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 MC34160, MC33160 100 mA, 5.0 V Voltage Regulator and Supervisory Circuit for Microprocessors
The MC34160 Series is a voltage regulator and supervisory circuit containing many of the necessary monitoring functions required in microprocessor based systems. It is specifically designed for appliance and industrial applications, offering the designer a cost effective solution with minimal external components. These integrated circuits feature a 5.0 V/100 mA regulator with short circuit current limiting, pinned out 2.6 V bandgap reference, low voltage reset comparator, power warning comparator with programmable hysteresis, and an uncommitted comparator ideally suited for microprocessor line synchronization. Additional features include a chip disable input for low standby current, and internal thermal shutdown for over temperature protection. These devices are contained in a 16 pin dual-in-line heat tab plastic package for improved thermal conduction.
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SOIC-16WB DW SUFFIX CASE 751G 1
PDIP-16 P SUFFIX CASE 648C 1
* * * * * * * * * *
5.0 V Regulator Output Current in Excess of 100 mA Internal Short Circuit Current Limiting Pinned Out 2.6 V Reference Low Voltage Reset Comparator Power Warning Comparator with Programmable Hysteresis Uncommitted Comparator Low Standby Current Internal Thermal Shutdown Protection Heat Tab Power Package Pb-Free Packages are Available*
VCC 14 + Thermal Shutdown - + 2.6 V Reference + - + IH IH On/Off 0.913 R + 0.01 R - R Regulator 11 Output 7 Reset Reference Output 16 Power Warning 8
PIN CONNECTIONS
Comp. Inv. In Comp. Noninv. In N.C. GND 5 Comp. Out Reset Power Warning 6 7 8 (Top View) 12 11 10 9 Reg. Out Hyst. Adj. Power Sense 1 2 3 4 16 15 14 13 GND Vref Chip Disable VCC
Chip Disable 15 Power Sense
9 Hysteresis Adjust 10 Noninverting Input 2 Inverting Input 1
ORDERING INFORMATION
See detailed ordering and shipping information in the package dimensions section on page 8 of this data sheet.
DEVICE MARKING INFORMATION
+ + - Comparator Output 6
See general marking information in the device marking section on page 8 of this data sheet.
GND 4, 5, 12, 13 This device contains 72 active transistors.
Figure 1. Representative Block Diagram
(c) Semiconductor Components Industries, LLC, 2006
*For additional information on our Pb-Free strategy and soldering details, please download the ON Semiconductor Soldering and Mounting Techniques Reference Manual, SOLDERRM/D. 1 Publication Order Number: MC34160/D
August, 2006 - Rev. 5
MC34160, MC33160
MAXIMUM RATINGS
Rating Power Supply Voltage Chip Disable Input Voltage (Pin 15, Note 1) Comparator Input Current (Pins 1, 2, 9) Comparator Output Voltage (Pins 6, 7, 8) Comparator Output Sink Current (Pins 6, 7, 8) Power Dissipation and Thermal Characteristics P Suffix, Dual-In-Line Case 648C Thermal Resistance, Junction-to-Air Thermal Resistance, Junction-to-Case (Pins 4, 5, 12, 13) DW Suffix, Surface Mount Case 751G Thermal Resistance, Junction-to-Air Thermal Resistance, Junction-to-Case (Pins 4, 5, 12, 13) Operating Junction Temperature Operating Ambient Temperature MC34160 MC33160 Storage Temperature Range Tstg Symbol VCC VCD Iin VO ISink Value 40 -0.3 to VCC -2.0 to +2.0 40 10 Unit V V mA V mA C/W RqJA RqJC RqJA RqJC TJ TA 0 to +70 -40 to +85 -65 to +150 C 80 15 94 18 +150 C C
Stresses exceeding Maximum Ratings may damage the device. Maximum Ratings are stress ratings only. Functional operation above the Recommended Operating Conditions is not implied. Extended exposure to stresses above the Recommended Operating Conditions may affect device reliability. 1. The maximum voltage range is -0.3 V to VCC or +35 V, whichever is less.
ELECTRICAL CHARACTERISTICS (VCC = 30 V, IO = 10 mA, Iref = 100 mA) For typical values TA = 25C, for min/max values TA is the operating ambient temperature range that applies [Notes 2 and 3], unless otherwise noted.)
