SW06 Datasheet

  • SW06

  • Quad SPST JFET Analog Switch

  • 274.04KB

  • 12页

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a
FEATURES
Two Normally Open and Two Normally Closed SPST
Switches with Disable
Switches Can Be Easily Configured as a Dual SPDT or
a DPDT
Highly Resistant to Static Discharge Destruction
Higher Resistance to Radiation than Analog Switches
Designed with MOS Devices
Guaranteed R
ON
Matching: 10% max
Guaranteed Switching Speeds
T
ON
= 500 ns max
T
OFF
= 400 ns max
Guaranteed Break-Before-Make Switching
Low 鈥淥N鈥?Resistance: 80 max
Low R
ON
Variation from Analog Input Voltage: 5%
Low Total Harmonic Distortion: 0.01%
Low Leakage Currents at High Temperature
T
A
= +125 C: 100 nA max
T
A
= +85 C: 30 nA max
Digital Inputs TTL/CMOS Compatible and Independent
of V+
Improved Specifications and Pin Compatible to
LF-11333/13333
Dual or Single Power Supply Operation
Available in Die Form
1
Quad SPST JFET
Analog Switch
SW06
FUNCTIONAL BLOCK DIAGRAM
V+
12
3
IN 1
S1
2
6
IN 2
8
LEVEL
SHIFT
7
11
IN 3
9
10
14
IN 4
16
15
4
DIS
13
GND
V鈥?/div>
5
D1
S2
D2
S3
D3
S4
D4
GENERAL DESCRIPTION
The SW06 is a four channel single-pole, single-throw analog
switch that employs both bipolar and ion-implanted FET
devices. The SW06 FET switches use bipolar digital logic inputs
which are more resistant to static electricity than CMOS devices.
Ruggedness and reliability are inherent in the SW06 design and
construction technology.
Increased reliability is complemented by excellent electrical
specifications. Potential error sources are reduced by minimizing
鈥淥N鈥?resistance and controlling leakage currents at high tem-
peratures. The switching FET exhibits minimal R
ON
variation
over a 20 V analog signal range and with power supply voltage
changes. Operation from a single positive power supply voltage
is possible. With V+ = 36 V, V鈥?= 0 V, the analog signal range
will extend from ground to +32 V.
PNP logic inputs are TTL and CMOS compatible to allow the
SW06 to upgrade existing designs. The logic 鈥?鈥?and logic 鈥?鈥?/div>
input currents are at microampere levels reducing loading on
CMOS and TTL logic.
REV. A
Information furnished by Analog Devices is believed to be accurate and
reliable. However, no responsibility is assumed by Analog Devices for its
use, nor for any infringements 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 Analog Devices.
One Technology Way, P.O. Box 9106, Norwood, MA 02062-9106, U.S.A.
Tel: 617/329-4700
Fax: 617/326-8703

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