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 LF2246
DEVICES INCORPORATED
11 x 10-bit Image Filter
LF2246
DEVICES INCORPORATED
11 x 10-bit Image Filter
DESCRIPTION
The LF2246 consists of an array of four 11 x 10-bit registered multipliers followed by a summer and a 25-bit accumulator. All multiplier inputs are user accessible and can be updated every clock cycle with either fractional or integer two's complement data. The pipelined architecture has fully registered input and output ports and an asynchronous three-state output enable control to simplify the design of complex systems. The pipeline latency for all inputs is five clock cycles. Storage for mixing and filtering coefficients can be accomplished by holding the data or coefficient inputs over multiple clock cycles. A 25-bit accumulator path allows cumulative word growth which may be internally rounded to 16 bits. Output data is updated every clock cycle and may be held under user control. All inputs, outputs, and controls are registered on the rising edge of clock, except for OEN. The LF2246 operates at a clock rate of 66 MHz over the full temperature and supply voltage ranges. The LF2246 is applicable for performing pixel interpolation in image manipulation and filtering applications. The LF2246 can perform a bilinear interpolation of an image (4pixel kernels) at real-time video rates when used with an image resampling sequencer. Larger kernels or more complex functions can be realized by utilizing multiple devices. Unrestricted access to all data and coefficient input ports provides the LF2246 with considerable flexibility in applications such as digital filters, adaptive FIR filters, mixers, and other similar systems requiring high-speed processing.
FEATURES
u 66 MHz Data and Coefficient Input and Computation Rate u Four 11 x 10-bit Multipliers with Individual Data and Coefficient Inputs and a 25-bit Accumulator u User-Selectable Fractional or Integer Two's Complement Data Formats u Fully Registered, Pipelined Architecture u Input and Output Data Registers, with User-Configurable Enables u Three-State Outputs u Fully TTL Compatible u Ideally Suited for Image Processing and Filtering Applications u Replaces TRW/Raytheon/Fairchild TMC2246 u 120-pin PQFPP
LF2246 BLOCK DIAGRAM
D19-0 ENSEL C110-0 ENB1 D29-0 C210-0 ENB2 D39-0 C310-0 ENB3 D49-0 C410-0 ENB4
10
11
10
11
10
11
10
11
22 ACC 25
22
OCEN
FSEL
MS
LS
OEN
CLK
TO ALL REGISTERS
S15-0
Video Imaging Products
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LF2246
DEVICES INCORPORATED
11 x 10-bit Image Filter
TABLE 1.
Coefficient
ENB1-4 1
FIGURE 1A.
INPUT FORMATS
Data Fractional Two's Complement (FSEL = 0)
INPUT REGISTER CONTROL
ENSEL 1 0 X INPUT REGISTER HELD Data `N' Coefficient `N' None
987 -20 2-1 2-2
(Sign)
210 2-7 2-8 2-9
10 9 8 -21 20 2-1
(Sign)
210 2-7 2-8 2-9
1 0
Integer Two's Complement (FSEL = 1)
987 -29 28 27
(Sign)
210 22 21 20
10 9 8 -210 29 28
(Sign)
210 22 21 20
X = "Don't Care" `N' = 1, 2, 3, or 4
OCEN -- Clock Enable When OCEN is LOW, data in the premux register (accumulator output) is loaded into the output register on the next rising edge of CLK. When OCEN is HIGH, data in the pre-mux register is held preventing the output register's contents from changing (if FSEL does not change). Accumulation continues internally as long as ACC is HIGH, despite the state of OCEN. FSEL -- Format Select
FIGURE 1B.
