CS8900A-CQ3Z Cirrus Logic Inc, CS8900A-CQ3Z Datasheet - Page 33

IC LAN ETHERNET CTLR 3V 100LQFP

CS8900A-CQ3Z

Manufacturer Part Number
CS8900A-CQ3Z
Description
IC LAN ETHERNET CTLR 3V 100LQFP
Manufacturer
Cirrus Logic Inc
Type
Single Chipr
Datasheets

Specifications of CS8900A-CQ3Z

Package / Case
100-LQFP
Controller Type
Ethernet Controller (IEEE 802.3)
Interface
ISA-BUS
Voltage - Supply
3V, 5V
Current - Supply
95mA
Operating Temperature
0°C ~ 70°C
Mounting Type
Surface Mount
Ethernet Connection Type
10BASE- 2 or 10BASE- 5 or 10BASE- F or 10BASE- T
Minimum Operating Temperature
0 C
Mounting Style
SMD/SMT
Product
Ethernet Controllers
Standard Supported
IEEE 802.3
Data Rate
10 Mbps
Supply Voltage (max)
6 V
Supply Voltage (min)
- 0.3 V
Supply Current (max)
+/- 10 mA
Maximum Operating Temperature
+ 70 C
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
For Use With
598-1163 - KIT EVAL FOR CS8900A
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
Other names
598-1127

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DS271F5
attempting transmission. The CS8900A sup-
ports two schemes for determining when to ini-
tiate transmission: Two-Part Deferral, and
Simple Deferral. Selection of the deferral
scheme is determined by the 2-partDefDis bit
(Register 13, LineCTL, Bit D). If the 2-partDef-
Dis bit is clear, the MAC uses a two-part defer-
ral process defined in section 4.2.3.2.1 of the
Ethernet standard (ISO/IEC 8802-3, 1993). If
the 2-partDefDis bit is set, the MAC uses a
simplified deferral scheme. Both schemes are
described below:
3.9.5.2 Two-Part Deferral
In the two-part deferral process, the 9.6 µs In-
ter Packet Gap (IPG) timer is started whenev-
er the internal Carrier Sense signal is
deasserted. If activity is detected during the
first 6.4 µs of the IPG timer, the timer is reset
and then restarted once the activity has
stopped. If there is no activity during the first
6.4 µs of the IPG timer, the IPG timer is al-
lowed to time out (even if network activity is
detected during the final 3.2 µs). The MAC
then begins transmission if a transmit packet is
ready and if it is not in Backoff (Backoff is de-
scribed later in this section). If no transmit
packet is pending, the MAC continues to mon-
itor the network. If activity is detected before a
transmit frame is ready, the MAC defers to the
transmitting station and resumes monitoring
the network.
The two-part deferral scheme was developed
to prevent the possibility of the IPG being
shortened due to a temporary loss of carrier.
Figure 10 diagrams the two-part deferral pro-
cess.
3.9.5.3 Simple Deferral
In the simple deferral scheme, the IPG timer is
started whenever Carrier Sense is deasserted.
Once the IPG timer is finished (after 9.6 µs), if
a transmit frame is pending and if the MAC is
CS8900A
Crystal LAN™ Ethernet Controller
CIRRUS LOGIC PRODUCT DATASHEET
not in Backoff, transmission begins the 9.6 µs
IPG). If no transmit packet is pending, the
MAC continues to monitor the network. If activ-
ity is detected before a transmit frame is ready,
the MAC defers to the transmitting station and
resumes monitoring the network. Figure 11 di-
agrams the simple deferral process.
Ready and Not
in Backoff?
Yes
3.2 μ s
Frame
Wait
Tx
Figure 10. Two-Part Deferral
No
Yes
Yes
Start Monitoring
Network Activity
Yes
Start IPG
No
Transmit
Network
Network
Network
Active?
Timer =
Active?
Active?
6.4 μ s?
No
No
Frame
Timer
IPG
No
Yes
33

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