Microsemi Corporation LX6431IDM, LX6431CLP, LX6431CDM, LX6431BILP, LX6431BIDM Datasheet

...
A
P
RECISION PROGRAMMABLE REFERENCES
T HE I NFINITE P OWER OF I NNOVATION
DESCRIPTION KEY FEATURES
The LX6431 series precision adjustable three terminal shunt voltage regulators are pin-to-pin compatible with the industry standard TL431, but with significant improvements. The LX6431 design has eliminated regions of instability common to older generation shunt regulator products like the TL431. Designs are made simpler by eliminating the task of insuring capacitive loads, and output voltage and cathode currents don't combine for unstable operation. The capacitor value is chosen simply to give the best load transient response without the possibility of instability. A lower reference input current allows the use of higher value reference divider resistors,
NOTE: For current data & package dimensions, visit our web site: http://www.linfinity.com.
OUTPUT VOLTAGE ERROR DUE TO I
reducing the current drain from batteries in portable equipment as well as reducing the voltage programming errors due to the impedance of the divider network (See Product Highlight figure below). In addition, the LX6431B has an improved initial accuracy of 0.4%, and the output voltage is programmable by using two external resistors from 2.5V to 36V.
These devices offer low output impedance for improved load regulation. The typical output impedance of these devices is 100m. The reduced reference input bias current and minimum operating currents make these devices suitable for portable and micropower applications.
PRODUCT HIGHLIGHT
REF
P RODUCTION DATA SHEET
Unconditionally Stable For All Cathode To Anode Capacitance Values
Reduced Reference Input Current Allowing The Use Of Higher Value Divider Resistors (0.5µA Max.)
Initial Voltage Reference Accuracy Of 0.4% (LX6431B)
Sink Current Capability 0.6mA to 100mA
Typical Output Dynamic Impedance Less
Than 100m
Adjustable Output Voltage From 2.5V to 36V
% Error
20 18
16 14
12 10
TYPICAL PROGRAMMABLE VOLTAGE
REFERENCE CIRCUIT
V
IN
R1
LX6431
8
6 4
2 0
2.5
3.75
5
6.25
7.5
8.75
10
11.25
12.5
(V ) OutputVoltage - (V)
KA
13.75
15
GND
R2
PACKAGE ORDER INFORMATION
(°C)
T
A
0 to 70 1% LX6431ACDM LX6431ACLP
-40 to 85 1% LX6431AIDM LX6431AILP
Initial
Tolerance
2% LX6431CDM LX6431CLP
0.4% LX6431BCDM LX6431BCLP 2% LX6431IDM LX6431ILP
0.4% LX6431BIDM LX6431BILP
Note: All surface-mount packages are available in Tape & Reel.
Append the letter "T" to part number. (i.e. LX5212CDPT)
TO-92 (LP) package also available in ammo-pack.
Plastic SOIC
DM
8-pin
Plastic TO-92
LP
3-pin
V
K
Copyright © 1999 Rev. 1.4 6/99
L INF INITY MICROELECTRONICS INC.
11861 WESTERN AVENUE, GARDEN GROVE, CA. 92841, 714-898-8121, FAX: 714-893-2570
1
PRODUCT DATABOOK 1996/1997
P
RECISION PROGRAMMABLE REFERENCES
P RODUCTION DATA SHEET
ABSOLUTE MAXIMUM RATINGS (Note 1)
Cathode to Anode Voltage (VKA) ................................................................... -0.3V to 37V
Reference Input Current (I Continuous Cathode Current (I Operating Junction Temperature
) .................................................................... -50µA to 10µA
REF
) ......................................................... -100mA to 150mA
K
Plastic (DM & LP Packages) ................................................................................. 150°C
Storage Temperature Range ...................................................................... -65°C to 150°C
Lead Temperature ..................................................................................................... 300°C
Note 1. Exceeding these ratings could cause damage to the device. All voltages are with respect
to Ground. Currents are positive into, negative out of the specified terminal. Pin numbers refer to DIL packages only.
THERMAL DATA
DM PACKAGE:
THERMAL RESISTANCE-JUNCTION TO AMBIENT,
LP PACKAGE:
THERMAL RESISTANCE-JUNCTION TO AMBIENT,
Junction Temperature Calculation: TJ = TA + (PD x θJA). The θJA numbers are guidelines for the thermal performance of the device/pc-board system. All of the above assume no ambient airflow
θθ
θ
θθ
JA
θθ
θ
θθ
JA
165°C/W
156°C/W
BLOCK DIAGRAM
PACKAGE PIN OUTS
CATHODE
N.C.
ANODE
N.C.
1 8 2 7 3 6 4 5
DM PACKAGE
(Top View)
LP PACKAGE
(Top View)
REF ANODE ANODE N.C.
