The LT®1004 micropower voltage reference is a
2-terminal bandgap reference diode designed to provide
high accuracy and excellent temperature characteristics at
very low operating currents. Optimization of the key
parameters in the design, processing and testing of the
device results in accuracy specifications previously attainable only with selected units. Below is a distribution plot of
reference voltage for a typical lot of LT1004-1.2. Virtually
all of the units fall well within the prescribed limits of
±4mV.
The LT1004 is a pin-for-pin replacement for the
LM185/LM385 series of references with improved accuracy specifications. More important, the LT1004 is an
attractive device for use in systems where accuracy was
previously obtained at the expense of power consumption
and trimming.
U
TYPICAL APPLICATIO
Micropower Cold Junction Compensation for Thermocouples
*
100k
3V
LITHIUM
LT1004-1.2
THERMOCOUPLE
TYPER1
J233k
K299k
T300k
S2.1M
R1
1684Ω
186Ω
+
–
*QUIESCENT CURRENT ≅ 15µA
†
YELLOW SPRINGS INST. CO.
PART #44007
COMPENSATES WITHIN
±1°C FROM 0°C TO 60°C
5k AT 25°C
1.8k
†
+
–
1004 TA01
For a low drift micropower reference with guaranteed
temperature coefficient, see the LT1034 data sheet.
, LTC and LT are registered trademarks of Linear Technology Corporation.
Typical Distribution of
Reference Voltage (LT1004-1.2)
200
180
160
140
120
100
80
NUMBER OF PARTS
60
40
20
1.2325
1.233
1.2335
1.234
1.2345
1.235
1200 PARTS
T
1.2355
1.236
= 25°C
A
1.2365
1004 TA02
1.237
1.2375
1
Page 2
LT1004
WWWU
ABSOLUTE AXI U RATI GS
(Note 1)
Reverse Breakdown Current ................................. 30mA
Forward Current .................................................. 10mA
Storage Temperature Range ................ –65°C to 150°C
Lead Temperature (Soldering, 10 sec)................. 300°C
UU
W
Operating Temperature Range
LT1004M (OBSOLETE) .................... – 55°C to 125°C
LT1004I ............................................. – 40°C to 85°C
LT1004C................................................. 0°C to 70°C
PACKAGE/ORDER I FOR ATIO
BOTTOM VIEW
12
GND
H PACKAGE
2-LEAD TO-46 METAL CAN
T
= 150°C, θJA = 440°C/W, θJC = 80°C/W
JMAX
ORDER PART
NUMBER
LT1004MH-1.2
LT1004MH-2.5
LT1004CH-1.2
LT1004CH-2.5
OBSOLETE PACKAGE
Consider the SO-8 or Z Packages for Alternate Source
Consult LTC Marketing for parts specified with wider operating temperature ranges.
Wide Band Noise (RMS)IR = 100µA, 10Hz ≤ f ≤ 10kHz60120µV
Long Term StabilityIR = 100µA, TA = 25°C ± 0.1°C2020ppm/kHr
Z
= 25°C unless otherwise noted.
A
LT1004M: –55°C ≤ T
LT1004C: 0°C ≤ T
LT1004I: –40°C ≤ TA ≤ 85°C●1.2201.2301.2452.4602.5002.530V
≤ IR ≤ 20mA (Note 3)2020ppm/°C
MIN
≤ IR ≤ 1mA1.01.0mV
MIN
1mA ≤ IR ≤ 20mA1010mV
≤ 125°C●1.2201.2301.2452.4602.5002.535V
A
≤ 70°C●1.2251.2351.2452.4702.5002.530V
A
●2020mV
●1.51.5Ω
Note 3: Selected devices with guaranteed maximum temperature
coefficient are available upon request.
For MIL-STD components, please refer to LTC 883C data sheet for test
listing and parameters.
