The TC9400/TC9401/TC9402 are low-cost voltage-tofrequency (V/F) converters utilizing low power CMOS
technology. The converters accept a variable analog input
signal and generate an output pulse train whose frequency
is linearly proportional to the input voltage.
The devices can also be used as highly-accurate frequency-to-voltage (F/V) converters, accepting virtually any
input frequency waveform and providing a linearly-proportional voltage output.
A complete V/F or F/V system only requires the addition
of two capacitors, three resistors, and reference voltage.
*Static-sensitive device. Unused devices must be stored in conductive
material. Protect devices from static discharge and static fields. Stresses
above those listed under Absolute Maximum Ratings may cause permanent damage to the device. These are stress ratings only and functional
operation of the device at these or any other conditions above those
indicated in the operational sections of the specifications is not implied.
Exposure to Absolute Maximum Rating Conditions for extended periods
may affect device reliability.
Operating Temperature Range
C Device ................................................0°C to +70°C
E Device ...........................................– 40°C to +85°C
Lead Temperature (Soldering, 10 sec) .................+300°C
ELECTRICAL CHARACTERISTICS: V
= +5V, VSS = – 5V, V
DD
GND
= 0V, V
= – 5V, R
REF
= 100kΩ,
BIAS
Full Scale = 10kHz, unless otherwise specified. TA = +25°C, unless temperature range is specified (– 40°C to +85°C
for E device, 0°C to +70°C for C device).
VOLTAGE-TO-FREQUENCYTC9401TC9400TC9402
ParameterDefinition Min Typ Max Min Typ Max Min Typ Max Unit
Accuracy
Linearity 10 kHzOutput Deviation From Straight —0.004 0.01—0.01 0.05— 0.05 0.25% Full
Line Between Normalized ZeroScale
and Full-Scale Input
Linearity 100 kHzOutput Deviation From Straight —0.040.08—0.1 0.25— 0.25 0.5% Full
Line Between Normalized ZeroScale
Reading and Full-Scale Input
Gain TemperatureVariation in Gain A Due to —± 25 ± 40—± 25 ± 40— ± 50 ± 1 00 ppm/°C
Drift (Note 1)Temperature Change Full Scale
Gain VarianceVariation From Ideal Accuracy —± 10–—± 10—— ± 10– % of
Nominal
Zero Offset (Note 2)Correction at Zero Adjust for Zero—± 10 ± 50—± 10 ± 50— ± 20 ± 100mV
Output When Input is Zero
Zero TemperatureVariation in Zero Offset Due to —± 25 ± 50—± 25 ± 50— ± 50 ± 100µV/°C
Drift (Note 1)Temperature Change
Analog Input
IIN Full ScaleFull-Scale Analog Input Current to —10——10—10—µA
Achieve Specified Accuracy
IIN OverrangeOverrange Current ——50——50——50µA
Response TimeSettling Time to 0.1% Full Scale —2——2——2—Cycle
Digital Section
V
@ IOL = 10mALogic "0" Output Voltage (Note 3) —0.20.4—0.20.4—0.20.4V
SAT
V
Max – V
OUT
Common (Note 4)and Common
Pulse Frequency —3——3—— 3—µsec
Full Scale = 10kHz, unless otherwise specified. TA = +25°C, unless temperature range is specified – 40°C to +85°C for
E device, 0°C to +70°C for C device.
FREQUENCY-TO-VOLTAGETC9401TC9400TC9402
ParameterDefinitionMin Typ Max Min Typ Max Min Typ MaxUnit
Supply Current
IDD QuiescentCurrent Required From Positive
(Note 5)Supply During Operation—1.56—1.56— 310mA
ISS QuiescentCurrent Required From Negative
(Note 5)Supply During Operation —– 1.5– 6—– 1.5 – 6 – 3– 10mA
VDD SupplyOperating Range of Positive Supply4—7.54—7.54 —7.5V
VSS SupplyOperating Range of Negative Supply– 4—– 7.5 – 4—– 7.5– 4 —– 7.5V
Reference Voltage
V
–V
REF
SS
Accuracy
Nonlinearity (Note 10)Deviation From Ideal Transfer—0.01 0.02—0.02 0.05— 0.05 0.25% Full
Input FrequencyFrequency Range for Specified10—100k10— 100k10—100kHz
Range (Note 7 and 8)Nonlinearity
2Zero AdjLow frequency adjustment input. See text.
3I
4V
5V
IN
SS
OUTReference capacitor connection.
REF
6GNDAnalog ground.
7V
REF
8Pulse Freq OutFrequency output. This open drain output will pulse LOW each time the Freq
9Output CommonSource connection for the open drain output FETs. See text.
10Freq/2 OutThis open drain output is a square wave at one half the frequency of the pulse
11Threshold DetectInput to the threshold detector. This pin is the frequency input during F/V operation.
12Amplifier OutOutput of the integrator amplifier.
13NCNo internal connection
14V
DD
This pin sets bias current in the TC9400. Connect to VSS through a 100 kΩ resistor.
See text.
Input current connection for the V/F converter.
Negative power supply voltage connection, typically – 5V.
Voltage reference input, typically – 5V.
threshold detector limit is reached. The pulse rate is proportional to input voltage.
output (pin 8). Output transitions of this pin occur on the rising edge of pin 8.
Positive power supply connection, typically +5V.
3-290
TELCOM SEMICONDUCTOR, INC.
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