1. CATHODE
2. ANODE
3. REF
Ref (R)
Cathode (K)
V
REF
Anode (A)
2
Copyright © 1999
Rev. 1.4 6/99
PRODUCT DATABOOK 1996/1997
P
RECISION PROGRAMMABLE REFERENCES
P RODUCTION DATA SHEET
ELECTRICAL CHARACTERISTICS (Note 2)
(Unless otherwise specified, these specifications apply over the operating ambient temperatures for LX6431C/LX6431AC/LX6431BC with 0°C ≤ TA 70°C, LX6431I/LX6431AI/LX6431BI with -40°C ≤ TA 85°C.)
Parameter
Reference Input Voltage LX6431 V
LX6431A I LX6431B IK = 10mA, VKA = V
Reference Drift LX6431 IK = 10mA, VKA = V
LX6431A I
LX6431B IK = 10mA, VKA = V
Symbol
REFIK
= 10mA, VKA = V = 10mA, VKA = V
K
= 10mA, VKA = V
I
K
= 10mA, VKA = V
K
IK = 10mA, VKA = V
IK = 10mA, VKA = V
Test Conditions
, TA = 25°C,
REF
, TA = 25°C
REF
, TA = 25°C
REF
, 0°C ≤ TA 70°C
REF
, -40°C ≤ TA 85°C
REF
, 0°C ≤ TA 70°C
REF
, -40°C ≤ TA 85°C
REF
, 0°C ≤ TA 70°C
REF
, -40°C ≤ TA 85°C
REF
Voltage Ratio, Reference to Cathode IK = 10mA, VKA = 2.5V to 36V, TA = 25°C
(Note 3) IK = 10mA, VKA = 2.5V to 36V, TA = Operating Range
Reference Input Current I
Minimum Operating Current I
Off-State Cathode Current I Dynamic Impedance Z
REF
MIN
OFF
KAVKA
VKA = V
, TA = 25°C
REF
VKA = V
, TA = Operating Range
REF
VKA = V
to 36V, TA = 25°C
REF
VKA = V
to 36V, TA = Operating Range
REF
VKA = 36V, V
= V
= 0V, TA = 25°C
REF
, IK = 0.6mA to 100mA, f 1kHz, TA = 25°C
REF
Note 2. These parameters are guaranteed by design.
V
Note 3. Ratio of change in reference input voltage
REF
V
KA
to the change in cathode voltage.
LX6431
Min. Typ. Max.
Units
2440 2550 mV 2470 2520 mV 2490 2510 mV
15 mV 25 mV 15 mV 25 mV 15 mV 20 mV
0.3 1 mV/V
0.3 1 mV/V
0.1 0.5 µA
0.1 0.5 µA
0.4 0.6 mA
0.4 0.6 mA
0.3 1 µA 30 100 m
Copyright © 1999 Rev. 1.4 6/99
3
PRODUCT DATABOOK 1996/1997
P
RECISION PROGRAMMABLE REFERENCES
P RODUCTION DATA SHEET
GRAPH / CURVE INDEX
Characteristic Curves
FIGURE #
1. REFERENCE VOLTAGE vs. FREE-AIR TEMPERATURE
2. REFERENCE CURRENT vs. FREE-AIR TEMPERATURE
3. CATHODE CURRENT vs. CATHODE VOLTAGE
4. OFF-STATE CATHODE CURRENT vs. FREE-AIR TEMPERATURE
5. RATIO OF DELTA REFERENCE VOLTAGE TO DELTA CATHODE
VOLTAGE vs. FREE-AIR TEMPERATURE
6. EQUIVALENT INPUT NOISE VOLTAGE vs. FREQUENCY
FIGURE INDEX
Application Information
FIGURE #
7. COMPARISON OF REFERENCE RESISTOR VALUES BETWEEN AN
LX6431B AND A TL1431. Resistors used with the LX6431B are 5 times higher in value.
8. COMPARISON OF REFERENCE RESISTOR VALUES BETWEEN AN LX6431B AND A TL1431. When used as 0.5%, 5V shunt regulators.
Parameter Measurement Information
FIGURE #
9. TEST CIRCUIT FOR V
10. TEST CIRCUIT FOR VKA > V
11. TEST CIRCUIT FOR I
= V
KA
REF
REF
OFF
Typical Characteristics
FIGURE #
12. EQUIVALENT INPUT NOISE VOLTAGE OVER A 10-SECOND PERIOD
13. SMALL-SIGNAL VOLTAGE AMPLIFICATION vs. FREQUENCY
14. REFERENCE IMPEDANCE vs. FREQUENCY
15. PULSE RESPONSE
16. DIFFERENTIAL VOLTAGE AMPLIFICATION vs. FREQUENCY
4
Copyright © 1999
Rev. 1.4 6/99
Loading...
+ 7 hidden pages