DAC10–SPECIFICATIONS
ELECTRICAL CHARACTERISTICS
Parameter
MONOTONICITY
NONLINEARITY
DIFFERENTIAL
NONLINEARITY
SETTLING TIME
OUTPUT CAPACITANCE
PROPAGATION DELAY
OUTPUT VOLTAGE
COMPLIANCE
GAIN TEMPCO
FULL-SCALE SYMMETRY
ZERO-SCALE CURRENT
FULL-SCALE CURRENT
REFERENCE INPUT
SLEW RATE
REFERENCE BIAS
CURRENT
POWER SUPPLY
SENSITIVITY
NL
DNL
t
S
C
O
t
PLH
t
PHL
V
OC
TCI
FS
I
FSS
I
ZS
I
FR
DI/dt
I
B
PPS/
FS
+
PPS/
FS
–
4.5 V
≤
V+
≤
–18 V
–18 V
≤
V–
≤
–10 V
V
S
=
±
15 V; I
REF
= 2 mA
V
S
= +5 V; –7.5 V; I
REF
= 1 mA
V
S
=
±
15 V; I
REF
= 2 mA
V
S
= +5 V; –7.5 V; I
REF
= 1 mA
V
LC
= 0
V
LC
= 0
V
LC
= 0; V
IN
= 0.8 V
V
IN
= 2.0 V
2
–10
–5
0.001
10
(See Note)
3.960
All Bits Switched R
L
= 5 kΩ
R
L
= 0 kΩ
Full-Scale Current Change
<1 LSB
(See Note)
I
FR
–I
FR
All Bits Switched ON or OFF
Settle to 0.05% of FS (See Note)
Symbol
(@ V
S
= 15 V; I
REF
= 2 mA; 0 C
≤
T
A
≤
+70 C for DAC10F and G, unless otherwise noted.
Output characteristics apply to both I
OUT
and I
OUT
.)
DAC10F
Min
Typ
Max
10
0.3
0.3
85
18
50
50
–5.5
+10
±
10
0.1
0.01
3.996
6
–1
–3
±
25
4
0.5
4.032
3.920
0.5
1
135
DAC10G
Min
Typ
Max
10
0.6
0.7
85
18
50
50
–5.5
+10
±
10
0.1
0.01
3.996
6
–1
–3
±
50
4
0.5
4.072
150
1
Units
Bits
LSB
LSB
ns
pF
ns
ns
V
V
ppm/°C
µA
µA
mA
mA/µs
µA
%∆I
FS
/%∆V
%∆I
FS
/%∆V
mA
mA
mA
mA
mW
mW
V
V
µA
µA
Conditions
0.001 0.01
0.0012 0.01
2.3
–9
1.8
–5.9
231
85
4
–15
4
–9
285
88
0.8
2
–10
0.001 0.01
0.0012 0.01
2.3
–9
1.8
–5.9
231
85
4
–15
4
–9
285
88
0.8
–5
0.001
POWER SUPPLY CURRENT I+
I–
I+
I–
POWER DISSIPATION
LOGIC INPUT LEVELS
LOGIC INPUT CURRENTS
P
D
P
D
V
IL
V
IH
I
IL
I
IH
10
ELECTRICAL CHARACTERISTICS
Parameter
MONOTONICITY
NONLINEARITY
DIFFERENTIAL
NONLINEARITY
OUTPUT VOLTAGE
COMPLIANCE
FULL-SCALE CURRENT
FULL-SCALE SYMMETRY
ZERO-SCALE CURRENT
NOTE: Guaranteed by design.
(@ V
S
= 15 V; I
REF
= 2 mA; T
A
= +25 C, unless otherwise noted. Output characteristics
apply to both I
OUT
and I
OUT
.)
