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 2N5545/46/47/JANTX/JANTXV
Vishay Siliconix
Monolithic N-Channel JFET Duals
PRODUCT SUMMARY
Part Number
2N5545 2N5546 2N5547
VGS(off) (V)
-0.5 to -4.5 -0.5 to -4.5 -0.5 to -4.5
V(BR)GSS Min (V)
-50 -50 -50
gfs Min (mS)
1.5 1.5 1.5
IG Max (pA)
-50 -50 -50
jVGS1 - VGS2j Max (mV)
5 10 15
FEATURES
D D D D D D Monolithic Design High Slew Rate Low Offset/Drift Voltage Low Gate Leakage: 3 pA Low Noise High CMRR: 100 dB
BENEFITS
D Tight Differential Match vs. Current D Improved Op Amp Speed, Settling Time Accuracy D Minimum Input Error/Trimming Requirement D Insignificant Signal Loss/Error Voltage D High System Sensitivity D Minimum Error with Large Input Signal
APPLICATIONS
D Wideband Differential Amps D High-Speed, Temp-Compensated, Single-Ended Input Amps D High-Speed Comparators D Impedance Converters
DESCRIPTION
The 2N5545/5546/5547JANTX/JANTXV are monolithic dual n-channel JFETs designed to provide high input impedance (IG < 50 pA) for general-purpose differential amplifiers. The 2N5545 features minimum system error and calibration (5 mV offset maximum).
TO-71
S1 1 D1 6
G2
2
5
D2
3 G1 Top View
4 S2
ABSOLUTE MAXIMUM RATINGS
Gate-Drain, Gate-Source Voltage . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . -50 V Gate Current . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 30 mA Lead Temperature (1/16" from case for 10 sec.) . . . . . . . . . . . . . . . . . . . 300_C Storage Temperature . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . -65 to 200_C Operating Junction Temperature . . . . . . . . . . . . . . . . . . . . . . . . . . -55 to 150_C Power Dissipation : Per Sidea . . . . . . . . . . . . . . . . . . . . . . . . 250 mW Totalb . . . . . . . . . . . . . . . . . . . . . . . . . . . 500 mW
Notes a. Derate 2 mW/_C above 25_C b. Derate 4 mW/_C above 25_C
Document Number: 70253 S-04031--Rev. C, 04-Jun-01
www.vishay.com
8-1
2N5545/46/47/JANTX/JANTXV
Vishay Siliconix
SPECIFICATIONS (TA = 25_C UNLESS OTHERWISE NOTED)
Limits
2N5545 2N5546 2N5547
Parameter Static
Gate-Source Breakdown Voltage Gate-Source Cutoff Voltage Saturation Drain Currentb Gate Reverse Current Gate Operating Current Gate-Source Forward Voltage
Symbol
Test Conditions
Typa
Min Max
Min
Max
Min
Max
Unit
V(BR)GSS VGS(off) IDSS IGSS IG VGS(F)
IG = -1 mA, VDS = 0 V VDS = 15 V, ID = 0.5 nA VDS = 15 V, VGS = 0 V VGS = -30 V, VDS = 0 V TA = 150_C VDG = 15 V, ID = 200 mA IG = 1 mA , VDS = 0 V
-57 -2 3 -10 -20 -3 0.7
-50 -0.5 0.5 -4.5 8 -100 -150 -50
-50 -0.5 0.5 -4.5 8 -100 -150 -50
-50 V -0.5 0.5 -4.5 8 -100 -150 -50 mA pA nA pA V
Dynamic
