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 5.0V 10 Gb/s TIA
FEATURES * * * * * 10 Gb/s Differential Output TIA +5V Power Supply Low Group Delay Small Size: 0.85mm x 0.914mm 325mW (typ) power dissipation
IIN VOUT VOUT GND VCC GND
ATA7601
Preliminary Data Sheet - Rev 1
APPLICATIONS * * * SONET OC-192 10 Gb/s DWDM 10 Gb/s Ethernet
GND
CEXT
GND
GND
D1 Package
Product Description The ANADIGICS ATA7601D1 is a 5V high-speed transimpedance amplifier (TIA) for 10 Gb/s applications available in bare die form and manufactured using an InGaP HBT process. The device is used in conjunction with a photodetector
to convert an optical signal into a differential voltage that must be AC coupled to a post amplifier. With its low input noise, a sensitivity of better than -19dBm (BER <10-10) can be achieved with the ATA7601D1.
Figure 1: Circuit Block Diagram
VCC VBIAS
VOUT
IIN
VOUT
CEXT
ATA7601
Absolute Maximum Ratings
V CC IIN TS 7.0V 4mApp Storage Temp -65 C to 125 C
Recommended Operating Conditions
PAR AMETER Operati ng Voltage Range Operati ng Temperature Range(1)
MIN +4.75 -40
TYP +5.0
MAX +5.25 85
U N IT V
O
C
1. Defined at the interface between the die and the substrate.
DC Characteristics
PAR AMETER Input Offset Voltage Output Offset Voltage Supply C urrent Power D i ssi pati on
PAR AMETER
MIN
TYP 1.35 3.0 65 325
MAX
U N IT V V
95 500
TYP
1100 9.0 30
mA mW
MAX U N IT
AC Characteristics (2)
MIN
900 8.0
(3)
Small Si gnal D i fferenti al Transresi stance (RL - 100W) Bandwi dth (-3dB) Low Frequency C utoff
W
GHz kHz +25 ps dB m 1.8
Group D elay (1MHz to 8GHz) Opti cal Sensi ti vi ty (4) Input Noi se C urrent (RMS) (5) Opti cal Overload
(4)
-25 -19.5
mA
dB m
-3
(6)
-2 350 400
Input C urrent at whi ch Output Li mi ts
mA
mV dB
Maxi mum D i fferenti al Output Voltage Output Return Loss (1MHz to 10GHz) 10
2. The specifications are based upon the use of a PIN photodetector with a responsivity at 1550nm of 0.85A/W and a capacitance of CDIODE + CSTRAY = 0.3pF max connected to IIN via a 0.8nH bond wire. 3. With the use of an external capacitor. 4. Measured at 10-10 BER with a 223 -1 PRBS at 10Gb/s. 5. 11GHz bandwidth. 6. Defined as 80% of the maximum output voltage.
2
Preliminary Data Sheet - Revision 1 03/01
ATA7601
Pad Description
PAD V CC IIN C EXT VOUT VOUT D ESC R IPTION Posi ti ve Supply Voltage TIA Input C onnecti on for an external C apaci tor TIA Output Voltage (Non-i nverted) TIA Output Voltage (i nverted) +5.0V Photocurrent i nput Sets the low frequency cutoff Logi cal '1' wi th opti cal i nput Logi cal '0' wi th opti cal i nput C OMMEN T
Figure 2: Die Size and Layout
292m
245m
GND
VCC
GND
189m
Die Size: 850m x 914m Pad Size: 114m x 114m unless otherwise noted IIN Pad Pitch: 150m unless otherwise noted GND VOUT
VOUT
225m
CEXT
GND
GND
353m
183m
3
Preliminary Data Sheet - Revision 1 03/01
ATA7601
Figure 3: External Capacitor Required for Low Frequency Cutoff
10000
1000
Cext (pF)
100 10 0 50 100 150 200 250 300 350 400
Low Frequency Cutoff (kHz)
Figure 4: Eye Diagram with an Optical Input Power of -19dBm
10mV/Div.
25ps/Div.
Figure 5: Eye Diagram with an Optical Input Power of -9dBm
40mV/Div.
25ps/Div.
4
Preliminary Data Sheet - Revision 1 03/01
ATA7601
Figure 6: Eye Diagram with an Optical Input Power of -4dBm
70mV/Div.
25ps/Div.
Figure 7: Differential Output Voltage vs. Input Current
400
Output Voltage (mVpp)
350 300 250 200 150 100 50 0 0 100 200 300 400 500 600 700 800
Input Current (uApp)
Preliminary Data Sheet - Revision 1 03/01
5
ATA7601
Figure 8: Typical Bonding Diagram Application Information
V BIAS
+5V
1nF
GND
V CC
GND 50 transmission lines
ATA7601D1
I IN
V OUT
V OUT
*
GND 50 50
CEXT
GND
GND
1nF
* This ground bond can be omitted if it interferes with the placement of the photodetector.
6
Preliminary Data Sheet - Revision 1 03/01
ATA7601
Packaging The ATA7601D1 is provided as bare die. For optimum performance, the die should be packaged in a hermetic enclosure and a low inductance ground plane should be made available for power supply bypassing and ground bonds. The bond wire from the photodetector to IIN should be made as short as possible. As the inductance of this connection increases beyond 1nH, more gain peaking will occur and the group delay performance will degrade. Output Connections The ATA7601D1 provides a differential output that must be AC coupled to the next stage of the receiver as the output buffer is not designed to drive a DC coupled 50W load. For single-ended applications, one output of the ATA7601D1 must be AC terminated to a 50W load. CEXT Connection In order to achieve the desired low frequency cutoff, an external capacitor is required. A low inductance surface mount chip capacitor or MIM capacitor is recommended. Sensitivity Measurement The typical sensitivity, as specified in the AC characteristics, is 19.5dBm. This was measured at a BER of 10-10 with a 10Gb/s, 223-1 PRBS, using a lensed single mode fiber with the photodetector and TIA in an open test fixture under the following conditions: Photodetector active area: 32mm Photodetector capacitance: 0.2pF Photodetector responsivity: 0.85A/W Lensed fiber beam width: 13mm (86.5% of contained power) Lensed fiber focal distance: 3mm When the photodetector and TIA are packaged in a hermetic enclosure, with the fiber optimally aligned to the active area of the photodiode, an improvement in sensitivity should be observed. Device Modeling and Simulation S-parameter files of the TIA are available on the Anadigics web site (http://www.anadigics.com) or upon request. Also included on the web-site is a virtual sample. This is an encrypted model of the TIA that can be downloaded into the ADS simulation environment.
Preliminary Data Sheet - Revision 1 03/01
7
ATA7601
ANADIGICS, Inc. 141 Mount Bethel Road Warren, New Jersey 07059, U.S.A Tel: +1 (908) 668-5000 Fax: +1 (908) 668-5132 http://www.anadigics.com Mktg@anadigics.com
IMPORTANT NOTICE ANADIGICS, Inc. reserves the right to make changes to its products or discontinue any product at any time without notice. The Advanced Product data sheets and product specifications contained in this data sheet are subject to change prior to a products formal introduction. The information in this data sheet has been carefully checked and is assumed to be reliable. However, ANADIGICS assumes no responsibility for inaccuracies. ANADIGICS strongly urges customers to verify that the information they are using is current before placing orders. WARNING ANADIGICS products are not intended for use in life support appliances, devices, or systems. Use of an ANADIGICS product in any such application without written consent is prohibited.
Preliminary Data Sheet - Revision 1 03/01
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