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HV2303FG-G 查看數據表(PDF) - Supertex Inc

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HV2303FG-G Datasheet PDF : 9 Pages
1 2 3 4 5 6 7 8 9
HV2303
AC Electrical Characteristics
(Over recommended operating conditions: VDD = 5.0V, tR = tF ≤5ns, 50% duty cycle, CLOAD = 20pF unless otherwise specified)
Sym Parameter
0OC
+25OC
+70OC
Units Conditions
Min Max Min Typ Max Min Max
tSD Set up time before LE rises
tWLE Time width of LE
tDO Clock delay time to data out
tWCL Time width of CLR
tSU Set up time data to clock
tH Hold time data from clock
fCLK Clock frequency
tR, tF Clock rise and fall times
tON Turn on time
tOFF Turn off time
dv/dt Maximum VSIG slew rate
KO Off isolation
25 - 25
56 -
-
12 -
-
50 100 50
15 40 15
55 - 55
21 -
-
7.0 -
-
2.0 - 2.0
- 8.0 -
- 20 -
- 50
- 5.0 -
- 5.0 -
- 20 -
- 20 -
- 20 -
-30 - -30
-58 - -58
- - 25 - ns ---
56 - 56 -
12 - 12 -
78 100 50 100
30 40 15 40
- - 55 -
ns VDD = 3.0V
VDD = 5.0V
ns VDD = 3.0V
VDD = 5.0V
ns ---
21 - 21 -
7.0 - 7.0 -
ns VDD = 3.0V
VDD = 5.0V
-
- 2.0 -
ns VDD = 3.0 or 5.0V
-
8.0
-
8.0 MHz VDD = 3.0V
- 20 - 20
VDD = 5.0V
- 50 - 50 ns ---
-
5.0
-
5.0
μs
VSIG = VPP -10V,
RLOAD = 10kΩ
-
5.0
-
5.0
μs
VSIG = VPP -10V,
RLOAD = 10kΩ
- 20 - 20
VPP = +40V, VNN = -120V
- 20 - 20 V/ns VPP = +80V, VNN = -80V
- 20 - 20
VPP = +120V, VNN = -40V
-33 - -30 -
f = 5.0MHz,
dB 1kΩ/15pF load
- - -58 -
f = 5.0MHz, 50Ω load
KCR Switch crosstalk
-60 - -60 -70 - -60 - dB f = 5.0MHz, 50Ω load
IID
Output switch isolation diode
current
-
300
-
-
300
-
300
mA
300ns pulse width,
2.0% duty cycle
CSG(OFF) Off capacitance SW to GND -
-
- 6.5 -
-
- pF 0V, f = 1.0MHz
CSG(ON) On capacitance SW to GND -
-
- 21.7 -
-
- pF 0V, f = 1.0MHz
+VSPK
-VSPK
-
-
- 18 -
-
-
-
-
- 60 -
-
-
VPP = +40V, VNN = -120V,
RLOAD = 50Ω
+VSPK Output voltage spike
-VSPK
-
-
-
-
- 30 -
- 60 -
-
-
-
-
mV
VPP = +80V, VNN = -80V,
RLOAD = 50Ω
+VSPK
-VSPK
-
-
- 33 -
-
-
-
-
- 60 -
-
-
VPP = +120V, VNN = -40V,
RLOAD = 50Ω
-
-
- 270 -
-
-
VPP = +40V, VNN = -120V,
V = 0V
SIG
QC Charge injection
-
-
- 220 -
-
-
pC
VPP = +80V, VNN = -80V,
VSIG = 0V
-
-
- 152 -
-
-
V = +120V, V = -40V,
PP
NN
VSIG = 0V
4

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