Common-Source Forward Transconductanceb Common-Source Output Conductanceb Common-Source Input Capacitance Common-Source Reverse Transfer Capacitance Equivalent Input Noise Voltage Noise Figure gfs gos Ciss Crss en NF 2.5 VDS = 15 V, VGS = 0 V f = 1 kHz 2 3.5 VDS = 15 V, VGS = 0 V f = 1 MHz VDS = 15 V, ID = 200 mA f = 10 Hz RG = 1 MW 1.3 20 0.1 1.5 6.0 25 6 2 180 3.5 1.5 6.0 25 6 2 200 5 1.5 6.0 25 6 pF 2 nV Hz dB mS mS
Matching
Differential Gate-Source Voltage Gate-Source Voltage Differential Change with Temperature Saturation Drain Current Ratioc Transconductance Ratioc |V G7S1 - V GS2| D|V GS1 - V GS2| DT I DSS1 I DSS2 gfs1 gfs2 |g os1 - gos2| VDG = 15 V, ID = 50 mA VDG = 15 V, ID = 200 mA VDG = 15 V, ID = 200 mA TA = -55 to 125_C VDS = 15 V, VGS = 0 V VDS = 15 V, ID = 200 mA f = 1 kHz VDG = 15 V, VGS = 0 V f = 1 kHz VDG = 15 V, ID = 200 mA TA = 125_C 0.98 0.95 5 5 10 10 10 20 15 15 40 mV mV/ _C
1
0.9
1
0.9
1
0.99
0.97
1
0.95
1
0.9
1
Differential Output Conductance
0.1
1
2
3
mS
Differential Gate Current
|I G1 - I G2|
1
5
5
5
nA
Notes a. Typical values are for DESIGN AID ONLY, not guaranteed nor subject to production testing. b. Pulse test: PW v300 ms duty cycle v3%. c. Assumes smaller value in the numerator.
NQP
www.vishay.com
8-2
Document Number: 70253 S-04031--Rev. C, 04-Jun-01
2N5545/46/47/JANTX/JANTXV
Vishay Siliconix
TYPICAL CHARACTERISTICS (TA = 25_C UNLESS OTHERWISE NOTED)
Drain Current and Transconductance vs. Gate-Source Cutoff Voltage
5 IDSS - Saturation Drain Current (mA) 3 gfs - Forward Transconductance (mS) 100 nA IG @ ID = 200 mA 10 nA TA = 125_C IG - Gate Leakage 1 nA IGSS @ 125_C 100 pA 200 mA 50 mA 50 mA
Gate Leakage Current
4 gfs 3
IDSS
2.6
2.2
2
1.8
10 pA TA = 25_C 1 pA
IGSS @ 25_C
1
IDSS @ VDS = 15 V, VGS = 0 V gfs @ VDG = 15 V, VGS = 0 V f = 1 kHz
1.4
0 0 -1 -2 -3 -4 -5
1
0.1 pA 0 10 20 30 40 50 VDG - Drain-Gate Voltage (V)
VGS(off) - Gate-Source Cutoff Voltage (V)
Output Characteristics
5 VGS(off) = -2 V 4 ID - Drain Current (mA) ID - Drain Current (mA) 4 5
Output Characteristics
VGS(off) = -3 V VGS = 0 V -0.3 V -0.6 V 3 -0.9 V 2 -1.2 V -1.5 V 1 -1.8 V -2.1 V 0 20 0 4 8 12 -2.4 V 16 20
3
VGS = 0 V -0.2 V
2
-0.4 V -0.6 V
1
-1.0 V -1.2 V
-0.8 V
0 0 4 8 12 16
-1.4 V
VDS - Drain-Source Voltage (V)
VDS - Drain-Source Voltage (V)
Output Characteristics
2 VGS(off) = -2 V 1.6 ID - Drain Current (mA) VGS = 0 V -0.2 V -0.4 V 1.2 -0.6 V -0.8 V 0.8 -1.0 V 0.4 -1.2 V -1.4 V 0 0 0.2 0.4 0.6 0.8 -1.6 V 1 VDS - Drain-Source Voltage (V) Document Number: 70253 S-04031--Rev. C, 04-Jun-01 0 0 0.2 ID - Drain Current (mA) 2.0 2.5
Output Characteristics
VGS(off) = -3 V VGS = 0 V -0.3 V -0.6 V -0.9 V 1.5 -1.2 V 1.0 -1.5 V -1.8 V 0.5 -2.1 V -2.4 V
0.4
0.6
0.8
1
VDS - Drain-Source Voltage (V) www.vishay.com
8-3
2N5545/46/47/JANTX/JANTXV