Characteristics REGULATOR SECTION Total Output Variation (VCC = 7.0 V to 40 V, IO = 1.0 mA to 100 mA, TA = Tlow to Thigh) Line Regulation (VCC = 7.0 V to 40 V, TA = 25C) Load Regulation (IO = 1.0 V to 100 mA, TA = 25C) Ripple Rejection (VCC = 25 V to 35 V, IO = 40 mA, f = 120 Hz, TA = 25C) REFERENCE SECTION Total Output Variation (VCC = 7.0 to 40 V, IO = 0.1 mA to 2.0 mA, TA = Tlow to Thigh) Line Regulation (VCC = 5.0 V to 40 V, TA = 25C) Load Regulation (IO = 0.1 mA to 2.0 mA, TA = 25C) RESET COMPARATOR Threshold Voltage High State Output (Pin 11 Increasing) Low State Output (Pin 11 Decreasing) Hysteresis VIH VIL VH VOL IOH - 4.55 0.02 - - (VO-0.11) (VO-0.18) 0.07 - - (VO-0.05) - - 0.4 4.0 V Vref Regline Regload 2.47 - - 2.6 2.0 4.0 2.73 20 30 V mV mV VO Regline Regload RR 4.75 - - 50 5.0 5.0 20 6.5 5.25 40 50 - V mV mV dB Symbol Min Typ Max Unit
Output Sink Saturation (VCC = 4.5 V, ISink = 2.0 mA) Output Off-State Leakage (VOH = 40 V) POWER WARNING COMPARATOR Input Offset Voltage Input Bias Current (VPin 9 = 3.0 V) Input Hysteresis Current (VPin 9 = Vref - 100 mV) Output Sink Saturation (ISink = 2.0 mA) Output Off-State Leakage (VOH = 40 V) 2. Tlo = RPin 10 = 24 k RPin 10 =
V mA
VIO IIB IH VOL IOH
- - 40 4.5 - -
1.2 - 50 7.5 0.13 -
10 0.5 60 11 0.4 4.0
mV mA mA V mA
0C for MC34160 Thigh = 70C for MC34160 -40C for MC33160 85C for MC33160 3. Low duty cycle pulse testing techniques are used during test to maintain junction temperature as close to ambient as possible.
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MC34160, MC33160
ELECTRICAL CHARACTERISTICS (continued) (VCC = 30 V, IO = 10 mA, Iref = 100 mA) For typical values TA = 25C, for min/max values TA is the operating ambient temperature range that applies [Notes 4 and 5], unless otherwise noted.)
Characteristics UNCOMMITTED COMPARATOR Input Offset Voltage (Output Transition Low to High) Input Hysteresis Voltage (Output Transition High to Low) Input Bias Current (VPin 1, 2 = 2.6 V) Input Common Mode Voltage Range Output Sink Saturation (ISink = 2.0 mA) Output Off-State Leakage (VOH = 40 V) TOTAL DEVICE Chip Disable Threshold Voltage (Pin 15) Chip Disable Input Current (Pin 15) Chip Disable Input Resistance (Pin 15) Operating Voltage Range Power Supply Current 4. Tlo = VO (Pin 11) Regulated Vref (Pin 16) Regulated Standby (Chip Disable High State) Operating (Chip Disable Low State) High State (Chip Disabled) Low State (Chip Enabled) High State (Vin = 2.5 V) Low State (Vin = 0.8 V) VIH VIL IIH IIL Rin VCC ICC 2.5 - - - 50 7.0 to 40 5.0 to 40 - - - - - - 100 - - 0.18 1.5 - 0.8 100 30 - - - 0.35 3.0 V mA kW V mA VIO IH IIB VICR VOL IOH - 140 - 0.6 to 5.0 - - - 200 - - 0.13 - 20 260 -1.0 - 0.4 4.0 mV mV mA V V mA Symbol Min Typ Max Unit
0C for MC34160 Thigh = 70C for MC34160 -40C for MC33160 85C for MC33160 5. Low duty cycle pulse testing techniques are used during test to maintain junction temperature as close to ambient as possible. 0 6.0 OUTPUT VOLTAGE (V) RL = 1
V O , REGULATOR OUTPUT VOLTAGE CHANGE (mV
Regulator Output RL = 50 W Reference Output RL = 1
-4.0
4.0
-8.0
2.0 TA = 25C 0
-12
VCC = 7.5 V TA = 25C
-16
0
40 80 120 IO, REGULATOR OUTPUT SOURCE CURRENT (mA)
160
0
10
20 30 VCC, SUPPLY VOLTAGE (V)
40
Figure 2. Regulator Output Voltage Change versus Source Current
0 I H , HYSTERESIS CURRENT ( A) 60
Figure 3. Reference and Regulator Output versus Supply Voltage
VCC = 30 V VPin 9 = 2.5 V TA = 25C
V ref , REFERENCE OUTPUT VOLTAGE CHANGE (mV)
-8.0
40
-16
20
-24
VCC = 7.5 V TA = 25C
-32
0