LT1004-1.2LT1004-2.5
2
Page 3
FORWARD CURRENT (mA)
FORWARD VOLTAGE (V)
1.2
0.8
0.4
0
0.01110100
1004 G11
0.1
TA = 25°C
TIME (µs)
0
VOLTAGE (V)
500100600
1004 G09
1.5
1.0
0.5
0
5V
0
36k
V
IN
V
OUT
OUTPUT
INPUT
UW
TYPICAL PERFOR A CE CHARACTERISTICS
LT1004
(1.2V)
Reverse Characteristics
100
–55°C TO 125°C
10
1
REVERSE CURRENT (µA)
0.1
0
0.4
0.2
REVERSE VOLTAGE (V)
Temperature Drift
1.245
1.240
1.235
1.230
REVERSE VOLTAGE (V)
1.225
–35125
–55
52565
–15
TEMPERATURE (°C)
0.6
45
0.8
1.0
1.2
85 105
1004 G04
1004 G01
1.4
Reverse Voltage Change
16
–55°C TO 125°C
12
8
4
0
OUTPUT VOLTAGE CHANGE (mV)
–4
0.01110100
0.1
REVERSE CURRENT (mA)
Reverse Dynamic Impedance
100
10
1
DYNAMIC IMPEDANCE (Ω)
0.1
0.01110100
0.1
REVERSE CURRENT (mA)
–55°C TO 125°C
f = 25Hz
1004 G02
1004 G05
Forward Characteristics
Reverse Dynamic Impedance
10k
TA = 25°C
= 100µA
I
R
1k
100
10
DYNAMIC IMPEDANCE (Ω)
1
0.1
100
10
1k
FREQUENCY (Hz)
10k
100k
1M
1004 G06
Noise Voltage
700
600
500
400
300
NOISE (nV/√Hz)
200
100
0
101k10k100k
100
FREQUENCY (Hz)
IR = 100µA
= 25°C
T
A
1004 G07
Filtered Output Noise
70
IR = 100µA
60
100µA
50
40
30
NOISE (nV/√Hz)
20
10
R
0
100
Reponse Time
RC LOW PASS
C
1k10k100k
FREQUENCY (Hz)
1004 G08
3
Page 4
LT1004
TIME (µs)
VOLTAGE (V)
500100
1004 G17
3
2
1
0
5V
0
24k
V
IN
V
OUT
OUTPUT
INPUT
UW
TYPICAL PERFOR A CE CHARACTERISTICS
(2.5V)
2.515
2.510
2.505
2.500
2.495
2.490
REFERENCE VOLTAGE (V)
2.485
2.480
–35125
–55
52565
–15
TEMPERATURE (°C)
Reverse Characteristics
100
–55°C TO 125°C
10
1
REVERSE CURRENT (µA)
0.1
0
45
1.01.52.0
0.5
REVERSE VOLTAGE (V)
85 105
1004 G12
Forward Characteristics
1.2
TA = 25°C
0.8
0.4
FORWARD VOLTAGE (V)
0
2.53.0
1004 G10
0.01110100
Reverse Dynamic Impedance
1000
–55°C TO 125°C
100
10
1
DYNAMIC IMPEDANCE (Ω)
0.1
0.01110100
0.1
REVERSE CURRENT (mA)
0.1
FORWARD CURRENT (mA)
f = 25Hz
1004 G13
1004 G11
Reverse Dynamic ImpedanceTemperature Drift
10k
TA = 25°C
= 100µA
I
R
1k
100
10
DYNAMIC IMPEDANCE (Ω)
1
0.1
100
10
FREQUENCY (Hz)
10k
100k
1k
1M
1004 G14
Noise Voltage
1400
IR = 100µA
1200
1000
800
600
NOISE (nV/√Hz)
400
200
0
101k10k100k
4
100
FREQUENCY (Hz)
1004 G15
Filtered Output Noise
120
IR = 100µA
100
INTEGRATED NOISE (µV)
100µA
80
60
40
20
R
0
100
CUTOFF FREQUENCY (Hz)
Reponse Time
RC LOW PASS
C
1k10k100k
1004 G16
Page 5
U
1M
1%
3.01M
1%
–
+
LM4250
2
3
4
8
6
7
22M
V
IN
9V to 15V
V
OUT
5V
1004 TA13
LT1004-1.2
5.6k
R
LM334
150pF
TYPICAL APPLICATIONS