OUTPUT FORMATS
Fractional Two's Complement (FSEL = 0)
15 14 13 12 11 10 9 8 7 6 5 4 3 2 1 0 -26 25 24 23 22 21 20 2-1 2-2 2-3 2-4 2-5 2-6 2-7 2-8 2-9
(Sign)
Integer Two's Complement (FSEL = 1) 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1 0 -215 214 213 212 211 210 29 28 27 26 25 24 23 22 21 20
(Sign)
SIGNAL DEFINITIONS Power
VCC and GND
Controls
ENB1-ENB4 -- Input Enable
The ENBN (N = 1, 2, 3, or 4) input allows either or both the DN and CN registers to +5 V power supply. All pins must be be updated on each clock cycle. When connected. ENBN is LOW, registers DN and CN are both strobed by the next rising edge of Clock CLK. When ENBN is HIGH and ENSEL CLK -- Master Clock is LOW, register DN is strobed while The rising edge of CLK strobes all en- register CN is held. If both ENBN and abled registers. All timing specifica- ENSEL are HIGH, register DN is held, tions are referenced to the rising edge of and register CN is strobed (Table 1). CLK. ENSEL -- Enable Select
When the FSEL input is LOW, the data input during the current clock cycle is assumed to be in fractional two's complement format, and the upper 16 bits of the accumulator are presented at the output. Rounding of the accumulator result to 16 bits is performed if the accumulator control input ACC is LOW. When FSEL is HIGH, the data input is assumed to be in integer two's complement format, and the lower 16 bits of the accumulator are presented at the output. No rounding is performed when FSEL is HIGH. ACC -- Accumulator Control
Inputs
D19-0-D49-0 -- Data Input D1-D4 are 10-bit data input registers. The LSB is DN0 (Figure 1a). C110-0-C410-0 -- Coefficient Input C1-C4 are 11-bit coefficient input registers. The LSB is CN0 (Figure 1a).
Outputs
S15-0 -- Data Output The current 16-bit result is available on the S15-0 outputs (Figure 1b).
The ACC input determines whether internal accumulation is performed on the data input during the current clock cycle. If ACC is LOW, no accumulation is performed, the prior accumulated sum is cleared, and the current sum of products is output. If FSEL is also LOW, OEN -- Output Enable When the OEN signal is LOW, the cur- one-half LSB rounding to 16 bits is perrent data in the output register is avail- formed on the result. This allows sumable on the S15-0 pins. When OEN is mations without propagating roundoff HIGH, the outputs are in a high-imped- errors. When ACC is HIGH, the emerging product is added to the sum of the ance state. previous products, without additional rounding.
The ENSEL input in conjunction with the individual input enables ENB1- ENB4 determines whether the data or the coefficient input registers will be held on the next rising edge of CLK (Table 1).
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LF2246
DEVICES INCORPORATED
11 x 10-bit Image Filter
MAXIMUM RATINGS Above which useful life may be impaired (Notes 1, 2, 3, 8)
Storage temperature ........................................................................................................... -65C to +150C Operating ambient temperature ........................................................................................... -55C to +125C VCC supply voltage with respect to ground ............................................................................ -0.5 V to +7.0 V Input signal with respect to ground ............................................................................... -0.5 V to VCC + 0.5 V Signal applied to high impedance output ...................................................................... -0.5 V to VCC + 0.5 V Output current into low outputs ............................................................................................................. 25 mA Latchup current ............................................................................................................................... > 400 mA
OPERATING CONDITIONS To meet specified electrical and switching characteristics
Mode Active Operation, Commercial Active Operation, Military Temperature Range (Ambient) 0C to +70C -55C to +125C Supply Voltage 4.75 V VCC 5.25 V 4.50 V VCC 5.50 V
ELECTRICAL CHARACTERISTICS Over Operating Conditions (Note 4)
Symbol VOH VOL VIH VIL IIX IOZ ICC1 ICC2 CIN COUT Parameter Output High Voltage Output Low Voltage Input High Voltage Input Low Voltage Input Current Output Leakage Current VCC Current, Dynamic VCC Current, Quiescent Input Capacitance Output Capacitance
(Note 3)
Test Condition VCC = Min., IOH = -2.0 mA VCC = Min., IOL = 4.0 mA
