EP4SGX290KF40C3N Altera, EP4SGX290KF40C3N Datasheet - Page 106

IC STRATIX IV GX 290K 1517FBGA

EP4SGX290KF40C3N

Manufacturer Part Number
EP4SGX290KF40C3N
Description
IC STRATIX IV GX 290K 1517FBGA
Manufacturer
Altera
Series
Stratix® IV GXr

Specifications of EP4SGX290KF40C3N

Number Of Logic Elements/cells
291200
Number Of Labs/clbs
11648
Total Ram Bits
17248
Number Of I /o
744
Voltage - Supply
0.87 V ~ 0.93 V
Mounting Type
Surface Mount
Operating Temperature
0°C ~ 85°C
Package / Case
1517-FBGA
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Number Of Gates
-
Other names
544-2624

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
EP4SGX290KF40C3N
Manufacturer:
Altera
Quantity:
10 000
Part Number:
EP4SGX290KF40C3N
Manufacturer:
ALTERA
0
Part Number:
EP4SGX290KF40C3NB
Manufacturer:
ALTERA
0
4–26
Figure 4–17. Four-Multiplier Adder Mode Shown for a Half DSP Block
Note to
(1) Block output for accumulator overflow and saturate overflow.
Stratix IV Device Handbook Volume 1
Figure
Four-Multiplier Adder
dataa_0[ ]
datab_0[ ]
dataa_1[ ]
datab_1[ ]
datab_2[ ]
dataa_3[ ]
datab_3[ ]
dataa_2[ ]
4–17:
In the four-multiplier adder configuration shown in
implement two four-multiplier adders (one four-multiplier adder per half DSP block).
These modes are useful for implementing one-dimensional and two-dimensional
filtering applications. The four-multiplier adder is performed in two addition stages.
The outputs of two of the four multipliers are initially summed in the two first-stage
adder blocks. The results of these two adder blocks are then summed in the
second-stage adder block to produce the final four-multiplier adder result, as shown
by
Equation 4–2 on page 4–5
Half-DSP Block
clock[3..0]
ena[3..0]
aclr[3..0]
+
+
output_saturate
output_round
and
signa
signb
Equation 4–3 on page
+
Figure
Chapter 4: DSP Blocks in Stratix IV Devices
4–5.
Stratix IV Operational Mode Descriptions
4–17, the DSP block can
overflow (1)
February 2011 Altera Corporation
result[ ]

Related parts for EP4SGX290KF40C3N