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 Micrel, Inc.
FIBER OPTIC MODULE CONTROLLER WITH APC
SY88904
SY88904
FEATURES
s DC bias current adjustable to 25mA s Buffered Loss-of-Signal output when used with SY88903 s Controlled laser diode turn on s Laser diode over-current detect s Monitor diode power control circuit s Laser diode driver enable s Designed for use with SY88902 and SY88903 s Single power supply s Available in 16-pin MSOP
DESCRIPTION
The SY88904 is an integrated controller for the SY88902 Laser Driver and SY88903 Laser Receiver that provides power control and system interface functions for a complete module solution. The SY88904 is designed to provide the laser diode with an independent DC threshold current (IBIAS) source to assure optimum laser diode performance. It has special safety features which disable the currents to the laser diode if certain faults are detected in the module. The SY88904 also provides buffered Loss-of-Signal (LOS) output in open collector level. The device is designed for fast and accurate calibration of the laser diode as well as deriving the control signals for system integration. The SY88904 provides for delayed turn on of the laser diode on system start up, chatter-free Loss-of-Signal, Low VCC detect and laser diode over-current situations. Once the optimal operating point is determined and set for a specific laser diode, the threshold current (IBIAS) is designed to automatically compensate for laser diode aging and module temperature.
APPLICATIONS
s s s s s Controller for High Speed Optical Data Transmission 1.25Gbps Gigabit Ethernet 531 Mbps and 1062Mbps Fibre Channel 622Mbps SONET Gigabit Interface Converter
BLOCK DIAGRAM
LOSOUT TTL LOSIN PECL PECL VREF 4
TX_Out
II_LIMIT Fault Detect Circuit
+ ILIMIT SET VREF 3
TX_Fault
OC
MD_Low
+
TX_Disable
TTL 40X
IBIAS + VREF 2 VCC GND MD
VCC DET
VCC DET
4.75
RWIN
IBIAS SET
IBIAS FB
IPIN SET
VREF
M9999-081005 hbwhelp@micrel.com or (408) 955-1690
Rev.: B
Amendment: /0
1
Issue Date: August 2005
Micrel, Inc.
SY88904
PACKAGE/ORDERING INFORMATION
TX_Out VREF IBIAS ILIMIT SET IBIAS SET IBIAS FB MD IPIN SET
1 2 3 4 5 6 7 8 16 15 14 13 12 11 10 9
VCC LOSOUT
Ordering Information
Part Number Package Type K16-1 K16-1 K16-1 K16-1 Operating Range Commercial Commercial Commercial Commercial Package Marking 904 904 904 with Pb-Free bar-line indicator 904 with Pb-Free bar-line indicator Lead Finish Sn-Pb Sn-Pb Pb-Free NiPdAu Pb-Free NiPdAu
LOSIN RWIN TX_Disable TX_Fault VCCDET GND
SY88904KC SY88904KCTR(1) SY88904KH SY88904KHTR(1)
Note: 1. Tape and Reel.
MSOP K16-1
16-Pin MSOP (K16-1)
PIN DEFINITIONS
Pin VCC GND TX_Out TX_Fault TX_Disable LOSIN VREF IPIN SET RWIN LOSOUT IBIASFB IBIASSET MD IBIAS ILIMIT SET Type Power Supply Ground PECL Output Open Collector Output TTL Input TTL Input Analog Output Analog Input Analog Input PECL Output Analog Output Analog Input Analog Input Analog Input Analog Input Positive Power supply Ground Transmitter Enable Module Fault Transmitter Disable and Fault Reset Loss-of-Signal Input from Limiting Post Amplifier Reference Voltage Adjustable, Resistor to VREF sets Min. Monitor Diode Photo Current Restart Window Loss-of-Signal PECL output Monitor Diode Feedback Adjustable, Resistor to VREF sets the DC bias current for the Laser Diode Monitor Diode Connection DC bias current for the Laser Diode Adjustable, Resistor to VREF sets Laser Diode over current fail point. Description
M9999-081005 hbwhelp@micrel.com or (408) 955-1690
2
Micrel, Inc.