2.0 4.0 6.0 Iref, REFERENCE OUTPUT SOURCE CURRENT (mA)
8.0
0
20
40
60 80 100 RH, PROGRAMMING RESISTOR (kW)
120
140
Figure 4. Reference Output Voltage Change versus Source Current http://onsemi.com
3
Figure 5. Power Warning Hysteresis Current versus Programming Resistor
MC34160, MC33160
800 t DLY, OUTPUT DELAY TIME (ns) t DLY , OUTPUT DELAY TIME (ns) VCC = 30 V Vin (Pin 9) = 2.5 V to 2.7 V RL = 2.4 k to VO 600 Output Rise 360 440 VCC = 30 V VPin 1 = 2.5 V to 2.9 V VPin 2 = 2.6 V RL = 2.4 k to VO Output Rise
280 Output Fall 200
Output Fall 400
200 -55
-25
0
25
50
75
100
125
120 -55
-25
0
25
50
75
100
125
TA, AMBIENT TEMPERATURE (C)
TA, AMBIENT TEMPERATURE (C)
Figure 6. Power Warning Comparator Delay versus Temperature
R JA, THERMAL RESISTANCE JUNCTION TO AIR ( C/W)
Figure 7. Uncommitted Comparator Delay versus Temperature
0.5 VOL , OUTPUT SATURATION (V) 0.4 0.3 0.2 0.1 0 TA = 85C VCC = 6.0 V VPin 1 = Vref VPin 2, 9 = 10 kW to GND Vsat = Pins 6, 7, 8 TA = 25C TA = -40C
100
Printed circuit board heatsink example
5.0 4.0 3.0 2.0
L
60 40
RJA
L 3.0 mm Graphs represent symmetrical layout
20 0
PD(max) for TA = 70C
0
2.0
4.0 ISink, SINK CURRENT (mA)
6.0
8.0
0
10
20
30
L, LENGTH OF COPPER (mm)
Figure 8. Comparator Output Saturation versus Sink Current
Figure 9. P Suffix (DIP-16) Thermal Resistance and Maximum Power DIssipation versus P.C.B. Copper Length
R JA, THERMAL RESISTANCE
90 80 70
PD(max) for TA = 50C
2.4 2.0 1.6 1.2 0.8 0.4 0 50
Graph represents symmetrical layout L
60 50 40 30 0 10 RJA
2.0 oz. Copper L
3.0 mm
20 30 L, LENGTH OF COPPER (mm)
40
Figure 10. DW Suffix (SOP-16L) Thermal Resistance and Maximum Power Dissipation versus P.C.B. Copper Length
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PD, MAXIMUM POWER DISSIPATION (W)
100
2.8
JUNCTION-TO-AIR ( C/W)
EEEEE EEEEE
2.0 oz. Copper
80
1.0 0 50
40
P D, MAXIMUM POWER DISSIPATION (W)
II III II III II IIIIII
MC34160, MC33160
PIN FUNCTION DESCRIPTION
Pin 1 2 3 4, 5, 12, 13 6 7 8 9 10 11 14 15 16 Function Comparator Inverting Input Comparator Noninverting Input N.C. GND Comparator Output Reset Power Warning Power Sense Hysteresis Adjust Regulator Output VCC Chip Disable Vref Description This is the Uncommitted Comparator Inverting input. It is typically connected to a resistor divider to monitor a voltage. This is the Uncommitted Comparator Noninverting input. It is typically connected to a reference voltage. No connection. This pin is not internally connected. These pins are the control circuit grounds and are connected to the source and load ground returns. They are part of the IC lead frame and can be used for heatsinking. This is the Uncommitted Comparator output. It is an open collector sink-only output requiring a pullup resistor. This is the Reset Comparator output. It is an open collector sink-only output requiring a pullup resistor. This is the Power Warning Comparator output. It is an open collector sink-only output requiring a pullup resistor. This is the Power Warning Comparator noninverting input. It is typically connected to a resistor divider to monitor the input power source voltage. The Power Warning Comparator hysteresis is programmed by a resistor connected from this pin to ground. This is the 5.0 V Regulator output. This pin is the positive supply input of the control IC. This input is used to switch the IC into a standby mode turning off all outputs. This is the 2.6 V Reference output. It is intended to be used in conjunction with the Power Warning and Uncommitted comparators.
