, Quad, SPST, CMOS Analog Switches 8 ________________________________________" />
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鍨嬭櫉(h脿o)锛� MAX4606CSE+T
寤犲晢锛� Maxim Integrated Products
鏂囦欢闋�(y猫)鏁�(sh霉)锛� 11/12闋�(y猫)
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鍖呰锛� 甯跺嵎 (TR)
MAX4604/MAX4605/MAX4606
5
, Quad, SPST, CMOS Analog Switches
8
_______________________________________________________________________________________
Applications Information
Overvoltage Protection
Proper power-supply sequencing is recommended for
all CMOS devices. Do not exceed the absolute maxi-
mum ratings, because stresses beyond the listed rat-
ings can cause permanent damage to the devices.
Always sequence V+ on first, then V-, followed by the
logic inputs, NO, or COM. If power-supply sequencing
is not possible, add two small signal diodes (D1, D2) in
series with supply pins for overvoltage protection
(Figure 1). Adding diodes reduces the analog signal
range to one diode drop below V+ and one diode drop
above V-, but does not affect the devices鈥� low switch
resistance and low leakage characteristics. Device
operation is unchanged, and the difference between
V+ and V- should not exceed 44V. These protection
diodes are not recommended when using a single supply.
Off-Isolation at High Frequencies
In 50
systems, the high-frequency on-response of
these parts extends from DC to above 100MHz with a
typical loss of -2dB. When the switch is turned off, how-
ever, it behaves like a capacitor, and off isolation
decreases with increasing frequency. (Above 300MHz,
the switch actually passes more signal turned off than
turned on.) This effect is more pronounced with higher
source and load impedances.
Above 5MHz, circuit board layout becomes critical, and
it becomes difficult to characterize the response of the
switch independent of the circuit. The graphs shown in
the
Typical Operating Characteristics were taken using
a 50
source and load connected with BNC connec-
tors to a circuit board deemed 鈥渁verage;鈥� that is,
designed with isolation in mind, but not using strip-line
or other special RF circuit techniques. For critical appli-
cations above 5MHz, use the MAX440, MAX441, and
MAX442, which are fully characterized up to 160MHz.
COM_
V-
V+
NO_
* INTERNAL PROTECTION DIODES
D2
D1
-15V
+15V
MAX4604
MAX4605
MAX4606
*
tr < 20ns
tf < 20ns
50%
0
LOGIC
INPUT
V-
-15V
RL
100
NO_
OR NC_
GND
CL INCLUDES FIXTURE AND STRAY CAPACITANCE.
VO = VCOM
(
RL
)
R+ RON
SWITCH
INPUT
IN_
+3V
tOFF
0
COM_
SWITCH
OUTPUT
0.9V0
tON
VO
SWITCH
OUTPUT
LOGIC
INPUT
LOGIC INPUT WAVEFORMS INVERTED FOR SWITCHES
THAT HAVE THE OPPOSITE LOGIC SENSE.
VL
V+
CL
35pF
+5V
+15V
VO
VCOM_
0
REPEAT TEST FOR EACH SWITCH. FOR LOAD
CONDITIONS, SEE
Electrical Characteristics.
MAX4604
MAX4605
MAX4606
Figure 1. Overvoltage Protection Using External Blocking
Diodes
Figure 2. Switching-Time Test Circuit
鐩搁棞(gu膩n)PDF璩囨枡
PDF鎻忚堪
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鍙冩暩(sh霉)鎻忚堪
MAX4606EPE 鍔熻兘鎻忚堪:妯℃摤闁�(k膩i)闂�(gu膩n) IC RoHS:鍚� 鍒堕€犲晢:Texas Instruments 闁�(k膩i)闂�(gu膩n)鏁�(sh霉)閲�:2 闁�(k膩i)闂�(gu膩n)閰嶇疆:SPDT 闁�(k膩i)鍟熼浕闃伙紙鏈€澶у€硷級:0.1 Ohms 鍒囨彌闆诲锛堟渶澶э級: 闁�(k膩i)鍟熸檪(sh铆)闁擄紙鏈€澶у€硷級: 闂�(gu膩n)闁夋檪(sh铆)闁擄紙鏈€澶у€硷級: 宸ヤ綔闆绘簮闆诲:2.7 V to 4.5 V 鏈€澶у伐浣滄韩搴�:+ 85 C 瀹夎棰�(f膿ng)鏍�:SMD/SMT 灏佽 / 绠遍珨:DSBGA-16
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MAX4606ESE+ 鍔熻兘鎻忚堪:妯℃摤闁�(k膩i)闂�(gu膩n) IC 5Ohm Quad SPST Analog Switch RoHS:鍚� 鍒堕€犲晢:Texas Instruments 闁�(k膩i)闂�(gu膩n)鏁�(sh霉)閲�:2 闁�(k膩i)闂�(gu膩n)閰嶇疆:SPDT 闁�(k膩i)鍟熼浕闃伙紙鏈€澶у€硷級:0.1 Ohms 鍒囨彌闆诲锛堟渶澶э級: 闁�(k膩i)鍟熸檪(sh铆)闁擄紙鏈€澶у€硷級: 闂�(gu膩n)闁夋檪(sh铆)闁擄紙鏈€澶у€硷級: 宸ヤ綔闆绘簮闆诲:2.7 V to 4.5 V 鏈€澶у伐浣滄韩搴�:+ 85 C 瀹夎棰�(f膿ng)鏍�:SMD/SMT 灏佽 / 绠遍珨:DSBGA-16
MAX4606ESE+T 鍔熻兘鎻忚堪:妯℃摤闁�(k膩i)闂�(gu膩n) IC 5Ohm Quad SPST Analog Switch RoHS:鍚� 鍒堕€犲晢:Texas Instruments 闁�(k膩i)闂�(gu膩n)鏁�(sh霉)閲�:2 闁�(k膩i)闂�(gu膩n)閰嶇疆:SPDT 闁�(k膩i)鍟熼浕闃伙紙鏈€澶у€硷級:0.1 Ohms 鍒囨彌闆诲锛堟渶澶э級: 闁�(k膩i)鍟熸檪(sh铆)闁擄紙鏈€澶у€硷級: 闂�(gu膩n)闁夋檪(sh铆)闁擄紙鏈€澶у€硷級: 宸ヤ綔闆绘簮闆诲:2.7 V to 4.5 V 鏈€澶у伐浣滄韩搴�:+ 85 C 瀹夎棰�(f膿ng)鏍�:SMD/SMT 灏佽 / 绠遍珨:DSBGA-16
MAX4606ESE-T 鍔熻兘鎻忚堪:妯℃摤闁�(k膩i)闂�(gu膩n) IC RoHS:鍚� 鍒堕€犲晢:Texas Instruments 闁�(k膩i)闂�(gu膩n)鏁�(sh霉)閲�:2 闁�(k膩i)闂�(gu膩n)閰嶇疆:SPDT 闁�(k膩i)鍟熼浕闃伙紙鏈€澶у€硷級:0.1 Ohms 鍒囨彌闆诲锛堟渶澶э級: 闁�(k膩i)鍟熸檪(sh铆)闁擄紙鏈€澶у€硷級: 闂�(gu膩n)闁夋檪(sh铆)闁擄紙鏈€澶у€硷級: 宸ヤ綔闆绘簮闆诲:2.7 V to 4.5 V 鏈€澶у伐浣滄韩搴�:+ 85 C 瀹夎棰�(f膿ng)鏍�:SMD/SMT 灏佽 / 绠遍珨:DSBGA-16