ICL3225ECAZ-T Intersil, ICL3225ECAZ-T Datasheet - Page 12

TRANSMITTER/RCVR RS232 20-SSOP

ICL3225ECAZ-T

Manufacturer Part Number
ICL3225ECAZ-T
Description
TRANSMITTER/RCVR RS232 20-SSOP
Manufacturer
Intersil
Type
Transceiverr
Datasheet

Specifications of ICL3225ECAZ-T

Number Of Drivers/receivers
2/2
Protocol
RS232
Voltage - Supply
3 V ~ 5.5 V
Mounting Type
Surface Mount
Package / Case
20-SSOP
Peak Reflow Compatible (260 C)
Yes
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
ICL3225ECAZ-TTR

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
ICL3225ECAZ-T
Manufacturer:
INTERSIL
Quantity:
10 501
Ready Output (ICL3225E and ICL3227E Only)
The Ready output indicates that the ICL322XE is ready to
transmit. Ready switches low whenever the device enters
powerdown, and switches back high during power-up when
V- reaches -4V or lower.
Capacitor Selection
The charge pumps require 0.1µF capacitors for 3.3V
operation. For other supply voltages refer to Table 3 for
capacitor values. Do not use values smaller than those listed
in Table 3. Increasing the capacitor values (by a factor of 2)
reduces ripple on the transmitter outputs and slightly
reduces power consumption. C
increased without increasing C
increase C
maintain the proper ratios (C
When using minimum required capacitor values, make sure
that capacitor values do not degrade excessively with
temperature. If in doubt, use capacitors with a larger nominal
value. The capacitor’s equivalent series resistance (ESR)
usually rises at low temperatures and it influences the
amount of ripple on V+ and V-.
Power Supply Decoupling
In most circumstances a 0.1µF bypass capacitor is
adequate. In applications that are particularly sensitive to
power supply noise, decouple V
capacitor of the same value as the charge-pump capacitor C
Connect the bypass capacitor as close as possible to the IC.
Operation Down to 2.7V
ICL32XXE transmitter outputs meet RS-562 levels (
at full data rate, with V
typically ensure inter operability with RS-232 devices.
Transmitter Outputs when Exiting
Powerdown
Figure 10 shows the response of two transmitter outputs
when exiting powerdown mode. As they activate, the two
transmitter outputs properly go to opposite RS-232 levels,
with no glitching, ringing, nor undesirable transients. Each
transmitter is loaded with 3kΩ in parallel with 2500pF. Note
that the transmitters enable only when the magnitude of the
supplies exceed approximately 3V.
3.0 to 3.6
4.5 to 5.5
3.0 to 5.5
V
CC
TABLE 3. REQUIRED CAPACITOR VALUES
1
(V)
without also increasing C
CC
as low as 2.7V. RS-562 levels
C
0.047
1
1
12
0.1
0.1
(µF)
to the other capacitors).
1
2
’s value, however, do not
CC
, C
3
to ground with a
, and C
2
, C
3
C
ICL3225E, ICL3227E, ICL3245E
, and C
4
2
, C
can be
3
0.33
0.47
0.1
, C
4
4
±
to
(µF)
3.7V),
1
.
Mouse Driveability
The ICL3245E is specifically designed to power a serial mouse
while operating from low voltage supplies. Figure 11 shows the
transmitter output voltages under increasing load current. The
on-chip switching regulator ensures the transmitters will supply
at least
V+ transmitters, 7.3mA for single V- transmitter).
High Data Rates
The ICL32XXE maintain the RS-232
transmitter output voltages even at high data rates. Figure
12 details a transmitter loopback test circuit, and Figure 13
illustrates the loopback test result at 250kbps. For this test,
all transmitters were simultaneously driving RS-232 loads in
parallel with 1000pF, at 250kbps. Figure 14 shows the
loopback results for a single transmitter driving 250pF and
5V/DIV
2V/DIV
FIGURE 10. TRANSMITTER OUTPUTS WHEN EXITING
FIGURE 11. TRANSMITTER OUTPUT VOLTAGE vs LOAD
5V/DIV
-1
-2
-3
-4
-5
-6
6
5
4
3
2
1
0
0
±
5V during worst case conditions (15mA for paralleled
V
CC
1
CURRENT (PER TRANSMITTER, i.e., DOUBLE
CURRENT AXIS FOR TOTAL V
POWERDOWN
FORCEOFF
LOAD CURRENT PER TRANSMITTER (mA)
V
T1
T2
T3
CC
2
= 3.0V
READY
3
V
ICL3245E
V
OUT
OUT
TIME (20µs/DIV.)
4
+
-
5
±
6
5V minimum
7
OUT
V
C1 - C4 = 0.1µF
V
V
CC
OUT
+ CURRENT)
OUT
8
February 27, 2006
= +3.3V
+
-
T2
T1
9
FN4900.9
10

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