PN5115 Micross, PN5115 Datasheet

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PN5115

Manufacturer Part Number
PN5115
Description
Switching
Manufacturer
Micross
Datasheet
PN5115 ELECTRICAL CHARACTERISTICS @ 25°C (unless otherwise noted)
PN5115 DYNAMIC ELECTRICAL CHARACTERISTICS @ 25°C (unless otherwise noted) 
PN5115 SWITCHING CHARACTERISTICS @ 25°C (unless otherwise noted) 
PN5115 SWITCHING CIRCUIT PARAMETERS                                                                                                                          
PN5115 Benefits:
Micross Components Europe
Information furnished by Linear Integrated Systems and Micross Components is believed to be accurate and reliable. However, no responsibility is assumed for its use; nor for any infringement of patents or
other rights of third parties which may result from its use. No license is granted by implication or otherwise under any patent or patent rights of Linear Integrated Systems.
This analog switch is designed for inverting switching
into inverting input of an Operational Amplifier.
The TO-92 provides a low cost option and ease of
manufacturing.
(See Packaging Information).
PN5115 Applications:
Note 1 ‐ Absolute maximum ratings are limiting values above which PN5115 serviceability may be impaired.  Note 2 – Pulse test: PW≤ 300 µs, Duty Cycle ≤ 3% 
SYMBOL 
SYMBOL 
SYMBOL 
V
V
r
r
BV
V
I
t
t
I
DS(on)
DS(on)
V
GS(off)
DS(on)
I
I
D(off)
C
V
D(on)
C
d(on)
d(off)
g
GS(F)
g
e
R
DSS
GSS
R
I
t
t
G
iss
rss
DD
GG
os
GSS
 
 
fs
 
r
f
n
G
L
 
 
 
 
 
 
 
 
 
 
 
 
 
 
www.DataSheet4U.com
 
 
 
 
 
 
 
 
 
 
Low On Resistance
I
Switches directly from TTL logic
Analog Switches
Commutators
Choppers
D(off)
Click To Buy
Linear Systems replaces discontinued Siliconix PN5115
≤ 500 pA
Drain to Source Saturation Current (Note 2) 
Gate to Source Breakdown Voltage 
910Ω 
220Ω 
‐7mA 
12V 
‐6V 
Gate to Source Forward Voltage 
Drain to Source On Resistance 
Drain to Source On Resistance 
Gate to Source Cutoff Voltage 
Reverse Transfer Capacitance 
Drain to Source On Voltage 
Forward Transconductance 
Turn On Rise Time 
Turn Off Fall Time 
Equivalent Noise Voltage 
CHARACTERISTIC 
Gate Operating Current 
Turn Off Time 
Gate Reverse Current 
Turn On Time 
Output Conductance 
Drain Cutoff Current 
Input Capacitance 
CHARACTERISTIC 
CHARACTERISTIC 
 
 
 
 
 
 
 
 
Tel: +44 1603 788967
Email:
Web:
Available Packages:
PN5115 in TO-92
PN5115 in bare die.
Please contact Micross for full
package and die dimensions
http://www.micross.com/distribution
chipcomponents@micross.com
 
P-CHANNEL JFET
10 
20 
30 
PN5115
MIN 
MIN 
‐15 
30 
UNITS 
‐‐ 
‐‐ 
‐‐ 
‐‐ 
‐‐ 
‐‐ 
‐‐ 
‐‐ 
‐‐ 
‐‐ 
‐‐ 
‐‐ 
‐‐ 
‐‐ 
‐‐ 
‐‐ 
‐‐ 
‐‐ 
FEATURES 
DIRECT REPLACEMENT FOR SILICONIX PN5115 
LOW ON RESISTANCE 
LOW CAPACITANCE 
ABSOLUTE MAXIMUM RATINGS @ 25°C (unless otherwise noted) 
Maximum Temperatures 
Storage Temperature 
Operating Junction Temperature 
Maximum Power Dissipation 
Continuous Power Dissipation  
MAXIMUM CURRENT
Gate Current (Note 1) 
MAXIMUM VOLTAGES 
Gate to Drain Voltage 
Gate to Source Voltage 
ns 
 
 
                                                                                                                 
TYP. 
TYP. 
‐0.7 
‐1.0 
‐0.7 
‐0.5 
‐10 
‐10 
‐10 
4.5 
20 
20 
20 
‐5 
‐‐ 
‐‐ 
‐‐ 
‐‐ 
‐‐ 
TO-92 (Bottom View)
MAX 
MAX 
‐500 
‐0.8 
500 
100 
100 
‐60 
25 
‐1 
‐‐ 
‐‐ 
‐‐ 
‐‐ 
‐‐ 
‐‐ 
‐‐ 
‐‐ 
‐‐ 
‐‐ 
‐‐ 
 
nV/√Hz 
UNITS 
UNITS 
mA 
mS 
pA 
µS 
pF 
Ω 
Ω 
 
 
 
 
 
See Switching Circuit 
CONDITIONS 
V
V
GS
GS
(L) = ‐7V 
(H) = 0V 
 
V
V
V
V
DG
DS
V
V
I
DS
DS
DS
DS
 = ‐15V,  I
 = 10V,  I
= 0A,   V
 = ‐15V, V
 = 0V, V
V
 = 0V, V
 = 0V, V
V
V
V
I
I
SWITCHING TEST CIRCUIT
V
V
V
V
V
V
DS
I
DS
DS
GS
DS
DS
DS
GS 
GS
GS
= ‐1mA,   V
= ‐1mA,   V
 = ‐15V,  I
= 1µA,   V
 = ‐15V, V
 = ‐15V, I
 = 0V, I
 = ‐15V, V
 = ‐15V, V
 = ‐15V, V
CONDITIONS 
CONDITIONS 
 = 0V, I
 = 0V, I
= 20V,  V
GS 
GS
D
GS 
GS 
D
 = 10mA , f = 1kHz 
GS 
 = 1mA , f = 1kHz 
 = 0V,   f = 1kHz 
= 12V, f = 1MHz 
‐55°C to +200°C 
‐55°C to +200°C 
= 7V, f = 1MHz 
= 5V, f = 1MHz 
D
= 0V, f = 1MHz 
r
D
D
 = ‐15mA 
DS(on) 
I
V
 = ‐7mA 
 = ‐3mA 
V
D
D
G
DS
GS 
500mW 
DS
 = ‐1mA 
 = ‐50mA 
GDS
GSS
 = ‐1nA 
DS
GS 
GS 
GS 
GS
 = 0V 
 = 0V 
= 12V 
6pF 
 = 0V 
 = 0V 
= 0V 
= 7V 
= 5V 
 = 30V 
 = 30V 
≤ 100Ω 

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