Vishay Siliconix
TYPICAL CHARACTERISTICS (TA = 25_C UNLESS OTHERWISE NOTED)
Transfer Characteristics
5 VGS(off) = -2 V 4 ID - Drain Current (mA) (mV) VDS = 10 V 100 VDG = 15 V TA = 25_C
Gate-Source Differential Voltage vs. Drain Current
VGS1 - VGS2
3
TA = -55_C
2N5547 10 2N5545
25_C 2
1
125_C
0 0 -0.5 -1.0 -1.5 -2.0 -2.5 VGS - Gate-Source Voltage (V)
1 0.01 0.1 ID - Drain Current (mA) 1
Voltage Differential with Temperature vs. Drain Current
100 VDG = 15 V DTA = 25 to 125_C DTA = -55 to 25_C 130
Common Mode Rejection Ratio vs. Drain Current
DVDG DV GS1 - VGS2
( m V/ _C )
CMRR = 20 log 120
CMRR (dB)
2N5547 10
VGS1 - VGS2
110 DVDG = 10 - 20 V 100 5 - 10 V 90
Dt
2N5545
D
1 0.01
80 0.1 ID - Drain Current (mA) 1 0.01 0.1 ID - Drain Current (mA) 1
Circuit Voltage Gain vs. Drain Current
100 rDS(on) - Drain-Source On-Resistance ( ) 1k
On-Resistance vs. Drain Current
80 AV - Voltage Gain
800
60 VGS(off) = -3 V VGS(off) = -2 V 40 AV + 20 g fs R L 1 ) R Lg os 10 V ID 0.1 ID - Drain Current (mA) 1
600 VGS(off) = -2 V 400 VGS(off) = -3 V
Assume VDD = 15 V, VDS = 5 V RL +
200
0 0.01
0 0.01 0.1 ID - Drain Current (mA) Document Number: 70253 S-04031--Rev. C, 04-Jun-01 1
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8-4
2N5545/46/47/JANTX/JANTXV
Vishay Siliconix
TYPICAL CHARACTERISTICS (TA = 25_C UNLESS OTHERWISE NOTED)
Common-Source Input Capacitance vs. Gate-Source Voltage
10 C rss - Reverse Feedback Capacitance (pF) f = 1 MHz 8 5 f = 1 MHz 4
Common-Source Reverse Feedback Capacitance vs. Gate-Source Voltage
C iss - Input Capacitance (pF)
6 VDS = 0 V 4 5V
3
VDS = 0 V 5V
2
2 15 V 0 0 -4 -8 -12 -16 -20 VGS - Gate-Source Voltage (V)
1
15 V
0 0 -4 -8 -12 -16 -20 VGS - Gate-Source Voltage (V)
Equivalent Input Noise Voltage vs. Frequency
20 VDS = 10 V Hz 16 ID @ 200 mA 12 gos - Output Conductance (S) 2.0 2.5
Output Conductance vs. Drain Current
VGS(off) = -2 V VDS = 15 V f = 1 kHz
en - Noise Voltage nV /
1.5 TA = -55_C 1.0 25_C
8
VGS = 0 V
4
0.5 125_C 0 0.01
0 10 100 1k f - Frequency (Hz) 10 k 100 k
0.1 ID - Drain Current (mA)
1
Common-Source Forward Transconductance vs. Drain Current
2.5 rDS(on) - Drain-Source On-Resistance ( ) VGS(off) = -2 V gfs - Forward Transconductance (mS) 2.0 TA = -55_C 1.5 25_C 1.0 VDS = 15 V f = 1 kHz 1k
On-Resistance and Output Conductance vs. Gate-Source Cutoff Voltage
10
800
gos
8
g os- Output Conductance ( mS)
600
6
400
rDS
4
0.5
200 rDS @ ID = 100 mA, VGS = 0 V gos @ VDS = 15 V, VGS = 0 V, f = 1 kHz 0
2
125_C
0 0.01 0.1 ID - Drain Current (mA) 1
0 0 -1 -2 -3 -4 -5
VGS(off) - Gate-Source Cutoff Voltage (V)
Document Number: 70253 S-04031--Rev. C, 04-Jun-01
www.vishay.com
8-5
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