OPERATING DESCRIPTION The MC34160 series is a monolithic voltage regulator and supervisory circuit containing many of the necessary monitoring functions required in microprocessor based systems. It is specifically designed for appliance and industrial applications, offering the designer a cost effective solution with minimal external components. These devices are specified for operation over an input voltage of 7.0 V to 40 V, and with a junction temperature of -40 to +150C. A typical microprocessor application is shown in Figure 11.
Regulator
capacitor of 0.1 mF or greater is recommended to ensure stability under all load conditions. The capacitors selected must provide good high frequency characteristics. Good construction techniques should be used to minimize ground loops and lead resistance drops since the regulator does not have external sense inputs.
Reference
The 5.0 V regulator is designed to source in excess of 100 mA output current and is short circuit protected. The output has a guaranteed tolerance of 5.0% over line, load, and temperature. Internal thermal shutdown circuitry is included to limit the maximum junction temperature to a safe level. When activated, typically at 170C, the regulator output turns off. In specific situations a combination of input and output bypass capacitors may be required for regulator stability. If the regulator is located an appreciable distance ( 4) from the supply filter, an input bypass capacitor (Cin) of 0.33 mF or greater is suggested. Output capacitance values of less than 5.0 nF may cause regulator instability at light load ( 1.0 mA) and cold temperature. An output bypass
The 2.6 V bandgap reference is short circuit protected and has a guaranteed output tolerance of 5.0% over line, load, and temperature. It is intended to be used in conjunction with the Power Warning and Uncommitted comparator. The reference can source in excess of 2.0 mA and sink a maximum of 10 mA. For additional current sinking capability, an external load resistor to ground must be used. Reference biasing is internally derived from either VCC or VO, allowing proper operation if either drops below nominal.
Chip Disable
This input is used to switch the IC into a standby mode. When activated, internal biasing for the entire die is removed causing all outputs to turn off. This reduces the power supply current (ICC) to less than 0.3 mA.
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MC34160, MC33160
Comparators
Three separate comparators are incorporated for voltage monitoring. Their outputs can provide diagnostic information to the microprocessor, preventing system malfunctions. The Reset Comparator Inverting Input is internally connected to the 2.6 V reference while the Noninverting Input monitors VO. The Reset Output is active low when VO falls approximately 180 mV below its regulated voltage. To prevent erratic operation when crossing the comparator threshold, 70 mV of hysteresis is provided. The Power Warning Comparator is typically used to detect an impending loss of system power. The Inverting Input is internally connected to the reference, fixing the threshold at 2.6 V. The input power source Vin is monitored by the Noninverting Input through the R1/R2 divider (Figure 11). This input features an adjustable 10 mA to 50 mA current sink IH that is programmed by the value selected for resistor RH. A default current of 6.5 mA is provided if RH is omitted. When the comparator input falls below 2.6 V, the current sink is activated. This produces hysteresis if Vin is monitored through a series resistor (R1). The comparator thresholds are defined as follows:
Vth(lower) = Vref Vth(upper) = Vref 1+ R1 R2 R1 1+ R2 - IIB R1 + IH R1
The Power Warning and Uncommitted Comparators each have a transistor base-emitter connected across their inputs. The base input normally connects to a voltage reference while the emitter input connects to the voltage to be monitored. The transistor limits the negative excursion on the emitter input to - 0.7 V below the base input by supply current from VCC. This clamp current will prevent forward biasing the IC substrate. Zener diodes are connected to the comparator inputs to enhance the ICs electrostatic discharge capability. Resistors R1 and Rin must limit the input current to a maximum of 2.0 mA. Each comparator output consists of an open collector NPN transistor capable of sinking 2.0 mA with a saturation voltage less than 0.4 V, and standing off 40 V with minimal leakage. Internal bias for the Reset and Power Warning Comparators is derived from either VCC or the regulator output to ensure functionality when either is below nominal.
Heat Tab Package
The nominal hysteresis current IH equals 1.2 V/RH (Figure 5). The Uncommitted Comparator can be used to synchronize the microprocessor with the ac line signal for timing functions, or for synchronous load switching. It can also be connected as a line loss detector as shown in Figure 12. The comparator contains 200 mV of hysteresis preventing erratic output behavior when crossing the input threshold.
