0.03
0.1
0.3 1 3 10 f - FREQUENCY (k Hz)
30
100


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