SY88904
ABSOLUTE MAXIMUM RATINGS(1)
Symbol VCC TX_Disable, LOS LOSOC, IPIN SET, ILIMIT IBIASFB, IBIAS SET TX_Out TA Tstore
SET
Rating Power Supply Voltage Input Voltage Others; I/O Voltage Output Voltage (with 50 load) Operating Temperature Range Storage Temperature Range Theta Junction to Ambient
Value 0 to +7.0 0 to VCC -0.3V, VCC +0.3V VCC -2.5V, VCC +0.3V 0C to +85C -55C to +125C 93
Unit V V V V C C C/W
Note: 1. Permanent device damage may occur if absolute maximum ratings are exceeded. This is a stress rating only and functional operation is not implied at conditions other than those detailed in the operational sections of this data sheet. Exposure to absolute maximum ratlng conditions for extended periods may affect device reliability.
DC ELECTRICAL CHARACTERISTICS
VCC = +5V, RLOAD = 50 to 3V, TA = 0C to +85C
TA = 0C Symbol ICC IBIAS IBIAS SET Parameter Power Supply Current IBIAS Output Current IBIAS SET Input Current Min. -- 2 -- Typ. -- -- -- Max. 60 25 0.625 -- 2 -- TA = +25C Min. Typ. -- -- -- Max. 60 25 0.625 -- 2 -- TA = +85C Min. Typ. -- -- -- Max. 60 25 0.625 Unit mA mA mA Conditions No output load
M9999-081005 hbwhelp@micrel.com or (408) 955-1690
3
Micrel, Inc.
SY88904
DETAILED DESCRIPTION LOGIC DIAGRAM
The SY88904 is an integrated control circuit for laser diode modules intended for high-frequency fiber-optic applications. The device is designed to operate with the SY88902 laser diode driver providing Automatic Power Control (APC) which provides bias and modulation current control, laser diode driver enable and monitor diode interface. The device also interfaces with the SY88903 high-speed limiting amplifier providing chatter-free Loss of Signal function. The system functions provided include laser diode over-current detection, module fault signal and transmit disable control. The SY88904 also provides power up cycling of laser diode current and the fault detect signal. Laser Diode Supply Current The SY88904 provides the adjustable drive current for the laser diode, DC bias. Laser Diode Over-Current Detection The SY88904 provides the ability to set an upper limit fail point for the laser diode. ILIMIT SET sets an upper limit for the average current present at the IBIAS pin. Monitor Diode The MD pin on the SY88904 provides low frequency light intensity, laser power out feedback from the monitor diode in the laser diode package. This feedback is used to adjust the IBIAS level through the Automatic Power Control circuit to maintain a near constant power output from the laser diode. The SY88904 will also generate a fault if the MD pin receives photo current less than IPINSET or is no longer connected to the monitor diode. Laser Diode Driver Enable The SY88904 provides a TX_Out pin used to control the output of the laser diode driver, through the Enable pin , of the SY88902. This is a single ended PECL output. Module Fault The SY88904 provides an open collector output, TX_Fault, that indicates to the host system that the module is in a fault condition. The SY88904 will assert TX_Fault when a low VCC condition is detected, when the monitor diode is not connected or when a laser diode over-current condition is detected. The SY88904 will attempt to clear a TX_Fault condition if the device is power cycled or a reset cycle is initiated with TX_Disable. When the SY88904 is in a TX_Fault condition Ibias will be removed, TX_Out will be negated and fault detection will be disabled. Power Up Sequence, TX_Disable asserted The SY88904 will power up in a TX_Fault condition and will remain in a fault condition while TX_Disable is asserted. Power Up Sequence, TX_Disable negated The SY88904 will power up in a TX_Fault condition and will remain in a fault condition until VCC is within operational limits, at which time an initialization sequence will be started. TX_Disable Cycle, TX_Fault Negated When the SY88904 is not in a TX_Fault condition, a rising edge of TX_Disable will cause the SY88904 to enter a TX_Fault condition. The falling edge of TX_Disable will cause a power up sequence to be started. TX_Disable Cycle, TX_Fault Asserted When the SY88904 is in a TX_Fault condition, the falling edge of TX_Disable will cause an initialization sequence to be started. TX_Disable Cycle, during an initialization cycle A rising edge of TX_Disable will cause the SY88904 to terminate the current initialization cycle and remain in a TX_Fault condition. The falling edge of TX_Disable will cause the initialization sequence to be restarted. Initialization Sequence The initialization sequence consists of a delay, set by the RC time constant on the Rwin input, followed by a power up sequence. Power Up Sequence A power up sequence will negate TX_Fault and then ramp up Ibias, controlled by the capacitor on the Rwin input and an internal 1mA current, followed by TX_OUT being negated and fault checking. If a fault occurs at this time the module will enter a TX_Fault conditions, otherwise the module will be ready for operation.