VCC Vin Cin R1 Chip Disable 15 2.6 V Reference + 14 + Thermal Shutdown - +
The MC34160 is contained in a 16 lead plastic dual-in-line package in which the die is mounted on a special Heat Tab copper alloy lead frame. This tab consists of the four center ground pins that are specifically designed to improve thermal conduction from the die to the surrounding air. The pictorial in Figure 9 shows a simple but effective method of utilizing the printed circuit board medium as a heat dissipator by soldering these tabs to an adequate area of copper foil. This permits the use of standard board layout and mounting practices while having the ability to more than halve the junction to air thermal resistance. The example and graph are for a symmetrical layout on a single sided board with one ounce per square foot copper.
0.913 R .01 R R Power Warning + - Reset
11 7
CO
VO MPU Reset
16 8
Vref Power Warning
- + R2 RH 2.6 V AC Line Rin 9 IH 10 2 1 + + - IH On/Off
Uncommitted Comparator 6
Line Sync.
4, 5, 12, 13
+ -
= Positive True Logic
Sink Only
Figure 11. Typical Microprocessor Application
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6
MC34160, MC33160
VCC Vin Cin 14
+
Thermal Shutdown - + 2.6 V Reference 0.913 R .01 R R + - Reset 11 7 CO VO MPU Reset
Chip Disable R1 Point A Pin 6 Pin 8 2.6 V 2.6 V
15
+
+ -
Power Warning
10 8
Vref Line Loss Output
9 IH 10 2 IH On/Off
RDLY
+
+ -
Rin AC Line A 1
Uncommitted Comparator 6
4, 5, 12, 13
CDLY tDLY RDLY CDLY ln IH RDLY - VO Vref + IH R1 - VO + IH RDLY + -
= Sink Only
Positive True Logic
Figure 12. Line Loss Detector Application
VCC Vin Cin R1 Chip Disable 15 14
+
Thermal Shutdown 0.913 R .01 R R 11
- +
2.6 V Reference
+ -
Reset
CO
VO
7 Vref RDLY
+ + -
IH IH On/Off
Power Warning
16 8
R2
9 RH 10 2 1 3.6 k 6.2 k
+ + -
Uncommitted Comparator 6 MPU Reset
4, 5, 12, 13 tDLY RDLY CDLY CDLY
+ -
Sink Only = Positive True Logic
Figure 13. Time Delayed Microprocessor Reset
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7
MC34160, MC33160
ORDERING INFORMATION
Device MC34160DW MC34160DWG MC34160DWR2 MC34160DWR2G MC34160P MC34160PG MC33160DW MC33160DWG MC33160DWR2 MC33160DWR2G MC33160P MC33160PG TA = -40 to +85C TA = 0 to +70C Operating Temperature Range Package SOIC-16WB SOIC-16WB (Pb-Free) SOIC-16WB SOIC-16WB (Pb-Free) PDIP-16 PDIP-16 (Pb-Free) SOIC-16WB SOIC-16WB (Pb-Free) SOIC-16WB SOIC-16WB (Pb-Free) PDIP-16 PDIP-16 (Pb-Free) Shipping 47 Units / Rail 47 Units / Rail 1000 Units / Tape & Reel 1000 Units / Tape & Reel 25 Units / Rail 25 Units / Rail 47 Units / Rail 47 Units / Rail 1000 Units / Tape & Reel 1000 Units / Tape & Reel 25 Units / Rail 25 Units / Rail
For information on tape and reel specifications, including part orientation and tape sizes, please refer to our Tape and Reel Packaging Specifications Brochure, BRD8011/D.