LT1004
VIN ≥ 8V
High Stability 5V Regulator
LT338A
OUTIN
+
1µF
ADJ
LT1004-2.5
Constant Gain Amplifier
Over Temperature
250k
INPUT
250k
OUTPUT
300Ω
1%
100Ω
1%
1004 TA03
V
+
≥ 5V
Variable Output Supply
LT338A
V
5V
IN
V
IN
+
1µF
–
– 1V
V
R1 ≤
0.015
–
V
ADJ
LT1004-1.2
R1
V
OUT
120Ω
2k
+
10µF
V
OUT
1004 TA08
Micropower 5V Reference
200k
Lead Acid Low-Battery Detector
†
R1
1%
133k
1%
†
R1 SETS TRIP POINT, 60.4k
PER CELL FOR 1.8V/CELL
1M
LT1004-1.2
LT1004-1.2
3
2
+
–
LM4250
2N3904
60k
7
4
V– ≤ –5V
6
8
10M
1004 TA07
BATTERY
OUTPUT
12V
LO = BATTERY LOW
1004 TA14
Ground Referenced Current Source
15V
2k*
LT1004-1.2
R
2
3
OUT
7
–
LT1007C
+
4
–5VI
6
1.235
I
=
OUT
R
2V
R ≈
+ 10µA
I
OUT
*MAY BE INCREASED
FOR SMALL OUTPUT CURRENTS
1004 TA04
5
Page 6
LT1004
Q1
Q5
20pF
20pF
7.5k
500Ω
500k
60k
300k
500k
50k
200k
600k
Q3
Q11
Q10
Q9
Q14
–
+
Q8
Q6
Q4
Q12
Q13
1004-2.5 SD
500k
U
TYPICAL APPLICATIONS
VPP Generator for Eproms –– No Trim Required
24V
22k
12k
LT1004-1.2
10k
TTL INPUT
–5V
2N3904
56k
Micropower Reference
from 9V Battery
9V
510k
1.235V
LT1004-1.2
100pF
24V
1
3
0.05µF
*1% METAL FILM RESISTORS
2
+
LM301A
–
8
4
–5V
1.2V Reference from 1.5V Battery
1.5V*
600µs RC
PER INTEL
16.9k*
1.05k*
OUT
SPEC
21V
1004 TA15
*OUTPUT REGULATES
DOWN TO 1.285V
FOR I
7
6
OUT
3k
LT1004-1.2
= 0
2.5V ReferenceLow Noise Reference
V
100µA
≥ 5V
IN
22Ω
5V
50k
LT1004-2.5
2.500V
LT1004-1.2
1.235V
1004 TA12
OUTPUT
+
50µF
1004 TA11
1004 TA10
1004 TA09
WSW
SCHE ATIC DIAGRA
LT1004-1.2
+
7.5k
Q4
Q3
20pF
Q1
Q5
500Ω500k
20pF
600k
Q6
60k
Q8
Q12
Q11
Q13
Q10
Q9
200k
50k
300k
Q14
–
1004-1.2 SD
LT1004-2.5
6
Page 7
PACKAGE DESCRIPTIO
0.209 – 0.219
(5.309 – 5.537)
0.178 – 0.195
(4.521 – 4.953)
0.500
(12.700)
REFERENCE
PLANE
0.010 – 0.020
(0.254 – 0.508)
0.008 – 0.010
(0.203 – 0.254)
*
DIMENSION DOES NOT INCLUDE MOLD FLASH. MOLD FLASH
SHALL NOT EXCEED 0.006" (0.152mm) PER SIDE
**
DIMENSION DOES NOT INCLUDE INTERLEAD FLASH. INTERLEAD
FLASH SHALL NOT EXCEED 0.010" (0.254mm) PER SIDE
× 45°
0.016 – 0.050
(0.406 – 1.270)
MIN
0.016 – 0.021**
(0.406 – 0.533)
DIA
0°– 8° TYP
U
H Package
2-Lead and 3-Lead TO-46 Metal Can
(Reference LTC DWG # 05-08-1340)
0.085 – 0.105
(2.159 – 2.667)
*
0.025
(0.635)
0.036 – 0.046
MAX
(0.914 – 1.168)
*
LEAD DIAMETER IS UNCONTROLLED BETWEEN THE REFERENCE PLANE
AND 0.045" BELOW THE REFERENCE PLANE
**
FOR SOLDER DIP LEAD FINISH, LEAD DIAMETER IS
S8 Package
8-Lead Plastic Small Outline (Narrow .150 Inch)
