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ADA4312-1 Datasheet, PDF (1/13 Pages) Analog Devices – Wideband, Differential, High Output Current Line Driver with Shutdown
Data Sheet
Wideband, Differential, High Output Current
Line Driver with Shutdown
ADA4312-1
FEATURES
High speed
−3 dB bandwidth: 195 MHz, GDIFF = +16 V/V, RL, DIFF = 40 Ω
Differential slew rate: 2100 V/µs
Wide output swing: 18.0 V p-p differential, 12 V supply
High output current: 225 mA peak
G.hn MTPR at 16 dBm line power
−64 dBc typical at 5 MHz, referred to −58 dBm/Hz
−64 dBc typical at 17 MHz, referred to −58 dBm/Hz
−64 dBc typical at 28 MHz, referred to −58 dBm/Hz
−63 dBc typical at 31 MHz, referred to −58 dBm/Hz
−61 dBc typical at 59 MHz, referred to −58 dBm/Hz
−62 dBc typical at 82 MHz, referred to −58 dBm/Hz
Shutdown
CMOS-compatible SD pin
Shutdown quiescent current: 3 mA
ZOUT in shutdown: 10 kΩ differential (open-loop)
Resistor adjustable quiescent current
APPLICATIONS
ITU G.hn (ITU G.9960/G.9961)
HomePlug AV
HomePlug AV2
IEEE 1901
GENERAL DESCRIPTION
The ADA4312-1 is a high speed, differential, current feedback line
driver designed for half-duplex G.hn power line communication
(PLC) modems. The high output current, high bandwidth, and
slew rate of 2100 V/µs make the ADA4312-1 an excellent choice
for G.hn broadband applications that require high linearity
while driving low impedance loads.
The CMOS-compatible shutdown control pin (SD) reduces
the quiescent current to 3 mA while maintaining an output
impedance of 10 kΩ differential. The ADA4312-1 also provides
resistor adjustable quiescent current for improved efficiency in
transmit mode.
The ADA4312-1 is available in a thermally enhanced, 16-lead
LFCSP with an exposed pad to facilitate robust thermal
management. The ADA4312-1 is rated to operate over the
extended industrial temperature range of −40°C to +85°C.
FUNCTIONAL BLOCK DIAGRAM
NC 1
–IN A 2
+IN A 3
GND 4
ADA4312-1
12 NC
11 –IN B
10 +IN B
9 SD
NC = NO CONNECT. DO NOT CONNECT
TO THIS PIN.
Figure 1. Thermally Enhanced, 4 mm × 4 mm, 16-Lead LFCSP_WQ
TYPICAL APPLICATION CIRCUIT
1/2
ADA4312-1
VMID*
1/2
VMID
=
VCC
2
ADA4312-1
Figure 2. Typical PLC Driver Application
Rev. 0
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