Min 2.4
Typ
Max
Unit V
0.4 2.0 0.0 VCC 0.8 10 40 100 6 10 10
V V V A A mA mA pF pF
Ground VIN VCC (Note 12)
(Note 12) (Notes 5, 6) (Note 7)
TA = 25C, f = 1 MHz TA = 25C, f = 1 MHz
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432109876543210987654321 432109876543210987654321 432109876543210987654321
*DISCONTINUED SPEED GRADE
Symbol Symbol
S15-0
HIGH IMPEDANCE
7654321098765432121098765432109876543210987654321 1 7654321098765432121098765432109876543210987654321 765432109876543212109876543210987654321098765432 7654321098765432121098765432109876543210987654321 7654321098765432121098765432109876543210987654321 7654321098765432121098765432109876543210987654321 7654321098765432121098765432109876543210987654321 7654321098765432121098765432109876543210987654321 7654321098765432121098765432109876543210987654321 7654321098765432121098765432109876543210987654321 7654321098765432121098765432109876543210987654321 7654321098765432121098765432109876543210987654321 7654321098765432121098765432109876543210987654321 7654321098765432121098765432109876543210987654321 7654321098765432121098765432109876543210987654321 7654321098765432121098765432109876543210987654321 7654321098765432121098765432109876543210987654321 7654321098765432121098765432109876543210987654321 7654321098765432121098765432109876543210987654321 7654321098765432121098765432109876543210987654321 7654321098765432121098765432109876543210987654321 7654321098765432121098765432109876543210987654321 7654321098765432121098765432109876543210987654321 7654321098765432121098765432109876543210987654321 7654321098765432121098765432109876543210987654321 7654321098765432121098765432109876543210987654321 7654321098765432121098765432109876543210987654321 7654321098765432121098765432109876543210987654321 7654321098765432121098765432109876543210987654321 7654321098765432121098765432109876543210987654321 7654321098765432121098765432109876543210987654321 7654321098765432121098765432109876543210987654321 7654321098765432121098765432109876543210987654321 7654321098765432121098765432109876543210987654321 7654321098765432121098765432109876543210987654321 7654321098765432121098765432109876543210987654321 7654321098765432121098765432109876543210987654321 7654321098765432121098765432109876543210987654321 7654321098765432121098765432109876543210987654321 7654321098765432121098765432109876543210987654321 7654321098765432121098765432109876543210987654321 7654321098765432121098765432109876543210987654321 7654321098765432121098765432109876543210987654321 7654321098765432121098765432109876543210987654321 7654321098765432121098765432109876543210987654321 7654321098765432121098765432109876543210987654321 765432109876543212109876543210987654321098765432 7654321098765432121098765432109876543210987654321 7654321098765432121098765432109876543210987654321 1 7654321098765432121098765432109876543210987654321
432109876543210987654321 32109876543210987654321 432109876543210987654321 4 432109876543210987654321 432109876543210987654321 432109876543210987654321 432109876543210987654321 432109876543210987654321 432109876543210987654321 432109876543210987654321 432109876543210987654321 432109876543210987654321 432109876543210987654321 432109876543210987654321 432109876543210987654321 432109876543210987654321 432109876543210987654321 432109876543210987654321 432109876543210987654321 432109876543210987654321 432109876543210987654321 432109876543210987654321 432109876543210987654321 432109876543210987654321 432109876543210987654321 432109876543210987654321 432109876543210987654321 432109876543210987654321 432109876543210987654321 432109876543210987654321 432109876543210987654321 432109876543210987654321 432109876543210987654321 432109876543210987654321 432109876543210987654321 432109876543210987654321 432109876543210987654321 432109876543210987654321 432109876543210987654321 432109876543210987654321 432109876543210987654321 432109876543210987654321 432109876543210987654321 432109876543210987654321 432109876543210987654321 432109876543210987654321 432109876543210987654321 432109876543210987654321 432109876543210987654321
DEVICES INCORPORATED
SWITCHING WAVEFORMS
MILITARY OPERATING RANGE (-55C to +125C) Notes 9, 10 (ns)
COMMERCIAL OPERATING RANGE (0C to +70C) Notes 9, 10 (ns)
SWITCHING CHARACTERISTICS
tENA
tDIS
tD
tH
tS
tPWH
tPWL
tCYC
tENA
tDIS
tD
tH
tS
tPWH
tPWL
tCYC
C110-0 - C410-0
CONTROLS (Except OEN)
D19-0 - D49-0
OEN
CLK
Three-State Output Enable Delay (Note 11)