Min
10
DAC10F
Typ
Max
Min
10
0.3
0.3
0.5
1
–5
3.956
0.6
0.7
–6/+15 +10
3.996
0.1
0.01
1
DAC10G
Typ
Max
Units
Bits
LSB
LSB
V
Symbol Conditions
NL
DNL
V
OC
I
FS
I
FSS
I
ZS
Full-Scale Current Change, <1 LSB
V
REF
= 10.000 V,
R14 = R15 = 5.000 kΩ
I
FR
–I
FR
–5
3.978
–6/+18 +10
3.996
0.1
0.01
4.014
4
0.5
4.036 mA
0.4
0.5
µA
µA
–2–
REV. D
DAC10
WAFER TEST LIMITS
Parameter
RESOLUTION
MONOTONICITY
NONLINEARITY
OUTPUT VOLTAGE COMPLIANCE
OUTPUT CURRENT RANGE
ZERO-SCALE CURRENT
LOGIC INPUT “1”
LOGIC INPUT “0”
POSITIVE SUPPLY CURRENT
NEGATIVE SUPPLY CURRENT
I
ZS
V
IH
V
IL
I+
I–
NL
V
OC
True 1 LSB
I
FS
±
3.996 mA
All Bits OFF
I
IN
= 100 nA
V
LC
@ Ground
I
IN
= –100
µA
V+ = 15 V
V+ = –15 V
(@ V
S
= 15 V, I
REF
= 2 mA, T
A
= +25 C, unless otherwise noted. Output characteristics refer to both
I
OUT
and I
OUT
).
Symbol
Conditions
DAC10N
Limit
10
10
±
0.5
+10
–5
±
18
0.5
2
0.8
4
–15
Units
Bits min
Bits min
LSB max
V max
V min
µA
max
µA
max
V min
V max
mA max
mA max
NOTE: Electrical tests are performed at wafer probe to the limits shown. Due to variations in assembly methods and normal yield loss, yield after packaging is not
guaranteed for standard produce dice.
TYPICAL ELECTRICAL CHARACTERISTICS
Parameter
SETTLING TIME
GAIN TEMPERATURE
COEFFICIENT (TC)
OUTPUT CAPACITANCE
OUTPUT RESISTANCE
Symbol
t
S
Conditions
(@ V
S
= 15 V, I
REF
= 2 mA, unless otherwise noted. Output characteristics
refer to both I
OUT
and I
OUT
).
DAC10F
Typ
85
±
10
18
10
Units
ns
ppm FS/°C
pF
MΩ
To
±
1/2 LSB When Output Is Switched from 0 to FS
V
REF
Tempco Excluded
DICE CHARACTERISTICS
DIE SIZE 0.091 0.087 inch, 7,917 sq. mils
(2.311 2.210 mm, 5.107 sq. mm)
REV. D
–3–
DAC10
ABSOLUTE MAXIMUM RATINGS
1
ORDERING GUIDE
Operating Temperature
DAC10FX, GX, GS, GP . . . . . . . . . . . . . . . . 0°C to +70°C
Junction Temperature (T
J
) . . . . . . . . . . . . . –65°C to +150°C
Storage Temperature . . . . . . . . . . . . . . . . . . –65°C to +150°C
Lead Temperature (Soldering, 60 sec) . . . . . . . . . . . +300°C
V+ Supply to V– Supply . . . . . . . . . . . . . . . . . . . . . . . . . 36 V
Logic Inputs . . . . . . . . . . . . . . . . . . . . . . V– to V– plus 36 V
V
LC
. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . V– to V+
Analog Current Outputs . . . . . . . . . . . . . . . . +18 V to –18 V
Reference Inputs (V
16
to V
17
) . . . . . . . . . . . . . . . . . V– to V+
Reference Input Differential Voltage (V
16
to V
17
) . . . .
±
18 V
Reference Input Current (I
16
) . . . . . . . . . . . . . . . . . . 2.5 mA
Package Type
18-Lead Hermetic DIP (X)
18-Lead SOIC (S)
18-Lead Plastic DIP (P)
JA
2
JC
Model
DAC10FX
DAC10GX
DAC10GS
DAC10GP
INL
(LSB)
0.5
1
1
1
Temperature Package
Package
Range
Description Options
0°C to +70°C
0°C to +70°C
0°C to +70°C
0°C to +70°C
Cerdip
Cerdip
SOIC
Plastic DIP
Q-18
Q-18
R-18
N-18
PIN CONNECTIONS
18-Lead Hermetic DIP
18-Lead Plastic DIP
Units
°C/W
°C/W
°C/W
18-Lead SOIC
48
89
74
15
28
33
V
LC 1
I
O
V–
2
3
18
COMP
17
V
REF
(–)
16
V
REF
(+)
NOTES
1
Absolute maximum ratings apply to both DICE and packaged parts, unless
otherwise noted.
2
θ
JA
is specified for worst case mounting conditions, i.e.,
θ
JA
is specified for device
in socket for Cerdip packages.