M9999-081005 hbwhelp@micrel.com or (408) 955-1690
4
Micrel, Inc.
SY88904
Fault Condition TX_FAULT IBIAS TX_Out TX_DISABLE RWIN Initialization Power up
Figure 1. Reset of Temporary Fault
Fault Condition TX_FAULT IBIAS TX_Out TX_DISABLE RWIN Initialization Power up
Figure 2. Reset of Fatal Fault
Fault Condition TX_FAULT IBIAS TX_Out TX_DISABLE RWIN Initialization 1 Initialization 2 Power up
Figure 3. Reset During Initilization
M9999-081005 hbwhelp@micrel.com or (408) 955-1690
5
Micrel, Inc.
SY88904
Fault Condition TX_FAULT IBIAS TX_Out TX_DISABLE RWIN Initialization 1 Initialization 2
Power up 1
Power up 2
Figure 4. Reset During Power Up
Fault Condition TX_FAULT IBIAS TX_Out TX_DISABLE RWIN
Power up
Figure 5. Reset Cycle
M9999-081005 hbwhelp@micrel.com or (408) 955-1690
6
SY88904
0.1F 20k
82
82
VREF
RSET OUT
TX_DATA+
DIN DIN
130 130
SY88922
EN VCC GND
TX_DATA-
OUT
RSER
BLM21A102S
Laser Module
REXT
24
APPLICATION EXAMPLE FOR 3-CHIP SET SOLUTION
GBIC Terminal
TX_OUT TX_FAULT TX_DISABLE
IBIAS
MD
RWIN IBIAS SET
20k
SY88904
LOSOUT VCCDET LOSIN
0.1F
IPIN SET VREF
20k
ILIMIT SET 20k VCC GND VREF
0.1F
RX_LOS
EN DOUT
RX_DATA+ RX_DATA-
LOS DIN
22nF
DOUT
50 50
SY88993
DIN
0.1F
22nF
From Transimpedance Amplifier
LOSLVL
VCC VCC VCC GND VREF
0.1F 20k
M9999-081005 hbwhelp@micrel.com or (408) 955-1690
Micrel, Inc.
7
IBIAS FB
The value of RSER depends on the Laser Diode.
0.1F
2M
VCC
1000pF
VCC
Photodiode Laserdiode
VCC
VCC
Micrel, Inc.
SY88904
16 LEAD MSOP (K16-1)
Rev. 01
MICREL, INC. 2180 FORTUNE DRIVE SAN JOSE, CA 95131
TEL
USA
+ 1 (408) 944-0800
FAX
+ 1 (408) 474-1000
WEB
http://www.micrel.com
The information furnished by Micrel in this data sheet is believed to be accurate and reliable. However, no responsibility is assumed by Micrel for its use. Micrel reserves the right to change circuitry and specifications at any time without notification to the customer. Micrel Products are not designed or authorized for use as components in life support appliances, devices or systems where malfunction of a product can reasonably be expected to result in personal injury. Life support devices or systems are devices or systems that (a) are intended for surgical implant into the body or (b) support or sustain life, and whose failure to perform can be reasonably expected to result in a significant injury to the user. A Purchaser's use or sale of Micrel Products for use in life support appliances, devices or systems is at Purchaser's own risk and Purchaser agrees to fully indemnify Micrel for any damages resulting from such use or sale. (c) 2005 Micrel, Incorporated. M9999-081005 hbwhelp@micrel.com or (408) 955-1690
8


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