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參數(shù)資料
型號: SP506CM-L
廠商: Exar Corporation
文件頁數(shù): 11/35頁
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描述: IC TXRX WAN MULTI-MODE 80LQFP
標(biāo)準(zhǔn)包裝: 84
類型: 收發(fā)器
驅(qū)動器/接收器數(shù): 7/7
規(guī)程: 多協(xié)議
電源電壓: 5V
安裝類型: 表面貼裝
封裝/外殼: 80-LQFP
供應(yīng)商設(shè)備封裝: 80-LQFP(14x14)
包裝: 托盤
其它名稱: 1016-1441
SP506CM-L-ND
9
Exar Coporation 48720 Kato Road, Fremont CA, 94538 (50) 668-7000 Fax (50) 668-707 www.exar.com
SP506_0_0870
Phase 2 (±10V)
— V
SS transfer — Phase two of the clock
connects the negative terminal of C
2 to
the V
SS storage capacitor and the positive
terminal of C
2 to ground, and transfers the
generated –l0V or the generated –5V to C
3.
Simultaneously,thepositivesideofcapacitor
C
is switched to +5V and the negative side
is connected to ground.
Phase 2 (±5V)
— V
SS & VDD charge storage — C
+
is recon-
nected to V
CC to recharge the C capacitor.
C
2
+
isswitchedtogroundandC
2
isconnected
to C
3. The 5V charge from Phase is now
transferred to the V
SS storage capacitor. VSS
receives a continuous charge from either C
or C
2. With the C capacitor charged to 5V,
the cycle begins again.
Phase 3
— V
DD charge storage — The third phase
of the clock is identical to the first phase
— the charge transferred in C
produces
–5V in the negative terminal of C
, which
is applied to the negative side of capacitor
C
2. Since C2
+
is at +5V, the voltage potential
across C
2 is l0V. For the 5V output, C2
+
is
connected to ground so that the potential
on C
2 is only +5V.
Phase 4
— V
DD transfer — The fourth phase of the
clock connects the negative terminal of C
2
to ground and transfers the generated l0V
or the generated 5V across C
2 to C4, the VDD
storage capacitor. Again, simultaneously
with this, the positive side of capacitor C
is switched to +5V and the negative side is
connected to ground, and the cycle begins
again.
Since both V
DD and VSS are separately gen-
erated from V
CC in a no–load condition, VDD
and V
SS will be symmetrical. Older charge
pump approaches that generate Vfrom
V+ will show a decrease in the magnitude
of Vcompared to V+ due to the inherent
inefficiencies in the design.
The clock rate for the charge pump typically
operates at 5kHz. The external capacitors
must be a minimum of 22F with a 6V
breakdown rating.
External Power Supplies
For applications that do not require +5V
only, external supplies can be applied at the
V+ and Vpins. The value of the external
supply voltages must be no greater than
+l0.5V. The tolerance should be +5% from
+0V. The current drain for the supplies is
used for RS-232 and RS-423 drivers. For
the RS-232 driver, the current requirement
will be 3.5mA per driver. The RS-423 driver
worst case current drain will be mA per
driver. Power sequencing is required for the
SP506. The supplies must be sequenced
accordingly: +0V, +5V and –0V. It is
important to prevent V
SS from starting up
before V
CC or VDD.
Figure 47. Charge Pump Phase 2 for +0V.
Figure 49. Charge Pump Phase 3.
VCC = +5V
–10V
VDD Storage Capacitor
C1
C2
C4
+
VSS Storage Capacitor
C3
+
VCC = +5V
–5V
+5V
VDD Storage Capacitor
C1
C2
C4
+
VSS Storage Capacitor
C3
+
Figure 50. Charge Pump Phase 4.
Figure 48. Charge Pump Phase 2 for +5V.
VCC = +5V
VDD Storage Capacitor
C1
C2
C4
+
VSS Storage Capacitor
C3
+
–5V
VCC = +5V
+10V
VDD Storage Capacitor
C1
C2
C4
+
VSS Storage Capacitor
C3
+
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