Three-State Output Disable Delay (Note 11)
Output Delay
Input Hold Time
Input Setup Time
Clock Pulse Width High
Clock Pulse Width Low
Cycle Time
Parameter
Parameter
Three-State Output Enable Delay (Note 11)
Three-State Output Disable Delay (Note 11)
Output Delay
Input Hold Time
Input Setup Time
Clock Pulse Width High
Clock Pulse Width Low
Cycle Time
tS
CN
DN
1
tH
DN+1
CN+1
2
tDIS
tPWH
2-14
3 tENA tPWL
Min
10
15
33
10
0
33*
4
Max
15
15
15
SN-1
Video Imaging Products 11 x 10-bit Image Filter
Min Min
10
15
33
10
10
10
25
0
0
8
LF2246- 25
tD
33*
5
Max
Max
15
15
15
15
15
13
LF2246-
SN
Min
Min
10
10
25
15
08/16/2000-LDS.2246-K
0
8
7
0
7
5
6
25*
LF2246
15
SN+1
Max
Max
15 15 13
11
15 15
LF2246
DEVICES INCORPORATED
11 x 10-bit Image Filter
NOTES
9. AC specifications are tested with input transition times less than 3 ns, output reference levels of 1.5 V (except tDIS test), and input levels of nominally 0 to 3.0 V. Output loading may be a resistive divider which provides for specified IOH and IOL at an output voltage of VOH min and VOL max 2. The products described by this spec- respectively. Alternatively, a diode ification include internal circuitry de- bridge with upper and lower current signed to protect the chip from damagsources of IOH and IOL respectively, ing substrate injection currents and ac- and a balancing voltage of 1.5 V may be cumulations of static charge. Neverthe- used. Parasitic capacitance is 30 pF less, conventional precautions should minimum, and may be distributed. be observed during storage, handling, and use of these circuits in order to This device has high-speed outputs caavoid exposure to excessive electrical pable of large instantaneous current stress values. pulses and fast turn-on/turn-off times. As a result, care must be exercised in the 3. This device provides hard clamping of testing of this device. The following transient undershoot and overshoot. In- measures are recommended: put levels below ground or above VCC will be clamped beginning at -0.6 V and a. A 0.1 F ceramic capacitor should be VCC + 0.6 V. The device can withstand installed between VCC and Ground indefinite operation with inputs in the leads as close to the Device Under Test range of -0.5 V to +7.0 V. Device opera- (DUT) as possible. Similar capacitors tion will not be adversely affected, how- should be installed between device VCC ever, input current levels will be well in and the tester common, and device ground and tester common. excess of 100 mA. 4. Actual test conditions may vary from b. Ground and VCC supply planes those designated but operation is guar- must be brought directly to the DUT anteed as specified. socket or contactor fingers. 5. Supply current for a given applica- c. Input voltages should be adjusted to tion can be accurately approximated by: compensate for inductive ground and VCC noise to maintain required DUT input NCV2 F levels relative to the DUT ground pin. where 4 10. Each parameter is shown as a minimum or maximum value. Input requirements are specified from the point of view of the external system driving the chip. Setup time, for example, is specified as a minimum since the exter6. Tested with all outputs changing ev- nal system must supply at least that ery cycle and no load, at a 30 MHz clock much time to meet the worst-case requirements of all parts. Responses from rate. the internal circuitry are specified from 7. Tested with all inputs within 0.1 V of the point of view of the device. Output VCC or Ground, no load. delay, for example, is specified as a 8. These parameters are guaranteed maximum since worst-case operation of any device always provides data within but not 100% tested. that time. N = total number of device outputs C = capacitive load per output V = supply voltage F = clock frequency 1. Maximum Ratings indicate stress specifications only. Functional operation of these products at values beyond those indicated in the Operating Conditions table is not implied. Exposure to maximum rating conditions for extended periods may affect reliability. 11. For the tENA test, the transition is measured to the 1.5 V crossing point with datasheet loads. For the tDIS test, the transition is measured to the 200mV level from the measured steady-state output voltage with 10mA loads. The balancing voltage, VTH, is set at 3.5 V for Z-to-0 and 0-to-Z tests, and set at 0 V for Zto-1 and 1-to-Z tests. 12. These parameters are only tested at the high temperature extreme, which is the worst case for leakage current.
