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SST-MELODY-DAP_15 Datasheet, PDF (9/24 Pages) Analog Devices – Audio Processor
115
110
105
100
95
90
85 82mW
80
75 70mW
70
65 61mW
60
55
50
55
POWER, INTERNAL1, 2, 3
110mW
VDD – 2.65V
VDD – 2.5V
VDD – 2.35V
95mW
82mW
60
65
70
75
1/tCK – MHz
30
28
26
24mW
24
22
20mW
20
18
16.5mW
16
POWER, IDLE1, 2, 4
VDD – 2.65V
28mW
VDD – 2.5V
24mW
VDD – 2.35V
20mW
14
50
55
60
65
70
75
1/tCK – MHz
POWER, IDLE nMODES2
26
24mW
24
80
80
IDLE
22
20mW
20
18
16 15mW
14
14.25mW
16.4mW
15.7mW
IDLE (16)
IDLE (128)
12
50
55
60
65
70
75
80
1/tCK – MHz
NOTES
VALID FOR ALL TEMPERATURE GRADES.
1 POWER REFLECTS DEVICE OPERATING WITH NO OUTPUT LOADS.
2 TYPICAL POWER DISSIPATION AT 2.5V V DIDINT AND 25؇C, EXCEPT
WHERE SPECIFIED.
3 IDO MEASUREMENT TAKEN WITH ALL INSTRUCTIONS EXECUTING
FROM INTERNAL MEMORY. 50% OF THE INSTRUCTIONS ARE
MULTIFUNCTION (TYPES 1, 4, 5, 12, 13, 14), 20% ARE TYPE 2 AND TYPE 6,
AND 20% ARE IDLE INSTRUCTIONS.
4 IDLE REFERS TO STATE OF OPERATING DURING EXECUTION OF IDLE
INSTRUCTION. DEASSERTED PINS ARE DRIVEN TO EITHER V DD OR GND.
Figure 2. Power vs. Frequency
SST-Melody-DAP
Capacitive Loading
Figures 3 and 4 show the capacitive loading characteristics of
the SST-Melody-DAP.
30
T = 85؇C
VDD = 0V TO 2.0V
25
20
15
10
5
0
0
50
100
150
200
250
300
CL – pF
Figure 3. Typical Output Rise Time vs. Load Capacitance
(at Maximum Ambient Operating Temperature)
18
16
14
12
10
8
6
4
2
NOMINAL
–2
–4
–6
0
50
100
150
200
250
CL – pF
Figure 4. Typical Output Valid Delay or Hold vs.
Load Capacitance, CL (at Maximum Ambient
Operating Temperature)
REV. 0
–9–