I
O 4
(MSB) B1
5
DAC10
15
V+
TOP VIEW
14
B10 (LSB)
(Not to Scale)
13
B9
B2
6
B3
7
B4
8
B5
9
12
B8
11
B7
10
B6
–4–
REV. D
Typical Performance Characteristics–DAC10
8.0
7.2
OUTPUT CURRENT – mA
T
A
= T
MIN
TO T
MAX
ALL BITS ON
OUTPUT VOLTAGE – Volts
+28
+24
+20
+16
+12
+8
+4
0
–4
–8
SHADED AREA INDICATES
PERMISSABLE OUTPUT
VOLTAGE RANGE
FOR V– = –15V
I
REF
2.0mA
FOR OTHER V– OR I
REF
SEE OUTPUT CURRENT
vs. OUTPUT VOLTAGE
CURVE
6.4
5.6
4.8
4.0
3.2
2.4
1.6
0.8
I
REF
= 0.2mA
–6
–2
2
6
10 14
OUTPUT VOLTAGE – Volts
18
I
REF
= 1mA
V– = –15V, V– = –10V I
REF
= 2mA
0mA
I
OUT
1.0mA
I
REF
= 2mA
I
OUT
2.0mA
(0000000000)
(11111111111)
0
–14 –10
–12
–50
0
+50 +100 +150
TEMPERATURE – C
Figure 1. True and Complementary
Output Operations
Figure 2. Output Current vs. Output
Voltage (Output Voltage Compliance)
Figure 3. Output Voltage Compliance
vs. Temperature
10
10
POWER SUPPLY CURRENT – mA
I–
10
BITS MAY BE HIGH OR LOW
I – WITH I
REF
= 2mA
POWER SUPPLY CURRENT – mA
POWER SUPPLY CURRENT – mA
9
8
7
6
5
4
3
2
1
0
0
9
8
7
6
5
4
3
2
1
0
0
9
8
7
6
V– = –15V
I
REF
= 2.0mA
I–
ALL BITS "HIGH" OR "LOW"
I – WITH I
REF
= 1mA
I – WITH I
REF
= 0.2mA
ALL BITS MAY BE "HIGH" OR "LOW"
5
4
3
2
1
V+ = +15V
I+
I+
I – WITH I
REF
= 0.2mA
4
6 8 10 12 14 16 18 20
2
V+, POSITIVE POWER SUPPLY – V
DC
–20
–4
–8
–12
–16
V–, NEGATIVE POWER SUPPLY – V
DC
0
–50
0
+50 +100 +150
TEMPERATURE – C
Figure 4. Power Supply Current
vs. V+
Figure 5. Power Supply Current
vs. V–
Figure 6. Power Supply Current vs.
Temperature
BASIC CONNECTIONS
+V
REF
I
FR
=
+V
REF
1023
R
REF
1024
2
MSB
LSB
R
REF
I
IN
V
IN
R
IN
4
I
O
I
O
I
REF
16
17
DAC10
I
O
+ I
O
= I
FR
FOR ALL
LOGIC STATES
R
REF
(R16)
I
REF
R17
17
B
1
B
2
B
3
B
4
B
5
B
6
B
7
B
8
B
9
B
10
5
6
7
8
9
10 11 12 13 14
+V
REF
16
DAC10
3
C
C
COMP
0.1 F
V–
0.01 F
V+
V
LC
18
15
1
2
I
REF
R
REF
R
REF
V
IN
R17
+V
REF
R17
(OPTIONAL)
PEAK NEGATIVE SWING OF I
IN
FOR FIXED REFERENCE,
TTL OPERATION,
TYPICAL VALUES ARE:
V
REF
= +10.000V
R
REF
= 5.000k
R15 = R
REF
C
C
= 0.01 F
V
LC
= 0V (GROUND)
16
DAC10
17
HIGH INPUT
IMPEDANCE
+V
REF
MUST BE ABOVE PEAK POSITIVE SWING OF V
IN
Figure 7. Basic Positive Reference Operation
Figure 8. Accommodating Bipolar References
CAUTION
ESD (electrostatic discharge) sensitive device. Electrostatic charges as high as 4000 V readily
accumulate on the human body and test equipment and can discharge without detection.
WARNING!
ESD SENSITIVE DEVICE
REV. D
–5–