FIGURE A. OUTPUT LOADING CIRCUIT
DUT
S1 IOL CL IOH VTH
FIGURE B. THRESHOLD LEVELS
tENA OE
Z 0
1.5 V 1.5 V 1.5 V
tDIS
3.5V Vth VOL*
0.2 V
0 1
Z Z
1.5 V
VOH*
0.2 V
Z
1
0V Vth VOL* Measured VOL with IOH = -10mA and IOL = 10mA VOH* Measured VOH with IOH = -10mA and IOL = 10mA
Video Imaging Products
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LF2246
DEVICES INCORPORATED
11 x 10-bit Image Filter
ORDERING INFORMATION
ENSEL ENB4 ENB1 ENB2 ENB3 D49 D48 D47 D46 D45 D44 D43 D42 D41 GND D40 C410 C49 VCC C48 C47 C46 C45 C44 C43 C42 C41 C40 C30 C31 120 119 118 117 116 115 114 113 112 111 110 109 108 107 106 105 104 103 102 101 100 99 98 97 96 95 94 93 92 91
CLK FSEL ACC OCEN OEN S15 S14 GND S13 S12 S11 VCC S10 S9 S8 GND S7 S6 S5 VCC S4 S3 S2 GND S1 S0 D19 D18 D17 D16 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 90 89 88 87 86 85 84 83 82 81 80 79 78 77 76 75 74 73 72 71 70 69 68 67 66 65 64 63 62 61
120-pin
Top View
C32 C33 C34 C35 C36 C37 C38 C39 C310 D30 D31 D32 D33 D34 D35 D36 D37 D38 GND D39 D29 D28 D27 D26 D25 D24 D23 D22 D21 D20
Speed
0C to +70C -- COMMERCIAL SCREENING
25 ns 15 ns LF2246QC25 LF2246QC15
-40C to +85C -- COMMERCIAL SCREENING
D15 D14 D13 D12 D11 D10 C110 C19 C18 C17 C16 GND C15 C14 C13 VCC C12 C11 C10 C20 C21 C22 C23 C24 C25 C26 C27 C28 C29 C210
31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56 57 58 59 60
Plastic Quad Flatpack (Q1)
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121098765432109876543210987654321210987654321098765432109876543212109876543210987654321098765432 1210987654321098765432109876543212109876543210987654321098765432121098765432109876543210987654321 1210987654321098765432109876543212109876543210987654321098765432121098765432109876543210987654321 1210987654321098765432109876543212109876543210987654321098765432121098765432109876543210987654321 1210987654321098765432109876543212109876543210987654321098765432121098765432109876543210987654321 1210987654321098765432109876543212109876543210987654321098765432121098765432109876543210987654321 1210987654321098765432109876543212109876543210987654321098765432121098765432109876543210987654321 1210987654321098765432109876543212109876543210987654321098765432121098765432109876543210987654321 1210987654321098765432109876543212109876543210987654321098765432121098765432109876543210987654321 1210987654321098765432109876543212109876543210987654321098765432121098765432109876543210987654321 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DEVICES INCORPORATED
Speed
-55C to +125C -- MIL-STD-883 COMPLIANT
-40C to +80C -- COMMERCIAL SCREENING
0C to +70C -- COMMERCIAL SCREENING
ORDERING INFORMATION
120-pin
M
G
N
H
D
C
K
E
B
A
F
L
J
ENSEL ENB2 ENB3 D47
ACC FSEL ENB4 D49
D16
D19
S15
S11
S13
S0
S2
S4
S6
S7
S9
1
OEN CLK ENB1 D48
D13
D14
D17
S10
S12
S14 OCEN
S1
S3
S5
S8
2
GND
GND
GND
VCC
VCC
D10
D11 C110 C17
D15
D18
3
C18
D12
4
Ceramic Pin Grid Array (G4)
Discontinued Package
Top View Through Package (i.e., Component Side Pinout)
C16
C19 GND VCC
D46
D45
5
2-17
KEY
C14
D44 GND VCC
D43
D42
C15
6
C12
C13
D40
D41 C410
7
C11
C10
C20
C49
8
C21
C22
C24
C45
C47
C48
9
C23
C25
C28
C41
C44
C46
10
GND D38
C26
C29
D20
D23
D35
D31
C38 C310 D30
C34
C31
C42
C43
D27
11
Video Imaging Products 11 x 10-bit Image Filter
C27 C210 D21 D24 D26 D29 D36 D32 C37 C33 C30 C40
12
D22
D25
D28
D39
D37
D34
D33
C39
C36
C35
C32
13
08/16/2000-LDS.2246-K
LF2246


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