MARKING DIAGRAMS
SOIC-16WB 16 16
PDIP-16
MC3x160DW AWLYYWWG
MC3x160P AWLYYWWG 1
1
MC3x160 = Device Code DW = SOIC-16 P = PDIP-16 x = 4 or 3 A = Assembly Location WL = Wafer Lot YY = Year WW = Work Week G = Pb-Free Package
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8
MC34160, MC33160
PACKAGE DIMENSIONS
SOIC-16 WB DW SUFFIX PLASTIC PACKAGE CASE 751G-03 ISSUE C
D
16 M 9
A
q
h X 45_
0.25
NOTES: 1. DIMENSIONS ARE IN MILLIMETERS. 2. INTERPRET DIMENSIONS AND TOLERANCES PER ASME Y14.5M, 1994. 3. DIMENSIONS D AND E DO NOT INLCUDE MOLD PROTRUSION. 4. MAXIMUM MOLD PROTRUSION 0.15 PER SIDE. 5. DIMENSION B DOES NOT INCLUDE DAMBAR PROTRUSION. ALLOWABLE DAMBAR PROTRUSION SHALL BE 0.13 TOTAL IN EXCESS OF THE B DIMENSION AT MAXIMUM MATERIAL CONDITION. MILLIMETERS DIM MIN MAX A 2.35 2.65 A1 0.10 0.25 B 0.35 0.49 C 0.23 0.32 D 10.15 10.45 E 7.40 7.60 e 1.27 BSC H 10.05 10.55 h 0.25 0.75 L 0.50 0.90 q 0_ 7_
H
M
B
8X
1
8
16X
B TA
S
0.25
M
B
S
A
E B
A1
14X
e
SEATING PLANE
T
C
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9
L
MC34160, MC33160
PACKAGE DIMENSIONS
PDIP-16 P SUFFIX PLASTIC PACKAGE CASE 648C-04 ISSUE D
A A
16 9
J
1
8
F
N
K
C
E G
16X
T D
M
SEATING PLANE
0.005 (0.13)
TA
ON Semiconductor and are registered trademarks of Semiconductor Components Industries, LLC (SCILLC). SCILLC reserves the right to make changes without further notice to any products herein. SCILLC makes no warranty, representation or guarantee regarding the suitability of its products for any particular purpose, nor does SCILLC assume any liability arising out of the application or use of any product or circuit, and specifically disclaims any and all liability, including without limitation special, consequential or incidental damages. "Typical" parameters which may be provided in SCILLC data sheets and/or specifications can and do vary in different applications and actual performance may vary over time. All operating parameters, including "Typicals" must be validated for each customer application by customer's technical experts. SCILLC does not convey any license under its patent rights nor the rights of others. SCILLC products are not designed, intended, or authorized for use as components in systems intended for surgical implant into the body, or other applications intended to support or sustain life, or for any other application in which the failure of the SCILLC product could create a situation where personal injury or death may occur. Should Buyer purchase or use SCILLC products for any such unintended or unauthorized application, Buyer shall indemnify and hold SCILLC and its officers, employees, subsidiaries, affiliates, and distributors harmless against all claims, costs, damages, and expenses, and reasonable attorney fees arising out of, directly or indirectly, any claim of personal injury or death associated with such unintended or unauthorized use, even if such claim alleges that SCILLC was negligent regarding the design or manufacture of the part. SCILLC is an Equal Opportunity/Affirmative Action Employer. This literature is subject to all applicable copyright laws and is not for resale in any manner.
PUBLICATION ORDERING INFORMATION
LITERATURE FULFILLMENT: Literature Distribution Center for ON Semiconductor P.O. Box 5163, Denver, Colorado 80217 USA Phone: 303-675-2175 or 800-344-3860 Toll Free USA/Canada Fax: 303-675-2176 or 800-344-3867 Toll Free USA/Canada Email: orderlit@onsemi.com N. American Technical Support: 800-282-9855 Toll Free USA/Canada Europe, Middle East and Africa Technical Support: Phone: 421 33 790 2910 Japan Customer Focus Center Phone: 81-3-5773-3850 ON Semiconductor Website: www.onsemi.com Order Literature: http://www.onsemi.com/orderlit For additional information, please contact your local Sales Representative
0.005 (0.13)
16X
B
L
M
TB
B M
NOTES: 1. DIMENSIONING AND TOLERANCING PER ASME Y14.5M, 1994. 2. CONTROLLING DIMENSION: INCH. 3. DIMENSION L TO CENTER OF LEADS WHEN FORMED PARALLEL. 4. DIMENSION B DOES NOT INCLUDE MOLD FLASH. INCHES MILLIMETERS DIM MIN MAX MIN MAX A 0.744 0.783 18.90 19.90 B 0.240 0.260 6.10 6.60 C 0.145 0.185 3.69 4.69 D 0.015 0.021 0.38 0.53 E 0.050 BSC 1.27 BSC F 0.040 0.70 1.02 1.78 G 0.100 BSC 2.54 BSC J 0.008 0.015 0.20 0.38 K 0.115 0.135 2.92 3.43 L 0.300 BSC 7.62 BSC M 0_ 10_ 0_ 10_ N 0.015 0.040 0.39 1.01
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MC34160/D


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