(Reference LTC DWG # 05-08-1610)
0.053 – 0.069
(1.346 – 1.752)
0.014 – 0.019
(0.355 – 0.483)
TYP
0.050
(1.270)
TYP
0.100
(2.540)
PIN 1
45°
0.004 – 0.010
(0.101 – 0.254)
0.050
(1.270)
BSC
TYP
0.016 – 0.024
(0.406 – 0.610)
(0.711 – 1.219)
0.228 – 0.244
(5.791 – 6.197)
0.050
(1.270)
0.028 – 0.048
H02/03(TO-46) 1098
TYP
FOR 3-LEAD PACKAGE ONLY
OBSOLETE PACKAGE
0.189 – 0.197*
(4.801 – 5.004)
7
8
1
6
3
2
5
0.150 – 0.157**
(3.810 – 3.988)
4
LT1004
SO8 1298
0.060 ± 0.005
(1.524± 0.127)
DIA
0.180 ± 0.005
(4.572 ± 0.127)
0.500
(12.70)
MIN
0.050
(1.27)
BSC
Z Package
3-Lead Plastic TO-92 (Similar to TO-226)
(Reference LTC DWG # 05-08-1410)
0.180 ± 0.005
(4.572 ± 0.127)
0.90
(2.286)
NOM
5°
NOM
0.015 ± 0.002
(0.381 ± 0.051)
0.098 +016/–0.04
10° NOM
0.050
UNCONTROLLED
LEAD DIMENSION
(1.270)
MAX
0.016 ± 0.003
(0.406 ± 0.076)
0.060 ± 0.010
(1.524 ± 0.254)
0.140 ± 0.010
(3.556 ± 0.127)
(2.5 +0.4/–0.1)
2 PLCS
TO-92 TAPE AND REEL
REFER TO TAPE AND REEL SECTION OF
LTC DATA BOOK FOR ADDITIONAL INFORMATION
Z3 (TO-92) 0401
Information furnished by Linear Technology Corporation is believed to be accurate and reliable.
However, no responsibility is assumed for its use. Linear Technology Corporation makes no representation that the interconnection of its circuits as described herein will not infringe on existing patent rights.
7
Page 8
LT1004
TYPICAL APPLICATIO S
U
0°C to 100°C Linear Output Thermometer
NETWORK DETAIL
YSI 44201
15V
2.7k
5%
LT1004-1.2
10k
0.1%
4
3
R
NETWORK
T
YSI 44201
–
LT1002
1/2
2765Ω
0.1%
13
+
10k
0.1%
Low Temperature Coefficient
2-Terminal Current Source
LM334
10
11
168.3Ω
0.1%
+
LT1002
–
1/2
GRN
0.1%
10k
BRN
6250Ω
RED
3.2k
V
6
OUT
0V TO10V
0°C TO 100°C
1004 TA05
R
6.8k
R ≤ 5k
LT1004-1.2
1.3V
≈
I
OUT
R
1004 TA06
RELATED PARTS
PART NUMBERDESCRIPTIONCOMMENTS
LT1634Micropower Precision Shunt Reference10µA Operating Current, 10ppm/°C Maximum Drift, 0.05% Initial Accuracy
LT1460S3-2.5Micropower Series Reference in SOT-23100µA Operating Current, 20ppm/°C Maximum Drift, 0.2% Initial Accuracy
LT1790Precision Micropower LDO Reference in SOT-2310ppm/°C Max Drift, 0.05% Initial Accuracy
1004fb LT/TP 0601 REV B 1.5K • PRINTED IN USA
LINEAR TECHNOLOGY CORPORATION 1985
8
Linear Technology Corporation
1630 McCarthy Blvd., Milpitas, CA 95035-7417
(408) 432-1900 ● FAX: (408) 434-0507
●
www.linear.com
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